39 Results for "

fungal biofilms

" in MedChemExpress (MCE) Product Catalog:
Products (39)

39 Results for "fungal biofilms" in MCE Product Catalog:

1
1 Cited Publications
Cat. No.: HY-W015580
CAS No.: 4695-62-9
(+)-Fenchone is an antibacterial agent. (+)-Fenchone interferes with bacterial fatty acid synthesis, disrupts fungal cell wall construction, and inhibits bacterial biofilm formation. (+)-Fenchone can be used in studies related to bacterial and fungal infections .
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Cat. No.: HY-119726
CAS No.: 2091769-17-2
Purity:  96.45%
Synonyms: APX001; E1211
Target:  

Fungal

Fosmanogepix (APX001) is a broad-spectrum agent against invasive fungal infections. Fosmanogepix (APX001) targets the conserved Gwt1 enzyme required for the localization of glycosylphosphatidylinositol-anchored mannoproteins in fungi. This inhibition prevents the appropriate localization of cell wall mannoproteins, which compromises cell wall integrity, biofilm formation, germ tube formation, and fungal growth. Fosmanogepix (APX001) can be used for invasive fungal infections research .
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Cat. No.: HY-121362
CAS No.: 537-09-7
Purity:  99.71%
Evernic Acid is an orally active thioredoxin reductase 1 (TrxR1) inhibitor and antiproliferative agent. Evernic Acid inhibits the proliferation and migration of human breast cancer cells. Evernic Acid blocks the NF-κB pathway by inhibiting p65 nuclear translocation and IκBα phosphorylation, thereby suppressing downstream inflammatory mediators. Evernic Acid acts as an antioxidant, anti-inflammatory agent and neuroprotective agent, protects neurons from cell death, mitochondrial dysfunction and oxidative stress damage, reduces astrocyte activation, and ameliorates dopaminergic neuron loss and neuroinflammation. Evernic Acid inhibits enoyl reductases FabI and FabZ of Plasmodium falciparum. Evernic Acid downregulates the expression of lasB and rhlA genes in Pseudomonas aeruginosa, inhibits quorum sensing and biofilm formation, and exerts antibacterial activity against Gram-positive bacteria, Gram-negative bacteria and fungi. Evernic Acid is applicable to research related to breast cancer, Parkinson's disease, bacterial infections and fungal infections .
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Cat. No.: HY-124833
CAS No.: 81-61-8
Purity:  97.1%
Quinalizarin is a protein kinase CK2 inhibitor with a Ki of 0.052 μM. Quinalizarin exhibits antifungal and anticancer activities. Quinalizarin induces ROS production, apoptotic signaling, mitochondrial pathway activation, cell cycle arrest, and cytotoxicity in cancer cells. Quinalizarin inhibits hyphal growth, biofilm formation, and mature biofilm integrity of Candida albicans. Quinalizarin can be used in research related to cancer and fungal infections .
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Cat. No.: HY-N11709
CAS No.: 220114-28-3
Theasaponin E1 is an orally effective tea saponin. Theasaponin E1 inhibits the proliferation of cancer cells by activating apoptosis. Theasaponin E1 inhibits angiogenesis in ovarian cancer cells and HUVECs by reducing the expression of VEGF. Theasaponin E1 upregulates the phosphorylation level of ATM protein and the expression level of PTEN protein in cancer cells, decreases the phosphorylation levels of Akt, mTOR, p70S6K and 4E-BP1 proteins, downregulates the expression of HIF-1α and NF-κB, and reduces the protein expression of Notch ligands Dll4 and Jagged1. Theasaponin E1 exerts neuroprotective effects by inhibiting the activity of acetylcholinesterase, activating α-secretase and neprilysin, reducing the concentration of , and inhibiting the activities of β-secretase and γ-secretase. Theasaponin E1 exhibits toxic effects on cancer cells and quinone reductase-inducing activity, and inhibits tumor growth in vivo. Theasaponin E1 induces ferroptosis in Pomacea canaliculata by synergistically disrupting cholesterol homeostasis and sphingolipid metabolism. Theasaponin E1 possesses anti-biofilm activity against Candida albicans. Theasaponin E1 can be used in the research of ovarian cancer, obesity, Alzheimer's disease and fungal infections .
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Cat. No.: HY-134215
CAS No.: 677354-23-3
Target:  

Bacterial Fungal

Research Areas:  

Infection

cis-11-Methyl-2-dodecenoic acid is a quorum sensing (QS) signal that acts as a diffusion signaling factor (DSF) in extracellular microbial and fungal communication systems. DSF is involved in the regulation of virulence and biofilm formation of a variety of bacterial pathogens .
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Cat. No.: HY-N11546
CAS No.: 30994-75-3
Sapindoside B is a substance with hepatoprotective activity, and also acts as a cytochrome P-450 (cytochrome P-450) inhibitor, antibacterial agent and membrane-disrupting agent. Sapindoside B reversibly inhibits the content of cytochrome P-450 in liver microsomes, suppresses the phenobarbital-induced increase in enzyme content, reduces the production of active metabolites mediated by cytochrome P-450, and alleviates hepatotoxic injury. Sapindoside B binds to Cutibacterium acnes lipase, reduces lipase activity, inhibits biofilm formation, and decreases bacterial adhesion. Sapindoside B exhibits cytotoxicity against human cancer, liver cancer, leukemia and glioblastoma cells. Sapindoside B inhibits mycelial growth of phytopathogenic fungal strains, possesses antibacterial activity against dermatophytes, and also has hemolytic/membrane-lytic activity. Sapindoside B can be used in research related to liver injury, Cutibacterium acnes biofilm-associated infections, gastric cancer, carcinoma, promyelocytic leukemia, glioblastoma, apple scab and grape gray mold .
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Cat. No.: HY-119726A
CAS No.: 1169701-00-1
Synonyms: APX001 (tautomerism); E1211 (tautomerism)
Target:  

Fungal

Research Areas:  

Infection Inflammation/Immunology

Fosmanogepix tautomerism (APX001 tautomerism) is a broad-spectrum and orally active anti-invasive fungal compound. Fosmanogepix tautomerism targets the conserved Gwt1 enzyme required for the localization of glycosylphosphatidylinositol-anchored mannoproteins in fungi, and inhibition prevents proper localization of cell wall mannoproteins, thereby impairing cell wall integrity, biofilm formation, germ tube formation, and fungal growth. Fosmanogepix tautomerism can be used to study invasive fungal infections .
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Cat. No.: HY-145814
CAS No.: 2765247-36-5
Target:  

HSP Fungal

Research Areas:  

Infection

HSP90-IN-9 is a potent and selective HSP90 inhibitor. HSP90-IN-9 displays a fungicidal effect in a dose-dependent manner. HSP90-IN-9 inhibits fungal biofilm formation and fungal morphological changes after being combined with FLC. HSP90-IN-9 recovers FLC resistance by down-regulating the expression of related genes (ERG11, CDR1 and CDR2) .
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Cat. No.: HY-W716339
CAS No.: 19902-08-0
Synonyms: d-β-Pinene
(+)-β-Pinene (d-β-Pinene) acts as an Antifungal and Antibacterial agent. (+)-β-Pinene inhibits Phospholipase. (+)-β-Pinene interferes with fungal cell wall function, reduces Candida biofilm adhesion, inhibits Candida albicans biofilm formation, and suppresses the growth of various Candida species. Combined with Ciprofloxacin (HY-B0356), (+)-β-Pinene exerts synergistic antibacterial activity against Methicillin (HY-121544)-resistant Staphylococcus aureus. (+)-β-Pinene can be used in research related to candidiasis and Staphylococcus aureus infections .
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Cat. No.: HY-168210
CAS No.: 3054212-80-2
Target:  

Fungal Cytochrome P450

Research Areas:  

Infection

Antifungal agent 122 (compound 201) is a potent and broad-spectrum antifungal agent. Antifungal agent 122 prevents fungal phase transition and the formation of fungal biofilm. Antifungal agent 122 inhibits CYP3A4-M and CYP3A4-T enzyme activity with IC50 values of 2.11, 4.53 µM. Antifungal agent 122 shows no cytotoxicity .
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Cat. No.: HY-W706466
CAS No.: 106480-60-8
Synonyms: TCSA
Target:  

Fungal

Research Areas:  

Infection

3',5,5'-Trichlorosalicylanilide (TCSA) acts as an inhibitor of fungal morphogenesis, preventing biofilm formation and hindering host cell invasion.
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Cat. No.: HY-W015580R
CAS No.: 4695-62-9
(+)-Fenchone (Standard) is the analytical standard of (+)-Fenchone. This product is intended for research and analytical applications. (+)-Fenchone is an antibacterial agent. (+)-Fenchone interferes with bacterial fatty acid synthesis, disrupts fungal cell wall construction, and inhibits bacterial biofilm formation. (+)-Fenchone can be used in studies related to bacterial and fungal infections .
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Cat. No.: HY-N0535R
CAS No.: 6681-18-1
Synonyms: Magnoflorine chloride (Standard); α-Magnoflorine chloride (Standard); Thalictrine chloride (Standard)
(+)-Magnoflorine (chloride) (Standard) is the analytical standard of (+)-Magnoflorine (chloride). This product is intended for research and analytical applications. Magnoflorine chloride (Magnoflorine chloride), an aporphine alkaloid found in Magnolia or Aristolochia, reduces the formation of C. albicans biofilm . Magnoflorine chloride has anti-fungal, anti-antidiabetic and anti-oxidative activity .
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Cat. No.: HY-173428
Target:  

Fungal

Research Areas:  

Infection

Antifungal agent 130 (Compound A7) is an orally active antifungal agent. Antifungal agent 130 has good antifungal activity against Candida albicans (MIC = 0.12 ng/mL) and Cryptococcus neoformans (MIC = 0.12 ng/mL) and has excellent antivirulence effect. Antifungal agent 130 exerts its antifungal effect by disrupting the iron homeostasis of fungal cells and inducing oxidative stress damage. Antifungal agent 130 can inhibit the formation of fungal virulence factors (such as biofilm, capsule, urease and melanin). Antifungal agent 130 has good antifungal effect and can be used in the study of drug-resistant fungal infections .
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Cat. No.: HY-174353S
CYP51-IN-23-d3 is a potent and broad-spectrum CYP51 inhibitor with a MIC80 of 1 μg/mL against Aspergillus fumigatum. CYP51-IN-23-d3 can prevent fungal phase transformation and biofilm formation. CYP51-IN-23-d3 exhibits anti-drug resistance activity and fungal activity, and shows excellent safety for cells and significant pharmacological activity in mice. CYP51-IN-23-d3 can be used for the study of invasive fungal infections (IFIs) .
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Cat. No.: HY-174353
Target:  

Cytochrome P450 Fungal

Research Areas:  

Infection

CYP51-IN-22, the non-deuterated analog of CYP51-IN-23-d3 (HY-174353S), is a potent and broad-spectrum CYP51 inhibitor.CYP51-IN-22 inhibits Aspergillus fumigatum with a MIC80 of 1 μg/mL. CYP51-IN-22 can prevent fungal phase transformation and biofilm formation. CYP51-IN-22 exhibits anti-drug resistance activity and fungal activity, and shows excellent safety for cells and significant pharmacological activity in mice. CYP51-IN-22 can be used for the study of invasive fungal infections (IFIs) .
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Cat. No.: HY-147814
Target:  

Bacterial Fungal

Research Areas:  

Infection

KFU-127 (Compound 6b) is a broad spectrum topical antimicrobial capable of one-shot targeting of bacterial and fungal-bacterial biofilms. KFU-127 is considerably toxic for eukaryotic cells . KFU-127 is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups.
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Cat. No.: HY-169919
CAS No.: 3020690-76-7
Research Areas:  

Infection

HDM-IN-1 (Compound A4) is an inhibitor for fungal histone demethylase (HDM), that inhibits the H3K27me3 in Cryptococcus neoformans and in Candida auris with IC50s of 134 and 12 nM. HDM-IN-1 exhibits inhibitory efficacy against C. neoformans and C. auris with MIC80 of 0.5-2 μg/mL, through inhibition of the biofilm and capsule formation. HDM-IN-1 exhibits antifungal activity in ICR mouse model .
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Cat. No.: HY-174973
Target:  

Fungal Cytochrome P450

Research Areas:  

Infection

CYP51-IN-26 is a CYP51 inhibitor with an IC50 value of approximately 0.40 μM. CYP51-IN-26 eradicates C. auris biofilms. CYP51-IN-26 demonstrates significantly improved intracellular uptake in an accumulation assay. CYP51-IN-26 protects against C. auris infection in both G. mellonella and D. melanogaster models. CYP51-IN-26 can be used for research on fungal infections .
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