19 Results for "

antifungal mechanism

" in MedChemExpress (MCE) Product Catalog:
Products (19)

19 Results for "antifungal mechanism" in MCE Product Catalog:

1785
1785 Publications Verification
Cat. No.: HY-100579
CAS No.: 347174-05-4
Purity:  99.71%
Synonyms: Fer-1
Target:  

Ferroptosis Fungal

Research Areas:  

Cancer

Ferrostatin-1 (Fer-1), a potent and selective ferroptosis inhibitor, suppresses Erastin-induced ferroptosis in HT-1080 cells (EC50=60 nM). Ferrostatin-1, a synthetic antioxidant, acts via a reductive mechanism to prevent damage to membrane lipids and thereby inhibits cell death. Ferrostatin-1 exhibits antifungal activity .
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7
7 Cited Publications
Cat. No.: HY-18233
CAS No.: 936339-60-5
Synonyms: E1210; APX001A
Target:  

Fungal

Research Areas:  

Infection

Manogepix (E1210) is a first-in-class, broad-spectrum and orally active antifungal. Manogepix has a mechanism of action-inhibition of fungal glycosylphosphatidylinositol (GPI) biosynthesis .
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5
5 Cited Publications
Cat. No.: HY-N2389
CAS No.: 50773-42-7
Formosanin C is a diosgenin saponin with multiple biological activities. Formosanin C possesses multiple anti-tumor mechanisms, including inducing apoptosis and autophagy, blocking the cell cycle, inhibiting metastasis and inducing ferroptosis. Formosanin C can inhibit the NF-κB signaling pathway to exert anti-inflammatory effects, and enhance the activity of immune cells. Formosanin C exhibits the inhibiting effect against C. albicans. Formosanin C can be used for the study of anti-inflammation, antifungal anti and anti-cancer (including lung cancer, liver cancer, breast cancer and colorectal cancer, etc.) .
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Cat. No.: HY-132191
CAS No.: 117704-65-1
Target:  

Fungal SARS-CoV HIV

Research Areas:  

Infection

Pradimicin A is a potent antifungal agent with a minimum inhibitory concentration (MIC) of 4 μg/mL against Candida rugosa. Pradimicin A exhibits antiviral activity against SARS-CoV, human immunodeficiency virus (HIV) and other enveloped viruses. Pradimicin A exerts its fungicidal activity through a Ca 2+-dependent mechanism, which induces fungal lysis. Pradimicin A can be used in research related to fungal infections, HIV infections and COVID-19 .
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Cat. No.: HY-N2620
CAS No.: 33237-37-5
Rutaevin is an antifungal toxin and CYP3A4 inactivator. Rutaevin requires NADPH-dependent bioactivation to generate cis-but-2-ene-1,4-dial, which then covalently modifies and mechanism-based inactivates human CYP3A4 (IC50=4.48 μM, Ki=15.98 μM), and interacts with substances such as glutathione. Rutaevin disrupts the cellular structure of Sirococcus conigenus, accumulates linearly in resistant larch after pathogen exposure, and induces liver toxicity in mice via oral administration. Rutaevin can be applied to research in fields related to larch shoot blight and other associated areas .
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Cat. No.: HY-124250
CAS No.: 125559-74-2
Synonyms: 9-KOTrE
Target:  

Fungal

Research Areas:  

Infection

9-OxoOTrE (9-KOTrE) is an antifungal agent against B. cinerea, C. herbarum, P. infestans, and P. parasitica, through a mechanism based on their electrophilic nature .
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Cat. No.: HY-N12497
CAS No.: 67259-16-9
Moracin B is a phytoalexin with antifungal activity. Moracin B can be isolated from the cortex and phloem tissues of mulberry (Morus alba Linne) infected with Fusarium solani f. sp. mori. Moracin B can be used to study plant disease resistance mechanisms against microbial infections, particularly showing potential application value in the field of plant disease control .
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Cat. No.: HY-179518
Target:  

Fungal PKA Ras

Research Areas:  

Infection

Antifungal agent 140 (compound 5p) is a potent antifungal agent with broad-spectrum antifungal activity. Antifungal agent 140 exerts a dual mechanism by targeting the Ras/cAMP/PKA pathway to inhibit hyphal formation and the ergosterol biosynthesis pathway. Antifungal agent 140 enhances survival, reduces fungal load in the kidneys, and strengthens host immune responses in a murine model of systemic candidiasis. Antifungal agent 140 can be used for research of resistant fungal infections .
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Cat. No.: HY-L938
8350 compounds

Currently,the incidence and mortality rates of clinical fungal infections remain high. Existing antifungal drugs are limited in variety and associated with numerous adverse effects, creating an urgent demand for the development of novel antifungal agents. Antifungal compound libraries can support the screening and development of new antifungal drugs.

The mechanisms of action of antifungal drugs cover key processes such as fungal cell membrane synthesis, cell wall synthesis, and cell division. They exert fungicidal or fungistatic effects by specifically targeting different molecular pathways. This library includes a variety of core analogs of antifungal drugs, making it adaptable to antifungal research in diverse scenarios. It can be used for the high-throughput screening of novel antifungal drug candidates, enabling the rapid identification of compounds with potential antifungal activity and facilitating the elucidation of drug-target interactions and resistance mechanisms. Additionally, it supports the screening of compounds and combinations that reverse drug resistance, thereby uncovering the novel antifungal potential of existing compounds.

The library comprises 8350 compounds with a well-defined screening strategy. The core sources of the compounds include analogs of known antifungal active moleculeswith a similarity score of ≥ 0.6 MCE has collected more than 500 antifungal molecules.All screened compounds conform to lead-like physicochemical properties, exhibiting both structural diversity and drug-like characteristics, and providing valuable support for the research and development of novel antifungal drugs.

Cat. No.: HY-L048
585 compounds

The high rates of morbidity and mortality caused by fungal infections are associated with the current limited antifungal arsenal and the high toxicity of the compounds. Additionally, identifying novel drug targets is challenging because there are many similarities between fungal and human cells. The most common antifungal targets include fungal RNA synthesis and cell wall and membrane components, though new antifungal targets are being investigated. Nonetheless, fungi have developed resistance mechanisms, such as overexpression of efflux pump proteins, overexpression and changes in drug targets and biofilm formation, emphasizing the importance of discovering new antifungal drugs and therapies. Due to the limited antifungal arsenal, researchers have sought to improve treatment via different approaches, such as the combination of antifungal drugs, development of new formulations for antifungal agents and modifications to the chemical structures of traditional antifungals, etc.

MCE offers a unique collection of 585 compounds with validated antifungal activities. MCE antifungal compound library is an effective tool for drug repurposing screening, combination screening and biological investigation.

Cat. No.: HY-18233S
Synonyms: E1210-d4; APX001A-d4
Manogepix-d4 (E1210-d4) is the deuterium labeled Manogepix (HY-18233). Manogepix (E1210) is a first-in-class, broad-spectrum and orally active antifungal. Manogepix has a mechanism of action-inhibition of fungal glycosylphosphatidylinositol (GPI) biosynthesis .
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Cat. No.: HY-N18128
CAS No.: 490-52-8
Hunnemanine is a protoberberine-type isoquinoline alkaloid with significant antifungal activity. At a concentration of 1000 ppm, Hunnemanine completely inhibits spore germination of a variety of phytopathogenic fungi, including Alternaria brassicae, Helminthosporium pennisetti, and Fusarium lini. Hunnemanine can be applied to studies on the infection mechanisms of phytopathogenic fungi and related control strategies .
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Cat. No.: HY-186299
CAS No.: 3577-13-7
β-Sitosteryl linoleate is an antifungal agent with a MIC of 500 μg/mL against Alternaria alternata. β-Sitosteryl linoleate disrupts the mycelia of A. alternata and causes leakage of cellular contents. β-Sitosteryl linoleate can be used in studies on A. alternata-related fungal infections, Alternaria brown spot and the mechanisms of phytopathogenic fungi, as well as in GC/MS analytical studies of steryl esters .
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Cat. No.: HY-183552
CAS No.: 1351572-56-9
mCPX is a prodrug of the antifungal agent Ciclopirox olamine (CPX) (HY-B0450A). CPX exhibits bacteriostatic and iron-chelating activities, while mCPX enhances the iron stability of CPX. mCPX inherits the core mechanism pathway of CPX and can induce EBV lytic reactivation in EBV + gastric cancer cells via the hypoxia pathway (HIF‑1α). mCPX is applicable to research related to EBV-positive gastric cancer .
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Cat. No.: HY-187518
CAS No.: 3134912-65-2
Research Areas:  

Infection

NMT-IN-9 is an arylpyrrolidone-based NMT inhibitor with an IC50 of 93.20 nM and a KD of 5.57 × 10 -9 M against NMT. NMT-IN-9 exhibits broad-spectrum antifungal activity against Candida albicans, Candida glabrata, Candida tropicalis, Cryptococcus neoformans and Aspergillus fumigatus, with an MIC of 2-16 μg/mL, and retains activity against fluconazole-resistant Candida isolates, with an MIC of 8-16 μg/mL. NMT-IN-9 induces intracellular ROS accumulation, mitochondrial membrane depolarization, DNA damage, apoptosis and necrotic cell death in fungal cells, and disrupts fungal cell integrity. NMT-IN-9 can be used for studies on NMT-targeted antifungal mechanisms and fluconazole-resistant Candida infections .
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Cat. No.: HY-100579R
CAS No.: 347174-05-4
Synonyms: Fer-1 (Standard)
Research Areas:  

Cancer

Ferrostatin-1 (Standard) is the analytical standard of Ferrostatin-1 (HY-100579). This product is intended for research and analytical applications. Ferrostatin-1 (Fer-1), a potent and selective ferroptosis inhibitor, suppresses Erastin-induced ferroptosis in HT-1080 cells (EC50=60 nM). Ferrostatin-1, a synthetic antioxidant, acts via a reductive mechanism to prevent damage to membrane lipids and thereby inhibits cell death. Ferrostatin-1 exhibits antifungal activity .
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Cat. No.: HY-P11894
Target:  

Bacterial

Research Areas:  

Infection

Antimicrobial peptide 6b is a cationic macrocyclic antimicrobial peptide. It exhibits broad-spectrum antibacterial and antifungal activities, with a MIC of 1.5-6.2 μg/mL against drug-resistant Gram-positive bacteria, a MIC of 4-25 μg/mL against Gram-negative bacteria, and also shows activity against pathogenic fungi. It acts through a membrane disruption mechanism, has a unique "sandwich" conformation, low hemolytic activity, and can rapidly kill bacteria and eliminate bacterial and fungal biofilms. Antimicrobial peptide 6b can be used in studies of drug-resistant bacterial infections and fungal infections .
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Cat. No.: HY-N16818
CAS No.: 1242672-31-6
9-epi-Blumenol C is a C13-norisoprenoid (carotenoid derivative) compound with allelopathic and antifungal activities, and can regulate plant growth. The IC50 values ??of 9-epi-Blumenol C for watercress roots and hypocotyls are 2780 μM and 2240 μM, respectively, and for perennial ryegrass roots and coleoptiles are 3290 μM and 2950 μM, respectively. 9-epi-Blumenol C exhibits allelopathic activity through a mechanism involving direct inhibition of plant growth and degradation of arbuscular mycorrhizal fungi (AMF) colonization, thereby weakening nutrient uptake and stress resistance in neighboring plants. 9-epi-Blumenol C can be used in herbicide development and research related to plant competition mechanisms. 9-epi-Blumenol C can be obtained from the dried fallen leaves of Metasequoia glyptostroboides (a plant of the cypress family, genus Metasequoia) through extraction with 70% methanol and purification by ethyl acetate extraction .
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Cat. No.: HY-L939
10855 compounds

The rising prevalence of multidrug-resistant and extensively drug-resistant bacteria, combined with emerging resistance mechanisms and the limitations of existing antibacterial drugs, creates an urgent need for novel antibacterial agents. Antibacterial compound libraries serve as key tools to support antibacterial drug screening and development.

This library features structurally diverse compounds, including small-molecule scaffolds and natural product derivatives, and exhibits diverse antibacterial mechanisms of action. For example, these compounds exert antibacterial effects by disrupting bacterial cell structures, interfering with bacterial metabolic processes, and inhibiting nucleic acid synthesis. The derivation of scaffold structures enhances their activity against drug-resistant bacteria and their selectivity against different types of bacteria. This library can be used for the high-throughput screening of novel antibacterial drug candidates and the identification of potent compounds against drug-resistant and multidrug-resistant bacteria. Additionally, it provides a reference for compound structural modification, enabling further in-depth research on the structure-activity relationships(SARs) of antibacterial drugs. It can also be applied to the exploration of bacterial resistance mechanisms and reversal strategies, as well as the discovery of antibacterial molecules that inhibit efflux pumps and restore drug susceptibility.

The library contains 10855 structurally diverse drug-like compounds. Its core compound sources include analogs of known antifungal active moleculeswith a similarity score of ≥ 0.6. MCE has collected more than 1900 antibacterial molecules. All screened compounds conform to lead-like physicochemical properties, providing valuable support for the research and development of novel antibacterial drugs.

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