Adenosine

Adenosine

Please note that the price mentioned above is for your reference only. For detailed pricing information, kindly get in touch with our seller, Vecent. We encourage you to reach out to Vecent for accurate pricing details.

Description

SKU-Pack SizeAvailabilityPrice
abs816921-1g1-2 weeks$70.00
abs816921-5g1-2 weeks$100.00

Please note that the price mentioned above is for your reference only. For detailed pricing information, kindly get in touch with our seller, Vecent. We encourage you to reach out to Vecent for accurate pricing details.


Description

Description

Adenosine is a combination of a ribose sugar molecule (ribofuranose) and adenine, bonded together through a β-N9-glycosidic bond. It is commonly referred to as a nucleoside and plays an important role in various biological processes. The ribose sugar molecule provides the support for the adenine to function and is integral to the structure and function of adenosine. The presence of the glycosidic bond further strengthens the structure of adenosine, making it an important component of many biomolecules in living organisms. Overall, adenosine serves as a fundamental building block in many biochemical reactions in the body.

Purity
98%
Storage Temp.
store at -20° C for one year(Powder);
DMSO or other solvents should be stored at a temperature of 2-4°C for a duration of two weeks. Alternatively, they can be stored at -20°C for a period of six months. It is important to follow these storage guidelines to maintain the integrity and stability of the solvents.

Properties

Solubility
Soluble in DMSO > 11 mM

Bioactivity

Target
Nucleoside Antimetabolite_Analog

References

References
  • In a study published in the journal Oncogene, Zhou JZ and colleagues explored the role of a specific gene in cancer development. Their findings suggest that this gene may be a potential target for future therapeutic interventions. The research team conducted extensive experiments and data analyses to better understand the function of the gene and its interactions with other molecules in cancer cells. Overall, their work sheds light on important mechanisms underlying cancer biology and highlights potential avenues for precision medicine approaches to cancer treatment.

  • Sure, I can generate a highly similar content by rearranging the information in the original text. The study conducted by Ring and his team, published in the Journal of Immunology, focused on the benefits of targeting a specific type of immune cell known as CD8+ T cells in cancer immunotherapy. The research found that CD8+ T cells play a crucial role in eliminating cancer cells, and by manipulating them, it is possible to enhance the effectiveness of cancer immunotherapy. The study's findings offer new insights into the potential of CD8+ T cells to combat cancer and pave the way for the development of more targeted and effective immunotherapies.

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