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Catalog No.
Product Name
Application
Product Information
Citations
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SIRT Inhibitor
Nicotinamide is a form of vitamin B3 or niacin. Nicotinamide Hydrochloride inhibits SIRT2 activity (IC50: 2 μM). Nicotinamide also inhibits SIRT1. Nicotinamide increases cellular NAD+, ATP, ROS levels. Nicotinamide inhibits tumor growth and improves survival. Nicotinamide also has anti-HBV activity. -
HBV Inhibitor
Isoscopoletin, also known as 6-Hydroxy-7-methoxycoumarin, primarily inhibits hepatitis B virus (HBV) replication. It demonstrates significant cytotoxic effects against human CCRF-CEM leukaemia cells and their multidrug-resistant subline, with IC50 values of 4.0 μM and 1.6 μM, respectively. Additionally, Isoscopoletin exhibits anti-inflammatory properties by modulating the MAPK/NF-κB/STAT/AKT signaling pathways, making it a valuable compound for research in virology and cancer biology. -
HBV Inhibitor
Adefovir is an adenosine monophosphate analog that targets HBV DNA polymerase, exerting its inhibitory effects through conversion to Adefovir diphosphate within cells. Demonstrating an IC50 of 0.7 μM against Hepatitis B Virus (HBV) in the HepG2.2.15 cell line, Adefovir exhibits strong antiviral properties against HBV and other herpesviruses. It is a valuable reagent for research into antiviral therapies and HBV-related studies. -
HIV/HBV Inhibitor
Emtricitabine triphosphate tetrasodium salt is the tetrasodium salt form of Emtricitabine triphosphate, a phosphorylated metabolite of Emtricitabine. This compound functions as a nucleoside reverse transcriptase inhibitor, effectively targeting both HIV and HBV. Emtricitabine triphosphate tetrasodium salt is utilized in research applications focused on antiviral drug development and the mechanisms of viral replication. -
HBV Inhibitor
Vebicorvir is a first-generation inhibitor targeting the hepatitis B virus (HBV) core protein. It effectively suppresses the formation of covalently closed circular DNA (cccDNA) in various de novo infection models, demonstrating effective inhibition with EC50 values ranging from 1.84 μM to 7.3 μM. This compound is valuable for research applications focused on developing therapeutic strategies against HBV infections. -
HBV Inhibitor
Inarigivir ammonium is a potent HBV inhibitor that functions as a RIG-I (Retinoic acid-inducible gene-I) agonist, stimulating the innate immune response to combat hepatitis B virus infection. This compound has demonstrated effectiveness in significantly reducing liver HBV DNA levels in transgenic mouse models. Due to its mechanism of action, Inarigivir ammonium is positioned as a valuable tool for research in antiviral therapies and the study of hepatitis B virus dynamics. -
HBV Inhibitor
5-O-(E)-p-Coumaroylquinic acid is a quinic acid derivative that serves as a potent inhibitor of hepatitis B virus (HBV). This compound exhibits significant antiviral activity, making it a valuable tool for research into HBV pathogenesis and therapeutic strategies. Its unique structural properties may provide insights into the development of novel antiviral agents targeting viral replication. -
HBV Inhibitor
Schisantherin C is a potent inhibitor of hepatitis B virus (HBV) with demonstrated efficacy in reducing hepatocyte secretions of HBsAg and HBeAg by 59.7% and 34.7%, respectively, at a concentration of 50 μg/mL. This compound holds potential for research applications aimed at understanding HBV pathogenesis and developing effective antiviral therapies. -
HBV Inhibitor
ALG-001075 functions as a capsid assembly modulator (CAM) and serves as an orally active inhibitor of hepatitis B virus (HBV). This compound effectively inhibits HBV DNA production, along with extracellular HBsAg/HBeAg and intracellular HBV RNA in primary human hepatocytes. In the AAV-HBV mouse model, ALG-001075 demonstrates significant reductions in circulating HBV DNA. It is valuable for research applications focused on chronic hepatitis B (CHB). -
HBV Inhibitor
SAG-524 is a highly effective small molecule inhibitor targeting hepatitis B virus (HBV) replication. It demonstrates significant antiviral activity, reducing HBV-DNA and HBsAg levels in supernatants of HepG2.2.15 cells, with IC50 values of 0.92 nM and 1.4 nM, respectively. SAG-524 is valuable for research focused on HBV biology and therapeutic development for liver diseases associated with viral infections. -
HBV Capsid Inhibitor
AB-836 is an orally active inhibitor of the hepatitis B virus (HBV) capsid, targeting the HBV core protein to impede viral replication. This compound is valuable for research focused on chronic hepatitis B, offering insights into antiviral strategies and mechanisms of HBV pathogenesis. Researchers can utilize AB-836 to explore its potential therapeutic applications in HBV-related studies. -
HBV Inhibitor
Xalnesiran sodium is a small interfering RNA (siRNA) designed to inhibit hepatitis B virus (HBV) replication. It provides a valuable tool for researching chronic HBV infections and understanding the virus's biology. This compound is particularly relevant in studies aimed at developing therapeutic strategies for managing HBV-related diseases. -
HBV Inhibitor
CCC-0975 is a selective inhibitor of the hepatitis B virus (HBV), demonstrating an EC50 of 10 μM. This compound effectively disrupts the conversion of relaxed circular DNA (rcDNA) to covalently closed circular DNA (cccDNA), leading to a reduction in both cccDNA and its precursor, deproteinized rcDNA (DP-rcDNA), without inducing their degradation within the cell. CCC-0975 is a valuable tool for research focused on chronic hepatitis B and its associated mechanisms. -
Anti-HBV Inhibitor
IR415 is a potent inhibitor of hepatitis B virus (HBV) replication, primarily functioning by blocking the activity of the HBx protein. It exhibits a high affinity for HBx with a dissociation constant (Kd) of 2 nM, effectively disrupting HBV-mediated RNA interference suppression. By reversing the inhibitory effects of HBx on the dicer endoribonuclease, IR415 serves as a valuable reagent for research into antiviral strategies and mechanisms of HBV pathology. -
HBV Inhibitor
Torcitabine, also known as 2'-Deoxy-L-cytidine, is an antiviral compound targeting hepatitis B virus (HBV) replication. It demonstrates significant inhibitory activity against HBV, making it a valuable agent in the research and development of treatments for chronic HBV infections. Its mechanism of action involves incorporation into viral DNA, effectively disrupting viral replication and propagation. -
HBV Inhibitor
CYP1A1 inhibitor 8a is a selective inhibitor of the CYP1A1 enzyme, showing over 10-fold selectivity for its target and greater than 100-fold selectivity against other CYP1 subfamily enzymes. This compound effectively antagonizes benzo[a]pyrene (B[a]P)-mediated activation of the aryl hydrocarbon receptor (AhR) in yeast models and demonstrates protective effects against CYP1A1-mediated B[a]P cytotoxicity in human cells. Due to its significant inhibitory properties, CYP1A1 inhibitor 8a holds promise as a potential agent for cancer chemoprevention. -
HBV Inhibitor
Neochlorogenic acid methyl ester is an HBV inhibitor that functions as a selective inducer of quinone reductase (EC50 = 6.7 μM) while demonstrating potent hydroxyl radical scavenging activity (EC50 = 0.81 μM). This compound plays a critical role in antioxidant defense by donating electrons or hydrogen atoms to neutralize hydroxyl radicals, thereby promoting carcinogen detoxification. Neochlorogenic acid methyl ester is utilized in research investigating antioxidant damage and metabolic detoxification, particularly within the contexts of cancer chemotherapy and diseases related to oxidative stress. This compound is derived from the flower buds of *L. japonica*. -
HBV Inhibitor
Tiviciclovir is a guanosine analog that acts as a selective inhibitor of hepatitis B virus (HBV). Its primary mechanism involves interfering with viral replication, making it a valuable tool in the study of HBV-associated diseases. This compound is primarily utilized in research focused on antiviral therapy and the development of treatments for chronic hepatitis B infections. -
HBV Inhibitor
2'-Deoxy-L-adenosine is a potent inhibitor of hepatitis B virus (HBV) replication, targeting the viral polymerase with high specificity and selectivity. This compound functions as a synthon for modified oligodeoxyribonucleotides, making it a valuable tool for research focused on HBV and related hepatotropic viruses, including woodchuck and duck hepatitis viruses. Its ability to interfere with viral replication positions it as a significant reagent in studies aimed at understanding and developing therapies for HBV infections. -
HBV Inhibitor
Besifovir Dipivoxil maleate is a potent HBV inhibitor acting as an oral proagent of LB80317. It demonstrates significant efficacy in suppressing hepatitis B virus (HBV) DNA in both treatment-naive and lamivudine-resistant chronic hepatitis B (CHB) patient populations. This compound is valuable for research into therapeutic strategies for managing chronic hepatitis B infections. -
HBV Inhibitor
HBV-IN-46 is a potent inhibitor of Hepatitis B virus (HBV) S-antigen, demonstrating an EC50 value of 2.6 nM. This active metabolite is valuable for research related to HBV infection and presents a promising tool in the development of antiviral therapies targeting HBV. Its specificity and efficacy make it a useful reagent for studying viral replication and host-pathogen interactions in HBV-related research. -
HBV Inhibitor
HBV-IN-43 is a potent inhibitor of Hepatitis B Virus (HBV) replication. This compound demonstrates strong antiviral activity by targeting key viral processes, making it a valuable tool for research into HBV pathogenesis and therapeutic strategies. Its efficacy in inhibiting HBV provides insights into the development of antiviral therapies for Hepatitis B infection. -
HBV Inhibitor
HBV-IN-41 is a potent inhibitor of the Hepatitis B Virus (HBV), exhibiting a remarkable EC50 of 0.027 μM. This orally active compound effectively targets viral replication, making it a valuable tool for research into HBV pathogenesis and potential therapeutic interventions. Its efficacy positions it as a significant reagent for studies aimed at developing new antiviral strategies against HBV. -
HBV Inhibitor
Valtorcitabine dihydrochloride is a prodrug of L-deoxycytidine with targeted activity against hepatitis B virus (HBV). It functions as an HBV inhibitor, effectively reducing viral replication and promoting antiviral responses. This compound is primarily utilized in research focusing on HBV infection and the development of therapeutic strategies for managing viral hepatitis. -
HBV Inhibitor
AT-61 is a non-nucleoside inhibitor that targets Hepatitis B virus (HBV) replication. It disrupts the formation of the capsid necessary for pre-genomic RNA, leading to the generation of empty capsids. This compound demonstrates efficacy against drug-resistant HBV mutant strains and is suitable for research focused on HBV infection mechanisms and therapeutic strategies. -
HBV Inhibitor
Xalnesiran is a small interfering RNA (siRNA) specifically designed to inhibit hepatitis B virus (HBV) replication. By targeting and degrading HBV RNA, it plays a crucial role in reducing viral load and the associated liver pathology. Xalnesiran is valuable for research applications focused on chronic hepatitis B treatment strategies and the investigation of RNA interference mechanisms in viral infections. -
HBV Inhibitor
Glaziovine is an antiviral compound derived from Hypserpa nitida, specifically targeting hepatitis B virus (HBV). It demonstrates potent inhibitory activity against HBV, effectively suppressing the secretion of hepatitis B virus surface antigen (HBsAg) in Hep G2.2.15 cells, with an IC50 value of 8 nM. This reagent is valuable for research into antiviral therapies and the mechanisms of HBV infection. -
HBV Inhibitor
Oxynitidine is an HBV inhibitor that demonstrates potent activity against Hepatitis B virus DNA replication, with an ID50 of 30.8 µg/mL. This compound serves as a valuable tool for investigating viral infections and can be utilized in the development of therapeutic interventions targeting HBV. -
HBV/HDV Inhibitor
HBV/HDV-IN-3 is a dual inhibitor targeting Hepatitis B Virus (HBV) and Hepatitis D Virus (HDV), demonstrating an effective EC50 of less than 50 nM against HBV. This compound shows significant antiviral activity and is suitable for research applications focused on the development of therapeutics for HBV and HDV infections. Its effectiveness in inhibiting both viruses makes it a valuable tool for exploring antiviral strategies. -
HBV Inhibitor
AB-506 is an orally bioavailable inhibitor of hepatitis B virus (HBV) replication that targets the viral core protein. By binding to the HBV core protein, AB-506 facilitates capsid assembly and inhibits the encapsidation of HBV pgRNA. This compound is intended for use in research related to chronic hepatitis B (CHB) and provides a valuable tool for studies on viral replication mechanisms and potential therapeutic interventions. -
HBV Capsid Inhibitor
(S)-Canocapavir is an isomer of the antiviral agent Canocapavir, specifically targeting the HBV core protein. It functions as an HBV capsid inhibitor by binding to the hydrophobic pocket at the dimer-dimer interface of the HBV core protein (HBc). This binding promotes the intracellular accumulation of nonfunctional HBV capsids, thereby disrupting viral replication and interfering with the interaction between HBc and the HBV large surface protein. (S)-Canocapavir is relevant for research into hepatitis B virus (HBV) infection and its associated pathologies. -
HBV/HDV Inhibitor
HBV/HDV-IN-4 hydrochloride is a dual inhibitor targeting both Hepatitis B virus (HBV) and Hepatitis D virus (HDV), demonstrating potent activity with an EC50 of less than 50 nM against HBV. This compound serves as a valuable tool for investigating therapeutic strategies in viral hepatitis research and offers potential for the development of antiviral agents against these challenging infections. -
HBV Inhibitor
Apigenin-4'-α-L-rhamnoside is a potent inhibitor of Hepatitis B virus (HBV) primarily targeting the secretion of HBV surface antigen (HBsAg). This compound has demonstrated significant efficacy in reducing HBsAg levels in HepG2.2.15 cell lines. Its application in research facilitates the exploration of HBV pathogenesis and potential therapeutic strategies for hepatotropic viral infections. -
HBV-DNA Inhibitor
Oleana-2,12-dien-28-oic acid is a potent HBV-DNA inhibitor that also targets HBsAg and HBeAg. This compound demonstrates significant antiviral activity, making it a valuable tool for studying hepatitis B virus infections. It is suitable for research applications focused on the mechanisms of HBV replication and potential therapeutic interventions. -
HBV Inhibitor
(-)-Carbovir is a potent inhibitor of Hepatitis B virus (HBV) replication. It exhibits antiviral activity by specifically targeting and interfering with HBV polymerase, thereby disrupting viral nucleic acid synthesis. This compound is primarily used in research contexts focused on developing therapeutic strategies for HBV infections and understanding the mechanisms of viral resistance. -
HBV Inhibitor
Bentysrepinine is an orally active inhibitor of the hepatitis B virus (HBV) that exhibits potent antiviral activity. It demonstrates favorable pharmacokinetic properties, with notable bioavailability across different species, including rats, dogs, and monkeys, and shows no accumulation in monkeys after 90 days of administration. This compound is being investigated for its potential applications in antiviral therapies and hepatitis research. -
HBV Inhibitor
HBV-IN-6 is a potent inhibitor of Hepatitis B Virus (HBV) with an EC50 value of 44 nM. This compound effectively interferes with viral replication, making it a valuable tool for research focused on HBV-related mechanisms and therapeutic strategies. Its efficacy underscores its potential application in developing effective treatments for HBV infections. -
HBV Inhibitor
Antiviral Agent 38 is a potent inhibitor of the hepatitis B virus (HBV). This compound demonstrates significant antiviral activity, making it a valuable tool for research on HBV infections and their associated pathologies. Its efficacy positions it as an important reagent for studying HBV biology and potential therapeutic interventions. -
HBV DNA Inhibitor
HBV-IN-38 is an HBV DNA inhibitor, exhibiting an effective concentration (EC50) of ≤100 nM. This compound is primarily utilized in research to investigate the mechanisms of hepatitis B virus (HBV) infections and to evaluate potential therapeutic interventions against HBV replication. -
HBV Inhibitor
Rolicyprine is a potent inhibitor of Hepatitis B Virus (HBV) that also exhibits neuroprotective activity. It has been shown to alleviate depressive symptoms and promote neuroregeneration, making it relevant for neuropsychiatric research. Additionally, Rolicyprine demonstrates potential in alleviating anxiety, indicating its applicability in studies related to mood disorders and HBV infections. -
HBV Inhibitor
Erythrocentaurin is a natural compound that acts as an inhibitor of the hepatitis B virus (HBV). It exhibits potent antiviral activity, making it a promising candidate for research focused on HBV treatment and management. This compound can be utilized in studies aimed at understanding the mechanisms of HBV replication and the development of novel therapeutic strategies. -
HIV/HBV Inhibitor
L-Fd4A is an adenine derivative that inhibits both human immunodeficiency virus (HIV) and hepatitis B virus (HBV) with effective concentrations (EC50) of 1.5 μM and 1.7 μM, respectively. This compound demonstrates promising antiviral activity while exhibiting low cytotoxicity, making it suitable for research applications in studying HIV and HBV inhibition mechanisms. -
HBV Inhibitor
HBV-IN-37 is a selective inhibitor of Hepatitis B virus (HBV) with an EC50 value of 10 μM. This compound demonstrates significant antiviral activity, making it a valuable tool for researching therapeutic strategies against HBV infection. HBV-IN-37 is useful in elucidating the mechanisms of HBV replication and can serve as a lead compound in the development of antiviral agents targeting HBV. -
HBV Inhibitor
Yhhu6669 is a potent inhibitor of Hepatitis B Virus (HBV), targeting HBV DNA replication. It functions by inducing the formation of DNA-free capsids, effectively reducing HBV levels. In preclinical studies using AAV/HBV-infected mouse models, Yhhu6669 demonstrated significant decreases in both HBV DNA and HBcAg. Additionally, it exhibits favorable pharmacokinetic properties, making it a valuable tool for research in HBV therapeutic development. -
HBV Inhibitor
HBV-IN-7 is a potent inhibitor of Hepatitis B Virus (HBV) with an EC50 of 7 nM. This compound effectively interferes with viral replication, making it a valuable tool for researching HBV pathogenesis and therapeutic interventions. Its strong antiviral activity supports applications in the development of treatments for chronic hepatitis B infections. -
HBV Inhibitor
HBV-IN-8 is a potent inhibitor of hepatitis B virus (HBV) with an effective concentration (EC50) of 287.9 nM. This compound offers significant antiviral activity, making it a valuable tool for research applications focused on HBV infection and treatment mechanisms. HBV-IN-8 is suitable for investigations into the efficacy of antiviral agents in the pursuit of therapeutic strategies against HBV-related diseases. -
HBV Inhibitor
GS-8873 is an orally active inhibitor targeting hepatitis B virus (HBV) surface antigen (HBsAg) production, exhibiting an EC50 of 4 nM. This compound demonstrates favorable pharmacokinetic properties in rat models and shows metabolic stability in human hepatocytes. While GS-8873 effectively suppresses HBV, it has been associated with neurofunctional deficits in both rats and cynomolgus monkeys, making it a subject of interest for further research into its biological effects and therapeutic potential. -
HBV Inhibitor
(Rac)-AB-423 is a novel inhibitor targeting hepatitis B virus (HBV) with demonstrated antiviral activity. This compound has shown no induction of CYP1A2, CYP3A4, or CYP2B6 enzymes at elevated concentrations, indicating a favorable safety profile. Additionally, (Rac)-AB-423 exhibits advantageous pharmacokinetic characteristics, including high oral bioavailability and systemic exposure. In preclinical studies using a hydrodynamic injection HBV mouse model, (Rac)-AB-423 achieved a viral load reduction exceeding 2 log, highlighting its potential for therapeutic applications in HBV management. -
HBV Inhibitor
HBV-IN-20 is a potent oral active inhibitor of Hepatitis B Virus (HBV), functioning primarily as a type II core protein assembly modulator (CpAM). With an EC50 of 0.46 µM, HBV-IN-20 disrupts the assembly of HBV core particles, thereby impeding viral replication. This compound is particularly valuable for research applications focused on antiviral therapy and understanding HBV biology. -
HBV Inhibitor
AB-161 is an orally active HBV RNA destabilizer and a selective inhibitor of poly(A) polymerase domain-containing proteins 5 and 7 (PAPD5/7), primarily targeting hepatic tissues. This compound is effective in treating Hepatitis B Virus (HBV) infections by significantly reducing the levels of Hepatitis B surface antigen (HBsAg), with an EC50 value of 2.2 nM for HBsAg. AB-161 is a valuable tool for research applications focused on understanding and addressing HBV infection.

