Nucleoside Antimetabolite/Analog

Items 151-200 of 1704

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  1. Purine Nucleoside Analog

    3-O-(4-Methoxybenzyl)-4-C-hydroxymethyl-1,2-O-isopropylidine-alpha-D-ribofuranose is a purine nucleoside analog that exhibits significant anticancer activity. It primarily targets indolent lymphoid malignancies through mechanisms such as the inhibition of DNA synthesis and the induction of apoptosis. This compound is valuable for research focusing on cancer therapeutics and the underlying molecular pathways involved in tumor progression.
  2. Purine Nucleoside Analog

    2′-Azido-5′-O-[bis(4-methoxyphenyl)phenylmethyl]-2′-deoxyuridine is a purine nucleoside analog that exhibits significant antitumor activity, particularly against indolent lymphoid malignancies. Its anticancer effects are primarily due to the inhibition of DNA synthesis and the induction of apoptosis. Additionally, this compound serves as a versatile click chemistry reagent, incorporating an azide group that enables copper-catalyzed azide-alkyne cycloaddition (CuAAc) and strain-promoted alkyne-azide cycloaddition (SPAAC) reactions with alkyne-containing molecules, including those with DBCO or BCN moieties.
  3. Nucleoside Metabolite

    (S)-5-Amino-3-oxohexanoic acid acts as a nucleoside metabolite with significant implications in biochemical research. This compound plays a role in metabolic pathways involving amino acid synthesis and nucleoside metabolism. It is utilized in studies of enzyme activity and may contribute to the understanding of metabolic disorders and nucleoside-related functions in cellular processes.
  4. Purine Nucleoside Analog

    2’-O-Acetyl-5’-O-(p-toluoyl)-3’-deoxy-3’-fluoro-5-methyluridine is a purine nucleoside analog. This compound exhibits significant antitumor activity against indolent lymphoid malignancies by targeting DNA synthesis and inducing apoptotic pathways. Its unique mechanism of action makes it a valuable tool for cancer research and a promising candidate for therapeutic development.
  5. Purine Nucleoside Analog

    Thymine 1-β-D-arabinofuranoside is a purine nucleoside analog that exhibits significant antitumor activity, particularly against indolent lymphoid malignancies. Its mechanisms of action include the inhibition of DNA synthesis and the induction of apoptosis, making it a valuable tool for cancer research. This compound is suitable for studies focused on the development and exploration of novel therapeutic strategies in oncology.
  6. Purine Nucleoside Analog

    3’-O-MOE-5Me-C(Bz)-2’-phosphoramidite is a purine nucleoside analog that acts by targeting critical pathways involved in cancer biology. This compound exhibits broad antitumor activity, particularly against indolent lymphoid malignancies, by inhibiting DNA synthesis and inducing apoptosis in cancerous cells. It is a valuable reagent for researchers investigating therapeutic strategies in oncology and nucleic acid-based applications.
  7. Purine Nucleoside Analog

    5-O-Benzoyl-1,2,3-tri-O-acetyl-4-C-methyl-D-ribofuranose is a purine nucleoside analog that demonstrates significant antitumor activity. This compound functions primarily by inhibiting DNA synthesis and inducing apoptosis, making it a valuable tool for research in cancer biology. It is particularly relevant for investigating treatments for indolent lymphoid malignancies and other related malignancies.
  8. Purine Nucleoside Analog

    N1-(1,1,1-Trifluoroethyl)pseudouridine is a purine nucleoside analog that exerts its antitumor effects by inhibiting DNA synthesis and promoting apoptosis. This compound is primarily utilized in the research of indolent lymphoid malignancies, where it demonstrates significant potential for therapeutic applications. Its unique structure and biological activity make it a valuable tool for studying cancer cell proliferation and survival mechanisms.
  9. Nucleoside Metabolite

    11,14,15-THETA (11,14,15-Trihydroxyeicosatrienoic acid) is a nucleoside metabolite known for its role in various biological processes. This compound exhibits significant bioactivity, influencing lipid signaling pathways and inflammatory responses. It is commonly utilized in research exploring metabolic pathways, inflammation, and cell signaling mechanisms.
  10. Adenosine Analog

    8-Methylthio-adenosine is an adenosine analog that primarily acts as a smooth muscle vasodilator. It has demonstrated the potential to inhibit cancer progression, making it a valuable tool in cancer research and therapeutic investigations. This compound is relevant for studies exploring the biochemical pathways influenced by adenosine and its analogs.
  11. Guanosine Analog

    1,2'-O-Dimethylguanosine is a guanosine analogue that primarily targets Toll-like receptor 7 (TLR7). It exhibits immunostimulatory activities and has been shown to induce type I interferons in certain animal models, leading to antiviral effects. This compound serves as a valuable tool in research focused on innate immunity and therapeutic applications in viral infections.
  12. Purine Nucleoside Analog

    5’(R)-C-Methyl-3-deazauridine is a purine nucleoside analog that exhibits significant antitumor activity, particularly against indolent lymphoid malignancies. Its primary mechanism involves the inhibition of DNA synthesis and the induction of apoptosis, making it a valuable reagent for cancer research. This compound is suitable for studies focused on the mechanisms of action of nucleoside analogs and their therapeutic potential in oncology.
  13. Anti-HIV-1 Nucleoside Analog

    QYL-685 is an anti-HIV-1 nucleoside analog featuring a Z-methenylcyclopropane structure with 2,6-diaminopurine, demonstrating significant antiviral activity against HIV-1. This compound is effective against HIV-1 strains resistant to Zidovudine and Didanosine in vitro. QYL-685 serves as a valuable tool for researching HIV-1 infection and evaluating antiviral mechanisms.
  14. Oxathiolane Nucleoside Analog

    rel-Emtricitabine is an oxathiolane nucleoside analog primarily targeting reverse transcriptase in HIV. It exhibits potent antiviral activity against HIV, making it an essential component of combination therapy for effectively managing HIV infections. This compound is valuable for research applications focused on HIV replication and therapeutic strategies.
  15. Nucleoside Analog

    N6-Benzoyl-2'-deoxyadenosine monohydrate is a nucleoside analog that interacts with DNA duplexes, resulting in structural alterations. This modification can be utilized in the diagnosis of bacterial infections, with detection methods often employing electrophoresis. Its ability to bind to and perturb DNA structures makes it valuable for research in molecular biology and nucleic acid studies.
  16. Nucleoside Analog/Anti-HCV Agent

    Valopicitabine dihydrochloride is a nucleoside analog that serves as the orally bioavailable prodrug of the potent anti-HCV agent 2'-C-methylcytidine. It functions by competitively inhibiting the NS5B polymerase, leading to chain termination and subsequent viral replication inhibition. This compound is primarily utilized in research related to Hepatitis C virus (HCV) treatment and antiviral drug development.
  17. Nucleoside Analog/Anti-HCV Agent

    Valopicitabine is a nucleoside analog and an orally bioavailable prodrug of the potent anti-hepatitis C virus (HCV) agent 2'-C-methylcytidine. It selectively targets the NS5B polymerase, competitively inhibiting its activity and resulting in chain termination during viral RNA synthesis. Valopicitabine is primarily utilized in research focused on HCV infection and antiviral therapy development.
  18. Purine Nucleoside Analog

    2-Trifluoromethyl adenosine is a purine nucleoside analog that exhibits potent antitumor activity, particularly against indolent lymphoid malignancies. Its primary mechanisms include the inhibition of DNA synthesis and the induction of apoptosis in cancer cells. This compound is valuable for research applications focused on cancer biology and therapeutic development.
  19. Cytidine Analog

    2',3',5'-Tri-O-benzoyl-5-azacytidine serves as a potent cytidine analog with a primary mechanism of inhibiting DNA methyltransferases. This compound demonstrates significant anti-metabolic and anti-tumor activities, making it a valuable tool in cancer research and epigenetic studies. Its ability to interfere with DNA methylation processes positions it as an important reagent for investigating gene expression regulation and therapeutic interventions in oncology.
  20. Unsaponifiable Lipid

    4α-Methylfecosterol is an unsaponifiable lipid that serves as a critical component in lipid metabolism studies. This compound exhibits unique biological activity by influencing membrane fluidity and cellular signaling pathways. It is valuable for research applications in lipid biochemistry, endocrinology, and the study of metabolic disorders.
  21. Thymidine Analog

    5-(Hydroxymethyl)-2′,3′-O-(1-methylethylidene)uridine is a thymidine analog that integrates into replicated DNA. This compound demonstrates insertional activity, making it valuable for cell labeling and monitoring DNA synthesis. Its applications extend to research focusing on cellular proliferation and genetic analysis.
  22. Cytidine Analog

    5-Methoxy cytidine is a cytidine analog that functions primarily as an inhibitor of DNA methyltransferases. This compound exhibits potential anti-metabolic and anti-tumor activities, making it valuable in cancer research and epigenetics studies. Its unique properties enable investigations into the regulatory roles of DNA methylation in various biological processes and diseases.
  23. Nucleoside Analogue

    1-(2,3,5-Tri-O-benzoyl-2-C-β-methyl-β-D-ribofuranosyl)-5-nitropyridine-2(1H)-one is a nucleoside analogue targeting cellular enzymatic pathways. This compound exhibits potential antiviral and anticancer activity, making it a valuable tool for researchers studying nucleoside metabolism and related therapeutic applications. Its unique structural modifications enhance its stability and efficacy in various biological systems, facilitating investigations into nucleoside function and biochemistry.
  24. Purine Nucleoside Analog

    3',4-Dideoxyuridine is a purine nucleoside analog that exhibits significant antitumor activity, particularly against indolent lymphoid malignancies. Its primary mechanism involves the inhibition of DNA synthesis, leading to apoptosis in cancer cells. This compound is valuable for research applications focused on cancer biology and therapeutic interventions targeting nucleoside metabolism.
  25. Nucleoside Metabolite

    5-(L-Alanin-3-yl)-2-hydroxy-cis,cis-muconate 6-semialdehyde is a nucleoside metabolite that plays a critical role in metabolic pathways. This compound exhibits notable biological activity related to nucleoside metabolism, making it valuable for research in cellular processes and enzymatic reactions. It is particularly useful for studies focused on nucleoside regulation and metabolism in various biological contexts.
  26. Purine Nucleoside Analog

    1-Amino-7-cyclopropyl methyl-7,8-dihydro-8-oxo-9-(β-D-xylofuranosyl)guanine is a purine nucleoside analog that targets critical pathways in cancer cells. This compound exhibits significant antitumor activity, particularly against indolent lymphoid malignancies, through mechanisms such as DNA synthesis inhibition and the induction of apoptosis. Its unique structural features make it a valuable tool in cancer research, particularly for investigating therapeutic strategies in lymphoid cancers.
  27. Nucleoside Metabolite

    (R)-Ureidoisobutyric acid is a nucleoside metabolite that plays a crucial role in various biochemical processes. This compound serves as an important intermediate in nucleotide metabolism and is utilized in research focused on cellular signaling, metabolism, and nucleic acid biochemistry. Its ability to influence metabolic pathways makes it a valuable tool for exploring cellular functions and disease mechanisms.
  28. Purine Nucleoside Analog

    2′-O-Methyl-2-amino-6-chloropurine riboside is a purine nucleoside analog that serves as an important tool in cancer research. It exhibits significant antitumor activity, particularly against indolent lymphoid malignancies, by interfering with DNA synthesis and inducing apoptosis in cancer cells. Its versatile applications in cellular and molecular biology make it a valuable reagent for studying therapeutic strategies against various malignancies.
  29. Guanosine Analog

    2'-C-Methylguanosine is a guanosine analogue that primarily targets and activates Toll-like receptor 7 (TLR7). It exhibits significant immunostimulatory activity and has been shown to induce type I interferons in various animal models, leading to antiviral effects. This compound is valuable for research applications focused on exploring the immune response and antiviral mechanisms.
  30. Adenosine Analog

    3'-β-C-Methyladenosine is an adenosine analog that primarily targets adenosine receptors. This compound exhibits biological activity as a smooth muscle vasodilator and has demonstrated potential in inhibiting cancer progression. It is useful in research applications focused on cardiovascular function and cancer biology.
  31. Purine Nucleoside Analog

    4’-C-Methyl-4-deoxyuridine is a purine nucleoside analog that exhibits significant antitumor activity, particularly against indolent lymphoid malignancies. This compound primarily functions by inhibiting DNA synthesis and inducing apoptotic pathways in cancer cells. Its research applications include exploring mechanisms of cancer treatment and evaluating therapeutic efficacy in oncology studies.
  32. Nucleoside Metabolite

    (R)-2-Hydroperoxy-α-linolenic acid is a nucleoside metabolite that plays a crucial role in fatty acid metabolism. It exhibits notable biological activities, including modulation of oxidative stress and cell signaling pathways. This compound is particularly useful in research focused on lipid metabolism, cell function, and the effects of oxidative damage in various biological systems.
  33. Purine Nucleoside Analog

    2'-Deoxy-2'-fluoro-6-S-Methyl-6-thio-ara-guanosine is a purine nucleoside analog that primarily targets nucleotide metabolism. It exhibits significant antitumor activity, particularly against indolent lymphoid malignancies, through mechanisms such as inhibition of DNA synthesis and the induction of apoptosis. This compound serves as a valuable tool in cancer research, facilitating the exploration of therapeutic strategies targeting purine metabolism.
  34. Purine Nucleoside Analog

    5-Hydroxy-2'-O-methyluridine is a purine nucleoside analog that exhibits significant anticancer activity. This compound functions primarily by inhibiting DNA synthesis and inducing apoptosis in cancer cells, making it a valuable tool in research aimed at understanding treatments for indolent lymphoid malignancies. Its biological properties position it as a promising candidate for further investigation in cancer therapy development.
  35. Purine Nucleoside Analog

    6-(2-O-Methyl-beta-D-ribofuranosyl)-3-(2-oxo-propyl)-6H-imidazo[1,2-c]pyrimidin-5-one is a purine nucleoside analog with promising antitumor activity against indolent lymphoid malignancies. Its cytotoxic effects primarily involve the inhibition of DNA synthesis and the induction of apoptosis, making it a valuable tool for cancer research. This compound's unique structure allows for further exploration in the development of targeted therapies for various malignancies.
  36. Nucleoside Metabolite

    4-(2-Amino-3-hydroxyphenyl)-2,4-dioxobutanoic acid is a nucleoside metabolite that plays a significant role in cellular metabolism. This compound is implicated in various biochemical pathways, including those involving nucleobase metabolism. Its biological activities make it valuable for research applications focused on enzymatic reactions related to nucleoside synthesis and regulation.
  37. Purine Nucleoside Analog

    3’-N-Acetyl-3’-amino-3’-deoxyuridine is a purine nucleoside analog primarily involved in inhibiting DNA synthesis. This compound exhibits potent antitumor activity, particularly against indolent lymphoid malignancies. Its mechanisms of action include inducing apoptosis and impairing cellular proliferation, making it a valuable reagent for cancer research and therapeutic studies.
  38. Nucleoside Metabolite

    3-Benzylmalic acid is a nucleoside metabolite that serves as a valuable intermediate in biochemical synthesis. It can be produced from 2-Benzylmalic acid via a hydroxyl isomerization reaction catalyzed by HphCD. This compound is utilized in various research applications, particularly in studies related to enzymatic reactions and metabolic pathways involving nucleoside derivatives.
  39. Purine Nucleoside Analog

    5′-O-[Bis(4-methoxyphenyl)phenylmethyl]cytidine is a purine nucleoside analog that exhibits significant antitumor activity, particularly against indolent lymphoid malignancies. Its biological action involves the inhibition of DNA synthesis and the induction of apoptosis, making it a valuable tool in cancer research. This compound is suitable for studying mechanisms of cancer cell proliferation and developing therapeutic strategies targeting nucleoside metabolism.
  40. Purine Nucleoside Analog

    3’,5’-Di-O-acetyl-2’-deoxy-N3-methyl uridine is a purine nucleoside analog that acts primarily by inhibiting DNA synthesis. This compound exhibits significant antitumor activity, particularly against indolent lymphoid malignancies. Its anticancer mechanisms include induction of apoptosis and disruption of cellular proliferation, making it a valuable reagent for research in oncology and molecular biology.
  41. Purine Nucleoside Analog

    3'-Azido-3'-deoxy-N6-methyladenosine is a purine nucleoside analogue designed for research applications in cancer biology. This compound exhibits significant antitumor activity, particularly against indolent lymphoid malignancies, by inhibiting DNA synthesis and inducing apoptosis. Additionally, it serves as a versatile click chemistry reagent, featuring an azide group that enables it to participate in copper-catalyzed azide-alkyne cycloaddition (CuAAc) and strain-promoted alkyne-azide cycloaddition (SPAAC) reactions with alkyne-containing molecules or DBCO/BCN-functionalized compounds, facilitating bioconjugation studies.
  42. Purine Nucleoside Analog

    2′-Deoxy-2′-fluoro-N-methyladenosine is a purine nucleoside analog that exhibits significant antitumor activity, particularly against indolent lymphoid malignancies. Its mechanism of action includes the inhibition of DNA synthesis and the induction of apoptosis in cancer cells. This compound is valuable for researchers investigating therapeutic strategies and mechanisms of action in cancer biology.
  43. Nucleoside Metabolite

    2-Methyl-1-hydroxypropyl-ThPP is a nucleoside metabolite that plays a critical role in nucleoside metabolism. This compound is involved in various biological processes and is essential for studying cellular metabolism pathways. Its applications extend to research on nucleoside-related signaling and metabolic regulation in various biological systems.
  44. Purine Nucleoside Analog

    N4-Ethyl-2’-deoxycytidine is a purine nucleoside analog that exhibits significant antitumor activity, particularly against indolent lymphoid malignancies. The compound functions primarily by inhibiting DNA synthesis, leading to the induction of apoptosis in cancer cells. Its applications in research include exploring mechanisms of cancer cell proliferation and evaluating therapeutic strategies targeting nucleosynthesis pathways.
  45. Quercetin Metabolite

    3α,7α,12α,26-Tetrahydroxy-5β-cholestane is a significant metabolite of Quercetin, functioning as a key marker in primary bile acid biosynthesis. This compound plays a crucial role in research related to atherosclerosis, providing insights into lipid metabolism and cardiovascular health. Its biological activities make it a valuable reagent for studying the effects of dietary flavonoids on cellular pathways.
  46. Nucleoside Metabolite

    (S)-Ureidoglycolic acid is a substrate for the enzyme ureidoglycolate dehydrogenase, playing a critical role in purine metabolism pathways. As a member of the n-carbomoyl-α-amino acid class, it is essential for studies focused on nucleotide biosynthesis and related metabolic processes. This compound serves as a valuable research tool for understanding the biochemical intricacies of purine metabolism and its implications in various physiological contexts.
  47. Nucleoside Metabolite

    Phosphonoformyl-CMP is a nucleoside metabolite that serves as an analogue of cytidine monophosphate. This compound is primarily utilized in studies of nucleotide metabolism and enzymatic activity related to nucleoside triphosphate synthesis. Its unique structure allows for exploration of biochemical pathways and interactions involving nucleotides, thereby informing research in molecular biology and pharmacology.
  48. Purine Nucleoside Analog

    2’-Chloro-N6-(4-trifluoromethyl)benzyl adenosine is a purine nucleoside analog that exhibits significant antitumor activity, particularly against indolent lymphoid malignancies. Its mechanism of action involves the inhibition of DNA synthesis and the induction of apoptosis, making it a valuable compound for cancer research. This reagent is suitable for studies focused on understanding tumor biology and developing therapeutic strategies targeting nucleoside pathways.
  49. Purine Nucleoside Analog

    3'-Azido-3'-deoxy-5-trifluoromethyluridine is a purine nucleoside analogue primarily known for its broad antitumor activity against indolent lymphoid malignancies. Its anticancer mechanisms include the inhibition of DNA synthesis and the induction of apoptosis. Additionally, this compound serves as a click chemistry reagent, featuring 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) with DBCO or BCN functionalized compounds.
  50. Purine Nucleoside Analog

    5’-O-TBDPS-2,2’-anhydrouridine is a purine nucleoside analog that acts primarily by inhibiting DNA synthesis. This compound exhibits significant antitumor activity, particularly against indolent lymphoid malignancies. Its mechanism also includes the induction of apoptosis, making it a valuable tool for research focused on cancer biology and therapeutic development.

Items 151-200 of 1704

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