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lipid bilayer

" in MedChemExpress (MCE) Product Catalog:

139

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29

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Click Chemistry

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-109541

    DMPC; Dimyristoyl phosphatidylcholine

    Liposome Others
    1,2-Dimyristoyl-sn-glycero-3-phosphocholine (DMPC) is a synthetic phospholipid used in liposomes. 1,2-Dimyristoyl-sn-glycero-3-phosphocholine is used for the study of lipid monolayers and bilayers .
    1,2-Dimyristoyl-sn-glycero-3-phosphocholine
  • HY-N2427

    Others Others
    Adamantane, a polycyclic cage molecule with high symmetry and remarkable properties. Adamantane can be incorporated into a lipophilic part of the lipid bilayer that constitutes membranes and as an anchor in the lipid bilayer of liposomes. Adamantane can be used in research of surface recognition and drug delivery .
    Adamantane
  • HY-130462
    1-Palmitoyl-2-oleoyl-sn-glycero-3-PC
    2 Publications Verification

    POPC

    Liposome Others
    1-Palmitoyl-2-oleoyl-sn-glycero-3-PC (POPC), a phospholipid, is a major component of biological membranes. 1-Palmitoyl-2-oleoyl-sn-glycero-3-PC is used for the preparation of liposomes and studying the properties of lipid bilayers .
    1-Palmitoyl-2-oleoyl-sn-glycero-3-PC
  • HY-W441013

    Liposome Others
    DSPE-PEG-NHS, MW 1000 is an amine reactive phospholipid. The reaction between NHS esters and amines forms a stable amide bond. The polymer is amphiphilic and capable of forming micelles or lipid bilayer in aqueous solution.
    DSPE-PEG-NHS, MW 1000
  • HY-N12540

    MGDG

    Others Others
    Monogalactosyldiacylglycerol (MGDG) is a polar lipid that does not form a bilayer and is found, for example, in the chloroplast thylakoid of aerobic photosynthetic organisms. Monogalactosyldiacylglycerol lacks charge and is highly unsaturated, which provides a fluid environment that facilitates the diffusion process of electron transfer in photosynthesis and may be used in the packaging of natural proteins. The galactolipid Monogalactosyldiacylglycerol has anti-inflammatory effects in vivo ..
    Monogalactosyldiacylglycerol
  • HY-143693

    Liposome Others
    DGDG, a chloroplast lipid, is a bilayer-forming lipid. DGDG is important for photosynthesis, and can be used for drug delivery .
    DGDG
  • HY-156630

    Liposome Others
    Ionizable lipid-1 (compound II-10) is an ionizable lipid (pKa=6.16) that can be used to prepare lipid nanoparticles (LNP) with bilayer structure .
    Ionizable lipid-1
  • HY-156630A

    Liposome Others
    Ionizable lipid-1 (compound II-10) is an ionizable lipid (pKa=6.16) that can be used to prepare lipid nanoparticles (LNP) with bilayer structure .
    Ionizable lipid-1 hydrochloride
  • HY-144008

    Liposome Others
    C8 PEG-Ceramide is a lipid product. C8 PEG-Ceramide can synthesize lipid bilayer carrier and can be used for drug delivery .
    C8 PEG-Ceramide
  • HY-144008A

    Liposome Others
    C8 PEG5000 Ceramide is a lipid product. C8 PEG5000 Ceramide can synthesize lipid bilayer carrier and can be used for drug delivery .
    C8 PEG5000 Ceramide
  • HY-144008B

    Biochemical Assay Reagents Others
    C8 PEG750 Ceramide is a lipid product. C8 PEG750 Ceramide synthesizes a lipid bilayer carrier for the selective delivery of various diagnostic and therapeutic agents to acidic diseased cells .
    C8 PEG750 Ceramide
  • HY-114958

    Fluorescent Dye Others
    RH 421 is a voltage-sensitive styryl dye that can penetrate through the lipid bilayers. RH 421 is a chromogenic substrate for β-galactosidase .
    RH 421
  • HY-D2256

    Fluorescent Dye Neurological Disease
    BDP TMR ceramide is a BDP TMR (a water-soluble dye with a high affinity to lipid bilayers) labeled ceramide. Ex: 542 nm, Em: 572 nm .
    BDP TMR ceramide
  • HY-W040268

    Endogenous Metabolite Metabolic Disease
    1,2-Dipalmitoyl-sn-glycero-3-phosphoethanolamine is a phospholipid that is a major component of the lipid bilayer that surrounds cells and provides stability to the membrane.
    1,2-Dipalmitoyl-sn-glycero-3-phosphoethanolamine
  • HY-W441017

    Liposome Others
    DSPE-SPDP is a phospholipid molecule. DSPE-SPDP can orient itself to form lipid bilayer in water. DSPE-SPDP can be used for the research of various biochemical .
    DSPE-SPDP
  • HY-108569

    Antibiotic Bacterial PPAR Infection
    nTZDpa is an antibiotic. nTZDpa is a PPARG partial agonist. nTZDpa has antibacterial activity. nTZDpa is effective against growing and persistent Staphylococcus aureus by lipid bilayer disruption .
    nTZDpa
  • HY-158083

    Biochemical Assay Reagents Others
    Polymethacrylate Copolymer forms nanodiscs spontaneously by fragmentation or solubilization of the lipid bilayers.Polymethacrylate Copolymer is used in designing of nanodisc-forming polymer to mimic the amphiphilic nature of proteins and peptides .
    Polymethacrylate Copolymer
  • HY-W440752

    Liposome Cancer
    BP Lipid 113 is a liposome to simulate biological phospholipid membrane. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble payloads can be trapped in the internal aqueous space of liposomes, while lipophilic payloads can partition into and become part of the lipid bilayer. Especially for delivering antisense oligonucleotides, it can overcome problems such as inefficient cellular uptake and rapid loss in the body .
    BP Lipid 113
  • HY-W800749

    Liposome Cancer
    BP Lipid 223 is a liposome to simulate biological phospholipid membrane. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble payloads can be trapped in the internal aqueous space of liposomes, while lipophilic payloads can partition into and become part of the lipid bilayer. Especially for delivering antisense oligonucleotides, it can overcome problems such as inefficient cellular uptake and rapid loss in the body .
    BP Lipid 223
  • HY-W440748

    Liposome Cancer
    BP Lipid 109 is a liposome to simulate biological phospholipid membrane. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble payloads can be trapped in the internal aqueous space of liposomes, while lipophilic payloads can partition into and become part of the lipid bilayer. Especially for delivering antisense oligonucleotides, it can overcome problems such as inefficient cellular uptake and rapid loss in the body .
    BP Lipid 109
  • HY-W800737

    Liposome Cancer
    BP Lipid 126 is a liposome to simulate biological phospholipid membrane. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble payloads can be trapped in the internal aqueous space of liposomes, while lipophilic payloads can partition into and become part of the lipid bilayer. Especially for delivering antisense oligonucleotides, it can overcome problems such as inefficient cellular uptake and rapid loss in the body .
    BP Lipid 126
  • HY-W440743

    Liposome Cancer
    BP Lipid 103 is a liposome to simulate biological phospholipid membrane. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble payloads can be trapped in the internal aqueous space of liposomes, while lipophilic payloads can partition into and become part of the lipid bilayer. Especially for delivering antisense oligonucleotides, it can overcome problems such as inefficient cellular uptake and rapid loss in the body .
    BP Lipid 103
  • HY-W440751

    Liposome Cancer
    BP Lipid 112 is a liposome to simulate biological phospholipid membrane. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble payloads can be trapped in the internal aqueous space of liposomes, while lipophilic payloads can partition into and become part of the lipid bilayer. Especially for delivering antisense oligonucleotides, it can overcome problems such as inefficient cellular uptake and rapid loss in the body .
    BP Lipid 112
  • HY-W440803

    Liposome Cancer
    BP Lipid 218 is a liposome to simulate biological phospholipid membrane. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble payloads can be trapped in the internal aqueous space of liposomes, while lipophilic payloads can partition into and become part of the lipid bilayer. Especially for delivering antisense oligonucleotides, it can overcome problems such as inefficient cellular uptake and rapid loss in the body .
    BP Lipid 218
  • HY-W440800

    Liposome Cancer
    BP Lipid 226 is a liposome to simulate biological phospholipid membrane. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble payloads can be trapped in the internal aqueous space of liposomes, while lipophilic payloads can partition into and become part of the lipid bilayer. Especially for delivering antisense oligonucleotides, it can overcome problems such as inefficient cellular uptake and rapid loss in the body .
    BP Lipid 226
  • HY-W440766

    Liposome Cancer
    BP Lipid 209 is a liposome to simulate biological phospholipid membrane. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble payloads can be trapped in the internal aqueous space of liposomes, while lipophilic payloads can partition into and become part of the lipid bilayer. Especially for delivering antisense oligonucleotides, it can overcome problems such as inefficient cellular uptake and rapid loss in the body .
    BP Lipid 209
  • HY-W800802

    Liposome Cancer
    BP Lipid 227 is a liposome to simulate biological phospholipid membrane. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble payloads can be trapped in the internal aqueous space of liposomes, while lipophilic payloads can partition into and become part of the lipid bilayer. Especially for delivering antisense oligonucleotides, it can overcome problems such as inefficient cellular uptake and rapid loss in the body .
    BP Lipid 227
  • HY-W800812

    Liposome Cancer
    BP Lipid 308 is a liposome to simulate biological phospholipid membrane. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble payloads can be trapped in the internal aqueous space of liposomes, while lipophilic payloads can partition into and become part of the lipid bilayer. Especially for delivering antisense oligonucleotides, it can overcome problems such as inefficient cellular uptake and rapid loss in the body .
    BP Lipid 308
  • HY-W800827

    Liposome Cancer
    BP Lipid 229 is a liposome to simulate biological phospholipid membrane. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble payloads can be trapped in the internal aqueous space of liposomes, while lipophilic payloads can partition into and become part of the lipid bilayer. Especially for delivering antisense oligonucleotides, it can overcome problems such as inefficient cellular uptake and rapid loss in the body .
    BP Lipid 229
  • HY-W800841

    Liposome Cancer
    BP Lipid 314 is a liposome to simulate biological phospholipid membrane. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble payloads can be trapped in the internal aqueous space of liposomes, while lipophilic payloads can partition into and become part of the lipid bilayer. Especially for delivering antisense oligonucleotides, it can overcome problems such as inefficient cellular uptake and rapid loss in the body .
    BP Lipid 314
  • HY-W800849

    Liposome Cancer
    BP Lipid 315 is a liposome to simulate biological phospholipid membrane. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble payloads can be trapped in the internal aqueous space of liposomes, while lipophilic payloads can partition into and become part of the lipid bilayer. Especially for delivering antisense oligonucleotides, it can overcome problems such as inefficient cellular uptake and rapid loss in the body .
    BP Lipid 315
  • HY-109506
    DPPC
    3 Publications Verification

    129Y83

    Liposome Endogenous Metabolite Others
    DPPC (129Y83) is a phosphoglyceride that can be used to prepare lipid monolayers, bilayers, and liposomes. DPPC is the main lipid component of pulmonary surfactant. Dppc-liposome can be effectively used as a delivery vector to induce an immune response against GSL antigen in mice .
    DPPC
  • HY-W440927

    Liposome Others
    DSPE-PEG-DBCO, MW 3400 is a copper-free click chemistry reagent. The PEG polymer lipid allows formation of lipid bilayer in aqueous solution. The reagent can be used to prepare liposomes or nanoparticles for encapsulating and delivering therapeutic agents in targeted drug delivery system. Reagent grade, for research use only.
    Stearic acid-PEG-NHS, MW 2000
  • HY-N0322A
    Cholesterol (Water Soluble)
    Maximum Cited Publications
    23 Publications Verification

    Liposome Others
    Cholesterol Water Soluble can be used for the research of the effects of cholesterol on the potassium currents in inner hair cells (IHCs). Cholesterol is an integral component of the cell membrane and regulates the activity of ion channels in the lipid bilayer .
    Cholesterol (Water Soluble)
  • HY-141571

    Liposome Others
    DOPG sodium is a phospholipid containing oleic acid (18:1) inserted at the sn-1 and sn-2 positions. It can form a lipid bilayer in an aqueous solution and is used in the generation of micelles, liposomes, and other artificial membranes.
    DOPG sodium
  • HY-W441011

    Liposome Neurological Disease Inflammation/Immunology Cancer
    DSPE-NHS is a bioconjugation phospholipid molecule with two hydrophobic lipid tails. The NHS-ester is reactive with N-terminal of protein/peptide or other amine molecule to form a stable amide linkage. DSPE-NHS is a self-assembling reagent which forms lipid bilayer in aqueous solution. DSPE-NHS can be used to prepare liposomes as agent nanocarrier .
    DSPE-NHS
  • HY-W019833

    PC(14:0/18:0); 1-Myristoyl-2-stearoyl-sn-glycero-3-phosphocholine

    Endogenous Metabolite Metabolic Disease
    MSPC is an asymmetrical phosphatidylcholine containing a myristic acid (14:0) at the sn-1 position and a stearic acid (18:0) at the sn-2 position. It can self assemble in water to form lipid bilayers. Reagent grade, for research purpose.
    MSPC
  • HY-W441007

    Liposome Inflammation/Immunology Cancer
    DSPE-MAL is a thiol reactive a phospholipid compound. DSPE-MAL has two saturated fatty acids and can self-assemble in water to form lipid bilayer. DSPE-MAL can be used to prepare liposomes as agent nanocarrier .
    DSPE-Mal
  • HY-109506R

    Liposome Endogenous Metabolite Others
    DPPC (Standard) is the analytical standard of DPPC. This product is intended for research and analytical applications. DPPC (129Y83) is a phosphoglyceride that can be used to prepare lipid monolayers, bilayers, and liposomes. DPPC is the main lipid component of pulmonary surfactant. Dppc-liposome can be effectively used as a delivery vector to induce an immune response against GSL antigen in mice .
    DPPC (Standard)
  • HY-W440896

    Liposome
    DSPE-PEG-SH, MW 2000 is a pegylated phospholipid with thiol group which is reactive with maleimide to form a covalent thioether linkage. The amphiphatic polymer can form lipid bilayer in aqueous solution and be used to encapsulate agents for drug delivery system, such as mRNA vaccine.
    DSPE-PEG-SH, MW 2000
  • HY-145996

    Bacterial Infection
    STC314 is a small polyanion that interact electrostatically with histones. STC314 blocks disruption of lipid-bilayers by histones that inhibits the cytotoxic, platelet-activating and erythrocyte-damaging effects of histones. STC314 has anti-infective effects and can be uesd for sepsis research .
    STC314
  • HY-115419

    Others Others
    1-Thio-β-D-glucose sodium is the sodium salt form of 1-Thio-β-D-glucose. 1-Thio-β-D-glucose forms hydrophilic self-assembled monolayer with metal, stablizes the lipid bilayer and protects the proteins from denaturation .
    1-Thio-β-D-glucose sodium
  • HY-W440921

    Liposome
    DSPE-PEG-Rhodamine, MW 5000 is a phospholipid polyPEG with red fluorescent. The polymer can form lipid bilayer and be used to prepare nanoparticles or liposomes for targeted drug delivery. Rhodamine has maximum absorption at 570 nm and emission around 595 nm and can be easily traced using an imaging technique.
    DSPE-PEG-Rhodamine, MW 5000
  • HY-W440920

    Liposome
    DSPE-PEG-Rhodamine, MW 3400 is a phospholipid polyPEG with red fluorescent. The polymer can form lipid bilayer and be used to prepare nanoparticles or liposomes for targeted drug delivery. Rhodamine has maximum absorption at 570 nm and emission around 595 nm and can be easily traced using an imaging technique.
    DSPE-PEG-Rhodamine, MW 3400
  • HY-W800732

    Dilinoleoyllecithin

    Liposome Others
    1,2-Dilinoleoyl-sn-glycero-3-PC (Dilinoleoyllecithin) is a phospholipid. 1,2-Dilinoleoyl-sn-glycero-3-PC can be used in the manufacture of artificial membranes .
    1,2-Dilinoleoyl-sn-glycero-3-PC
  • HY-W800786

    Liposome Cancer
    16:0 PE MCC is a liposome to simulate biological phospholipid membrane. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble payloads can be trapped in the internal aqueous space of liposomes, while lipophilic payloads can partition into and become part of the lipid bilayer. Especially for delivering antisense oligonucleotides, it can overcome problems such as inefficient cellular uptake and rapid loss in the body .
    16:0 PE MCC
  • HY-W800787

    Liposome Cancer
    18:1 PE MCC is a liposome to simulate biological phospholipid membrane. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble payloads can be trapped in the internal aqueous space of liposomes, while lipophilic payloads can partition into and become part of the lipid bilayer. Especially for delivering antisense oligonucleotides, it can overcome problems such as inefficient cellular uptake and rapid loss in the body .
    18:1 PE MCC
  • HY-W440698

    Liposome Cancer
    Cholesterol-PEG-Acid (MW 2000) is a liposome to simulate biological phospholipid membrane. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble payloads can be trapped in the internal aqueous space of liposomes, while lipophilic payloads can partition into and become part of the lipid bilayer. Especially for delivering antisense oligonucleotides, it can overcome problems such as inefficient cellular uptake and rapid loss in the body .
    Cholesterol-PEG-Acid (MW 2000)
  • HY-W440981

    Liposome Cancer
    SPPC is a liposome to simulate biological phospholipid membrane. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble payloads can be trapped in the internal aqueous space of liposomes, while lipophilic payloads can partition into and become part of the lipid bilayer. Especially for delivering antisense oligonucleotides, it can overcome problems such as inefficient cellular uptake and rapid loss in the body .
    SPPC
  • HY-W440957

    Liposome Cancer
    PMPC is a liposome to simulate biological phospholipid membrane. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble payloads can be trapped in the internal aqueous space of liposomes, while lipophilic payloads can partition into and become part of the lipid bilayer. Especially for delivering antisense oligonucleotides, it can overcome problems such as inefficient cellular uptake and rapid loss in the body .
    PMPC

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