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murine spleenic lymphocytes

" in MedChemExpress (MCE) Product Catalog:

9

阻害剤およびアゴニスト

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天然物

3

同位体標識化合物

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製品番号 製品名 Target 研究分野 構造式
  • HY-B1777
    Spermine
    5+ Cited Publications

    NSC 268508; Neuridine

    Endogenous Metabolite Bacterial Reactive Oxygen Species (ROS) DNA/RNA Synthesis Infection Neurological Disease Inflammation/Immunology
    Spermine is a natural antioxidant and anti-inflammatory agent. Spermine is known to inhibit some bacterial cultures, especially strains of Staphylococcus aureus. Spermine induces neurotoxicity in the striarum dose-dependently. Spermine can reversibly inhibits DNA synthetic response, mixed lymphocyte response and the induction of cytolytic lymphocyte response in primary cultures of murine spleen cells. Spermine tetrahydrochloride is a polyamine nitric oxide donor that can provide nitric oxide to platelets and inhibit platelet activation to a certain extent concentration-dependently. Spermine tetrahydrochloride occurs in mammalian tissues, plants, bacteria, ribosomes and bacteriophage. Spermine tetrahydrochloride inhibits primary human embryo lung fibroblasts in vitro .
    Spermine
  • HY-B1777AS

    Isotope-Labeled Compounds Endogenous Metabolite Reactive Oxygen Species (ROS) Bacterial DNA/RNA Synthesis Metabolic Disease
    Spermine-d8 (tetrahydrochloride) is the deuterium labeled Spermine tetrahydrochloride. Spermine tetrahydrochloride is a polyamine nitric oxide donor that can provide nitric oxide to platelets and inhibit platelet activation to a certain extent concentration-dependently. Spermine tetrahydrochloride occurs in mammalian tissues, plants, bacteria, ribosomes and bacteriophage. Spermine tetrahydrochloride inhibits primary human embryo lung fibroblasts in vitro. Spermine is a natural antioxidant and anti-inflammatory agent. Spermine is known to inhibit some bacterial cultures, especially strains of Staphylococcus aureus. Spermine induces neurotoxicity in the striarum dose-dependently. Spermine can reversibly inhibits DNA synthetic response, mixed lymphocyte response and the induction of cytolytic lymphocyte response in primary cultures of murine spleen cells .
    Spermine-d8 tetrahydrochloride
  • HY-B1777A
    Spermine tetrahydrochloride
    5+ Cited Publications

    Endogenous Metabolite Bacterial Reactive Oxygen Species (ROS) DNA/RNA Synthesis Infection Neurological Disease Inflammation/Immunology
    Spermine tetrahydrochloride is a polyamine nitric oxide donor that can provide nitric oxide to platelets and inhibit platelet activation to a certain extent concentration-dependently. Spermine tetrahydrochloride occurs in mammalian tissues, plants, bacteria, ribosomes and bacteriophage. Spermine tetrahydrochloride inhibits primary human embryo lung fibroblasts in vitro. Spermine is a natural antioxidant and anti-inflammatory agent. Spermine is known to inhibit some bacterial cultures, especially strains of Staphylococcus aureus. Spermine induces neurotoxicity in the striarum dose-dependently. Spermine can reversibly inhibits DNA synthetic response, mixed lymphocyte response and the induction of cytolytic lymphocyte response in primary cultures of murine spleen cells .
    Spermine tetrahydrochloride
  • HY-N6801

    Caspase Apoptosis Bcl-2 Family Infection Inflammation/Immunology Cancer
    Nivalenol, a trichothecene mycotoxin that can be produced by Fusarium graminearum, is a fungal metabolite present in agricultural product. Nivalenol modulates apoptotic pathway, cell cycle regulation, Bax, ERK, caspase-3, and poly-ADP-ribose synthase activity in macrophages. Nivalenol inhibits ribosomal peptidyltransferase site, protein synthesis, DNA synthesis, and cell proliferation. Nivalenol induces late-stage apoptotic morphological changes, reduces cellular metabolism, and decreases cell proliferation in erythroleukemia cells. Nivalenol induces lymphocyte apoptosis in murine thymus, spleen, and Peyer's patches. Nivalenol can be used for the research of erythroleukemia .
    Nivalenol
  • HY-N6801S

    Isotope-Labeled Compounds Caspase Apoptosis Bcl-2 Family Infection Inflammation/Immunology Cancer
    Nivalenol- 13C15 is the 13C labeled Nivalenol (HY-N6801) . Nivalenol, a trichothecene mycotoxin that can be produced by Fusarium graminearum, is a fungal metabolite present in agricultural product. Nivalenol modulates apoptotic pathway, cell cycle regulation, Bax, ERK, caspase-3, and poly-ADP-ribose synthase activity in macrophages. Nivalenol inhibits ribosomal peptidyltransferase site, protein synthesis, DNA synthesis, and cell proliferation. Nivalenol induces late-stage apoptotic morphological changes, reduces cellular metabolism, and decreases cell proliferation in erythroleukemia cells. Nivalenol induces lymphocyte apoptosis in murine thymus, spleen, and Peyer's patches. Nivalenol can be used for the research of erythroleukemia.
    Nivalenol-13C15
  • HY-B1777S

    NSC 268508-15N2; Neuridine-15N2

    Isotope-Labeled Compounds Endogenous Metabolite Bacterial Reactive Oxygen Species (ROS) DNA/RNA Synthesis Infection Neurological Disease Inflammation/Immunology
    Spermine- 15N2 (NSC 268508- 15N2) is the 15N-labeled Spermine (HY-B1777). Spermine is a natural antioxidant and anti-inflammatory agent. Spermine is known to inhibit some bacterial cultures, especially strains of Staphylococcus aureus. Spermine induces neurotoxicity in the striarum dose-dependently. Spermine can reversibly inhibits DNA synthetic response, mixed lymphocyte response and the induction of cytolytic lymphocyte response in primary cultures of murine spleen cells. Spermine tetrahydrochloride is a polyamine nitric oxide donor that can provide nitric oxide to platelets and inhibit platelet activation to a certain extent concentration-dependently. Spermine tetrahydrochloride occurs in mammalian tissues, plants, bacteria, ribosomes and bacteriophage. Spermine tetrahydrochloride inhibits primary human embryo lung fibroblasts in vitro .
    Spermine-15N2
  • HY-N6801R

    Reference Standards Caspase Apoptosis Bcl-2 Family Infection Inflammation/Immunology Cancer
    Nivalenol (Standard) is the analytical standard of Nivalenol (HY-N6801). This product is intended for research and analytical applications. Nivalenol, a trichothecene mycotoxin that can be produced by Fusarium graminearum, is a fungal metabolite present in agricultural product. Nivalenol modulates apoptotic pathway, cell cycle regulation, Bax, ERK, caspase-3, and poly-ADP-ribose synthase activity in macrophages. Nivalenol inhibits ribosomal peptidyltransferase site, protein synthesis, DNA synthesis, and cell proliferation. Nivalenol induces late-stage apoptotic morphological changes, reduces cellular metabolism, and decreases cell proliferation in erythroleukemia cells. Nivalenol induces lymphocyte apoptosis in murine thymus, spleen, and Peyer's patches. Nivalenol can be used for the research of erythroleukemia.
    Nivalenol (Standard)
  • HY-B1777AR

    Reference Standards Endogenous Metabolite Bacterial Reactive Oxygen Species (ROS) DNA/RNA Synthesis Infection Neurological Disease Inflammation/Immunology
    Spermine (tetrahydrochloride) (Standard) is the analytical standard of Spermine (tetrahydrochloride). This product is intended for research and analytical applications. Spermine tetrahydrochloride is a polyamine nitric oxide donor that can provide nitric oxide to platelets and inhibit platelet activation to a certain extent concentration-dependently. Spermine tetrahydrochloride occurs in mammalian tissues, plants, bacteria, ribosomes and bacteriophage. Spermine tetrahydrochloride inhibits primary human embryo lung fibroblasts in vitro. Spermine is a natural antioxidant and anti-inflammatory agent. Spermine is known to inhibit some bacterial cultures, especially strains of Staphylococcus aureus. Spermine induces neurotoxicity in the striarum dose-dependently. Spermine can reversibly inhibits DNA synthetic response, mixed lymphocyte response and the induction of cytolytic lymphocyte response in primary cultures of murine spleen cells .
    Spermine tetrahydrochloride (Standard)
  • HY-182394

    Parasite Infection
    DM-1157 is an orally active asymmetric bisquinoline heme inhibitor with a IC50 of 1.6 μM and a Kd of 1.7 μM. DM-1157 binds to heme dimers in solution, inhibits β-hematin formation, suppresses hemozoin formation in the digestive vacuole of Plasmodium falciparum, accumulates in the digestive vacuole of Plasmodium falciparum, induces enlargement of the digestive vacuole of Plasmodium falciparum, and inhibits the growth of Chloroquine (HY-17589A)-sensitive and resistant Plasmodium falciparum strains. DM-1157 can be used for the research of malaria and Plasmodium falciparum-type malaria .
    DM-1157

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