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Results for "

thrombotic cardiovascular

" in MedChemExpress (MCE) Product Catalog:

16

Inhibitors & Agonists

1

Peptides

5

Natural
Products

4

Isotope-Labeled Compounds

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-N0728
    α-Linolenic acid
    10+ Cited Publications

    ALA free base; C18:3 (9Z,12Z,15Z) free base; C18:3 n-3 free base

    Environmental Pollutants Akt PI3K Cardiovascular Disease Cancer
    α-Linolenic acid (ALA (free base); C18:3 (9Z,12Z,15Z) (free base); C18:3 n-3 (free base)) is an essential fatty acid that cannot be synthesized by humans. α-Linolenic acid can affect the process of thrombotic through the modulation of PI3K/Akt signaling. α-Linolenic acid possess the anti-arrhythmic properties and is related to cardiovascular disease and cancer .
    α-Linolenic acid
  • HY-N0728S3

    Isotope-Labeled Compounds PI3K Akt Cardiovascular Disease Cancer
    α-Linolenic acid- 13C18 is the 13C labeled α-Linolenic acid. α-Linolenic acid, isolated from seed oils, is an essential fatty acid that cannot be synthesized by humans. α-Linolenic acid can affect the process of thrombotic through the modulation of PI3K/Akt signaling. α-Linolenic acid possess the anti-arrhythmic properties and is related to cardiovascular disease and cancer .
    α-Linolenic acid-13C18
  • HY-W011690

    Endogenous Metabolite Cardiovascular Disease Metabolic Disease Inflammation/Immunology
    L-Homocystine is the oxidized member of the L-homocysteine. Homocysteine is a pro-thrombotic factor, vasodilation impairing agent, pro-inflammatory factor and endoplasmatic reticulum-stress inducer used to study cardiovascular disease mechanisms.
    L-Homocystine
  • HY-N0728S

    Isotope-Labeled Compounds PI3K Akt Cardiovascular Disease Cancer
    α-Linolenic acid-d5 is the deuterium labeled α-Linolenic acid. α-Linolenic acid, isolated from seed oils, is an essential fatty acid that cannot be synthesized by humans. α-Linolenic acid can affect the process of thrombotic through the modulation of PI3K/Akt signaling. α-Linolenic acid possess the anti-arrhythmic properties and is related to cardiovascular disease and cancer .
    α-Linolenic acid-d5
  • HY-P3012

    Cathepsin ERK p38 MAPK PKC Protease Activated Receptor (PAR) MMP Inflammation/Immunology
    Cathepsin G is a pH-dependent serine protease. Cathepsin G hydrolyzes diverse synthetic and protein substrates and remodels extracellular matrix. Cathepsin G exerts immunomodulatory effects via recruiting phagocytes, enhancing T cell motility, activating ERK1/2 and p38 MAPK signaling, and mediating PKCζ membrane translocation. Cathepsin G regulates inflammatory responses by cleaving inflammatory mediators. Cathepsin G participates in vascular regulation by converting angiotensin I to angiotensin II. Cathepsin G induces PAR4-dependent platelet activation, facilitates platelet-neutrophil aggregation, and mediates VITT-related NETosis, thrombus formation. Cathepsin G can be used for the research of immune thrombotic thrombocytopenia, cardiovascular disease, and select autoimmune and inflammatory diseases .
    Cathepsin G
  • HY-N0728R
    α-Linolenic acid (Standard)
    10+ Cited Publications

    Reference Standards PI3K Akt Cardiovascular Disease Cancer
    α-Linolenic acid (Standard) is the analytical standard of α-Linolenic acid. This product is intended for research and analytical applications. α-Linolenic acid, isolated from Perilla frutescens, is an essential fatty acid that cannot be synthesized by humans. α-Linolenic acid can affect the process of thrombotic through the modulation of PI3K/Akt signaling. α-Linolenic acid possess the anti-arrhythmic properties and is related to cardiovascular disease and cancer .
    α-Linolenic acid (Standard)
  • HY-W004283R

    Reference Standards Endogenous Metabolite JAK STAT PPAR p38 MAPK JNK ERK Caspase Apoptosis Metabolic Disease Cancer
    α-Linolenic acid (Standard) is the analytical standard of α-Linolenic acid. This product is intended for research and analytical applications. α-Linolenic acid, isolated from Perilla frutescens, is an essential fatty acid that cannot be synthesized by humans. α-Linolenic acid can affect the process of thrombotic through the modulation of PI3K/Akt signaling. α-Linolenic acid possess the anti-arrhythmic properties and is related to cardiovascular disease and cancer .
    Pentadecanoic acid (Standard)
  • HY-N0728A
    α-Linolenic acid sodium
    Maximum Cited Publications
    11 Publications Verification

    ALA; C18:3 (9Z,12Z,15Z); C18:3 n-3

    Environmental Pollutants Akt PI3K Cardiovascular Disease Cancer
    α-Linolenic acid sodium (ALA; C18:3 (9Z,12Z,15Z); C18:3 n-3) is an essential fatty acid that cannot be synthesized by humans. α-Linolenic acid sodium can affect the process of thrombotic through the modulation of PI3K/Akt signaling. α-Linolenic acid sodium possess the anti-arrhythmic properties and is related to cardiovascular disease and cancer .
    α-Linolenic acid sodium
  • HY-W011690S

    Endogenous Metabolite Metabolic Disease
    L-Homocystine-d8 is the deuterium labeled L-Homocystine. L-Homocystine is the oxidized member of the L-homocysteine. Homocysteine is a pro-thrombotic factor, vasodilation impairing agent, pro-inflammatory factor and endoplasmatic reticulum-stress inducer used to study cardiovascular disease mechanisms.
    L-Homocystine-d8
  • HY-105866

    Calcium Channel Prostaglandin Receptor Cardiovascular Disease
    Wy 27569 is an orally active vascular selective calcium channel blocker that can effectively lower blood pressure. Wy 27569 is a thromboxane synthase inhibitor that can reshape prostaglandin balance, reduce pro thrombotic TXA2, and increase anti thrombotic PGI2. Wy 27569 can be used for research on cardiovascular diseases such as hypertension and angina .
    Wy 27569
  • HY-10594

    TAK-442

    Factor Xa Cardiovascular Disease Inflammation/Immunology
    Letaxaban (TAK-442) is an orally active and selective direct FXa inhibitor. Letaxaban is a drug with dual anticoagulant and anti-inflammatory activity that works by directly inhibiting FXa and by intervening in the PAR1 signaling pathway. Letaxaban can be used in the study of thrombotic diseases, cardiovascular diseases and inflammation-related diseases .
    Letaxaban
  • HY-143313

    Protease Activated Receptor (PAR) Cardiovascular Disease
    Protease-Activated Receptor-1 antagonist 1 (Compound 13) is a protease-activated receptor-1 (PAR-1) antagonist with the IC50 of 3 nM by FLIPR technology. Protease-Activated Receptor-1 antagonist 1 can be used for the research of thrombotic cardiovascular, myocardial infarction, and peripheral arterial disease .
    Protease-Activated Receptor-1 antagonist 1
  • HY-167858

    Thrombin Cardiovascular Disease
    LK-732 is a thrombin inhibitor with anti-thrombotic activity.LK-732 has a dose-dependent inhibition of hypercoagulability in the model, with an IC50 of 1.3 mg/kg. LK-732 can be used in cardiovascular and cerebrovascular research .
    LK-732
  • HY-143315

    Protease Activated Receptor (PAR) Cardiovascular Disease
    Protease-Activated Receptor-1 antagonist 3 is a potent protease-activated receptor-1 antagonist with an IC50 value of 7 nM. Protease-Activated Receptor-1 antagonist 3 shows binding affinity for hERG K + channel with an IC50 value of 9 µM .
    Protease-Activated Receptor-1 antagonist 3
  • HY-N0728S2

    Isotope-Labeled Compounds PI3K Akt Cardiovascular Disease Cancer
    α-Linolenic acid-d14 is the deuterium labeled α-Linolenic acid. α-Linolenic acid, isolated from seed oils, is an essential fatty acid that cannot be synthesized by humans. α-Linolenic acid can affect the process of thrombotic through the modulation of PI3K/Akt signaling. α-Linolenic acid possess the anti-arrhythmic properties and is related to cardiovascular disease and cancer .
    α-Linolenic acid-d14
  • HY-W011690R

    Endogenous Metabolite Reference Standards Cardiovascular Disease Metabolic Disease Inflammation/Immunology
    L-Homocystine (Standard) is the analytical standard of L-Homocystine (HY-W011690). This product is intended for research and analytical applications. L-Homocystine is the oxidized member of the L-homocysteine. Homocysteine is a pro-thrombotic factor, vasodilation impairing agent, pro-inflammatory factor and endoplasmatic reticulum-stress inducer used to study cardiovascular disease mechanisms.
    L-Homocystine (Standard)

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