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Results for "

lipid synthesis

" in MedChemExpress (MCE) Product Catalog:

134

Inhibitors & Agonists

2

Screening Libraries

1

Fluorescent Dye

42

Biochemical Assay Reagents

6

Peptides

30

Natural
Products

14

Isotope-Labeled Compounds

43

Oligonucleotides

Targets Recommended:
Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-N8495

    Others Metabolic Disease
    4'-Hydroxyflavanone is an inhibitor of SREBP maturation and lipid synthesis. 4'-Hydroxyflavanone is a synthetic analogue of flavanone, has potential for hepatic steatosis and dyslipidemia research .
    4'-Hydroxyflavanone
  • HY-145225

    Liposome Others
    DLin-K-C3-DMA, a cationic lipid, can be used in the synthesis of nucleic acid-lipid particle to delivery of nucleic acid .
    DLin-K-C3-DMA
  • HY-W405064

    Liposome Others
    11-Mercaptoundecanoate-NHS is a lipid that can be used for the synthesis of Linker.
    11-Mercaptoundecanoate-NHS
  • HY-105900

    Others Metabolic Disease
    Ro 22-0654 is a potent lipid synthesis inhibitor. Ro 22-0654 inhibits hepatic fatty acid synthesis and has antiobesity effects .
    Ro 22-0654
  • HY-N8495R

    Fatty Acid Synthase (FASN) Reference Standards Metabolic Disease
    4'-Hydroxyflavanone (Standard) is the analytical standard of 4'-Hydroxyflavanone. This product is intended for research and analytical applications. 4'-Hydroxyflavanone is an inhibitor of SREBP maturation and lipid synthesis. 4'-Hydroxyflavanone is a synthetic analogue of flavanone, has potential for hepatic steatosis and dyslipidemia research[1].
    4'-Hydroxyflavanone (Standard)
  • HY-169484

    Liposome Others
    SIL lipid is the synthetic ionized lipid, and can be used for synthesis of lipid nanoparticles (LNPs) for siRNA delivery .
    SIL lipid
  • HY-153187

    Liposome Others
    LNP Lipid-4 (Compound 8-8) is a lipid compound. LNP Lipid-4 is involved in the synthesis of lipid nanoparticles compositions. LNP Lipid-4 has potential applications in the transportation of biologically active substances .
    LNP Lipid-4
  • HY-153136

    Liposome Others
    LNP Lipid-1 (Method B) is a lipid compound. LNP Lipid-1 is involved in the synthesis of lipid nanoparticles compositions. LNP Lipid-1 has potential applications in the transport of biologically active substances such as small molecule agents, proteins, and nucleic acids .
    LNP Lipid-1
  • HY-W800815

    Biochemical Assay Reagents Others
    Nonyl 10-bromodecanoate is an intermidate for synthesis of lipid molecules.
    Nonyl 10-bromodecanoate
  • HY-E70260

    Acyltransferase Others
    16-NBD-16:0 Coenzyme A triammonium can be used as a substrate to measure the in vitro activity of other Acyltransferase .
    16-NBD-16:0 Coenzyme A triammonium
  • HY-U00332

    6,6'-Oxybis[2,2-dimethyl-1-hexanol]

    Drug Derivative Metabolic Disease
    Hydrocarbon chain derivative 1 is an active compound, with inhibitory activities against lipid synthesis.
    Hydrocarbon chain derivative 1
  • HY-151513

    Others Cancer
    Iso5-2DC18 is a lipid that can be used for the synthesis of amine containing lipids. These amine containing lipids can be used for mRNA delivery, activate the stimulator of interferon genes (STING) pathway, and exhibit anti-tumor immunity .
    Iso5-2DC18
  • HY-W800779

    Biochemical Assay Reagents Others
    heptadecan-9-yl 10-bromodecanoate is an intermediate for the synthesis of lipid molecules.
    Heptadecan-9-yl 10-bromodecanoate
  • HY-118843

    Potassium Channel Infection
    Lombazole is an antimicrobial compound with activity that inhibits cell membrane synthesis. Lombazole had little effect on K+ permeability in S. aureus. Lombazole inhibited only de novo synthesis of cell enclosure in S. aureus, and this effect occurred before growth was affected. The main effect of lombazole was through inhibition of lipid synthesis. Lombazole may have an effect on key steps in lipid biosynthesis, as inferred from the lack of changes in lipid patterns after treatment. Lombazole also inhibited the sterol C-14 demethylation step in Candida albicans .
    Lombazole
  • HY-P0230

    Antibiotic Bacterial Infection
    Teixobactin is a potent antibiotic. Teixobactin shows antibacterial activity for gram-negative bacteria. Teixobactin inhibits cell wall synthesis by binding to a highly conserved motif of lipid II and lipid III .
    Teixobactin
  • HY-160274

    Fluorescent Dye Others
    DSPE-PEG-Fluor 555,MW 2000 is a PEG lipid conjugate with a DSPE group and a Fluor 555 dye. DSPE is a phosphoethanolamine (PE) lipid that can be used in the synthesis of liposomes. And Fluor 555 is a fluorescent dye .
    DSPE-PEG-Fluor 555,MW 2000
  • HY-162703

    AMPK Metabolic Disease
    Lipid-lowering agent-2 (Compound 14d) is an orally active lipid-lowering agent with an EC50 of 0.06 μM. Lipid-lowering agent-2 inhibits the lipid synthesis, activates the AMPK signaling pathway, and exhibits anti-obesity effect. Lipid-lowering agent-2 inhibits food intake, improves the glucose metabolism, and reduces the body weight and adipose tissue in high-fat diet (HFD)-induced obese mice .
    Lipid-lowering agent-2
  • HY-W800782

    Liposome Others
    DC-6-14 is a cationic lipid with gene transfection activity, which can be used for the synthesis of liposomes .
    DC-6-14
  • HY-157270

    Liposome Others
    2-Heptylundecanol is a branched chain aliphatic alcohol which can be used in the synthesis of nano lipid particles .
    2-Heptylundecanol
  • HY-W127423

    Biochemical Assay Reagents Others
    Methyl (+/-)-2-hydroxystearateis a hydroxylated fatty acid methyl ester that broadens phase transitions in dimyristoylphosphatidylcholine (DMPC) lipid membranes. It has been used in the synthesis of lipid-nucleotide conjugated anti-HIV agents to increase the cleavage of phosphodiester bonds and the number of released intracellular nucleotides.
    Methyl 2-hydroxyoctadecanoate
  • HY-160271

    Fluorescent Dye Others
    DSPE-CH2-PEG-Fluor 488,MW 2000 is a PEG lipid conjugate with a DSPE group and a Fluor 488 dye. DSPE is a phosphoethanolamine (PE) lipid that can be used in the synthesis of liposomes. And Fluor 488 is a fluorescent dye .
    DSPE-CH2-PEG-Fluor 488,MW 2000
  • HY-W440816

    Liposome Others
    Heptadecan-9-yl 8-((2-hydroxyethyl)amino)octanoate is a lipid that can be used for compound synthesis .
    Heptadecan-9-yl 8-((2-hydroxyethyl)amino)octanoate
  • HY-W440815

    Liposome Others
    6-((4-Hydroxybutyl)amino)hexyl 2-hexyldecanoate is a lipid, it can be used to synthesis nanomaterials. 6-((4-Hydroxybutyl)amino)hexyl provides the use of the nano-lipid particle as the key component in nucleic acid delivery, including the components of the delivery carrier .
    6-((4-Hydroxybutyl)amino)hexyl 2-hexyldecanoate
  • HY-112530

    DSPE

    Liposome Endogenous Metabolite Metabolic Disease
    1,2-Distearoyl-sn-glycero-3-phosphorylethanolamine (DSPE) is a phosphoethanolamine (PE) lipid that can be used in the synthesis of liposomes .
    1,2-Distearoyl-sn-glycero-3-phosphorylethanolamine
  • HY-N13146

    Others Cardiovascular Disease
    Azukisaponin VI is an oligosaccharide isolated from Vigna angularis. Azukisaponin VI has the activity of inhibiting the synthesis of lipid peroxides and can be used in the study of hyperlipidemia .
    Azukisaponin VI
  • HY-W800781

    Biochemical Assay Reagents Others
    (6Z,15Z)-6,15-Heneicosadien-11-ol is an intermediate for the synthesis of lipid molecules.
    (6Z,15Z)-6,15-Heneicosadien-11-ol
  • HY-N0733S4

    D-(+)-Glucosamine-15N hydrochloride; Chitosamine-15N hydrochloride

    Isotope-Labeled Compounds Autophagy Endogenous Metabolite HIF/HIF Prolyl-Hydroxylase Reactive Oxygen Species (ROS) Inflammation/Immunology Cancer
    Glucosamine- 15N (hydrochloride) is the 15N labeled Glucosamine hydrochloride. Glucosamine hydrochloride (D-Glucosamine hydrochloride) is an amino sugar and a prominent precursor in the biochemical synthesis of glycosylated proteins and lipids, is used as a
    Glucosamine-15N hydrochloride
  • HY-N0733S

    D-(+)-Glucosamine-13C hydrochloride; Chitosamine-13C hydrochloride

    Isotope-Labeled Compounds Autophagy Endogenous Metabolite HIF/HIF Prolyl-Hydroxylase Reactive Oxygen Species (ROS) Inflammation/Immunology Cancer
    Glucosamine- 13C (hydrochloride) is the 13C labeled Glucosamine hydrochloride. Glucosamine hydrochloride (D-Glucosamine hydrochloride) is an amino sugar and a prominent precursor in the biochemical synthesis of glycosylated proteins and lipids, is used as a
    Glucosamine-13C hydrochloride
  • HY-142997

    Liposome Others
    DOSPA is a cationicliposome. DOSPA can formulate with DNA to be a transfection system. DOSPA can be used for gene therapy research .
    DOSPA
  • HY-144012A

    16:0 PEG350 PE; 1,2-Dipalmitoyl-sn-glycero-3-phosphoethanolamine-N-[methoxy(polyethylene glycol)-350] ammonium

    Liposome CD1 Others
    DPPE-PEG350 is a CD1d-dependent lipid antagonist thus blocking the ERK phosphorylation pathway in iNKT cells . DPPE-PEG350 is a PEG lipid functional end group used in the synthesis of liposomes (LPs) for the design of conjugated polymer nanoparticles.
    DPPE-PEG350
  • HY-112763

    Liposome Inflammation/Immunology
    CLinDMA, a cationic lipid, can cause inflammatory response. CLinDMA can be used for the synthesis LNP201. LNP201 is a liposome assembly for systemic delivery of siRNA .
    CLinDMA
  • HY-174286

    Liposome Others
    C16-18:1 PE is a lipid. C16-18:1 PE has the activity of promoting membrane fusion and enhancing endosomal escape, which can significantly improve the delivery efficiency of mRNA. C16-18:1 PE is used in the synthesis of lipid nanoparticles (LNP) .
    C16-18:1 PE
  • HY-N0733S3

    D-(+)-Glucosamine-6-13C hydrochloride; Chitosamine-6-13C hydrochloride

    Isotope-Labeled Compounds Autophagy Endogenous Metabolite HIF/HIF Prolyl-Hydroxylase Reactive Oxygen Species (ROS) Inflammation/Immunology Cancer
    Glucosamine-6- 13C (hydrochloride) is the 13C labeled Glucosamine hydrochloride. Glucosamine hydrochloride (D-Glucosamine hydrochloride) is an amino sugar and a prominent precursor in the biochemical synthesis of glycosylated proteins and lipids, is used as
    Glucosamine-6-13C hydrochloride
  • HY-125924A

    Biochemical Assay Reagents Cancer
    DSPE-PEG-Amine, MW 20000 ammonium is an amine derivative of phospholipid polyethylene glycol, used for the synthesis of solid lipids and thermosensitive liposome nanoparticles for the delivery of anticancer agents .
    DSPE-PEG-Amine, MW 20000 ammonium
  • HY-N0733S1

    D-(+)-Glucosamine-2-13C hydrochloride; Chitosamine-2-13C hydrochloride

    Isotope-Labeled Compounds Autophagy Endogenous Metabolite HIF/HIF Prolyl-Hydroxylase Reactive Oxygen Species (ROS) Inflammation/Immunology Cancer
    Glucosamine-2- 13C (hydrochloride) is the 13C labeled Glucosamine hydrochloride. Glucosamine hydrochloride (D-Glucosamine hydrochloride) is an amino sugar and a prominent precursor in the biochemical synthesis of glycosylated proteins and lipids, is used as
    Glucosamine-2-13C hydrochloride
  • HY-N0733S2

    D-(+)-Glucosamine-13C,15N hydrochloride; Chitosamine-13C,15N hydrochloride

    Isotope-Labeled Compounds Autophagy Endogenous Metabolite HIF/HIF Prolyl-Hydroxylase Reactive Oxygen Species (ROS) Inflammation/Immunology Cancer
    Glucosamine- 13C, 15N (hydrochloride) is the 13C and 15N labeled Glucosamine hydrochloride. Glucosamine hydrochloride (D-Glucosamine hydrochloride) is an amino sugar and a prominent precursor in the biochemical synthesis of glycosylated proteins and lipids, i
    Glucosamine-13C,15N hydrochloride
  • HY-148842

    Liposome Others
    C14-4 is an ionizable lipid utilized for the synthesis of lipid nanoparticles (LNPs). C14-4 enhances mRNA delivery, enabling the effective transport of mRNA to primary human T cells, which in turn induces functional protein expression. C14-4 demonstrates high transfection efficiency while maintaining low cytotoxicity .
    C14-4
  • HY-144013C

    DSPE-mPEG750 ammonium; 1,2-Distearoyl-sn-glycero-3-phosphoethanolamine-N-[methoxy(polyethylene glycol)-750] ammonium

    Biochemical Assay Reagents Liposome Others
    18:0 mPEG750 PE (ammonium) is a PEG lipid functional end group used in the synthesis of liposomes (LPs) for the design of conjugated polymeric nanoparticles. Through biotin modification and carboxyl terminus, lipid nanoparticles (LNPs) further coupling with other biomolecules can be achieved. Functionalized nanoparticles can be used for targeted labeling of specific cellular proteins. With streptavidin as a linker, biotinylated PEG lipid-conjugated polymer nanoparticles are able to bind to biotinylated antibodies on cell surface receptors, yielding the utility of fluorescence-based imaging and sensing.
    18:0 mPEG750 PE ammonium
  • HY-144012B

    16:0 PEG550 PE; 1,2-Dipalmitoyl-sn-glycero-3-phosphoethanolamine-N-[methoxy(polyethylene glycol)-550] ammonium

    Biochemical Assay Reagents Liposome Others
    DPPE-PEG550 is a PEG lipid functional end group used in the synthesis of liposomes (LPs) for the design of conjugated polymer nanoparticles. Through biotin modification and carboxyl terminus, lipid nanoparticles (LNPs) further coupling with other biomolecules can be achieved. Functionalized nanoparticles can be used for targeted labeling of specific cellular proteins. With streptavidin as a linker, biotinylated PEG lipid-conjugated polymer nanoparticles are able to bind to biotinylated antibodies on cell surface receptors, yielding the utility of fluorescence-based imaging and sensing.
    DPPE-PEG550
  • HY-144013H

    DSPE-mPEG5000 ammonium; 1,2-Distearoyl-sn-glycero-3-phosphoethanolamine-N-[methoxy(polyethylene glycol)-5000] ammonium

    Liposome Others
    18:0 mPEG5000 PE (ammonium) is a PEG lipid functional end group used in the synthesis of liposomes (LPs) for the design of conjugated polymeric nanoparticles. Through biotin modification and carboxyl terminus, lipid nanoparticles (LNPs) further coupling with other biomolecules can be achieved. Functionalized nanoparticles can be used for targeted labeling of specific cellular proteins. With streptavidin as a linker, biotinylated PEG lipid-conjugated polymer nanoparticles are able to bind to biotinylated antibodies on cell surface receptors, yielding the utility of fluorescence-based imaging and sensing.
    18:0 mPEG5000 PE ammonium
  • HY-144013B

    DSPE-mPEG550 ammonium; 1,2-Distearoyl-sn-glycero-3-phosphoethanolamine-N-[methoxy(polyethylene glycol)-550] ammonium

    Biochemical Assay Reagents Liposome Others
    18:0 mPEG550 PE (ammonium) is a PEG lipid functional end group used in the synthesis of liposomes (LPs) for the design of conjugated polymeric nanoparticles. Through biotin modification and carboxyl terminus, lipid nanoparticles (LNPs) further coupling with other biomolecules can be achieved. Functionalized nanoparticles can be used for targeted labeling of specific cellular proteins. With streptavidin as a linker, biotinylated PEG lipid-conjugated polymer nanoparticles are able to bind to biotinylated antibodies on cell surface receptors, yielding the utility of fluorescence-based imaging and sensing.
    18:0 mPEG550 PE ammonium
  • HY-144012C

    16:0 PEG750 PE; 1,2-Dipalmitoyl-sn-glycero-3-phosphoethanolamine-N-[methoxy(polyethylene glycol)-750] ammonium

    Biochemical Assay Reagents Liposome Others
    DPPE-PEG750 is a PEG lipid functional end group used in the synthesis of liposomes (LPs) for the design of conjugated polymer nanoparticles. Through biotin modification and carboxyl terminus, lipid nanoparticles (LNPs) further coupling with other biomolecules can be achieved. Functionalized nanoparticles can be used for targeted labeling of specific cellular proteins. With streptavidin as a linker, biotinylated PEG lipid-conjugated polymer nanoparticles are able to bind to biotinylated antibodies on cell surface receptors, yielding the utility of fluorescence-based imaging and sensing.
    DPPE-PEG750
  • HY-144012E

    16:0 PEG3000 PE; 1,2-Dipalmitoyl-sn-glycero-3-phosphoethanolamine-N-[methoxy(polyethylene glycol)-3000] ammonium

    Liposome Others
    DPPE-PEG3000 is a PEG lipid functional end group used in the synthesis of liposomes (LPs) for the design of conjugated polymer nanoparticles. Through biotin modification and carboxyl terminus, lipid nanoparticles (LNPs) further coupling with other biomolecules can be achieved. Functionalized nanoparticles can be used for targeted labeling of specific cellular proteins. With streptavidin as a linker, biotinylated PEG lipid-conjugated polymer nanoparticles are able to bind to biotinylated antibodies on cell surface receptors, yielding the utility of fluorescence-based imaging and sensing.
    DPPE-PEG3000
  • HY-144013A

    DSPE-mPEG350 ammonium; 1,2-Distearoyl-sn-glycero-3-phosphoethanolamine-N-[methoxy(polyethylene glycol)-350] ammonium

    Liposome Others
    18:0 mPEG350 PE (ammonium) is a PEG lipid functional end group used in the synthesis of liposomes (LPs) for the design of conjugated polymer nanoparticles. Through biotin modification and carboxyl terminus, lipid nanoparticles (LNPs) further coupling with other biomolecules can be achieved. Functionalized nanoparticles can be used for targeted labeling of specific cellular proteins. With streptavidin as a linker, biotinylated PEG lipid-conjugated polymer nanoparticles are able to bind to biotinylated antibodies on cell surface receptors, yielding the utility of fluorescence-based imaging and sensing.
    18:0 mPEG350 PE ammonium
  • HY-144013D

    DSPE-mPEG1000 ammonium; 1,2-Distearoyl-sn-glycero-3-phosphoethanolamine-N-[methoxy(polyethylene glycol)-1000] ammonium

    Liposome Others
    18:0 mPEG1000 PE (ammonium) is a PEG lipid functional end group used in the synthesis of liposomes (LPs) for the design of conjugated polymeric nanoparticles. Through biotin modification and carboxyl terminus, lipid nanoparticles (LNPs) further coupling with other biomolecules can be achieved. Functionalized nanoparticles can be used for targeted labeling of specific cellular proteins. With streptavidin as a linker, biotinylated PEG lipid-conjugated polymer nanoparticles are able to bind to biotinylated antibodies on cell surface receptors, yielding the utility of fluorescence-based imaging and sensing.
    18:0 mPEG1000 PE ammonium
  • HY-144012D

    16:0 PEG1000 PE; 1,2-Dipalmitoyl-sn-glycero-3-phosphoethanolamine-N-[methoxy(polyethylene glycol)-1000] ammonium

    Liposome Others
    DPPE-PEG1000 is a PEG lipid functional end group used in the synthesis of liposomes (LPs) for the design of conjugated polymer nanoparticles. Through biotin modification and carboxyl terminus, lipid nanoparticles (LNPs) further coupling with other biomolecules can be achieved. Functionalized nanoparticles can be used for targeted labeling of specific cellular proteins. With streptavidin as a linker, biotinylated PEG lipid-conjugated polymer nanoparticles are able to bind to biotinylated antibodies on cell surface receptors, yielding the utility of fluorescence-based imaging and sensing.
    DPPE-PEG1000
  • HY-144012H

    16:0 PEG5000 PE; 1,2-Dipalmitoyl-sn-glycero-3-phosphoethanolamine-N-[methoxy(polyethylene glycol)-5000] ammonium

    Liposome Others
    DPPE-PEG5000 is a PEG lipid functional end group used in the synthesis of liposomes (LPs) for the design of conjugated polymer nanoparticles. Through biotin modification and carboxyl terminus, lipid nanoparticles (LNPs) further coupling with other biomolecules can be achieved. Functionalized nanoparticles can be used for targeted labeling of specific cellular proteins. With streptavidin as a linker, biotinylated PEG lipid-conjugated polymer nanoparticles are able to bind to biotinylated antibodies on cell surface receptors, yielding the utility of fluorescence-based imaging and sensing.
    DPPE-PEG5000
  • HY-144013E

    DSPE-mPEG3000 ammonium; 1,2-Distearoyl-sn-glycero-3-phosphoethanolamine-N-[methoxy(polyethylene glycol)-3000] ammonium

    Liposome Others
    18:0 mPEG3000 PE (ammonium) is a PEG lipid functional end group used in the synthesis of liposomes (LPs) for the design of conjugated polymeric nanoparticles. Through biotin modification and carboxyl terminus, lipid nanoparticles (LNPs) further coupling with other biomolecules can be achieved. Functionalized nanoparticles can be used for targeted labeling of specific cellular proteins. With streptavidin as a linker, biotinylated PEG lipid-conjugated polymer nanoparticles are able to bind to biotinylated antibodies on cell surface receptors, yielding the utility of fluorescence-based imaging and sensing.
    18:0 mPEG3000 PE ammonium
  • HY-125924
    DSPE-PEG-Amine, MW 2000 ammonium
    1 Publications Verification

    DSPE-PEG-NH2, MW 2000 ammonium; DSPE-PEG(2000) Amine ammonium

    Liposome Others
    DSPE-PEG-Amine, MW 2000 (ammonium), an amine derivative of phospholipid poly ethylene glycol, is used in the synthesis of solid lipid and thermosensitive liposomal nanoparticles for the delivery of anticancer agents .
    DSPE-PEG-Amine, MW 2000 ammonium
  • HY-P5282

    Acyltransferase Others
    ApoA-I mimetic peptide (PVLDLFRELLNELLEALKQKLK) has good lecithin:cholesterol acyl transferase (LCAT) activation potency. ApoA-I mimetic peptide can be used for synthesis of peptide/lipid complex .
    ApoA-I mimetic peptide

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