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  1. Cholesterol Biosynthesis Inhibitor

    Agistatin B is a mycotoxin derived from fungal sources that serves as a cholesterol biosynthesis inhibitor. This compound effectively disrupts the biosynthetic pathway of cholesterol, making it a valuable tool for studying lipid metabolism and related disorders. Its inhibition of cholesterol synthesis positions Agistatin B as an important reagent for research in areas such as cardiovascular disease and metabolic regulation.
  2. Synthesis Dextran Inhibitor

    MK-5204 is an orally active inhibitor of β-1,3-glucan synthesis, targeting the pathways involved in fungal cell wall formation. Its primary mechanism disrupts the synthesis of glucans, which are essential for fungal structural integrity. This compound serves as a valuable tool in antifungal research and development, enabling the study of fungal pathogenesis and the evaluation of novel therapeutic strategies. MK-5204 is particularly useful in elucidating the role of glucans in fungal virulence and resistance mechanisms.
  3. Fungal Inhibitor

    Fusapyrone is a broad-spectrum antifungal metabolite that targets fungal growth by inhibiting specific pathways in various fungal species. Initially isolated from Fusarium species, it demonstrates significant efficacy against ochratoxin-producing strains of Aspergillus section Nigri, making it valuable in the control of postharvest crop diseases. Its application in agricultural research allows for the exploration of novel antifungal strategies to enhance crop quality and safety.
  4. Fungal Inhibitor

    Oxaziclomefone is a broad-spectrum fungicide that inhibits the growth of several plant pathogenic fungi. It exhibits significant antifungal activity, making it an effective agent in the control of various crop diseases. Oxaziclomefone is utilized in agricultural applications to safeguard crops, enhancing both yield and quality.
  5. Succinate Dehydrogenase Inhibitor

    SDH-IN-8 is a potent inhibitor of succinate dehydrogenase (SDH), demonstrating an IC50 value of 27 nM in porcine SDH assays. This compound exhibits significant fungicidal activity, making it a valuable tool for investigating the role of SDH in fungal metabolism and potential therapeutic applications in fungal infections. Researchers may utilize SDH-IN-8 to explore mechanisms of SDH inhibition and its effects on cellular respiration and metabolic pathways.
  6. Fungal Inhibitor

    2,2-Dibromopropanoic acid is a dibromo derivative of propionic acid, functioning as a potent fungal inhibitor. This compound exhibits significant mold-inhibitory properties and is widely utilized in various research applications concerning food preservation and microbial control. Its role as a chemical intermediate further enhances its utility in synthetic chemistry and biochemistry studies.
  7. 1,3-β-glucan Synthase Inhibitor

    Arborcandin A is a potent inhibitor of 1,3-β-glucan synthase, serving as an effective antifungal antibiotic. It demonstrates significant antifungal activity with IC50 values of 0.25 μg/mL against Candida albicans and 0.05 μg/mL against Aspergillus fumigatus. Arborcandin A also exhibits a minimum inhibitory concentration (MIC) of 4-8 μg/mL against various Candida species, making it a valuable tool for research in fungal pathogenesis and treatment.
  8. Fungal Inhibitor

    Fungicide4 is a potent fungal inhibitor targeting Phytophthora infestans. It exhibits significant activity against this strain, demonstrating its efficacy in controlling fungal outbreaks. This compound is valuable for research applications focused on plant pathology and the development of antifungal strategies.
  9. Chitin Synthesis Inhibitor

    Cyclopent-4-ene-1,3-dione is a potent chitin synthesis inhibitor with significant antifungal activity against human pathogenic Candida species, exhibiting an IC50 in the range of 1-2 μM. Found in certain feijoa cultivars, this compound demonstrates strong antifungal bioactivity. It serves as a valuable tool for research focused on fungal infections and the mechanisms of antifungal resistance.
  10. Fungal Inhibitor

    Chloracetophos is a potent fungal inhibitor that targets cell processes critical for fungal growth and survival. It exhibits significant antifungal activity, making it a valuable tool for research in mycology and agricultural applications. Its effectiveness in inhibiting fungal pathogens supports studies aimed at understanding fungal resistance mechanisms and developing new antifungal strategies.
  11. Antimicrobial Inhibitor

    Antibacterial Agent 101 (Compd 7f) is an antimicrobial inhibitor targeting both bacterial and fungal pathogens. With minimum inhibitory concentration (MIC) values ranging from 4 to 32 µg/mL, it demonstrates potent antibacterial and antifungal activity. This compound is suitable for research applications focused on developing new antimicrobial therapies.
  12. Chitin Deacetylase Inhibitor

    CDA-IN-1 is a potent inhibitor of chitin deacetylase (CDA), demonstrating significant antifungal activity. This compound effectively suppresses fungal growth by inhibiting fungal CDA activity, stimulating the plant immune response, and promoting the accumulation of reactive oxygen species (ROS). At a concentration of 100 μM, CDA-IN-1 achieves inhibition rates of 86.9% and 74.5% against the chitin deacetylases PxCDA1 and PxCDA2 of Pseudoperonospora xanthii, respectively. CDA-IN-1 is a valuable tool for research into plant fungal disease control, particularly in studies focused on diseases such as cucurbit powdery mildew and tomato gray mold.
  13. Fungal Inhibitor

    Oxadixyl is a fungicide that targets fungal growth by inhibiting key cellular processes. It demonstrates significant biological activity in the presence of fungi, making it useful for evaluating its effects on microbial populations during processes such as malic fermentation in winemaking. This compound is valuable for researchers investigating antifungal treatments and their implications in fermentation science.
  14. CYP51 Inhibitor

    CYP51-IN-19 is a potent inhibitor of cytochrome P450 51 (CYP51), a critical enzyme involved in sterol biosynthesis in fungi. This compound induces the generation of reactive oxygen species (ROS), leading to significant fungicidal activity. It is primarily utilized in antifungal research and the development of therapeutic agents targeting fungal infections.
  15. Fungal Inhibitor

    Antifungal agent 59 is a potent fungal inhibitor with minimum inhibitory concentration (MIC) values ranging from 0.01 to 1 μg/mL. This compound effectively disrupts the formation of fungal biofilms, making it a valuable tool for research in mycology and fungal pathogenesis. Its favorable safety profile further supports its application in studying antifungal mechanisms and therapeutic approaches.
  16. Fungal Inhibitor

    Fludazonium chloride is a potent antifungal agent that targets a range of fungal pathogens. It exhibits strong inhibitory activity against both superficial and systemic fungal infections, making it suitable for therapeutic applications in mycoses treatment and prevention. This compound can be utilized in research to further understand antifungal mechanisms and develop new treatments.
  17. Microbial Inhibitor

    Antifungal agent 38 is a heterocyclic disulfide that acts as a potent microbial inhibitor. Its primary mechanism involves inducing hyphal shrinkage and disrupting the integrity of the plasma membrane, leading to cellular damage and leakage of intracellular contents. This compound is valuable for research applications focused on antifungal and antibacterial activities, offering insights into cell membrane dynamics and potential therapeutic approaches against microbial infections.
  18. Antifungal Agent/HIV-1 Inhibitor

    Amphotericin B methyl ester hydrochloride is a derivative of the polyene antibiotic amphotericin B, functioning primarily as an antifungal agent. This compound exhibits potent antifungal activity by binding to cholesterol in fungal cell membranes, leading to cell death. Additionally, it disrupts HIV-1 particle production and significantly inhibits HIV-1 replication, making it valuable for research in antifungal therapies and HIV treatment studies.
  19. Serine Palmitoyltransferase Inhibitor

    Lipoxamycin is a potent serine palmitoyltransferase inhibitor, exhibiting an IC50 of 21 nM. This compound demonstrates significant antifungal activity, making it a valuable tool for studying lipid metabolism and sphingolipid biosynthesis. Lipoxamycin is applicable in research focused on fungal infections and potential avenues for therapeutic interventions targeting lipid-related pathways.
  20. SDH Iinhibitor

    SDH-IN-5 is a potent inhibitor of succinate dehydrogenase (SDH), demonstrating an IC50 value of 3.293 μM. It exhibits significant antifungal activity, achieving an EC50 of 0.046 μg/mL against Rhizoctonia solani. In agricultural applications, SDH-IN-5 effectively inhibits the growth of R. solani in rice leaves, showcasing substantial protective and curative efficacies against this pathogen.
  21. Fungal Inhibitor

    2,4′-Dichloroacetanilide is a fungistatic agent that inhibits the growth of fungi by targeting key cellular processes. It demonstrates significant antifungal activity against Trichosporon asteroides, with a minimum inhibitory concentration (MIC) of 6.25 μg/mL. This compound is valuable for research applications involving fungal pathogenesis and the development of antifungal therapies.
  22. Fungal Inhibitor

    Cyclo(Pro-dArg) is a potent chitinase inhibitor, primarily targeting fungal cell wall integrity. It effectively disrupts cell separation in Saccharomyces cerevisiae while having no significant impact on its overall growth. Additionally, Cyclo(Pro-dArg) inhibits the morphological transition of Candida albicans from yeast to filamentous forms, making it valuable for research in fungal biology and antifungal drug development.
  23. Fungal Inhibitor

    4-Chlorosalicylic acid is a potent fungal inhibitor that functions primarily by inhibiting monophenolase and diphenolase activities, demonstrating IC50 values of 1.89 mM and 1.10 mM, respectively. It exhibits significant antimicrobial properties, displaying an MIC of 250 μg/mL and an MBC of 500 μg/mL against E. coli. This compound is useful in research applications focused on elucidating mechanisms of fungal and bacterial inhibition.
  24. Fungal Inhibitor

    (E)-Coniferyl alcohol is a fungal inhibitor that acts as an intermediate in the biosynthetic pathways of eugenol, stilbenoids, and coumarin. This compound demonstrates potent activity against fungal species, making it valuable for studies focused on fungal growth inhibition. Its applications span research on plant defense mechanisms and the development of antifungal agents.
  25. BoNT A Inhibitor

    Chaetochromin A is a fungal metabolite that acts as an inhibitor of botulinum neurotoxin serotype A (BoNT A). With an IC50 value of 24.6 μM, it demonstrates significant inhibitory effects, making it a valuable tool for research into neurotoxicology and the mechanistic pathways of neurotoxin action. Its role in understanding BoNT A interactions provides insights for potential therapeutic applications.
  26. Fungal Inhibitor

    Isopyrazam serves as a potent fungal inhibitor, demonstrating significant efficacy against various plant pathogenic fungi. Its mechanism of action enhances disease resistance in crops, making it a valuable tool in agricultural research focused on plant protection and disease management. The use of Isopyrazam can lead to improved crop yield and quality, highlighting its potential applications in agro-biological studies.
  27. Mpro Inhibitor/Anti-Coronaviral Agent

    Polycarpine hydrochloride is a potent inhibitor of the main protease (Mpro) with an IC50 of 30 nM, making it a valuable anti-coronaviral agent. This compound, derived from Polycarpa aurata, exhibits significant antiviral properties, demonstrating effectiveness against SARS-CoV-2 Mpro and PEDV Mpro, with IC50 values of 30.0 nM and 0.12 μM respectively. It also possesses antifungal activity, positioning it as a versatile tool for research in virology and infectious diseases.
  28. Fungal Inhibitor

    Ethyl Vanillate is a potent fungal inhibitor that primarily targets 17β-hydroxysteroid dehydrogenase type 2 (17β-HSD2), with an IC50 of 1.3 µM. This compound demonstrates significant antifungal properties, making it valuable for research focused on fungal infections and related metabolic pathways. Its ability to modulate steroid hormone activity positions Ethyl Vanillate as an important tool in studies of fungal biology and therapeutic strategies.
  29. Fungal Inhibitor

    (S,S)-Valifenalate is an acylamino acid fungicide targeting the cell-wall synthesis of Oomycetes fungi. By disrupting the structural integrity of the cell wall, it effectively hinders the growth stages of fungal pathogens, both externally on spores and internally within plant mycelium. This compound is employed in various agricultural research applications aimed at developing strategies for fungal control and improving crop health.
  30. Succinate Dehydrogenase Inhibitor

    Isofetamid is a potent inhibitor of succinate dehydrogenase, primarily utilized as a fungicide. It demonstrates effective control against a range of fungal pathogens, including gray mold, white mold, and powdery mildew. This compound is valuable for research related to plant fungal diseases, contributing to the understanding of fungal inhibition mechanisms and disease management strategies.
  31. Fungal Inhibitor

    Thalifoline is an alkaloid recognized for its antifungal properties, primarily targeting fungal cell integrity. Its mode of action involves disrupting fungal growth and proliferation, making it a valuable reagent for research focused on antifungal drug development and potential therapeutic applications against fungal infections.
  32. Calcineurin Inhibitor

    APX879 is a calcineurin inhibitor that selectively targets fungal cells, exhibiting reduced immunosuppressive effects and lower toxicity compared to traditional agents. As a C22-modified analog of FK506, APX879 retains broad-spectrum antifungal activity, making it a valuable tool for studying fungal pathogenesis and the immune response. It holds potential applications in antifungal drug development and research focused on fungal infections.
  33. Fungal Inhibitor

    Saperconazole is a broad-spectrum antifungal triazole that primarily targets fungal growth by inhibiting 14α-demethylase, an enzyme essential for ergosterol biosynthesis. It exhibits potent activity against Aspergillus species, with a minimum inhibitory concentration (MIC90) of 0.19 mg/L. Saperconazole is utilized in research applications involving antifungal efficacy and mechanistic studies of fungal pathogens.
  34. CHS Inhibitor

    Chitin Synthase Inhibitor 4 is a selective inhibitor of chitin synthase (CHS), functioning primarily by disrupting chitin biosynthesis in fungal pathogens. This compound demonstrates significant fungicidal activity, making it a promising candidate for agricultural applications aimed at controlling fungal infections. Its mechanism supports research into chitin synthase-targeted approaches in crop protection and fungal biology.
  35. Fungal Inhibitor

    Kakuol is a naturally derived compound that acts as a fungal inhibitor, targeting fungal cell growth and proliferation. Exhibiting potent antifungal activity, Kakuol is valuable for research applications involving the investigation of fungal infections and the development of antifungal therapies. Its mechanism of action provides insights into novel approaches for combating fungal pathogens.
  36. SDH Inhibitor

    SDH-IN-2 is a potent inhibitor of succinate dehydrogenase (SDH) with an IC50 value of 0.55 μg/mL, demonstrating strong antifungal activity against phytopathogenic fungi, with an average EC50 range of 3.82-9.81 μg/mL. This compound also features an alkyne group, enabling its application in click chemistry through copper-catalyzed azide-alkyne cycloaddition (CuAAc) with azide-containing molecules. Its dual role as an SDH inhibitor and antifungal agent makes SDH-IN-2 a valuable tool for biochemical research and drug development studies focused on metabolic pathways and fungal diseases.
  37. Fungal Inhibitor

    SCH 51048 is a potent fungal inhibitor that generates active metabolites with demonstrated antifungal properties. Research studies have shown that these metabolites exhibit enhanced activity, making SCH 51048 a valuable compound for investigating antifungal mechanisms and evaluating therapeutic options in fungal infections. This compound serves as a useful tool in the study of fungal biology and the development of new antifungal agents.
  38. Fungal Inhibitor

    Picropodophyllone is an aryltetralin lignan that functions as a fungal inhibitor. This compound exhibits significant antifungal activity, making it a valuable tool for research applications in mycology and the study of fungal pathogenesis. Its isolation from the leaves of Podophyllum hexandrum underlines its natural origin and potential therapeutic implications in combating fungal infections.
  39. Fungal Inhibitor

    L-4-Oxalysine hydrochloride is a naturally occurring compound that acts as a fungal inhibitor. Traditionally isolated from the culture media of Streptomyces roseovirdofuscus, this reagent demonstrates significant antitumor activity. It is utilized in research studies focused on fungal pathogenesis and potential therapeutic applications in oncology.
  40. Fungal Inhibitor

    Exalamide is a potent antifungal agent targeting fungal growth through the inhibition of specific enzymes involved in cellular processes. This compound exhibits significant biological activity against a range of fungal pathogens, making it a valuable tool for research on fungal infections and related diseases. Its application is suited for studies focused on antifungal mechanisms and the development of new therapeutic strategies.
  41. Fungal Inhibitor

    2-Butylbenzo[d]isothiazol-3(2H)-one is a fungal inhibitor that displays significant antibacterial and antifungal activity. This compound is utilized in agricultural applications to safeguard crops against pathogenic fungi, making it an essential ingredient in pesticides. Additionally, it is incorporated into coatings to deter mold and algae growth. Its preservative properties also make it valuable in personal care formulations, helping to extend product shelf life.
  42. Fungal Inhibitor

    2-Ethylnaphthalene is an alkyl-substituted polyaromatic compound that serves as a fungal inhibitor. It has been shown to negatively correlate with the abundance of Glomus species within arbuscular mycorrhizal fungi communities. This property makes 2-Ethylnaphthalene a valuable reagent for investigating fungal interactions and dynamics in various biological research applications.
  43. SPT Inhibitor

    Myriocin is a potent serine palmitoyltransferase (SPT) inhibitor derived from various fungal species such as Myriococcum albomyces, Isaria sinclairi, and Mycelia sterilia. By inhibiting SPT, Myriocin plays a crucial role in the disruption of de novo sphingolipid synthesis. It has demonstrated significant antiviral activity, effectively suppressing the replication of both the subgenomic HCV-1b replicon and the JFH-1 strain of genotype 2a infectious HCV, with an IC50 of 3.5 μg/mL. This compound is valuable for research into sphingolipid metabolism and hepatitis C virus infection mechanisms.
  44. FgGpmk1 Inhibitor

    FgGpmk1-IN-1 is a selective inhibitor of the Fusarium graminearum mitogen-activated protein kinase (FgGpmk1), exhibiting an EC50 value of 3.46 μg/mL. This compound is valuable for investigating the biological role of FgGpmk1 in fungal pathogenesis and offers potential applications in the study of plant-fungal interactions. Researchers can utilize FgGpmk1-IN-1 to explore therapeutic strategies against Fusarium-related diseases.
  45. TMV Inhibitor

    TMV-IN-12 is a potent inhibitor of tobacco mosaic virus (TMV), targeting the aggregation and self-assembly of TMV capsid protein (TMV-CP) with a dissociation constant (Kd) of 0.142 μM. This compound effectively disrupts TMV particle formation, thereby preventing the infection of tobacco plants. Additionally, TMV-IN-12 exhibits antifungal properties, making it a valuable reagent for studying viral and fungal interactions in plant biology and for developing strategies to combat TMV-related diseases.
  46. Chitinase Inhibitor

    Argifin is a potent chitinase inhibitor that demonstrates sub-nanomolar activity, targeting multiple chitinase enzymes. It exhibits impressive IC50 values of 0.025 μM for SmChiA from Serratia marcescens, 6.4 μM for SmChiB, 1.1 μM for Aspergillus fumigatus chitinase B1, and 4.5 μM for human chitotriosidase. Argifin is instrumental in studies exploring chitin metabolism and offers potential applications in antifungal research and elucidation of chitinase-related diseases.
  47. SDH Inhibitor

    Succinate dehydrogenase-IN-2 is a potent inhibitor targeting succinate dehydrogenase (SDH) with an IC50 value of 1.22 mg/L. This compound demonstrates significant antifungal activity, effectively inhibiting a range of fungal pathogens including S. sclerotiorum, V. mali, G. graminis, R. solani, and B. cinerea, with EC50 values in the range of 0.52-3.42 mg/L. It is a valuable tool for research applications focusing on fungal infections and metabolic pathways involving SDH.
  48. Myosin I Inhibitor

    ZJS178 is a selective inhibitor of myosin I, exhibiting significant antifungal activity against Fusarium graminearum. This compound effectively reduces the synthesis of the mycotoxin deoxynivalenol (DON) and is valuable for research on plant diseases, particularly wheat scab. ZJS178 serves as a potent tool for studies aimed at understanding myosin I functions in fungal pathogenesis and developing strategies for disease management in crops.
  49. DHPS Inhibitor

    Dihydropteroate synthase-IN-1 is a potent inhibitor of dihydropteroate synthase (DHPS), primarily targeting the folate biosynthesis pathway. This compound exhibits significant antimicrobial and antifungal properties, making it valuable for research in microbial resistance and pathogenicity studies. Additionally, Dihydropteroate synthase-IN-1 has implications in diagnostics as a potential radio imaging agent, advancing the exploration of therapeutic interventions.
  50. MabA (FabG1) Inhibitor

    FabG1-IN-1 is a selective inhibitor of MabA (FabG1), exhibiting an IC50 of 38 µM. This compound effectively impedes the enzymatic activity of FabG1, playing a crucial role in fatty acid biosynthesis. FabG1-IN-1 is applicable in research focusing on metabolic pathways and the development of antifungal therapies targeting lipid synthesis.

Items 201-250 of 275

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