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high lipophilicity

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22

Inhibitors & Agonists

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4

Biochemical Assay Reagents

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Natural
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3

Isotope-Labeled Compounds

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-119983

    DBC

    Others Cancer
    7H-Dibenzo[c,g]carbazole is an azaarene with high lipophilicity. 7H-Dibenzo[c,g]carbazole has carcinogenic activity and induce DNA adducts in fish, DNA adducts, mutations in diploid human fibroblasts and micronuclei in human blood lymphocytes. 7H-Dibenzo[c,g]carbazole is activated by cytochrome P450 enzymes resulting mainly in the generation of phenolic metabolites .
    7H-Dibenzo[c,g]carbazole
  • HY-114758
    Pyridoxal isonicotinoyl hydrazone
    3 Publications Verification

    PIH

    Others Cancer
    Pyridoxal isonicotinoyl hydrazone (PIH) is a lipophilic, tridentate Fe-chelating agent that shows high Fe chelation efficacy .
    Pyridoxal isonicotinoyl hydrazone
  • HY-A0116A

    Trandolaprilat hydrate; RU 44403 hydrate

    Angiotensin-converting Enzyme (ACE) Endogenous Metabolite Cardiovascular Disease
    Trandolaprilate hydrate is a potent angiotensin-converting enzyme (ACE) inhibitor. Trandolaprilate hydrate partially inhibits angiotensin-I-mediated c-fos induction. Trandolaprilate is main bioactive metabolite of Trandolapril. Trandolaprilate shows high lipophilicity .
    Trandolaprilate hydrate
  • HY-121313

    BAY 10-6734

    Angiotensin Receptor Neurological Disease Endocrinology
    Embusartan (BAY 10-6734) is a brain-penetrant and effective AT1 receptor blocker. Embusartan inhibits Ang II binding to brain AT1 receptors in the nuclei of central nervous system (CNS) inside due to high lipophilic character. Embusartan is promising for research of sympathetic hyperactivity and hypertension .
    Embusartan
  • HY-W783680

    Potassium Channel Others
    Potassium ionophore III (BME-44) is a specific potassium ion carrier with high selectivity for sodium and ammonium ions and high lipophilicity .
    Potassium ionophore III
  • HY-A0116S1

    Angiotensin-converting Enzyme (ACE) Endogenous Metabolite Cardiovascular Disease
    Trandolaprilate-d6 is the deuterium labeled Trandolaprilate[1]. Trandolaprilate is a potent angiotensin-converting enzyme (ACE) inhibitor. Trandolaprilate partially inhibits angiotensin-I-mediated c-fos induction. Trandolaprilate is main bioactive metabolite of Trandolapril. Trandolaprilate shows high lipophilicity[2][3].
    Trandolaprilate-d6
  • HY-165634

    Calcium Channel Cardiovascular Disease
    (R)-Azelnidipine is a highly lipophilic Calcium Channel antagonist with high affinity for vascular walls and antihypertensive activity. (R)-Azelnidipine shows potential for use in cardiovascular disease research .
    (R)-Azelnidipine
  • HY-160658

    CCR Inflammation/Immunology
    AZ760 is a CCR8 antagonist. AZ760 shows excellent potency, good lipophilicity and high free fraction in blood. AZ760 exhibits unacceptable hERG inhibition .
    AZ760
  • HY-157943

    HAL

    Fluorescent Dye Cancer
    Hexyl 5-aminolevulinate (HAL) is a photosensitizer, and can increase the efficiency of PDT due to the high lipophilicity. Hexyl 5-aminolevulinate can be used for research of photodynamic therapy (PDT) .
    Hexyl 5-aminolevulinate
  • HY-123039

    CETP Metabolic Disease
    CP-532623 is a CETP inhibitor and elevates high-density lipoprotein cholesterolion. CP-532623 is a close structural analogue of Torcetrapib. CP-532623 has highly lipophilic properties .
    CP-532623
  • HY-A0116

    Trandolaprilat; RU 44403

    Angiotensin-converting Enzyme (ACE) Endogenous Metabolite Cardiovascular Disease
    Trandolaprilate is a potent angiotensin-converting enzyme (ACE) inhibitor. Trandolaprilate partially inhibits angiotensin-I-mediated c-fos induction. Trandolaprilate is main bioactive metabolite of Trandolapril. Trandolaprilate shows high lipophilicity .
    Trandolaprilate
  • 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-A0116R

    Angiotensin-converting Enzyme (ACE) Endogenous Metabolite Cardiovascular Disease
    Trandolaprilate (Standard) is the analytical standard of Trandolaprilate. This product is intended for research and analytical applications. Trandolaprilate is a potent angiotensin-converting enzyme (ACE) inhibitor. Trandolaprilate partially inhibits angiotensin-I-mediated c-fos induction. Trandolaprilate is main bioactive metabolite of Trandolapril. Trandolaprilate shows high lipophilicity .
    Trandolaprilate (Standard)
  • HY-N2427R

    Others Others
    Adamantane (Standard) is the analytical standard of Adamantane. This product is intended for research and analytical applications. 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 (Standard)
  • HY-B0007
    Baclofen
    Maximum Cited Publications
    6 Publications Verification

    GABA Receptor Neurological Disease
    Baclofen, a lipophilic derivative of γ-aminobutyric acid (GABA), is an orally active, selective metabotropic GABAB receptor (GABABR) agonist. Baclofen mimics the action of GABA and produces slow presynaptic inhibition through the GABAB receptor. Baclofen has high blood brain barrier penetrance. Baclofen has the potential for muscle spasticity research .
    Baclofen
  • HY-B0007C

    GABA Receptor Neurological Disease
    Baclofen hydrochloride, a lipophilic derivative of γ-aminobutyric acid (GABA), is an orally active, selective metabotropic GABAB receptor (GABABR) agonist. Baclofen hydrochloride mimics the action of GABA and produces slow presynaptic inhibition through the GABAB receptor. Baclofen hydrochloride has high blood brain barrier penetrance. Baclofen hydrochloride has the potential for muscle spasticity research .
    Baclofen hydrochloride
  • HY-122462

    PNU-159548

    DNA/RNA Synthesis Cancer
    Ladirubicin (PNU-159548) is a derivative of Daunorubicin (HY-13062A). Ladirubicin exhibits DNA intercalation and DNA alkylating properties, inhibits DNA replication and transcription, causes DNA damage, and thereby exhibits antitumor efficacy. Ladirubicin exhibits the potential to penetrate the blood-brain barrier (BBB) for its high lipophilicity. Ladirubicin exhibits toxicity through suppression of bone marrow activity .
    Ladirubicin
  • HY-B0007S

    GABA Receptor Neurological Disease
    Baclofen-d4 is the deuterium labeled Baclofen. Baclofen, a lipophilic derivative of γ-aminobutyric acid (GABA), is an orally active, selective metabotropic GABAB receptor (GABABR) agonist. Baclofen mimics the action of GABA and produces slow presynaptic inhibition through the GABAB receptor. Baclofen has high blood brain barrier penetrance. Baclofen has the potential for muscle spasticity research[1][2][3].
    Baclofen-d4
  • HY-B0007R

    GABA Receptor Neurological Disease
    Baclofen (Standard) is the analytical standard of Baclofen. This product is intended for research and analytical applications. Baclofen, a lipophilic derivative of γ-aminobutyric acid (GABA), is an orally active, selective metabotropic GABAB receptor (GABABR) agonist. Baclofen mimics the action of GABA and produces slow presynaptic inhibition through the GABAB receptor. Baclofen has high blood brain barrier penetrance. Baclofen has the potential for muscle spasticity research .
    Baclofen (Standard)
  • HY-B0007S2

    GABA Receptor Isotope-Labeled Compounds Neurological Disease
    Baclofen-d5 hydrochloride is deuterated labeled Baclofen (HY-B0007). Baclofen, a lipophilic derivative of γ-aminobutyric acid (GABA), is an orally active, selective metabotropic GABAB receptor (GABABR) agonist. Baclofen mimics the action of GABA and produces slow presynaptic inhibition through the GABAB receptor. Baclofen has high blood brain barrier penetrance. Baclofen has the potential for muscle spasticity research .
    Baclofen-d5 hydrochloride
  • HY-125139

    ω-3 Arachidonic acid ethyl ester, in ethanol, 98%; (all-Z)-8,11,14,17-Eicosatetraenoic acid ethyl ester, in ethanol, 98%

    Biochemical Assay Reagents Others
    omega-3 Arachidonic acid ethyl ester, in ethanol, 98% is a rare polyunsaturated fatty acid found in very small amounts in dietary sources. Omega-3 fatty acids are known to be essential for the growth and development of infants, and they protect against heart disease, blood clots, high blood pressure, and inflammatory and autoimmune diseases. In human platelet membranes, omega-3 arachidonic acid inhibits arachidonyl-CoA synthetase with a Ki of 14 μM. It also inhibits arachidonoyl-CoA synthetase in calf brain extract with an IC50 of approximately 5 μM. Omega-3 ethyl arachidonate is the more lipophilic form of the free acid.
    omega-3 Arachidonic acid ethyl ester, in ethanol, 98%
  • HY-W250129

    Biochemical Assay Reagents Others
    2,3,4,5-Tetrafluorobenzoyl chloride is a fluorinated organic compound that belongs to the class of benzoyl chlorides. It is a colorless liquid with a pungent smell and is mainly used as an intermediate in the synthesis of various pharmaceutical and pesticide compounds. 2,3,4,5-Tetrafluorobenzoyl chloride is an acylating agent that can react with a variety of nucleophiles, including amines, alcohols, and thiols, to form amides, esters, or thioesters, respectively. Its unique fluorine-containing structure can impart desired properties to target molecules, such as increased lipophilicity or increased stability against metabolic degradation. However, due to its high reactivity and potential health hazards, proper safety measures and handling procedures must be followed when using this compound.
    2,3,4,5-Tetrafluorobenzoyl chloride

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