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Product Description:
2-Thioadenosine is a sulfur-containing analog of the nucleoside adenosine, where the oxygen atom at the 2-position of the ribose sugar is replaced by a sulfur atom. It is a naturally occurring compound found in certain organisms and can also be synthesized chemically. 2-Thioadenosine is known for its unique biochemical properties and its role in various biological processes, including enzymatic reactions and cell signaling pathways. It is available in pure form as a crystalline powder and is used in research, biochemical studies, and potential therapeutic applications. Our 2-Thioadenosine is produced under stringent quality controls to ensure high purity and consistency.
Function:
Nucleoside Analog: 2-Thioadenosine functions as a nucleoside analog, meaning it can participate in nucleic acid metabolism and serve as a precursor for the synthesis of nucleotides, nucleosides, and nucleic acids.
Enzyme Modulator: It can act as an inhibitor or modulator of various enzymes, particularly those involved in purine metabolism and nucleoside transport. This makes it useful in studying enzymatic functions and regulatory mechanisms.
Biochemical Marker: 2-Thioadenosine is used as a biochemical marker in certain metabolic and signaling pathways, helping to elucidate the roles of sulfur-containing nucleosides in cellular processes.
Potential Therapeutic Agent: Due to its structural similarity to adenosine, 2-Thioadenosine has potential as a therapeutic agent in modulating adenosine receptors and influencing cellular signaling, particularly in inflammatory and immune responses.
Research Tool: It is used as a research tool in studying the structure and function of nucleic acids, as well as the interactions of nucleosides with proteins and enzymes.
Application:
Biomedical Research: 2-Thioadenosine is extensively used in biomedical research to study nucleoside metabolism, enzyme kinetics, and cell signaling pathways. It serves as a probe for understanding the role of sulfur atoms in biological molecules.
Pharmaceutical Development: In pharmaceutical research, 2-Thioadenosine is explored for its potential therapeutic applications, particularly in the development of new drugs targeting adenosine receptors and related pathways in conditions like inflammation, cancer, and cardiovascular diseases.
Biotechnology: It is used in biotechnological applications, including the development of biosensors and diagnostic tools that utilize its unique biochemical properties for detecting specific enzymes or metabolic states.
Nucleic Acid Studies: 2-Thioadenosine is valuable in nucleic acid studies for understanding the synthesis, structure, and function of RNA and DNA, particularly in the context of sulfur-modified nucleotides.
Cell Culture Studies: In cell culture studies, 2-Thioadenosine can be used to investigate the effects of sulfur-containing nucleosides on cell growth, differentiation, and apoptosis, providing insights into cellular responses and stress mechanisms.
Biochemical Assays: It is employed in biochemical assays to measure the activity of enzymes involved in sulfur metabolism and to study the incorporation of sulfur atoms into biological molecules.
Therapeutic Research: Ongoing research explores the potential of 2-Thioadenosine as a therapeutic agent in modulating immune responses, reducing inflammation, and possibly acting as an anti-cancer agent.
Educational and Training: 2-Thioadenosine is used in educational and training settings for teaching and demonstrating nucleoside analogs' properties and roles in biochemical processes.