Uridine-5'-diphosphate Disodium Salt: A Crucial Nucleotide for Research & Development

Discover the critical role of Uridine-5'-diphosphate disodium salt in advancing your research. As a leading supplier in China, we offer high-purity UDP-Na2 essential for nucleic acid biosynthesis and cell signaling studies, ensuring reliable results for your demanding scientific applications.

Get a Quote & Sample

Key Advantages of Sourcing Our UDP-Na2

Exceptional Purity and Consistency

We guarantee Uridine-5'-diphosphate disodium salt with 98.24% purity, essential for precise scientific outcomes. Purchasing from a reliable supplier in China ensures consistent quality for your ongoing research projects, making it easier to buy pharmaceutical intermediates.

Versatile Biological Activity

As both a P2Y6 agonist and P2Y14 antagonist, this compound offers broad utility in pharmacological and biochemical research, enabling diverse experimental designs for scientists looking for advanced biochemicals.

Reliable Supply Chain

Partner with a trusted manufacturer for your Uridine-5'-diphosphate disodium salt needs. We ensure a stable supply chain, competitive pricing, and timely delivery, facilitating seamless procurement for research institutions and pharmaceutical companies.

Applications in Life Sciences and Beyond

Nucleic Acid Biosynthesis Studies

Crucial substrate for RNA polymerase and GTPases, enabling in-depth research into RNA synthesis and gene expression. This is a key area for researchers looking to buy nucleotides.

Cell Signaling Pathway Investigation

Used to study the complex mechanisms of GPCRs and Rho-signaling, providing insights into cellular communication and regulation. A vital reagent for cell signaling research suppliers.

P2 Receptor Modulation Research

Essential for understanding the roles of P2Y6 and P2Y14 receptors in various physiological and pathological processes. We are a dedicated supplier for P2 receptor modulators.

Drug Discovery and Development

Serves as a valuable tool in preclinical research for identifying and developing new therapeutic agents targeting purinergic signaling pathways.