page_banner

product

2′-Deoxy-4′-C-ethynyl-2-fluoroadenosine(CAS#865363-93-5)

Chemical Property:


Product Detail

Product Tags

Introducing 2′-Deoxy-4′-C-ethynyl-2-fluoroadenosine (CAS: 865363-93-5), a groundbreaking nucleoside analog that is set to revolutionize the field of molecular biology and pharmaceutical research. This innovative compound is designed to enhance the understanding of nucleic acid interactions and cellular processes, making it an invaluable tool for researchers and scientists alike.

2′-Deoxy-4′-C-ethynyl-2-fluoroadenosine is characterized by its unique structural modifications, which include the ethynyl and fluorine substitutions at the 4′ and 2′ positions, respectively. These modifications not only improve the compound’s stability and bioavailability but also enhance its ability to penetrate cellular membranes, allowing for more effective delivery and uptake in various biological systems.

This nucleoside analog has shown promising potential in various applications, including antiviral and anticancer research. Its ability to mimic natural nucleosides while exhibiting distinct biochemical properties makes it an ideal candidate for the development of novel therapeutic agents. Researchers can utilize 2′-Deoxy-4′-C-ethynyl-2-fluoroadenosine to study RNA and DNA synthesis, investigate enzyme interactions, and explore the mechanisms of action of existing drugs.

In addition to its research applications, this compound is also poised to play a significant role in the development of next-generation therapeutics. By providing insights into nucleic acid behavior and interactions, 2′-Deoxy-4′-C-ethynyl-2-fluoroadenosine can aid in the design of more effective and targeted treatments for a variety of diseases.

In summary, 2′-Deoxy-4′-C-ethynyl-2-fluoroadenosine (CAS: 865363-93-5) is a cutting-edge nucleoside analog that offers unparalleled opportunities for research and development in molecular biology and pharmacology. Embrace the future of scientific discovery with this exceptional compound and unlock new possibilities in your research endeavors.


  • Previous:
  • Next:

  • Write your message here and send it to us