{"title":"Phospholipids (for DDS)","description":"\u003cp\u003e\u003cstrong\u003ePhospholipids (for DDS)\u003c\/strong\u003e — berisi fosfolipid dan turunan terpegilasinya yang dirancang khusus sebagai komponen pembentuk liposom dan nanopartikel lipid pada sistem penghantaran obat (DDS). Variasi panjang rantai asil dan modifikasi gugus kepala memengaruhi stabilitas membran serta interaksi partikel dengan lingkungan biologis.\u003c\/p\u003e\u003cp\u003ePhospholipids (for DDS) digunakan peneliti farmasetika dan bioteknologi untuk memformulasikan liposom serta nanopartikel lipid pembawa obat, protein, atau asam nukleat. Fosfolipid terkonjugasi PEG seperti turunan MPEG-DSPE membantu memperpanjang waktu sirkulasi partikel dalam sistem model, sementara variasi rantai asil digunakan untuk mengatur fluiditas dan stabilitas membran vesikel pada studi formulasi.\u003c\/p\u003e\u003cp\u003eContoh produk dalam koleksi ini: \u003ca href=\"\/en\/products\/tci2510t380855500\"\u003eTCI T3808 19420-57-6 1-Stearoyl-sn-glycero-3-phosphocholine\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510d392424355\"\u003eTCI D3924 18194-24-6 1,2-Dimyristoyl-sn-glycero-3-phosphocholine\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510p280748677\"\u003eTCI P2807 Presome(regR) ACD-1\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510d392524357\"\u003eTCI D3925 63-89-8 1,2-Dipalmitoyl-sn-glycero-3-phosphocholine\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510p269448556\"\u003eTCI P2694 17364-16-8 1-Palmitoyl-sn-glycero-3-phosphocholine\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510d392624359\"\u003eTCI D3926 816-94-4 1,2-Distearoyl-sn-glycero-3-phosphocholine\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510p252248368\"\u003eTCI P2522 268550-95-4 1-Palmitoyl-2-oleyl-sn-glycero-3-phospho-rac-(1-glycerol) Sodium Salt\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510d394624384\"\u003eTCI D3946 200880-40-6 1,2-Dimyristoyl-sn-glycero-3-phospho-rac-(1-glycerol) Sodium Salt\u003c\/a\u003e.\u003c\/p\u003e\u003cp\u003ePertimbangkan panjang dan derajat kejenuhan rantai asil yang menentukan suhu transisi fase membran, bobot molekul PEG pada varian terkonjugasi, serta tingkat kemurnian lipid untuk konsistensi formulasi vesikel. Seluruh produk merupakan produk asli Tokyo Chemical Industry (TCI) Jepang, dengan kemurnian, kemasan, dan kondisi penyimpanan tercantum pada halaman masing-masing item.\u003c\/p\u003e\u003cp\u003eKategori lain yang sejajar di bawah Lipids [Biomaterials\/Biocompatible Materials Research Reagents], sering dipakai bersamaan dalam satu alur kerja laboratorium:\u003c\/p\u003e\u003cul\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/tci-l4-lipids-other-for-dds\"\u003eLipids (Other) (for DDS)\u003c\/a\u003e\u003c\/li\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/tci-l3-monomers-and-macromonomers-biomaterials-biocompatible-materials-resear\"\u003eMonomers and Macromonomers [Biomaterials\/Biocompatible Materials Research Reagents]\u003c\/a\u003e\u003c\/li\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/tci-l3-polymerization-reagents-initiators-catalysts-ligands-biomaterials-bioc\"\u003ePolymerization Reagents (Initiators, Catalysts, Ligands) [Biomaterials\/Biocompatible Materials Research Reagents]\u003c\/a\u003e\u003c\/li\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/tci-l3-polymers-biomaterials-biocompatible-materials-research-reagents\"\u003ePolymers [Biomaterials\/Biocompatible Materials Research Reagents]\u003c\/a\u003e\u003c\/li\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/tci-l4-acrylic-monomers-biomaterials-biocompatible-materials-research-reagents\"\u003eAcrylic Monomers [Biomaterials\/Biocompatible Materials Research Reagents]\u003c\/a\u003e\u003c\/li\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/tci-l4-diol-monomers-biomaterials-biocompatible-materials-research-reagents\"\u003eDiol Monomers [Biomaterials\/Biocompatible Materials Research Reagents]\u003c\/a\u003e\u003c\/li\u003e\n\u003c\/ul\u003e\u003cp\u003eKembali ke \u003ca href=\"\/en\/collections\/tci-l3-lipids-biomaterials-biocompatible-materials-research-reagents\"\u003eLipids [Biomaterials\/Biocompatible Materials Research Reagents]\u003c\/a\u003e. Untuk pengadaan volume besar, kemasan khusus, atau grade tertentu, hubungi tim AMI Scientific — distributor resmi TCI Japan di Indonesia — untuk pengecekan ketersediaan dan lead time langsung ke Jepang.\u003c\/p\u003e","products":[{"product_id":"tci2510d392424355","title":"TCI D3924 18194-24-6 1,2-Dimyristoyl-sn-glycero-3-phosphocholine","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eTCI D3924, 1,2-Dimyristoyl-sn-glycero-3-phosphocholine — more commonly known by the abbreviation DMPC — is a synthetic phospholipid built from two saturated fourteen-carbon myristic acid chains esterified to a glycerol backbone in the sn configuration, together with a phosphocholine head group. In the laboratory it functions as a building block for artificial membranes: it forms liposomes, unilamellar vesicles, mixed micelles, and supported lipid bilayers that serve as simplified models of living cell membranes. Its role is especially central in research on drug delivery systems.\u003c\/p\u003e\n\u003cp\u003eThe main characteristic that makes DMPC such a widely chosen lipid is its phase transition temperature, which is low among the saturated phosphatidylcholines because its acyl chains are relatively short. As a result, DMPC bilayers sit in the liquid-ordered phase at temperatures that are comfortable to work with on the bench, so hydration, extrusion, and sonication proceed more easily than with longer-chain lipids. Its phosphocholine head group is zwitterionic and overall neutral, so the vesicles formed carry a low surface charge and electrostatic interactions with active ingredients can be controlled deliberately rather than left to chance.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, DMPC is typically used in pharmaceutical development and drug discovery groups, in university research units, and in formulation laboratories that prepare liposomal carriers and membrane models. Because its handling temperature is convenient, it suits laboratories that prepare vesicles routinely without specialised high-temperature equipment. It is commonly ordered alongside other phospholipids for work on drug delivery systems, membrane biophysics, and the preparation of model bilayers for method development and teaching.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eLiposome preparation — DMPC hydrates and extrudes readily at convenient bench temperatures, making it a dependable base lipid for producing reproducible liposomal suspensions in formulation work.\u003c\/li\u003e\n\u003cli\u003eDrug delivery system research — its neutral zwitterionic head group keeps vesicle surface charge low, so electrostatic interactions with active pharmaceutical ingredients can be controlled and studied systematically.\u003c\/li\u003e\n\u003cli\u003eSupported lipid bilayer formation — the low phase transition temperature lets bilayers form and equilibrate on solid supports without heating steps that complicate membrane model experiments.\u003c\/li\u003e\n\u003cli\u003eUnilamellar vesicle production — sonication and extrusion of DMPC proceed more easily than with longer-chain saturated lipids, giving laboratories a practical route to uniform vesicle populations.\u003c\/li\u003e\n\u003cli\u003eMixed micelle and membrane model studies — DMPC combines with other lipids and surfactants to build simplified models of living cell membranes for biophysical and mechanistic investigation.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS number: 18194-24-6\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Pharmaceutical Development and Drug Discovery Research Reagents \u0026gt; Drug Delivery Systems (DDS)\u003c\/li\u003e\n\u003cli\u003eProduct code: D3924\u003c\/li\u003e\n\u003cli\u003ePack sizes: available in the catalogue pack sizes offered by TCI for this product code\u003c\/li\u003e\n\u003cli\u003eStorage: store as directed on the manufacturer's label for synthetic phospholipid reagents\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eSynthetic phospholipids such as DMPC are normally kept cold and protected from moisture and air, following the storage conditions stated on the manufacturer's label and safety data sheet. Keep the material in its original tightly closed container, or transfer it to a clean, dry, chemically compatible vessel with a secure closure, and allow sealed containers to reach room temperature before opening to limit condensation. Handle the powder in a well-ventilated area or fume hood, wear a laboratory coat, safety glasses, and suitable gloves, avoid generating dust, and prepare stock solutions using clean glassware and appropriate solvents. Label all prepared vesicle suspensions clearly and consult the safety data sheet before first use.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"200mg","offer_id":48086645735642,"sku":"TCI2510D392424355","price":2812000.0,"currency_code":"IDR","in_stock":true},{"title":"1g","offer_id":48086645768410,"sku":"TCI2510D392424356","price":10821000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510D3924.jpg?v=1767106794"},{"product_id":"tci2510d392524357","title":"TCI D3925 63-89-8 1,2-Dipalmitoyl-sn-glycero-3-phosphocholine","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eTCI D3925, 1,2-Dipalmitoyl-sn-glycero-3-phosphocholine (commonly abbreviated DPPC), is a saturated phospholipid built from two sixteen-carbon palmitic acid chains esterified to an sn-configured glycerol backbone and capped with a phosphocholine head group. It is one of the most extensively studied lipids in membrane science, in part because it is also a principal component of mammalian pulmonary surfactant. In the laboratory, DPPC serves as a building block for liposomes, vesicles, monolayers at the air–water interface, and supported bilayers used as model biological membranes in drug delivery and biophysics research.\u003c\/p\u003e\n\u003cp\u003eThe properties that make DPPC a preferred choice begin with its medium-length saturated acyl chains, which produce a tightly packed, well-ordered bilayer whose phase transition temperature sits slightly above body temperature. This behaviour is particularly useful because researchers can design liposomes that remain tight and non-leaky at physiological temperature yet release their payload when warmed a little further, which is the foundation of the thermosensitive liposome concept. Its phosphocholine head group is zwitterionic, so the resulting vesicles carry a low surface charge, while the saturation of the acyl chains makes this lipid considerably more resistant to oxidation than unsaturated phospholipids.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, DPPC is typically used within pharmaceutical development, drug discovery, and drug delivery system (DDS) research programmes at universities, research institutes, and formulation laboratories. It supports work on liposomal carriers, membrane models, and interfacial studies where a reproducible, well-characterised saturated phospholipid is required. Because it is supplied as a defined research reagent from TCI, it fits laboratories that need consistent lipid quality across repeated preparations and long-running experimental series.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eLiposome preparation for drug delivery research: the ordered, tightly packed bilayer formed by DPPC gives vesicles good retention of encapsulated payloads at physiological temperature.\u003c\/li\u003e\n\u003cli\u003eThermosensitive liposome development: because the phase transition temperature lies slightly above body temperature, formulations can be designed to release contents on mild heating.\u003c\/li\u003e\n\u003cli\u003eModel biological membrane studies: supported bilayers and vesicles built from DPPC provide a reproducible, well-characterised membrane mimic for biophysical investigation of lipid behaviour.\u003c\/li\u003e\n\u003cli\u003eLangmuir monolayer experiments at the air–water interface: the saturated palmitoyl chains form stable, well-ordered monolayers suitable for surface pressure and packing studies.\u003c\/li\u003e\n\u003cli\u003ePulmonary surfactant research: DPPC is a principal component of mammalian lung surfactant, making it the natural reference lipid for surfactant model systems and interfacial work.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS number: 63-89-8\u003c\/li\u003e\n\u003cli\u003eChemical name: 1,2-Dipalmitoyl-sn-glycero-3-phosphocholine (DPPC)\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Pharmaceutical Development and Drug Discovery Research Reagents \u0026gt; Drug Delivery Systems (DDS)\u003c\/li\u003e\n\u003cli\u003ePack sizes: available in standard TCI research-scale packaging; please confirm the required size when ordering\u003c\/li\u003e\n\u003cli\u003eStorage: keep refrigerated or frozen in a tightly closed container, protected from moisture, in line with the manufacturer's label\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eStore the container closed tightly at low temperature as indicated on the manufacturer's label, keeping the material away from moisture, direct sunlight, and sources of heat. Phospholipids readily take up water, so allow sealed containers to reach room temperature before opening to prevent condensation on the powder. Use clean, dry glass or chemically compatible containers for weighing and lipid film preparation, and avoid plastics that may be attacked by organic solvents used during dissolution. Handle in a well-ventilated area or fume hood, wear a laboratory coat, gloves, and safety glasses, and follow standard laboratory hygiene practices. Refer to the manufacturer's safety data sheet before use and dispose of residues according to institutional chemical waste procedures.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"200mg","offer_id":48086645833946,"sku":"TCI2510D392524357","price":2334000.0,"currency_code":"IDR","in_stock":true},{"title":"1g","offer_id":48086645866714,"sku":"TCI2510D392524358","price":6999000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510D3925.jpg?v=1767106798"},{"product_id":"tci2510d392624359","title":"TCI D3926 816-94-4 1,2-Distearoyl-sn-glycero-3-phosphocholine","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eTCI D3926, 1,2-Distearoyl-sn-glycero-3-phosphocholine (CAS 816-94-4), commonly abbreviated as DSPC, is a long-chain saturated phospholipid built on an sn-configured glycerol backbone carrying two eighteen-carbon stearoyl acyl groups and a zwitterionic phosphocholine head group. In the laboratory, DSPC is recognised as a principal structural lipid in a wide range of modern drug-carrier formulations, from classical liposomes through to lipid nanoparticles used for nucleic acid delivery. Its role is to provide a robust, tightly packed and leakage-resistant membrane framework, so that the active substance remains encapsulated until the particle reaches its intended target.\u003c\/p\u003e\n\u003cp\u003eThe property that makes DSPC such a widely preferred choice is its acyl chain length, which places the phase transition temperature well above body temperature. As a result, the bilayer remains in a rigid gel phase under physiological conditions. This rigidity lowers membrane permeability, slows the leakage of dissolved solutes, and improves particle stability during storage. Because its chains are fully saturated, DSPC is also comparatively resistant to oxidation when set against unsaturated phospholipids — an important advantage for formulations that must remain stable over long periods. The zwitterionic phosphocholine head group contributes the familiar bilayer-forming behaviour expected of a phosphatidylcholine.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, DSPC is typically used in pharmaceutical development and drug discovery research groups working on drug delivery systems (DDS). It is handled in university research laboratories, pharmaceutical formulation units, and institutional research centres where liposome and lipid nanoparticle preparation is part of routine experimental work. Such laboratories generally value a structural lipid that behaves consistently between batches, tolerates ambient conditions during handling, and supports formulation work that must be repeated and reproduced over an extended research programme.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eLiposome preparation — DSPC serves as the main bilayer-forming lipid, providing a rigid gel-phase membrane that holds encapsulated actives securely inside the vesicle during handling and storage.\u003c\/li\u003e\n\u003cli\u003eLipid nanoparticle formulation for nucleic acid delivery — the saturated eighteen-carbon chains supply the structural helper-lipid framework required to build stable particles that protect their nucleic acid cargo.\u003c\/li\u003e\n\u003cli\u003eControlled-release drug carrier development — its low membrane permeability slows solute leakage, making it suitable for studies where the release profile of an encapsulated compound must be deliberately restrained.\u003c\/li\u003e\n\u003cli\u003eLong-term stability studies of lipid formulations — full chain saturation makes DSPC comparatively resistant to oxidation, so it suits formulation work that must remain reliable across extended storage periods.\u003c\/li\u003e\n\u003cli\u003eDrug delivery systems (DDS) research and screening — as a well-characterised structural phosphatidylcholine, it gives formulation scientists a consistent membrane baseline against which other lipid components can be compared.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCatalogue number: D3926\u003c\/li\u003e\n\u003cli\u003eCAS number: 816-94-4\u003c\/li\u003e\n\u003cli\u003eChemical name: 1,2-Distearoyl-sn-glycero-3-phosphocholine (DSPC)\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Pharmaceutical Development and Drug Discovery Research Reagents \u0026gt; Drug Delivery Systems (DDS)\u003c\/li\u003e\n\u003cli\u003ePack sizes: available in the standard TCI catalogue pack sizes; please confirm the required size when ordering\u003c\/li\u003e\n\u003cli\u003eStorage: store according to the conditions stated on the manufacturer's label and safety data sheet\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eStore the container tightly closed in a cool, dry place, following the storage temperature stated on the manufacturer's label and safety data sheet for this product. Keep the material in its original container or in a clean, well-sealed glass vessel, protected from moisture, direct sunlight and sources of heat. As a lipid intended for formulation work, it should be handled in a clean working area to avoid contamination, and containers should be allowed to reach room temperature before opening to limit condensation. Wear standard laboratory personal protective equipment — laboratory coat, safety glasses and suitable gloves — and handle powders with care to avoid raising dust. Always consult the manufacturer's safety data sheet before use, and dispose of residues and contaminated materials in accordance with applicable laboratory waste procedures.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"200mg","offer_id":48086645932250,"sku":"TCI2510D392624359","price":2868000.0,"currency_code":"IDR","in_stock":true},{"title":"1g","offer_id":48086645965018,"sku":"TCI2510D392624360","price":8685000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510D3926.jpg?v=1767106802"},{"product_id":"tci2510d394624384","title":"TCI D3946 200880-40-6 1,2-Dimyristoyl-sn-glycero-3-phospho-rac-(1-glycerol) Sodium Salt","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003e1,2-Dimyristoyl-sn-glycero-3-phospho-rac-(1-glycerol) Sodium Salt, commonly abbreviated as DMPG sodium salt, is a negatively charged synthetic phospholipid built from two fourteen-carbon myristoyl acyl chains and a polar glycerophosphoglycerol head group. In the laboratory it serves as a key component in the assembly of liposomes, lipid vesicles, and a wide range of drug delivery systems. Pharmaceutical researchers use it to control the surface charge of carrier particles, improve colloidal stability, and study the interactions between lipid carriers and proteins, nucleic acids, and cell membranes during formulation development research.\u003c\/p\u003e\n\u003cp\u003eThe characteristics that make this material a preferred choice begin with the anionic charge contributed by the phosphoglycerol group, which provides electrostatic repulsion between vesicles so that liposome suspensions do not aggregate easily. The saturated and uniform myristoyl chains produce bilayers with sharp, predictable phase transition behaviour, making experiments straightforward to repeat and to compare across batches. Because the chains are saturated, the material is also more resistant to oxidation than phospholipids carrying unsaturated chains. When combined with neutral phospholipids such as the phosphatidylcholine class, it allows researchers to tune bilayer composition in a controlled manner.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, DMPG sodium salt is typically used in pharmaceutical formulation groups, university research centres, and drug delivery development units that prepare liposomal and vesicle-based carriers. It is generally handled in small, carefully weighed quantities as part of defined lipid mixtures, then hydrated or dissolved according to the chosen preparation protocol. Its reproducible behaviour makes it well suited to teaching laboratories and research programmes where consistent results across repeated preparations are required.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eLiposome preparation — the anionic head group supplies electrostatic repulsion that keeps vesicle suspensions dispersed and reduces the tendency of liposomes to aggregate during storage and handling.\u003c\/li\u003e\n\u003cli\u003eDrug delivery system development — researchers incorporate this phospholipid to adjust the surface charge of carrier particles, which influences colloidal stability and the overall behaviour of the formulation.\u003c\/li\u003e\n\u003cli\u003eLipid bilayer and membrane model studies — the uniform saturated myristoyl chains give sharp, predictable phase transition behaviour, making it suitable for controlled investigations of bilayer properties.\u003c\/li\u003e\n\u003cli\u003eLipid carrier interaction research — it is used to examine how lipid carriers interact with proteins, nucleic acids, and cell membranes under defined and reproducible experimental conditions.\u003c\/li\u003e\n\u003cli\u003eFormulation development and optimisation — combining it with neutral phospholipids such as the phosphatidylcholine class lets researchers tune bilayer composition systematically across successive formulation trials.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eProduct code: D3946\u003c\/li\u003e\n\u003cli\u003eCAS number: 200880-40-6\u003c\/li\u003e\n\u003cli\u003eChemical name: 1,2-Dimyristoyl-sn-glycero-3-phospho-rac-(1-glycerol) Sodium Salt\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Pharmaceutical Development and Drug Discovery Research Reagents \u0026gt; Drug Delivery Systems (DDS)\u003c\/li\u003e\n\u003cli\u003ePack sizes: available in the manufacturer's standard research packaging; please refer to the listed pack options\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eStore this phospholipid in its original tightly closed container, kept cold and protected from light and moisture in line with the manufacturer's stated storage conditions on the product label. Suitable containers are the supplied glass vial or an equivalent chemically resistant, well-sealed vessel; avoid leaving the material exposed to open air. Although the saturated myristoyl chains give better oxidation resistance than unsaturated phospholipids, the material should still be handled promptly and returned to storage after weighing. Allow containers to reach room temperature before opening to limit moisture condensation. Work in a well-ventilated area, wear a laboratory coat, gloves, and eye protection, and follow the safety data sheet together with your institution's standard laboratory practices.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"1g","offer_id":48086647013594,"sku":"TCI2510D394624384","price":9501000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510D3946.jpg?v=1767106836"},{"product_id":"tci2510d425024795","title":"TCI D4250 4235-95-4 1,2-Dioleoyl-sn-glycero-3-phosphocholine","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eTCI D4250 1,2-Dioleoyl-sn-glycero-3-phosphocholine (CAS 4235-95-4), more widely known as DOPC, is a synthetic phospholipid built on a glycerol backbone carrying two unsaturated oleic acid chains and a phosphocholine head group. It has become one of the most important lipids in drug delivery research because of its ability to spontaneously form lipid bilayers and vesicles in water. In the laboratory, DOPC is used to assemble liposomes, model membranes, and a wide range of nanocarriers designed to transport active compounds toward specific biological targets.\u003c\/p\u003e\n\u003cp\u003eThe advantage of DOPC comes from the unsaturation of its oleate chains, which adopt a cis configuration. These double bonds introduce a kink in the acyl chains, so the resulting bilayer sits in the liquid-disordered phase at common laboratory working temperatures. The membranes formed this way are flexible, readily fusogenic, and very well suited to simulating the dynamic character of biological membranes. The zwitterionic phosphocholine head group gives the vesicle surface a charge-neutral character, so unintended interactions with proteins and nucleic acids can be minimised. The point requiring attention is that the unsaturated chains demand careful handling.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, DOPC of this grade is typically found in pharmaceutical development groups, formulation laboratories, and university research units working on drug delivery systems. It serves as the base lipid for preparing liposomes and model membranes in studies of encapsulation, membrane behaviour, and targeted carrier design. Because the material supports both routine formulation work and more exploratory membrane biophysics, it fits research programmes at academic institutions as well as pharmaceutical and biotechnology development settings.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eLiposome preparation: DOPC forms bilayer vesicles spontaneously in aqueous media, making it a dependable base lipid for building liposomal carriers that encapsulate active compounds.\u003c\/li\u003e\n\u003cli\u003eModel membrane construction: the liquid-disordered bilayer formed by DOPC reproduces the flexible, dynamic character of biological membranes, supporting realistic membrane behaviour studies in vitro.\u003c\/li\u003e\n\u003cli\u003eNanocarrier development: DOPC serves as a structural lipid in nanoscale carriers designed to transport active compounds toward defined biological targets within drug delivery research.\u003c\/li\u003e\n\u003cli\u003eDrug delivery systems (DDS) research: its established role as a core phospholipid makes DOPC a standard component for formulation studies exploring encapsulation and release behaviour.\u003c\/li\u003e\n\u003cli\u003eMembrane interaction studies: the charge-neutral zwitterionic phosphocholine surface minimises unintended binding of proteins and nucleic acids, giving cleaner interaction experiments with fewer artefacts.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS Number: 4235-95-4\u003c\/li\u003e\n\u003cli\u003eChemical name: 1,2-Dioleoyl-sn-glycero-3-phosphocholine (DOPC)\u003c\/li\u003e\n\u003cli\u003eCatalogue reference: D4250\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Pharmaceutical Development and Drug Discovery Research Reagents \u0026gt; Drug Delivery Systems (DDS)\u003c\/li\u003e\n\u003cli\u003ePack sizes: available in the packaging options offered by the manufacturer for this catalogue item\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eBecause DOPC contains unsaturated oleate chains, it should be handled with care and kept under the storage conditions specified by the manufacturer on the product label and safety data sheet. Store the material in its original tightly closed container, protected from air, moisture, light, and heat, and keep it in a cool place designated for lipid reagents. Allow sealed containers to equilibrate to room temperature before opening to limit condensation. Handle the material in a clean laboratory area with adequate ventilation, using gloves, safety glasses, and a laboratory coat, and use clean dry glassware or compatible solvent-resistant labware when preparing solutions. Minimise repeated opening of the stock container and follow institutional procedures for chemical waste disposal.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"250mg","offer_id":48086681223386,"sku":"TCI2510D425024795","price":2475000.0,"currency_code":"IDR","in_stock":true},{"title":"1g","offer_id":48086681256154,"sku":"TCI2510D425024796","price":7195000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510D4250.jpg?v=1767107309"},{"product_id":"tci2510d531826194","title":"TCI D5318 67254-28-8 1,2-Dioleoyl-sn-glycero-3-phospho-rac-(1-glycerol) Sodium Salt","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003e1,2-Dioleoyl-sn-glycero-3-phospho-rac-(1-glycerol) Sodium Salt is a chemical compound widely used in pharmaceutical research and drug development. It belongs to the class of lipid bilayers and plays a crucial role in the formulation of drug delivery systems (DDS). This compound is essential for creating liposomes, which are lipid-based structures designed to deliver drugs more effectively and selectively to target cells. Its presence in laboratory settings supports the advancement of targeted therapies and improves the efficiency of drug delivery mechanisms.\u003c\/p\u003e\n\u003cp\u003eThis material is valued for its chemical stability and solubility in organic solvents such as chloroform and ethanol. These properties make it easy to handle and integrate into various experimental protocols. Its molecular structure is complex yet can be consistently produced, ensuring reliability in research applications. The compound's versatility supports a wide range of experiments in both pharmacology and chemical synthesis, making it a preferred choice for researchers.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, this compound is commonly used in clinical and academic research focused on new drug development. It is frequently employed by research institutions and universities to study drug delivery mechanisms and therapeutic efficiency. Its application in these settings helps expand understanding of how drugs interact with biological systems and improves the design of more effective treatments.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eDrug Delivery System Development: This compound is ideal for creating liposomes that enhance the targeted delivery of therapeutic agents, improving drug efficacy and reducing side effects.\u003c\/li\u003e\n\u003cli\u003eLiposome Formulation Research: Its use in liposome preparation allows for the study of membrane structure and drug encapsulation efficiency, supporting advancements in nanomedicine.\u003c\/li\u003e\n\u003cli\u003ePharmaceutical Development Studies: It is used to investigate the behavior of lipid-based formulations in drug delivery, aiding in the optimization of therapeutic agents.\u003c\/li\u003e\n\u003cli\u003eBioavailability Testing: The compound supports experiments that evaluate how effectively drugs are absorbed and distributed in the body.\u003c\/li\u003e\n\u003cli\u003eTargeted Therapy Research: Its role in forming lipid bilayers makes it suitable for studying how drugs can be directed to specific cells or tissues for improved treatment outcomes.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS number: 67254-28-8\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Pharmaceutical Development and Drug Discovery Research Reagents \u0026gt; Drug Delivery Systems (DDS)\u003c\/li\u003e\n\u003cli\u003ePack sizes: Available in various quantities as per supplier specifications\u003c\/li\u003e\n\u003cli\u003ePhysical form: Powder or solid, depending on packaging\u003c\/li\u003e\n\u003cli\u003eStorage note: Store in a cool, dry place away from light and moisture\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eThis compound should be stored in a cool, dry environment, away from direct light and moisture to maintain its chemical stability. It is recommended to use airtight containers to prevent exposure to humidity and contaminants. Due to its solubility in organic solvents, it should be handled in a well-ventilated area to minimize inhalation risks. Researchers should wear appropriate personal protective equipment, such as gloves and safety goggles, when handling the material. Proper labeling of containers is essential to ensure safe handling and prevent accidental use. The compound is generally stable under standard laboratory conditions when stored correctly.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"250mg","offer_id":48086754230490,"sku":"TCI2510D531826194","price":5623000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510D5318.jpg?v=1767108605"},{"product_id":"tci2510d531926195","title":"TCI D5319 51779-95-4 1,2-Dierucoyl-sn-glycero-3-phosphocholine","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003e1,2-Dierucoyl-sn-glycero-3-phosphocholine is a chemical compound used in pharmaceutical research and drug delivery system development. It belongs to the class of phospholipids and is widely utilized in laboratories for its ability to facilitate the binding of drug molecules to cell membranes. This compound plays a crucial role in the study of how drugs interact with target cells, contributing to the design of more effective and targeted drug delivery mechanisms. Its presence in research settings supports the advancement of innovative therapeutic approaches by enabling the controlled release of active pharmaceutical ingredients.\u003c\/p\u003e\n\u003cp\u003eThe compound is preferred due to its chemical stability under specific conditions, which simplifies storage and handling in a laboratory environment. Its complex molecular structure allows for chemical modifications, making it versatile for various pharmaceutical applications such as liposome and nanoparticle formulations. This adaptability enhances its utility in drug development, where flexibility in molecular design is essential. Additionally, its compatibility with different research methodologies ensures it remains a valuable tool for scientists working on drug delivery systems.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, this compound is commonly used by researchers in pharmacology and pharmaceutical chemistry. It supports studies aimed at improving drug efficacy and targeting, aligning with the country's growing focus on advanced drug development. Its application in both academic and industrial research settings underscores its importance in the field of pharmaceutical innovation.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eDrug Delivery System Research - This compound is ideal for studying how drugs interact with cell membranes, enabling the development of more targeted and efficient delivery mechanisms.\u003c\/li\u003e\n\u003cli\u003eLiposome Formulation Development - Its phospholipid structure makes it suitable for creating liposomes, which are used to encapsulate and deliver drugs more effectively.\u003c\/li\u003e\n\u003cli\u003eNanoparticle Synthesis - The compound's molecular flexibility allows for the creation of nanoparticles that can be tailored for specific therapeutic applications.\u003c\/li\u003e\n\u003cli\u003ePharmacological Interaction Studies - It supports research into how drugs interact with biological systems, aiding in the optimization of therapeutic outcomes.\u003c\/li\u003e\n\u003cli\u003eTargeted Drug Release Studies - Its ability to bind to cell membranes helps in the design of systems that release drugs at specific sites within the body.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS number: 51779-95-4\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Pharmaceutical Development and Drug Discovery Research Reagents \u0026gt; Drug Delivery Systems (DDS)\u003c\/li\u003e\n\u003cli\u003ePack sizes: Available in various quantities as per supplier specifications\u003c\/li\u003e\n\u003cli\u003ePhysical form: Powder or liquid, depending on formulation\u003c\/li\u003e\n\u003cli\u003eStorage note: Store in a cool, dry place away from direct sunlight\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eThis compound should be stored in a cool, dry environment to maintain its chemical stability. It is recommended to use airtight containers to prevent exposure to moisture and contaminants. In laboratory settings, it should be handled with appropriate personal protective equipment, such as gloves and safety goggles, to ensure safety during preparation and use. The compound is generally stable under normal laboratory conditions but should be kept away from heat sources and incompatible substances. Proper labeling of containers is essential to prevent misidentification and ensure safe handling. Regular inspection of storage conditions is advised to maintain the integrity of the material throughout its use in research applications.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"250mg","offer_id":48086754296026,"sku":"TCI2510D531926195","price":5032000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510D5319.jpg?v=1767108609"},{"product_id":"tci2510d564826616","title":"TCI D5648 200880-42-8 1,2-Dioctadecanoyl-sn-glycero-3-phospho-(1'-rac-glycerol) Sodium Salt","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eTCI D5648, catalogued under CAS number 200880-42-8, is 1,2-Dioctadecanoyl-sn-glycero-3-phospho-(1'-rac-glycerol) Sodium Salt, commonly known as DSPG sodium salt. It is a negatively charged synthetic phospholipid carrying two saturated stearoyl acyl chains of eighteen carbon atoms each. The material belongs to the family of reagents used in drug delivery system research and serves as a key component in the preparation of liposomes, lipid vesicles, and lipid nanoparticles in pharmaceutical laboratories. Its role is to supply a negative surface charge together with structural stability to artificial membranes designed to carry active compounds.\u003c\/p\u003e\n\u003cp\u003eThe characteristics that make DSPG a widely preferred choice are the combination of its saturated stearoyl chains and its anionic phosphoglycerol head group. The long saturated chains produce a high phase transition temperature, so the bilayer remains rigid and tightly packed at both body temperature and storage temperature, and leakage of encapsulated substances can be suppressed. The absence of double bonds also makes this lipid far more resistant to oxidation than unsaturated phospholipids. Meanwhile, the phosphoglycerol head group provides a negative charge that generates electrostatic repulsion between vesicles, prevents aggregation, and allows researchers to tune the surface potential of their formulations.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, DSPG sodium salt is typically used in pharmaceutical development and drug discovery research settings, particularly by groups working on drug delivery systems. It is handled in formulation work where liposomes, lipid vesicles, and lipid nanoparticles are prepared and characterised, and where a defined anionic phospholipid of consistent synthetic origin is required. Because it is a synthetic material with a specified structure, it suits academic research groups, pharmaceutical formulation laboratories, and institutional research facilities that need reproducible results across preparations.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eLiposome preparation — DSPG supplies the anionic bilayer component that gives vesicles a negative surface charge and the rigid, tightly packed membrane needed to retain encapsulated compounds.\u003c\/li\u003e\n\u003cli\u003eLipid nanoparticle formulation — its saturated eighteen-carbon chains and defined synthetic structure allow reproducible nanoparticle assembly for drug delivery system research in pharmaceutical laboratories.\u003c\/li\u003e\n\u003cli\u003eDrug delivery system research — as a dedicated DDS reagent, it lets researchers build artificial membranes that carry active compounds while maintaining structural stability under storage and physiological temperature.\u003c\/li\u003e\n\u003cli\u003eSurface charge modulation studies — the anionic phosphoglycerol head group provides electrostatic repulsion between vesicles, so researchers can tune surface potential and prevent unwanted aggregation in suspensions.\u003c\/li\u003e\n\u003cli\u003eLipid vesicle stability work — the absence of double bonds makes this phospholipid far more oxidation-resistant than unsaturated alternatives, supporting membrane studies that require chemically stable lipid components.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS number: 200880-42-8\u003c\/li\u003e\n\u003cli\u003eChemical name: 1,2-Dioctadecanoyl-sn-glycero-3-phospho-(1'-rac-glycerol) Sodium Salt (DSPG sodium salt)\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Pharmaceutical Development and Drug Discovery Research Reagents \u0026gt; Drug Delivery Systems (DDS)\u003c\/li\u003e\n\u003cli\u003ePack sizes: available in the pack sizes listed by the manufacturer for this catalogue number\u003c\/li\u003e\n\u003cli\u003eStorage note: store as directed on the product label; keep sealed and protected from moisture\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eStore TCI D5648 in its original tightly sealed container, following the storage conditions stated on the product label and in the manufacturer's documentation. As a phospholipid sodium salt, it should be kept sealed and protected from moisture, and containers should be allowed to reach ambient temperature before opening to limit condensation on the material. Handle the product in a clean, well-ventilated working area using standard laboratory personal protective equipment, including gloves, eye protection, and a laboratory coat. Use clean, dry spatulas and glass or otherwise chemically compatible vessels when weighing and transferring the powder, and reseal the container promptly after use. Consult the manufacturer's safety data sheet before handling, preparing solutions, or disposing of residues and contaminated materials.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"250mg","offer_id":48086773596378,"sku":"TCI2510D564826616","price":5481000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510D5648.jpg?v=1767109032"},{"product_id":"tci2510d601127022","title":"TCI D6011 474922-26-4 DSPE-PEG(2000)-Amine Ammonium Salt","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eTCI D6011, with the CAS number 474922-26-4, is a chemical compound known as DSPE-PEG(2000)-Amine Ammonium Salt. It is widely used in pharmaceutical development and drug discovery research, particularly in the field of Drug Delivery Systems (DDS). This compound is a derivative of phospholipid modified with a polyethylene glycol (PEG) chain and an amine group. Its role in the laboratory is to serve as a key reagent in the formulation of liposomes and other drug delivery systems, enhancing the efficiency and stability of drug formulations.\u003c\/p\u003e\n\u003cp\u003eThe unique chemical properties of TCI D6011 make it a preferred choice for researchers. It exhibits amphiphilic characteristics, enabling it to interact effectively with cell membranes and aqueous environments. This property is crucial for the development of targeted drug delivery systems. Additionally, it improves the dispersibility of drug molecules and reduces toxicity, making it a valuable tool in biomedicine research. Its ability to enhance solubility and stability further supports its application in various pharmaceutical and biochemical studies.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, TCI D6011 is commonly used in applied research related to drug development and biomedicine. It is particularly useful for studies focused on improving drug efficacy, reducing side effects, and enhancing the delivery of therapeutic agents. Its versatility and reliability make it a staple in research settings where precision and performance are critical. Researchers in Indonesia rely on this compound to advance their work in pharmaceutical sciences and related fields.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eDrug Delivery System Development: TCI D6011 is ideal for creating liposomes and other nanocarriers due to its amphiphilic nature and ability to enhance drug solubility and stability.\u003c\/li\u003e\n\u003cli\u003ePharmaceutical Formulation Research: Its role in improving dispersibility and reducing toxicity makes it a key component in the development of more effective and safer drug formulations.\u003c\/li\u003e\n\u003cli\u003eBiomedical Research Applications: The compound supports studies on cell membrane interactions and drug targeting, making it valuable in biotechnology and pharmacology research.\u003c\/li\u003e\n\u003cli\u003eStability and Bioavailability Studies: Its ability to enhance drug stability and bioavailability is crucial for evaluating the performance of new therapeutic agents.\u003c\/li\u003e\n\u003cli\u003eTargeted Drug Delivery Systems: TCI D6011 is used to modify drug carriers for more precise and efficient delivery, improving therapeutic outcomes in various disease models.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS Number: 474922-26-4\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Pharmaceutical Development and Drug Discovery Research Reagents \u0026gt; Drug Delivery Systems (DDS)\u003c\/li\u003e\n\u003cli\u003ePack Sizes: Not specified\u003c\/li\u003e\n\u003cli\u003ePhysical Form: Not specified\u003c\/li\u003e\n\u003cli\u003eStorage Note: Store in a cool, dry place away from light\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eTCI D6011 should be stored in a cool, dry place away from direct light to maintain its chemical integrity. 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