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  1. HIV-1 Inhibitor

    Ingenol-3-palmitate is an ingenane diterpenoid that functions as a potent inhibitor of HIV-1, demonstrating an IC50 value of 4.1 nM. This compound, derived from the roots of Euphorbia ebracteolata, exhibits significant antiviral activity, making it a valuable tool in HIV research. Its mechanism of action can enhance understanding of viral replication and potential therapeutic strategies against HIV infection.
  2. HIV Inhibitor

    Gomisin M2, a lignan derived from the fruits of Schisandra rubriflora, serves as an effective HIV inhibitor with an EC50 of 2.4 μM. In addition to its anti-HIV properties, Gomisin M2 demonstrates anti-cancer and anti-allergic activities, indicating its multifaceted biological potential. This compound may also offer valuable insights for research related to Alzheimer’s disease.
  3. HIV Inhibitor

    Azulene, a bicyclic hydrocarbon, exhibits potent anti-HIV activity by targeting viral replication mechanisms. Isolated from chamomile oil, it serves as an important scaffold in medicinal chemistry, facilitating the design of new antiviral agents. Its unique structure and biological properties make it a valuable compound in HIV research and therapeutic development.
  4. HIV-1 Inhibitor

    BDM-2 is a potent allosteric inhibitor of HIV-1 integrase, specifically targeting the IN-LEDGF interaction. With an IC50 of 47 nM, it exhibits significant anti-retroviral activity and an AC50 for IN multimerization activation of 20 nM. BDM-2 effectively disrupts the binding between the integrase catalytic core domain and the LEDGF/p75 integrase binding domain, with an IC50 of 0.15 μM. This compound demonstrates a high degree of selectivity and a favorable cytotoxicity profile, making it a valuable tool for HIV research.
  5. HIV-1 Capsid Inhibitor

    Lenacapavir sodium is an HIV-1 capsid inhibitor that targets the interaction between capsid hexamers and CA monomers. By disrupting capsid assembly and viral maturation, it inhibits the nuclear translocation of HIV-1 DNA and interferes with CA-mediated protein-protein interactions. Additionally, Lenacapavir sodium reduces the formation of 2-LTR circles and pre-integration proviruses, induces aberrant capsids, and diminishes the production of mature HIV-1. This reagent is vital for research focused on HIV-1 infection and explores its effects on various HIV-1 subtypes and clinical isolates.
  6. HIV Inhibitor

    Bz-RS-iSer(3-Ph)-OMe is a potent HIV inhibitor that specifically targets viral replication processes. This compound effectively disrupts the replication cycle of HSV with minimal cytotoxicity and inhibits mitotic divisions in Vero cells. Additionally, Bz-RS-iSer(3-Ph)-OMe influences tumor size in M-MSV models and modulates immune responses by inhibiting PHA-induced T lymphocyte proliferation, making it a valuable tool for research in virology and cancer biology.
  7. HIV-1 RNase H Inhibitor

    HIV-1 inhibitor-45 is a potent inhibitor of the HIV-1 RNase H enzyme, demonstrating an IC50 value of 0.067 μM. This compound exhibits significant antiviral activity against HIV-1, making it a valuable tool for studying viral replication and pathogenesis. However, it is characterized by low cell permeability, with an apparent permeability coefficient (Papp) of less than 0.48 × 10−6 cm/s, which may impact its effectiveness in cellular models.
  8. HIV-1 Reverse Transcriptase Inhibitor/μ-opioid Receptor Agonist

    Corydine targets HIV-1 reverse transcriptase and the μ-opioid receptor, acting as an inhibitor with an IC50 of 356.7 μg/mL against the enzyme and an EC50 of 0.51 μM at the receptor. It exhibits antinociceptive effects through the modulation of MOR, effectively reducing acetic acid-induced writhing behavior. Corydine has also demonstrated the ability to inhibit the proliferation of various cancer cells and immune cells, making it a valuable reagent for research into HIV infection, visceral pain, and various cancers including leukemia, melanoma, bladder cancer, and colon adenocarcinoma.
  9. HIV-1 Capsid Protein Inhibitor

    I-XW-053 is a specific inhibitor of the HIV-1 capsid protein, demonstrating antiviral activity by disrupting the interaction at the N-terminal domain interface (NTD-NTD) of the capsid protein. It effectively suppresses the replication of HIV-189BZ167 with an IC50 value of 164.2 μM. This compound serves as a valuable tool for researchers investigating HIV-1 pathogenesis and potential therapeutic approaches targeting viral replication.
  10. HIV protease Inhibitor

    Telinavir is a potent and selective inhibitor of HIV protease. It effectively inhibits various strains of HIV-1, HIV-2, and simian immunodeficiency virus at EC50 values of 26 ng/mL (43 nM). With a high degree of protein binding in human plasma and minimal partitioning into erythrocytes, Telinavir serves as a valuable tool in HIV research and therapeutic development.
  11. Topo IIKHIV Inhibitor

    2,4-Dihydroxypyridine is an effective inhibitor of Topoisomerase IIK HIV, demonstrating a pIC50 of 5.05 against this target. Additionally, it displays antiviral activity against HIV-1 replication with a pIC50 of 4.07. This compound is useful for research into HIV treatment strategies and topoisomerase mechanisms.
  12. HIV-1 Inhibitor

    Fipravirimat is a potent inhibitor of HIV-1 replication, targeting the viral protein's function. It exhibits significant antiviral activity, showing efficacy in blocking viral entry and replication. This compound is applicable for research focused on HIV and AIDS, providing valuable insights into therapeutic strategies against these infections.
  13. HIV-1 Inhibitor

    NBD-14270 is a potent HIV-1 entry antagonist that specifically targets the gp120 protein of the virus. With an IC50 of 180 nM, it exhibits significant antiviral activity against various HIV-1 Env-pseudotyped virus strains. Additionally, NBD-14270 demonstrates low cytotoxicity, with a CC50 exceeding 100 μM, making it a valuable candidate for research applications in HIV-1 inhibition.
  14. HIV 1 Inhibitor

    HIV-1 inhibitor-8 is a potent oral non-nucleoside reverse transcriptase inhibitor (NNRTI) targeting HIV-1. It demonstrates exceptional antiviral activity across various HIV-1 strains, with an EC50 range of 4.44 to 54.5 nM. Additionally, HIV-1 inhibitor-8 has an IC50 of 0.081 µM against wild-type HIV-1 reverse transcriptase, indicating its potential utility in HIV research and therapeutic applications.
  15. HIV-1 Reverse Transcriptase Inhibitor

    Reverse transcriptase-IN-1 is a potent inhibitor of HIV-1 reverse transcriptase, classified as a diarylbenzopyrimidine (DABP) analogue. It exhibits significant antiviral activity, with effective concentration (EC50) values of 3.4 nM, 4.3 nM, and 3.6 nM against HIV-1 strains IIIB, E138K, and K103N, respectively. Additionally, it demonstrates an inhibitory concentration (IC50) of 13.7 nM on the HIV-1 reverse transcriptase enzyme, making it a valuable tool for research in HIV therapeutic development.
  16. HIV Inhibitor

    3′-Azido-2′,3′-dideoxyuridine is a nucleoside analog primarily targeting human immunodeficiency virus (HIV) replication. It exhibits significant antiviral activity in human peripheral blood mononuclear cells (PBMC) while demonstrating minimal toxicity to human bone marrow cells (BMC). In addition to its role as an HIV inhibitor, 3′-Azido-2′,3′-dideoxyuridine serves as a click chemistry reagent, containing an azide group that facilitates copper-catalyzed azide-alkyne cycloaddition (CuAAc) reactions with alkyne-containing molecules, as well as strain-promoted alkyne-azide cycloaddition (SPAAC) reactions with DBCO or BCN groups.
  17. HIV Inhibitor

    Wilfortrine is a bioactive sesquiterpene alkaloid that serves as an HIV inhibitor through its immunosuppressive properties. This compound demonstrates significant anti-HIV activity, making it valuable for research focused on virology and immunology. Additionally, Wilfortrine has been shown to inhibit leukemia cell growth in murine models, indicating its potential utility in cancer research.
  18. HIV-1 Inhibitor

    Fosdevirine serves as a potent, selective non-nucleoside reverse transcriptase inhibitor (NNRTI) targeting human immunodeficiency virus type 1 (HIV-1). It exhibits low nanomolar activity in vitro and demonstrates efficacy against a diverse range of HIV-1 strains, including those resistant to efavirenz. This characteristic makes Fosdevirine a valuable tool for research focused on HIV-1 replication and resistance mechanisms.
  19. HIV Inhibitor

    HIV-1 inhibitor-48 is a novel non-nucleoside reverse transcriptase inhibitor (NNRTI) that targets the reverse transcriptase enzyme of HIV-1. This compound demonstrates significant anti-HIV-1 activity, making it a valuable tool for research focused on viral replication and treatment strategies. Its unique mechanism of action offers potential insights into the development of effective therapies for HIV-1 infections.
  20. HIV-1 Reverse Transcriptase Inhibitor

    Atevirdine is a potent non-nucleoside HIV-1 reverse transcriptase inhibitor that specifically targets the reverse transcriptase enzyme. By inhibiting this enzyme, Atevirdine effectively disrupts viral replication, thereby reducing HIV-1 viral load. This compound is useful in research focused on HIV-1 treatment strategies and the development of antiretroviral therapies.
  21. HIV-1 Inhibitor

    IMB-301 is a selective inhibitor of HIV-1 replication that targets the interaction between human APOBEC3G (hA3G) and viral protein Vif. By disrupting this interaction, IMB-301 prevents Vif-mediated degradation of hA3G, a crucial restriction factor in HIV-1 replication. With an IC50 value of 8.63 µM, IMB-301 effectively inhibits HIV-1 replication in H9 cells, making it a valuable tool for studying HIV-1 biology and developing antiviral strategies.
  22. HIV-1 RT Inhibitor

    Tenofovir diphosphate triethylamine is an inhibitor of HIV-1 reverse transcriptase, exhibiting a Ki value of 1.55 μM for DNA and 0.022 μM for RNA. This antiretroviral compound is a valuable tool in the study of HIV replication and resistance, facilitating research into the mechanisms of AIDS pathology and treatment strategies. Its potent inhibitory activity supports the development of therapeutic approaches aimed at curbing HIV infection.
  23. HIV-1 Inhibitor

    AzddMeC is a potent, selective nucleoside analogue that functions as an inhibitor of HIV-1 reverse transcriptase, effectively blocking HIV-1 replication. The compound demonstrates strong antiviral activity, with EC50 values of 9 nM in HIV-1-infected human peripheral blood mononuclear cells and 6 nM in HIV-1-infected human macrophages. In addition to its antiviral properties, AzddMeC serves as a versatile click chemistry reagent, containing an azide group that enables copper-catalyzed azide-alkyne cycloaddition (CuAAc) and strain-promoted alkyne-azide cycloaddition (SPAAC) with alkyne- and DBCO- or BCN-containing molecules, respectively, making it a valuable tool in chemical biology research.
  24. HIV Inhibitor

    Pentosan Polysulfate is an orally bioavailable sulfonated polysaccharide that acts as an HIV inhibitor by interfering with viral attachment to host cells. Its potent and selective anti-HIV activity positions it as a valuable compound for HIV research. Additionally, Pentosan Polysulfate possesses anti-inflammatory and pro-chondrogenic properties, making it relevant for studies related to interstitial cystitis.
  25. HIV-1 RT Inhibitor

    Tenofovir diphosphate is a potent inhibitor of HIV-1 reverse transcriptase, with a Ki of 1.55 μM for DNA and 0.022 μM for RNA. This active metabolite of tenofovir demonstrates significant antiretroviral activity, making it a valuable tool for studying HIV replication and pathogenesis. Tenofovir diphosphate is utilized in research focused on AIDS and the development of effective therapies targeting HIV-1.
  26. HIV Replication Inhibitor

    Triptonine B is a sesquiterpene pyridine alkaloid that functions as an HIV replication inhibitor. It demonstrates potent antiviral activity in H9 lymphocytes, with an EC50 value of less than 0.10 μg/mL. This compound is applicable in research focusing on HIV biology and the development of therapeutic strategies against HIV infection.
  27. HIV-1 Entry Inhibitor

    BMS-818251 is a highly potent small-molecule inhibitor that targets HIV-1 entry, exhibiting an EC50 value of 0.019 nM. Its superior efficacy is demonstrated by over 10-fold increased potency compared to related compounds across a diverse panel of 208 HIV-1 strains. BMS-818251 enhances its inhibitory effects by interacting with conserved gp120 residues, specifically the β20-β21 hairpin, making it a valuable tool for research in HIV resistance and therapeutics.
  28. HIV-1 RT Inhibitor

    HIV-1 inhibitor-69 is a potent inhibitor of HIV-1 reverse transcriptase (RT), a critical enzyme in the viral replication process. This compound effectively disrupts the reverse transcription of viral RNA into DNA, thereby inhibiting viral propagation. It is primarily utilized in research focused on HIV-1 pathogenesis and the development of antiretroviral therapies.
  29. HIV Inhibitor

    12-Bromododecanoic acid is a bromo fatty acid that acts as an inhibitor of HIV replication. It has demonstrated efficacy in reducing HIV replication in CEM-SS T cells with an EC50 of 38 µM. This compound can also be utilized in the synthesis of clickable derivatives of myristic acid, highlighting its versatility in chemical research related to viral inhibition and fatty acid modification.
  30. HIV Inhibitor

    HIV-1 Inhibitor-10 is a potent nanomolar inhibitor targeting the maturation process of HIV-1. This compound disrupts viral assembly, thereby preventing viral replication. It serves as an important research tool for studies focused on HIV biology and the development of novel therapeutic strategies against HIV-1 infections.
  31. Non-nucleotide HIV Reverse Transcriptase Inhibitor

    Ainuovirine is a second-generation non-nucleoside HIV reverse transcriptase inhibitor (NNRTI) that targets HIV reverse transcriptase. By non-competitively binding to the enzyme, Ainuovirine effectively disrupts the reverse transcription of viral RNA, thereby inhibiting HIV replication. This compound is utilized in research focused on human immunodeficiency virus (HIV) type 1 infection.
  32. HIV-1 Integrase Inhibitor

    GSK3739936 is a potent allosteric inhibitor of HIV-1 integrase, exhibiting an IC50 value of 11.1 nM and an EC50 of 1.7 nM. In addition to its inhibitory effects, GSK3739936 demonstrates weak inhibition of cytochrome P450 enzymes (IC50 > 24.3 μM). This compound also showcases favorable pharmacokinetic properties in preclinical models, characterized by rapid absorption, low to moderate clearance rates, and excellent oral bioavailability, making it a promising candidate for further research in HIV therapeutics.
  33. HIV-1 Inhibitor

    NBD-14189 is a potent HIV-1 entry antagonist that demonstrates an IC50 of 89 nM against the HIV-1 HXB2 pseudovirus. This compound targets the HIV-1 gp120 protein, effectively inhibiting viral entry and showcasing notable antiviral activity with an EC50 of less than 200 nM. NBD-14189 is suitable for research applications focusing on HIV-1 entry mechanisms and antiviral drug development.
  34. HIV-1 Inhibitor

    HIV-1 inhibitor-33 is a highly selective inhibitor targeting HIV-1 with an EC50 value of 8.6 nM, demonstrating significant potency against viral replication. With a CC50 of 18 μM in MT-4 cells, this compound presents a favorable safety profile for research. It is suitable for studies focused on AIDS research and the development of antiviral therapies.
  35. HIV-1 Protease Inhibitor

    DPC 684 is a highly selective HIV-1 protease inhibitor that demonstrates potent inhibitory activity with an IC90 ranging from 5.7 to 40 nM and a Ki value of 0.021 nM. By competitively inhibiting HIV-1 protease, it effectively blocks the cleavage of viral polyproteins, thereby disrupting viral replication. DPC 684 exhibits low protein binding and offers broad-spectrum inhibition against various wild-type and mutant strains of HIV-1, making it a valuable tool for research in HIV biology and therapeutic development.
  36. HIV-1 Inhibitor

    GSK3532795 hydrochloride is a potent, orally bioavailable second-generation inhibitor targeting HIV-1 maturation. It demonstrates strong antiviral activity with EC50 values of 1.9 nM against HIV-1 wild type, 10.2 nM in human serum, and 2.7 nM and 13 nM for the HIV-1 V370A and ΔV370 variants, respectively. This compound is valuable for research applications focused on the pathogenesis and treatment of HIV-1 infections.
  37. HIV-1 Inhibitor

    HIV-1 inhibitor-51 is a non-nucleoside reverse transcriptase inhibitor (NNRTI) that targets the reverse transcriptase enzyme of HIV-1, demonstrating potent antiviral activity against both wild-type and mutant strains. It exhibits a high binding affinity with a KD of 2.50 μM and shows significant inhibitory potency with an IC50 of 0.03 μM against wild-type HIV-1 reverse transcriptase. Additionally, HIV-1 inhibitor-51 has effective EC50 values ranging from 2.22 to 53.3 nM against a range of clinically relevant mutant strains, making it a valuable tool for research in HIV-1 drug resistance and antiviral drug development.
  38. HIV Inhibitor

    Neotripterifordin is an inhibitor of HIV replication, demonstrating significant antiviral activity. This compound exhibits an EC50 of 25 nM in H9 lymphocyte cells, indicating its potency against HIV. Neotripterifordin is valuable for research applications focused on understanding HIV pathogenesis and developing potential therapeutic strategies.
  39. HIV-1 Integrase Inhibitor

    S 1360 is a potent and selective inhibitor of HIV-1 integrase, effectively disrupting its catalytic activity with an IC50 of 20 nM. This compound exhibits antiviral activity against both X4 and R5 tropic strains of HIV-1, including variants resistant to NRTIs, NNRTIs, and PIs. In MTT assays using HIV-1 IIIB-infected MT-4 cells, S 1360 shows an EC50 of 200 nM and a CC50 of 12 μM, making it a valuable reagent for research in HIV-1 treatment and resistance mechanisms.
  40. HIV Inhibitor

    Droxinavir hydrochloride is an antiviral compound that acts as an HIV protease inhibitor. This compound significantly impedes viral replication by inhibiting the enzymatic activity essential for HIV maturation. Droxinavir hydrochloride is primarily utilized in research related to HIV infection and the development of antiviral therapies. Its role in protease inhibition makes it a valuable tool in studying HIV life cycle and resistance mechanisms.
  41. HIV-1 IN Chain Transfer Inhibitor

    L-870810 is a potent inhibitor of HIV-1 integrase (IN) chain transfer, effectively interfering with the integration of viral DNA into the host genome. This compound exhibits significant antiviral activity, making it a valuable tool for researchers studying HIV-1 replication and potential therapeutic strategies. Its mechanism of action positions it as a key reagent for investigations into HIV-1 pathogenesis and drug development.
  42. HIV-1 Entry Inhibitor

    RPR103611 is a derivative of betulinic acid that functions as a potent HIV-1 entry inhibitor. It displays IC50 values of 80 nM for CCR5-tropic virus YU2, 0.27 nM for CXCR4-tropic virus NL4-3, and 0.17 nM for dual tropic virus 89.6. This compound is valuable for research focused on the mechanisms of HIV-1 entry and the development of antiviral therapies.
  43. HIV-1 Inhibitor

    HIV-1 Inhibitor-16 is a potent inhibitor targeting HIV-1 with an EC50 value of 1.3 nM against wild-type strains. This compound also demonstrates significant activity against various resistant strains, including HIV-1 K103N, E138K, Y181C, and L100I, with EC50 values of 5.4 nM, 9.2 nM, 22 nM, and 35 nM, respectively. Its favorable solubility profile and stability in liver microsomes make it a valuable tool for research, while its minimal interaction with CYP enzymes reduces concerns regarding toxicity. This compound is ideally suited for studies focused on HIV-1 resistance and treatment strategies.
  44. HIV-1 Inhibitor

    HIV-1 inhibitor-71 is a targeted inhibitor of HIV-1 that interferes with the transport of endocytosed HIV-1 particles into nuclear envelope invaginations (NEIs). This action effectively disrupts the viral entry process, thereby inhibiting productive infection. This compound is valuable for research applications focused on HIV-1 infection mechanisms and the development of novel antiviral strategies.
  45. HIV-1 RNase H Inhibitor

    HIV-1 integrase inhibitor 9 is a potent inhibitor of HIV-1 RNase H, exhibiting an IC50 of 12.3 μM. This compound demonstrates significant antiviral activity, making it a valuable tool for research into HIV-1 replication and potential therapeutic strategies. Its role in inhibiting viral enzyme function supports the investigation of novel antiviral agents targeting HIV-1.
  46. HIV REV/RRE Binding Inhibitor

    Fleephilone is a fungal metabolite derived from Trichoderma harzianum that acts as an HIV REV/RRE binding inhibitor. It effectively disrupts the interaction between the REV protein and RRE RNA, exhibiting an IC50 value of 7.6 μM. This compound is valuable for research focused on HIV replication mechanisms and the development of antiviral strategies targeting RNA-protein interactions.
  47. HIV Inhibitor

    HIV-1 inhibitor-36 is a potent inhibitor targeting HIV-1, exhibiting significant antiviral activity against the virus. It has potential applications in the development of novel latency-reversing agents, making it a valuable tool for research in HIV treatment and eradication strategies. This compound may facilitate the understanding of viral latency and aid in the advancement of therapeutic approaches to HIV infection.
  48. HIV-1 Reverse Transcriptase Inhibitor

    HI-236 is a potent non-nucleoside inhibitor of HIV-1 reverse transcriptase, effectively disrupting the replication of the HIV virus. It demonstrates exceptional antiviral activity, with an IC50 value of less than 0.001 μM against wild-type HTLVIIIB. This compound is primarily utilized in HIV research, particularly in the development of antiretroviral therapies.
  49. HIV Inhibitor

    F1839-I is an HIV inhibitor derived from the fungus Stachybotrys. It exhibits anti-HIV activity with an IC50 value of 15.6 μM, demonstrating its potential in therapeutic applications against HIV infection. Additionally, F1839-I has shown weak cytotoxicity, supporting its feasibility for further research in antiviral drug development.
  50. HIV-1 Inhibitor

    VIRIP, derived from human α1-AT(353-372), functions as an inhibitor of HIV-1 by targeting the gp41 fusion peptide. It prevents the entry of HIV-1 into host cells, thereby disrupting the viral lifecycle. This reagent is applicable in virology research and studies focused on HIV-1 entry mechanisms.

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