The Role of Uridine-5'-triphosphoric Acid Trisodium Salt in Modern Drug Discovery
In the dynamic field of pharmaceutical research, identifying and utilizing specific molecular agents is paramount to developing innovative therapies. Uridine-5'-triphosphoric acid trisodium salt, often referred to by its acronym UTP.Na3 and identified by CAS 19817-92-6, has emerged as a significant player in this arena. This compound's primary function as a P2Y receptor stimulant places it at the forefront of research into cellular signaling pathways that are implicated in a wide range of physiological and pathological conditions.
The importance of P2Y receptors cannot be overstated. These receptors are a family of G protein-coupled receptors that are activated by extracellular nucleotides such as ATP, UTP, UDP, and CDP. Activation of these receptors plays crucial roles in various biological processes, including platelet aggregation, neurotransmission, smooth muscle contraction, inflammation, and immune responses. Consequently, targeting these receptors offers a promising therapeutic strategy for conditions ranging from cardiovascular diseases and pain to neurological disorders and cancer. Understanding how to buy Uridine-5'-triphosphoric acid trisodium salt for research is a key step for many laboratories.
Uridine-5'-triphosphoric acid trisodium salt, specifically as an API powder, serves as a valuable tool for scientists aiming to probe the intricate workings of these P2Y receptors. Its well-defined chemical properties, including its molecular formula C9H16N2NaO15P3 and molecular weight of 508.14, ensure a reliable and consistent agent for experimental use. Researchers often seek out this specific compound when they need to investigate specific subtypes of P2Y receptors or when exploring the downstream signaling cascades initiated by UTP binding. The ability to accurately quantify and control the dosage of such compounds is critical for reproducible research outcomes, highlighting the need to secure high-quality Uridine-5'-triphosphoric acid trisodium salt from reputable suppliers.
The specific nature of UTP.Na3 as a P2Y receptor stimulant means it can be used in various preclinical studies. For instance, it can be employed in in vitro assays to stimulate cells expressing specific P2Y receptors, allowing researchers to observe cellular responses such as calcium mobilization, second messenger production, or gene expression changes. Furthermore, in vivo studies can utilize this compound to investigate the physiological effects of P2Y receptor activation in animal models, providing insights into potential therapeutic targets and drug efficacy. Learning about the Uridine-5'-triphosphoric acid trisodium salt P2Y receptor stimulant CAS 19817-92-6 API powder is essential for anyone in this field.
Given its biological activity, proper handling and storage of Uridine-5'-triphosphoric acid trisodium salt are crucial to maintain its integrity and potency. It is typically recommended to store the compound in a dry, cool, and well-closed container, often under an inert atmosphere and at low temperatures (e.g., below -20°C) to prevent degradation. Adhering to these guidelines, as well as understanding the typical UTP.Na3 properties, ensures that the compound remains effective for its intended research purposes. The availability of this compound through NINGBO INNO PHARMCHEM CO.,LTD. provides a reliable source for the scientific community.
In conclusion, Uridine-5'-triphosphoric acid trisodium salt is a powerful chemical reagent that significantly contributes to our understanding of P2Y receptor biology and the development of novel pharmaceuticals. Its role as a P2Y receptor stimulant, coupled with its consistent chemical profile, makes it an indispensable component in modern drug discovery pipelines. For researchers looking to explore these critical pathways, knowing how to source and utilize this compound effectively is a key advantage.
Perspectives & Insights
Data Seeker X
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Chem Reader AI
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Agile Vision 2025
“In conclusion, Uridine-5'-triphosphoric acid trisodium salt is a powerful chemical reagent that significantly contributes to our understanding of P2Y receptor biology and the development of novel pharmaceuticals.”