Antifection

Shop By

Items 951-1000 of 1186

Page
per page
Set Descending Direction
Catalog No.
Product Name
Application
Product Information
Citations
  1. HIV Protease Inhibitor

    MK-8718 is a potent and orally bioavailable HIV protease inhibitor that features a morpholine aspartate binding group. This compound effectively inhibits the activity of HIV protease, making it a valuable tool for studying HIV infection and antiretroviral therapy mechanisms. Its application in research may enhance the understanding of HIV replication and contribute to the development of novel therapeutic strategies.
  2. HIV Protease Inhibitor

    PAC-Phe-Val is a potent inhibitor of HIV-1 protease, exhibiting an IC50 value of 33.10 nM. It establishes stable interactions with key active site residues, which enhances its inhibitory efficacy. This compound is suitable for research applications focused on HIV/AIDS and provides significant potential for therapeutic development in this area.
  3. HIV-1 Inhibitor

    Hinokinin is a compound derived from the stems of Hypoestes aristata, primarily targeting the HIV-1 protease enzyme. It demonstrates moderate inhibitory activity against HIV-1, making it a potential candidate for antiviral research. This compound can be utilized in studies aimed at understanding the mechanisms of HIV-1 replication and developing therapeutic strategies against HIV infection.
  4. HIV protease inhibitor

    Brecanavir is a potent inhibitor of HIV protease, a crucial enzyme in the HIV life cycle. By inhibiting this enzyme, Brecanavir effectively reduces viral replication, making it a valuable compound in HIV research and therapeutic development. Its potential applications include studying drug resistance mechanisms and exploring combination therapies for enhanced antiviral efficacy.
  5. Anti-HIV Nucleoside Reverse Transcriptase Inhibitor

    CL-197 is a purine-based nucleoside reverse transcriptase inhibitor (NRTI) that exhibits anti-HIV activity through its selective inhibition of viral reverse transcriptase. This compound has potential applications in studying viral, oncological, and cerebrovascular diseases. Additionally, CL-197 serves as a click chemistry reagent, featuring an alkyne group that allows for copper-catalyzed azide-alkyne cycloaddition (CuAAc) with azide-containing molecules, facilitating advanced chemical research.
  6. HIV-1 Protease Inhibitor

    TMC310911 is a potent and orally bioavailable inhibitor of the HIV-1 protease. It exhibits significant antiviral activity, with EC50 values ranging from 2.2 nM to 14.2 nM against wild-type HIV-1. Additionally, TMC310911 demonstrates effective activity against a broad range of recombinant HIV-1 isolates, making it a valuable tool for research on HIV-1 infection and resistance development.
  7. HIV Protease Inhibitor

    Isoescin IA is a triterpenoid saponin derived from the seeds of Aesculus chinensis, functioning as an HIV protease inhibitor. This compound exhibits significant anti-HIV-1 protease activity, making it a valuable tool for research aimed at understanding HIV replication and potential therapeutic strategies. Its selective inhibition of the protease can aid in the investigation of antiviral mechanisms and drug development in the field of HIV research.
  8. HIV Protease Inhibitor

    Ganodermanondiol is an HIV protease inhibitor derived from Ganoderma lucidum. It demonstrates significant anti-HIV-1 protease activity, with an IC50 of 90 μM, making it a valuable compound for antiviral research. Additionally, Ganodermanondiol exhibits strong cytoprotective effects against tert-butyl hydroperoxide-induced hepatotoxicity and showcases anticomplement activity against the classical pathway of the complement system, with an IC50 of 41.7 μM. This compound is relevant for studies focused on hepatoprotection and immune modulation.
  9. HIV-1 Protease Inhibitor

    SKF107457 is a potent inhibitor of HIV-1 protease, a key enzyme critically involved in the viral replication process. This compound exhibits significant antiviral activity against HIV-1, making it valuable for studying the mechanisms of HIV infection and resistance. Additionally, SKF107457 can be utilized in research focused on developing new therapeutic strategies for AIDS.
  10. NIT

    HIV-1p Inhibitor

    NIT is an HIV-1 protease (HIV-1p) inhibitor, exhibiting Ki values of 96 μM for wild-type HIV-1p and 91 μM for multidrug-resistant HIV-1p. This compound demonstrates significant potential for studying HIV protease activity and developing therapeutic strategies against HIV infection. Its application in research may further elucidate mechanisms of viral resistance and aid in the design of more effective antiretroviral agents.
  11. HIV Protease Inhibitor

    HIV-IN-11 is a potent HIV protease inhibitor that disrupts the activity of HIV-1 protease through competitive inhibition, with a Ki of 0.049 nM. This compound effectively inhibits the replication of HIV(IIIb)-infected MT4 lymphocytes at concentrations of 25.0-50.0 nM. Demonstrating a longer half-life compared to indinavir sulfate in animal models, HIV-IN-11 represents a promising candidate for second-generation HIV treatment research.
  12. HIV-1 Inhibitor

    Mvt-101 is a hexapeptide-based inhibitor targeting HIV-1 protease. This compound functions as a reduced-peptide-bond inhibitor, effectively blocking protease activity and thereby inhibiting the replication of the HIV virus. Mvt-101 is particularly relevant for research in virology and therapeutics aimed at tackling HIV infection.
  13. HIV Protease Inhibitor

    DMP 323 is a potent, nonpeptide cyclic urea inhibitor of HIV protease, targeting both HIV-1 and HIV-2. It functions as a competitive inhibitor by blocking the cleavage of peptide substrates and the HIV-1 gag polyprotein, demonstrating robust antiviral activity. DMP 323 exhibits comparable efficacy to leading HIV protease inhibitors while remaining effective in human plasma or serum, indicating low affinity for plasma proteins. Additionally, it shows minimal inhibition of mammalian proteases at higher concentrations, underscoring its selectivity for HIV protease.
  14. HIV-1 Protease Inhibitor

    HIV-1 protease-IN-9 is a potent inhibitor of HIV-1 protease, exhibiting a Ki value of 0.028 nM. This compound demonstrates significant antiviral activity, with an IC50 of 66.8 nM, making it a valuable tool for research in HIV treatment and drug development. Its efficacy highlights its potential application in studies aiming to inhibit HIV replication and investigate resistance mechanisms.
  15. HIV-1 Protease Inhibitor

    L-687908 is a highly potent HIV-1 protease inhibitor with a competitive inhibition constant (CIC95) of 12 nM. This compound effectively disrupts the proteolytic processing of viral polyproteins, thereby inhibiting viral replication. Its key biological activity makes it a valuable tool for antiviral research and the development of therapeutic agents targeting HIV-1.
  16. HIV Protease Inhibitor

    AQ148 is a selective HIV-1 protease inhibitor with a Ki value of 137 nM. It demonstrates significant inhibitory activity against aspartic proteases from HIV-1 (IC50 = 1.5 μM), HIV-2 (IC50 = 3.4 μM), and simian immunodeficiency virus (SIV) (IC50 = 5 μM). This compound is useful for research applications focused on HIV pathogenesis and the development of antiviral therapies.
  17. HIV Protease Inhibitor

    20(21)-Dehydrolucidenic acid A is a triterpenoid derived from the fruiting body of Ganoderma sinense, primarily targeting HIV protease. This compound exhibits modest inhibitory activity against HIV-1 protease, making it a valuable tool in the study of HIV pathogenesis and in the development of antiviral strategies. Its unique structure offers potential insights into therapeutic applications for HIV treatment.
  18. HIV Protease Inhibitor

    U-85548E is an HIV protease inhibitor that demonstrates nanomolar affinity for the HIV-1 aspartic protease. This compound has been developed through investigations into its structure-activity relationships, proving effective against both HIV-1 and HIV-2 proteases. Its binding interactions have been characterized using X-ray crystallography and molecular modeling, making it a valuable tool for research in HIV drug development and mechanistic studies of protease inhibition.
  19. HIV-1 Protease Inhibitor

    JE-2178 is an orally bioavailable inhibitor of HIV-1 protease, exhibiting potent antiviral activity. With an IC50 value of 15 nM and a Ki value of 0.318 nM, JE-2178 effectively targets the protease enzyme critical for viral replication. This compound is valuable for research applications focused on HIV-1 inhibition and the development of antiretroviral therapies.
  20. HIV-1 Protease Inhibitor

    HIV-1 protease-IN-7 is a selective inhibitor of the HIV-1 protease, exhibiting an IC50 of 3.52 nM and an EC50 of 37 nM. This compound demonstrates potent antiviral activity, making it a valuable tool in the study of HIV-1 replication and protease function. Its efficacy positions it as a useful reagent for research applications aimed at developing antiviral therapies against HIV-1.
  21. HIV Protease Inhibitor

    Kynostatin 272 is a potent inhibitor of the HIV protease, targeting the enzyme's active site by mimicking the substrate transition state. This mechanism effectively disrupts a critical stage in the replication cycle of the HIV virus. Kynostatin 272 serves as a valuable tool in HIV research, aiding in the development of therapeutic strategies for managing HIV and AIDS.
  22. HIV Protease Inhibitor

    Stercobilin hydrochloride (mixture of isomers) serves as an HIV protease inhibitor, exhibiting a Ki value of 4 μM. This bile pigment, derived from gut bacteria metabolism, can promote pro-inflammatory responses in mouse macrophage RAW264 cells, including the upregulation of cytokines such as TNF-α and IL-1β. Applications of Stercobilin hydrochloride extend to the investigation of inflammatory processes and viral infections.
  23. HIV Protease Inhibitor

    GS-9770 is an orally active inhibitor specifically targeting HIV protease, with a Ki of 0.16 nM. It demonstrates potent antiviral activity against both HIV-1 and HIV-2 strains, showing EC50 values ranging from 1.9 to 26 nM. In addition to its efficacy, GS-9770 is metabolically stable in human liver microsomes and exhibits favorable pharmacokinetic properties in Sprague Dawley rats, making it a valuable tool for research in HIV treatment.
  24. HIV Protease Inhibitor

    L 756423 is a potent inhibitor of HIV protease, targeting the enzyme crucial for the maturation of infectious HIV particles. This compound exhibits significant antiviral activity, making it a valuable tool for research into HIV infection and the development of therapeutic strategies. Its effective inhibition of protease could contribute to understanding HIV lifecycle and resistance mechanisms.
  25. HIV Protease Inhibitor

    R-87366 is a water-soluble inhibitor of HIV protease, demonstrating potent inhibition with a Ki value of 11 nM. This compound is instrumental in the study of human immunodeficiency virus (HIV) mechanisms and provides valuable insights for the development of antiviral therapies. R-87366 serves as a key reagent for research focused on combating HIV infections.
  26. HIV Protease Inhibitor

    Lopinavir Metabolite M-1 is a potent HIV protease inhibitor with a Ki of 0.7 pM. This active metabolite exhibits significant antiviral activity in vitro, making it valuable for research on HIV treatment and drug resistance mechanisms. Its efficacy in inhibiting HIV replication underlines its relevance in antiviral studies and therapeutic development.
  27. HIV-1 Protease Inhibitor

    HIV-1 protease-IN-2 is a highly potent inhibitor of HIV-1 protease, exhibiting an IC50 of 2.53 nM. This compound demonstrates significant antiviral activity against both DRV-sensitive and DRV-resistant strains of HIV-1. It is a valuable tool for researching antiretroviral therapies and understanding HIV resistance mechanisms.
  28. HIV-1 Protease Inhibitor

    8-Prenylluteone is an HIV-1 protease inhibitor that demonstrates significant antiviral activity with an IC50 value of 4 μM. This compound is utilized in research focused on HIV-1 replication and its inhibition, making it a valuable tool for studying the effects of protease inhibition on viral pathogenesis and potential therapeutic strategies.
  29. HIV Protease Inhibitor

    HIV protease-IN-1 is a potent non-peptidic inhibitor of HIV protease, designed to interfere with the viral life cycle. Its primary mechanism involves the inhibition of HIV protease, which is essential for the processing of viral polyproteins into functional proteins. This compound holds significant potential for research applications in the development of therapeutic strategies against AIDS and HIV-related pathologies.
  30. Renin/HIV-1 Protease Inhibitor

    PD 134922 is a potent inhibitor of renin and HIV-1 protease, exhibiting an IC50 of 15 nM against HIV-1 protease. This compound is valuable in studies focused on the modulation of blood pressure regulation through renin inhibition and provides insights into HIV-1 protease activity. Its application extends to research in antiviral therapies and blood pressure-related disorders, making it a useful tool for scientists in pharmacological studies.
  31. HIV-1 Protease Inhibitor

    HIV-1 protease-IN-12 is a potent inhibitor of HIV-1 protease, exhibiting an IC50 of 0.51 nM. This compound effectively targets both wild-type and drug-resistant variants of the enzyme, making it a valuable tool in HIV research. Its primary applications include the study of HIV-1 protease function and the development of antiviral therapies.
  32. HIV-1 PR/RT Inhibitor

    HIV-1 inhibitor-53 is a dual inhibitor targeting HIV-1 protease (PR) and reverse transcriptase (RT). It demonstrates potent inhibitory activity with IC50 values of 1.93 nM for PR and 2.35 μM for RT, making it an important tool for studying HIV replication. This compound is suitable for research applications related to acquired immune deficiency syndrome (AIDS) and the development of antiretroviral therapies.
  33. HIV-1 Protease Inhibitor

    HIV-1 protease-IN-8 is a potent inhibitor of HIV-1 protease, exhibiting an IC50 value of 0.32 nM. This compound effectively inhibits wild-type HIV-1 (HIV-1NL4-3) with an IC50 of 0.29 μM and a drug-resistant variant (HIV-1MDR) with an IC50 of 1.90 μM. Its strong antiviral activity against both strains makes HIV-1 protease-IN-8 a valuable tool for research in HIV treatment and drug resistance studies.
  34. HIV-1 Protease Inhibitor

    HIV-1 protease-IN-5 is a potent inhibitor of HIV-1 protease, exhibiting an IC50 of 1.64 nM. This compound demonstrates significant efficacy against both wild-type and darunavir-resistant variants of HIV-1, making it a valuable tool for antiviral research. Its mechanism of action is crucial for developing therapeutic strategies to combat HIV-1 infections and resistance.
  35. HIV-1 Protease Inhibitor

    Longipedunin A is a potent inhibitor of HIV-1 protease, exhibiting an IC50 value of 50 µg/mL. This compound effectively interferes with the proteolytic processing of viral polyproteins, thereby limiting HIV-1 replication. Longipedunin A is suitable for research applications in virology and studies focused on developing antiviral therapies.
  36. HIV-1 Inhibitor

    U-75875 is an HIV-1 protease inhibitor that effectively impedes the processing of Gag-Pol proteins, thereby disrupting viral maturation and replication. This compound is primarily utilized in research focused on HIV-1 infection, providing valuable insights into viral life cycle mechanisms and potential therapeutic interventions.
  37. HIV-1 Protease Inhibitor

    HIV-1 protease-IN-11 is a potent HIV-1 protease inhibitor with an IC50 value of 0.41 nM. This compound demonstrates significant efficacy against drug-resistant variants of the virus, offering opportunities for HIV research and therapeutic development. Its selective targeting of the HIV-1 protease positions it as a valuable tool in the study of HIV replication and infection mechanisms.
  38. HIV Proteinase Inhibitor

    AG-1284 is an effective HIV proteinase inhibitor, demonstrating an EC50 of 0.5 mg/mL. This compound is utilized in research focused on HIV infection mechanisms and therapeutic strategies aimed at viral suppression. AG-1284's inhibition of HIV proteinase makes it a valuable tool for studying the virus's replication cycle and potential drug development.
  39. HIV Protease Inhibitor

    A-77003 is a potent HIV protease inhibitor, demonstrating an IC50 range of 0.1 to 0.2 μg/ml against both HIV-1 and HIV-2 proteases. This compound exhibits significant antiretroviral activity while maintaining low cytotoxicity in vitro, making it suitable for research applications focused on HIV treatment and therapeutic development.
  40. HIV-1 Protease Inhibitor

    A 74704 is a pseudo C2-symmetric inhibitor targeting HIV-1 protease. This compound effectively disrupts the enzymatic activity of the protease, thereby inhibiting viral replication. It serves as a valuable reagent for studying HIV pathogenesis and developing antiviral therapies.
  41. HIV-1 Protease Inhibitor

    A-80987 is a selective inhibitor of human immunodeficiency virus type 1 (HIV-1) protease. This compound effectively disrupts the proteolytic processing of viral polyproteins, thereby hindering viral replication. A-80987 is valuable for research focused on HIV pathogenesis and therapeutic interventions targeting viral enzyme activity.
  42. HIV-1 Reverse Transcriptase Inhibitor

    Opaviraline is a potent HIV-1 reverse transcriptase inhibitor. It effectively disrupts the viral replication process by targeting the reverse transcriptase enzyme, which is crucial for converting viral RNA into DNA. This compound is utilized in research focused on developing antiviral therapies and understanding HIV-1 resistance mechanisms.
  43. HIV Protease Inhibitor

    Ro 31-8588 is a potent HIV protease inhibitor, exhibiting a Ki of 0.3 nM. This compound is essential for studying the role of HIV protease in viral replication and can be utilized in research focused on AIDS treatment and potential therapeutic strategies. Its high affinity makes it a valuable tool for investigating the mechanistic aspects of HIV inhibition.
  44. HIV-1 Protease Inhibitor

    LY-289612 is a potent HIV-1 protease inhibitor, exhibiting an IC50 value of 1.5 nM. This compound effectively disrupts the proteolytic processing of viral polyproteins, thereby inhibiting the replication of HIV-1. It is utilized in research focused on developing antiviral therapies and understanding HIV resistance mechanisms.
  45. HIV-1 Protease Inhibitor

    PL-100 is a powerful inhibitor of HIV-1 protease, exhibiting a Ki of 36 pM and an EC50 of 16 nM. This compound effectively inhibits viral replication by targeting HIV-1 protease activity, showing significant antiviral efficacy against drug-resistant strains of the virus. PL-100 is suitable for research applications focused on understanding and combating drug-resistant HIV infections.
  46. Bacterial Inhibitor

    2-C-Methyl-D-erythritol 4-phosphate is an intermediate in the methylerythritol phosphate (MEP) pathway, primarily present in prokaryotes. This compound plays a crucial role as a precursor in the biosynthesis of isoprenoids and non-isoprenoids, including essential vitamins. Its unique presence in bacteria, coupled with its absence in humans, positions it as a promising target for the development of bacterium-specific therapeutic agents for infectious disease treatment.
  47. Bacterial Inhibitor

    Ianthelliformisamine A TFA is a bacterial inhibitor that enhances antibiotic efficacy against resistant Gram-negative bacteria. It demonstrates potent bactericidal activity against Staphylococcus aureus, with an IC50 value of 3.8 μM and a minimum inhibitory concentration of 25 μM. The biological activity is attributed to the structural variations of its synthetic derivatives and their interaction with various amino ester derivatives, making it a valuable tool for research in antibiotic resistance and bacterial infections.
  48. Bacterial Inhibitor

    Lysine hydroxamate is an amino acid hydroxamate that acts as a bacterial inhibitor by selectively reducing the growth of Escherichia coli K-12. This compound demonstrates significant antibacterial activity among amino acid hydroxamates, with a unique mechanism of action that allows for the reversible inhibition of bacterial growth through the addition of L-serine. Lysine hydroxamate provides a valuable tool for researchers investigating bacterial growth inhibition and exploring amino acid analogs in microbial studies.
  49. Bacterial Inhibitor

    Negamycin is a bacterial inhibitor that targets protein synthesis by binding to the head domain of the bacterial ribosomal small subunit. This interaction disrupts normal translation, leading to cell death and enhancing the misreading of near-cognate codons. Negamycin is valuable for research applications focused on understanding antibiotic mechanisms and bacterial resistance.
  50. Bacterial Inhibitor

    3-Fluoro-DL-valine is an unnatural amino acid that functions as a bacterial inhibitor by disrupting protein synthesis in targeted bacterial strains. This compound demonstrates significant antibacterial activity, making it a valuable tool in microbiological studies. Additionally, 3-Fluoro-DL-valine can be utilized in peptide synthesis, offering versatile applications for the development of bioactive peptides in biochemical research and drug discovery. Its distinct structural properties position it as a promising candidate for innovative compound research and development.

Items 951-1000 of 1186

Page
per page
Set Descending Direction