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Pathways Recommended: Membrane Transporter/Ion Channel
Results for "

concentric phospholipid bilayer membrane

" in MedChemExpress (MCE) Product Catalog:

65

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Peptides

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59

Oligonucleotides

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Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-40118

    Boc-L-proline methyl ester

    Liposome Others
    Boc-Pro-OMe (Boc-L-proline methyl ester) is a lipid compound that can be used for liposome preparation. 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 loads can be captured in the internal aqueous space of liposomes, while lipophilic loads can be distributed into the lipid bilayer and become part of the lipid bilayer. Especially for the delivery of antisense oligonucleotides, it can overcome the problems of inefficient cellular uptake and rapid loss in the body.
    Boc-Pro-OMe
  • HY-157624

    18:0-22:6 PE

    Liposome Others
    1-Stearoyl-2-docosahexaenoyl-sn-glycero-3-phosphoethanolamine (18:0-22:6 PE) is a lipid compound that can be used for liposome preparation. 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 loads can be captured in the internal aqueous space of liposomes, while lipophilic loads can be distributed into the lipid bilayer and become part of the lipid bilayer. Especially for the delivery of antisense oligonucleotides, it can overcome the problems of inefficient cellular uptake and rapid loss in the body.
    1-Stearoyl-2-docosahexaenoyl-sn-glycero-3-phosphoethanolamine
  • HY-W591461

    Liposome Cancer
    DSPE-PEG-COOH, MW 2000 is a phospholipid polyPEG which can be used to prepare liposomes or nanoparticles. The terminal carboxylic acid can react with primary amine groups to form a stable amide bond.
    DSPE-PEG-COOH, MW 2000
  • HY-138913

    Liposome Cancer
    2H-Cho-Arg (TFA) is a steroid-based cationic lipid that contains a 2H-cholesterol skeleton coupled to an L-arginine head group and can be used to facilitate gene transfection.
    2H-Cho-Arg TFA
  • HY-W591449

    Liposome Cancer
    DOPE-PEG-Azide, 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 .
    DOPE-PEG-Azide, MW 2000
  • HY-153725

    Liposome Cancer
    17:1 Lyso PC 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 .
    17:1 Lyso PC
  • HY-164579

    Liposome Others
    NH2-GG-DSPE is a lipid compound that can be used for liposome preparation. 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 loads can be captured in the internal aqueous space of liposomes, while lipophilic loads can be distributed into the lipid bilayer and become part of the lipid bilayer. Especially for the delivery of antisense oligonucleotides, it can overcome the problems of inefficient cellular uptake and rapid loss in the body.
    NH2-GG-DSPE
  • HY-157678

    Liposome Others
    1,2-Dilinoleoyl-sn-glycero-3-phospho-L-serine sodium is a lipid compound that can be used for liposome preparation. 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 loads can be captured in the internal aqueous space of liposomes, while lipophilic loads can be distributed into the lipid bilayer and become part of the lipid bilayer. Especially for the delivery of antisense oligonucleotides, it can overcome the problems of inefficient cellular uptake and rapid loss in the body.
    1,2-Dilinoleoyl-sn-glycero-3-phospho-L-serine sodium
  • HY-165975

    (2S)-3-Keto-C6-dihydrosphingosine hydrochloride

    Liposome Others
    (2S)-3-Keto sphinganine (d6:0) ((2S)-3-Keto-C6-dihydrosphingosine) hydrochloride is a lipid compound that can be used for liposome preparation. 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 loads can be captured in the internal aqueous space of liposomes, while lipophilic loads can be distributed into the lipid bilayer and become part of the lipid bilayer. Especially for the delivery of antisense oligonucleotides, it can overcome the problems of inefficient cellular uptake and rapid loss in the body.
    (2S)-3-Keto sphinganine (d6:0) (hydrochloride)
  • HY-W440991

    Liposome Cancer
    DOPE-PEG-Amine (MW 2000) is a polydisperse PEG covalently attached to a phospholipid. The polymer is an amphiphilic molecule with hydrophobic fatty acid chains and hydrophilic PEG head which enables lipid bilayer or micelle formation in water. The phospholipid PEG can be used to prepare liposome or nanoparticles for targeted drug delivery and is reactive with alkyne to form a triazole ring.
    DOPE-PEG-Amine (MW 2000)
  • HY-W590535

    1,2-DNPC; 1,2-Dinonadecanoyl-sn-glycero-3-phosphocholine

    Liposome Cancer
    19:0 PC is a saturated phospholipid that has been used as a standard for the quantification of phosphatidylcholines in human synovial fluid. It has also been used to study dynamics of lipid bilayer phase transition.
    19:0 PC
  • HY-W440711

    Liposome Cancer
    Cholesterol-PEG-Biotin (MW 2000) is a pegylated lipids which has strong binding to avidin or streptavidin.
    Cholesterol-PEG-Biotin (MW 2000)
  • HY-W800777

    Liposome Cancer
    6-(3-Hydroxypropylamino)hexyl 2-hexyldecanoate is an ionizable lipid which can be used to make ALC-0315. The lipid has an ester bond adjacent to C6 relative to the amine nitrogen. The introduction of ester linkages can improve the clearance of the lipid in the liver.
    6-(3-Hydroxypropylamino)hexyl 2-hexyldecanoate
  • HY-W440957

    PC(16:0/14:0); 1-palmitoyl-2-myristoyl-sn-glycero-3-phosphocholine

    Liposome Cancer
    PMPC is a phosphatidylcholine with asymmetrical fatty acid. Palmitic acid occupies sn-1 position while myristic acid is placed at the sn-2 position.
    PMPC
  • HY-W440690

    Liposome Cancer
    Cholesterol-PEG-Amine (MW 2000) is a pegylated lipids which can be used for preparation of liposome or nanoparticle. The lipophilic moiety can encapsulate hydrophobic drugs whereas the hydrophilic PEG chain helps the overal water solubility of the micelles.
    Cholesterol-PEG-Amine (MW 2000)
  • HY-W590555

    Liposome Cancer
    Thiol-PEG-DMG, MW 2000 is a phospholipid polyPEG which can be used to prepare liposomes or nanoparticles. The terminal thiol group reacts with maleimide, OPSS, vinylsulfone and transition metal surfaces including gold, silver, etc.
    Thiol-PEG-DMG, MW 2000
  • HY-141615

    PDME; 16:0 Dimethyl PE

    Liposome Cancer
    1,2-Dipalmitoyl-sn-glycero-3-phospho-N,N-dimethylethanolamine has been used in the generation of liposomes and monolayers for use in the study of membrane permeability and monolayer viscosity, respectively.
    1,2-Dipalmitoyl-sn-glycero-3-phospho-N,N-dimethylethanolamine
  • HY-W800796

    1,2-dioleoyl-sn-glycero-3-phosphoethanolamine-N-(biotinyl)

    Liposome Cancer
    18:1 Biotinyl PE is a biotin-functionalized lipid attached to a phosphoethanolamine linked to two oleic acid groups.
    18:1 Biotinyl PE
  • HY-W800825

    Liposome Cancer
    Octadecanedioic Acid Mono-L-carnitine ester is a cationic lipid which may be used in combination with other lipids in the formation of lipid nanoparticles (LNPs). Its terminal carboxylic acid can react with primary amine groups in the presence of activators (e.g. HATU) to form a stable amide bond.
    Octadecanedioic acid mono-L-carnitine ester
  • HY-W800789

    Liposome Cancer
    16:0 MPB PE is a maleimide-functionalized thiol-reactive lipid with a phosphoethanolamine linked to two palmitic acid tails and a phenyl maleimide group.
    16:0 MPB PE
  • HY-W441005

    Liposome Cancer
    Amino-Gly-Gly-DSPE (hydrochloride) is a specially modified phospholipid that has been used to synthesize liposomes. The terminal amine is reactive with an NHS ester compound or carboxylic acid molecule in the presence of activator, such as HATU or EDC.
    Amino-Gly-Gly-DSPE hydrochloride
  • HY-W800787

    Liposome Cancer
    18:1 PE MCC is a maleimide-functionalized thiol-reactive lipid with a phosphoethanolamine linked to two oleic acid tails and a maleimide group.
    18:1 PE MCC
  • HY-W590538A

    Liposome Others
    HAPC-Chol is a cationic cholesterol that can be used as a component of lipoplexes complexes .
    HAPC-Chol hydroiodide
  • HY-W440931

    Liposome Cancer
    MPEG2000-DMG is a synthetic lipid comprised of polyPEG and dimyristoyl glycerol. It is used in the creation of lipid nanoparticles (LNPs) for mRNA vaccines.
    MPEG2000-DMG
  • HY-160912

    ELOVL Cancer
    ELOVL6-IN-5 (compound B) is an inhibitor of the elongase enzyme of long-chain fatty acid family 6 (ELOVL6). ELOVL6 is a rate-limiting enzyme for the elongation of saturated and monounsaturated long-chain fatty acids and is an effective target for inhibiting diabetes. ELOVL6-IN-5 reduces hepatic fatty acid levels in a mouse model of diet-induced obesity (DIO). However, ELOVL6 inhibition by ELOVL6-IN-5 did not improve insulin resistance .
    ELOVL6-IN-5
  • HY-W591913

    Liposome Cancer
    Cholesterol-PEG-methoxy, MW 2000 is a PEG derivative which self-assembles in water to form micelle-like structure. The cholesterol tail can be used to encapsulate hydrophobic drugs while the PEG chain ehances the water solubility of the micelles.
    Cholesterol-PEG-methoxy, MW 2000
  • HY-115435

    DMPS-Na; Dimyristoyl phosphatidylserine sodium

    Liposome Cancer
    1,2-Dimyristoyl-sn-glycero-3-phospho-L-serine sodium is an anionic phospholipid with myristic acid tails (14:0) and contains a carboxylic acid (COOH) and amine (NH2) in their head group. It has been used in the preparation of liposome.
    1,2-Dimyristoyl-sn-glycero-3-phospho-L-serine sodium
  • HY-W800734

    MPPC; PC(14:0/16:0)

    Liposome Cancer
    1-Myristoyl-2-palmitoyl-sn-glycero-3-phosphocholine (MPPC) is an asymmetrical phosphatidylcholine containing a myristic acid (14:0) at the sn-1 position and a palmitic acid (16:0) at the sn-2 position. It is commonly used in the generation of micelles, liposomes, and other types of artificial membranes.
    1-Myristoyl-2-palmitoyl-sn-glycero-3-phosphocholine
  • HY-W440706

    Liposome Cancer
    Cholesterol-PEG-alcohol (MW 2000) is a pegylated lipids which can be used for preparation of liposome or nanoparticle. The lipophilic moiety can encapsulate hydrophobic drugs whereas the hydrophilic PEG chain helps the overal water solubility of the micelles. The amine can react with an activated NHS ester to form a stable amide bond.
    Cholesterol-PEG-alcohol (MW 2000)
  • HY-W440698

    Liposome Cancer
    Cholesterol-PEG-Acid (MW 2000) is a polydisperse PEG derivative which can be used to create liposome as drug carrier for delivering therapeutic agents into tissues.
    Cholesterol-PEG-Acid (MW 2000)
  • HY-W800790

    Liposome Cancer
    18:1 Caproylamine PE is a amine-functionalized lipid with a phosphoethanolamine linked to two oleic acid tails.
    18:1 Caproylamine PE
  • HY-W590536

    1-Palmitoyl-2-Lauroyl-sn-glycero-3-Phosphatidylcholine; 1-Palmitoyl-2-Lauroyl-sn-glycero-3-Phosphocholine

    Liposome Cancer
    1,2-PLPC is a phospholipid containing palmitoyl (16:0) and lauryl (12:0) acyl substituents at the sn-1 and sn-2 positions, respectively. It can be used in the generation of micelles, liposomes, and other types of artificial membranes.
    1,2-PLPC
  • HY-W591332

    Liposome Cancer
    DMPE-mPEG, MW 2000 is a PEGylated 1,2-Dimyristoyl-sn-glycero-3-phosphoethanolamine (14:0 PE) compound with a methyl group at the other end of the PEG chain. The PEG polymer exhibits amphiphatic behavior and helps to form stable micelles in an aqueous solution. It can be used to prepare nanoparticles or liposomes for targeted drug delivery applications.
    DMPE-mPEG, MW 2000
  • HY-W800784

    Liposome Cancer
    23:2 Diyne PE [DC(8,9)PE] is a phospholipase-mediated hydrolyzed phosphocoline with palmitic acid (16:0) and Pentacosa-10,12-diynoic acid for tails.
    23:2 Diyne PE [DC(8,9)PE]
  • HY-W140488

    10:0 PE

    Liposome Cancer
    1,2-Didecanoyl-sn-glycero-3-phosphoethanolamine, a phospholipid, showes very promising P-gp inhibitory results at a concentration of 0.3 mM.
    1,2-Didecanoyl-sn-glycero-3-phosphoethanolamine
  • HY-W800798

    1,2-dipalmitoyl-sn-glycero-3-phosphoethanolamine-N-(cyanur)

    Liposome Cancer
    16:0 Cyanur PE is a cyanur-functionalized lipid attached to a phosphoethanolamine linked to two palmitic acid groups.
    16:0 Cyanur PE
  • HY-W440724

    Liposome Cancer
    Cholesterol-PEG-Thiol (MW 3400) is an amphiphatic PEG derivative which forms micelles in water and can be used to prepare liposomes or nanoparticles for drug delivery system. The thiol moiety is reactive with maleimide to form a stable thioether bond.
    Cholesterol-PEG-Thiol (MW 3400)
  • HY-W343736

    1,3-DPPE; 1,3-Dipalmitoyl-sn-glycero-2-PE

    Liposome Cancer
    1,3-Dipalmitoyl-glycero-2-phosphoethanolamine is a phospholipid containing the saturated long-chain (16:0) stearic acid inserted at the sn-1 and sn-3 positions and PE at the sn-2 site. It can be used in the generation of micelles, liposomes, and other types of artificial membranes.
    1,3-Dipalmitoyl-glycero-2-phosphoethanolamine
  • HY-W800794

    DPPE-NG; 1,2-dipalmitoyl-sn-glycero-3-phosphoethanolamine-N-(glutaryl)

    Liposome Cancer
    16:0 Glutaryl PE is is a carboxylic acid-functionalized lipid with a three carbon linker to a phosphoethanolamine bound to two palmitic acid tails.
    16:0 Glutaryl PE
  • HY-W440995

    Liposome Cancer
    DOPE-PEG-Mal (MW 2000) is a phospholipid polyPEG which can be used to prepare liposomes or nanoparticles. It is also reactive with thiol at pH 6.5 tp 7.5 to form a stable thioether bond.
    DOPE-PEG-Mal (MW 2000)
  • HY-W440820

    Liposome Cancer
    Bis(bis(2-carboxyethyl)aminopropyl)methylamine is a symmetrical branched linker featuring three tertiary amines and four carboxylic acids. Each carboxylic acid is open to forming esters or amides. It can be used in developing lipid nanoparticles.
    Bis(bis(2-carboxyethyl)aminopropyl)methylamine
  • HY-W440694

    Liposome Cancer
    Cholesterol-PEG-Azide (MW 2000) is a pegylated lipids which can be used for preparation of liposome or nanoparticle. The lipophilic moiety can encapsulate hydrophobic drugs whereas the hydrophilic PEG chain helps the overal water solubility of the micelles. Cholesterol-PEG-Azide (MW 2000) can be reacted with alkyne via CuAAC or SPAAC click chemistry.
    Cholesterol-PEG-Azide (MW 2000)
  • HY-W800786

    N-MCC-PE

    Liposome Cancer
    16:0 PE MCC is a maleimide-functionalized thiol-reactive lipid with a phosphoethanolamine linked to two palmitic acid tails and a maleimide group.
    16:0 PE MCC
  • HY-W800792

    1,2-dioleoyl-sn-glycero-3-phosphoethanolamine-N-(succinyl)

    Liposome Cancer
    18:1 Succinyl PE is a carboxylic acid-functionalized lipid with a two carbon linker to a phosphoethanolamine bound to two oleic acid tails.
    18:1 Succinyl PE
  • HY-W800793

    1,2-dipalmitoyl-sn-glycero-3-phosphoethanolamine-N-(succinyl)

    Liposome Cancer
    16:0 Succinyl PE is a carboxylic acid-functionalized lipid with a two carbon linker to a phosphoethanolamine bound to two palmitic acid tails.
    16:0 Succinyl PE
  • HY-W800805

    Liposome Cancer
    DOPE-Mal is a synthetic analog of naturally-occurring PE containing 18:1 fatty acids at the sn-1 and sn-2 positions with a terminal maliemide group. The maleimide group will react with a thiol group to form a covalent bond. The hydrophilic PEG spacer increases solubility in aqueous media.
    DOPE-Mal
  • HY-W800797

    1,2-dipalmitoyl-sn-glycero-3-phosphoethanolamine-N-(biotinyl)

    Liposome Cancer
    16:0 Biotinyl PE is a biotin-functionalized lipid attached to a phosphoethanolamine linked to two palmitic acid groups.
    16:0 Biotinyl PE
  • HY-W440981

    1-Stearoyl-2-palmitoyl-sn-glycero-3-phosphocholine

    Liposome Cancer
    SPPC is a phospholipid with different length of fatty acid. The sn-1 position contains a stearic acid (18:0) while the sn-2 position is occupied by a palmitic acid (16:0).
    SPPC
  • HY-W800785

    1-palMitoyl-2-(10,12-tricosadiynoyl)-sn-glycero-3-phosphocholine

    Liposome Cancer
    16:0-23:2 Diyne PC is a phospholipase-mediated hydrolyzed phosphocoline with palmitic acid (16:0) and Pentacosa-10,12-diynoic acid for tails.
    16:0-23:2 Diyne PC
  • HY-W440719

    Liposome Cancer
    Cholesterol-PEG-MAL (MW 2000) is a PEG derivative and can be used to prepare liposome or nanoparticle due to its ability to self-assemble in water. The maleimide moiety is reactive with thiol molecule to form a covalent thioether bond.
    Cholesterol-PEG-MAL (MW 2000)

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