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Results for "

Pseudomonas aeruginosa PAO1

" in MedChemExpress (MCE) Product Catalog:

11

Inhibitors & Agonists

1

Peptides

2

Natural
Products

1

Recombinant Proteins

Cat. No. 상품명 Target 연구분야 Chemical Structure
  • HY-P10233A

    Bacterial Infection
    SAAP 148 TFA is a synthetic antimicrobial peptide (bacteria) that interacts with and disrupts the lipid bilayer of bacterial cytoplasmic membranes, thereby inducing changes in membrane permeability and bacterial death. SAAP 148 TFA kills drug-resistant, multidrug-resistant and persister bacterial strains, inhibits biofilm formation, eliminates established biofilms, and blocks bacterial colonization on implant surfaces. SAAP 148 TFA retains its activity after modification or immobilization, exhibits variable cytotoxicity in different human cell models, and shows reduced efficacy in protein-rich environments. SAAP 148 TFA can be used in infection-related research .
    SAAP 148 TFA
  • HY-146304

    Bacterial Infection
    YXL-13 is a potent Pseudomonas aeruginosa (PAO1) inhibitor with an IC50 value of 3.686 μM. YXL-13 can inhibit virulence factors and biofilm formation of PAO1. YXL-13 reduces the pathogenicity and agent resistance of PAO1 by inhibition of the quorum sensing (QS) system. YXL-13 can be used for researching anti-bacteria .
    YXL-13
  • HY-182675

    Antibiotic Bacterial Infection
    Antibiotic adjuvant 5 (Compound 2) acts as an Antibiotic adjuvant. Antibiotic adjuvant 5 enhances the activity of Azithromycin (HY-17506), Clarithromycin (HY-17508), Doripenem (HY-B0187) and Rifampin (HY-B0272) against *Pseudomonas aeruginosa* PAO1. When used in combination with Azithromycin, Antibiotic adjuvant 5 increases the survival rate of *Galleria mellonella* during *Pseudomonas aeruginosa* PAO1 infection. Antibiotic adjuvant 5 is applicable for the research of *Pseudomonas aeruginosa* infection .
    Antibiotic adjuvant 5
  • HY-N2867

    Bacterial Cancer
    Andrographiside is a labdane diterpenoid glucoside that can be isolated from the leaves of Andrographis paniculata Nees. Andrographiside has antihepatotoxic and antioxidative effects. Andrographiside shows protective effects on mice with hepatotoxicity induced by carbon tetrachloride or tert-butylhydroperoxide (tBHP) . Andrographiside is a novel biofilm inhibitor of Pseudomonas aeruginosa PAO1 by modulating quorum-sensing proteins .
    Andrographiside
  • HY-N16410

    5-cis-C12-HSL

    Bacterial Infection
    N-cis-Dodec-5(Z)-enoyl-L-homoserine lactone (5-cis-C12-HSL) (Compound 2) is an acylated homoserine lactone. N-cis-Dodec-5(Z)-enoyl-L-homoserine lactone can be isolated for Mesorhizobium sp. N-cis-Dodec-5(Z)-enoyl-L-homoserine lactone restores protease and pyoverdin production of an AHL-deficient Pseudomonas aeruginosa PAO1 lasI rhlI double mutant. N-cis-Dodec-5(Z)-enoyl-L-homoserine lactone has no significant antibacterial activity and cytotoxicity against tumor cells .
    N-cis-Dodec-5(Z)-enoyl-L-homoserine lactone
  • HY-163030

    Elastase NF-κB p38 MAPK Bacterial Infection Inflammation/Immunology
    LasB-IN-1 (compound 5f) is a potent and orally active inhibitor of LasB (IC50 = 8.7 μM). LasB-IN-1 effectively attenuates elastase production and biofilm formation by P. aeruginosa while alleviating the inflammatory response through downregulating MAPK and NF-κB pathways. LasB-IN-1 is potential to be a novel anti-infective candidate against drug-resistant infections .
    LasB-IN-1
  • HY-182444

    Antibiotic Bacterial Infection
    Cefaloram is a cephalosporin antibiotic, but it is inactive against clinical cystic fibrosis isolates of Pseudomonas aeruginosa (MIC50 > 128 μg/mL) .
    Cefaloram
  • HY-181760

    Bacterial Infection
    Quorum sensing-IN-11 is a quorum sensining inhibitor and a LasR antagonist with an IC50 of 0.7399 μM. Quorum sensing-IN-11 inhibits biofilm, pyocyanin formation and swimming motility in Pseudomonas aeruginosa. Quorum sensing-IN-11 can be used for the research of Pseudomonas aeruginosa infection .
    Quorum sensing-IN-11
  • HY-W154247

    Bacterial Infection
    IP6C is a specific inhibitor and phage sensitizer targeting type II Thoeris systems. IP6C competitively binds to histidine in the catalytic pocket of ThsB, blocks the production of the His-ADPR alarm signal and inhibits ThsA activation, thereby relieving bacterial stasis of phage replication. IP6C selectively resensitizes drug-resistant bacteria carrying type II Thoeris systems (such as Pseudomonas aeruginosa) to phage lysis, without affecting other bacteria, and shows no toxicity to mice and human cell lines. IP6C significantly improves the survival rate of infected mice, and can be used to overcome bacterial phage defense mechanisms and study Pseudomonas aeruginosa infections .
    Thoeris system: (named after the Egyptian goddess of fertility and protection), is a widespread anti-phage immune defense system in bacteria and archaea. Thoeris system belongs to the "Abortion Infection (Abi)" mechanism of bacteria: when an individual bacterium detects phage invasion, it initiates a suicide program and dies, thereby blocking phage replication and spread, and protecting the surrounding bacterial population from infection.
    IP6C
  • HY-183711

    Bacterial Heme Oxygenase (HO) Infection
    Antibacterial agent 344 is an antibacterial agent with potent biofilm inhibition (IC50 = 0.27 μM). Antibacterial agent 344 inhibits heme oxygenase (HemO), impairs iron homeostasis, virulence factor production, and motility. Antibacterial agent 344 synergizes with Ciprofloxacin (HY-B0356) and Tobramycin (HY-B0441), enhancing their efficacy and delaying the development of resistance. Antibacterial agent 344 improves bacterial-infected Galleria mellonella survival, and reduces bacterial load in mice wounds. Antibacterial agent 344 can be used for the research of Pseudomonas aeruginosa infections .
    Antibacterial agent 344
  • HY-183361

    Bacterial Elastase Infection
    Antibiofilm agent-22 is an FpvA receptor-targeting antibacterial agent. Antibiofilm agent-22 chelates iron, disrupts las, pqs, and rhl pathways, reduces elastase, pyocyanin, and rhamnolipid production, and induces bacterial iron starvation. Antibiofilm agent-22 can be used for the research of Pseudomonas aeruginosa infection .
    Antibiofilm agent-22

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