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Pathogenic microorganisms

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Natural
Products

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-138650

    Glyceryl monocaprylate; Sefsol 318

    Bacterial Inflammation/Immunology
    Monocaprylin (Glyceryl monocaprylate), a monoglyceride of caprylic acid, exhibits an excellent antibacterial activity. Monocaprylin inhibits a variety of foodborne pathogenic and spoilage microorganisms and has the potential for an alternative food preservative research .
    Monocaprylin
  • HY-B2196
    Gastric mucin
    3 Publications Verification

    Antibiotic Bacterial Infection Metabolic Disease
    Gastric mucin is a glycoprotein with natural antibiotic function. Gastric mucin against Helicobacter pylori infection. Gastric mucin effectively scavenges hydroxyl radical. Gastric mucin play a major role in the protection of the gastrointestinal tract from acid, proteases, pathogenic microorganisms, and mechanical trauma .
    Gastric mucin
  • HY-123581

    Antibiotic Bacterial ATF6 DAPK Autophagy NF-κB NO Synthase Apoptosis Reactive Oxygen Species (ROS) Keap1-Nrf2 Heme Oxygenase (HO) Infection Inflammation/Immunology
    Quinocetone is an orally active animal feed additive used to increase the meat production of livestock and poultry. Quinocetone exhibits antibacterial activity against a variety of pathogenic microorganisms. Quinocetone exhibits tissue-specific (liver, lymphocyte) toxicity. Quinocetone induces autophagy in cells through the ATF6/DAPK1 pathway. Quinocetone activates the NF-κB and iNOS pathways, leading to cell apoptosis, hepatocyte vacuolar degeneration and fibrosis. Quinocetone can inhibit Nrf2/HO-1 and induce the generation of reactive oxygen species (ROS), leading to oxidative stress and DNA damage .
    Quinocetone
  • HY-123581R

    Reference Standards Antibiotic Bacterial ATF6 DAPK Autophagy NF-κB NO Synthase Apoptosis Reactive Oxygen Species (ROS) Infection Inflammation/Immunology
    Quinocetone (Standard) is the analytical standard of Quinocetone (HY-123581). This product is used for research and analytical purposes. Quinocetone is an orally active animal feed additive used to increase the meat production of livestock and poultry. Quinocetone exhibits antibacterial activity against a variety of pathogenic microorganisms. Quinocetone exhibits tissue-specific (liver, lymphocyte) toxicity. Quinocetone induces autophagy in cells through the ATF6/DAPK1 pathway. Quinocetone activates the NF-κB and iNOS pathways, leading to cell apoptosis, hepatocyte vacuolar degeneration and fibrosis. Quinocetone can inhibit Nrf2/HO-1 and induce the generation of reactive oxygen species (ROS), leading to oxidative stress and DNA damage.
    Quinocetone (Standard)
  • HY-145265

    Bacterial Infection
    Antimicrobial photosensitizer-1 is a promising candidate as the antimicrobial photosensitizer for combating pathogenic microorganism infections. Antimicrobial photosensitizer-1 exhibits an impressive antimicrobial efficacy in S. aureus-infected mice wounds .
    Antimicrobial photosensitizer-1
  • HY-175181

    Parasite Bacterial Infection
    SufS-IN-1, a (2R,3R)-3-ethoxycarbonylaziridine-2-carboxylic acid (EAC), is a selective Cysteine desulfurase type II (SufS) inhibitor. SufS-IN-1 significantly inhibits the SufS activity by covalently binding to the cofactor PLP to form a stable PLP-ligand conjugates. SufS-IN-1 can be used for pathogenic microorganisms research, such as Plasmodium falciparum, Staphylococcus aureus and Mycobacterium tuberculosis .
    SufS-IN-1
  • HY-N12647

    Others Infection Inflammation/Immunology
    cis-Hinkiresinol is a bioactive constituent of Rhizoma anemarrhenae. Rhizoma anemarrhenae is reprted to have anti-pathogenic microorganism, hypoglycemic effects, anti-inflammatory, antipyretic effects and anti-platelet aggregation .
    cis-Hinkiresinol
  • HY-125048

    229-B; Streptothricin D

    Bacterial Infection
    Racemomycin B (229-B; Streptothricin D), the main component from Streptomyces lavendulae OP-2, is a streptothricin antibiotic containing three β-lysine groups. RM-B exhibits antimicrobial activity against plant pathogenic microorganisms and effectively inhibits the growth of Brassica rapa L. roots at 50 ppm. RM-B showed a minimum inhibitory concentration (MIC) of 0.4 μg/ml against Pseudomonas syringae pv. tabaci IFO-3508 and a MIC range of 0.1-2.0 μg/ml against six strains of Fusarium oxysporum, showing stronger antimicrobial activity than RM-A and RM-C. The biological activity of racemomycin compounds increases with the increase in the number of β-lysine groups.
    Racemomycin B

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