P-3FAX-Neu5Ac - 117405-58-0
P-3FAX-Neu5Ac
Catalog Number: BT-254609
CAS Number: 117405-58-0
Molecular Formula: C22H30FNO14
Molecular Weight: 551.473
The product is for non-human research only. Not for therapeutic or veterinary use.
Product Introduction
Description
P-3FAX-Neu5Ac is a sialic acid derivative that has gained significant attention in recent years due to its potential therapeutic and industrial applications. This paper aims to provide an overview of the synthesis and extraction methods, chemical structure, biological activity, and applications of P-3FAX-Neu5Ac.
Properties
CAS Number
117405-58-0
Product Name
P-3FAX-Neu5Ac
IUPAC Name
methyl 5-acetamido-2,4-diacetyloxy-3-fluoro-6-[(1S,2R)-1,2,3-triacetyloxypropyl]oxane-2-carboxylate
Molecular Formula
C22H30FNO14
Molecular Weight
551.473
InChI
InChI=1S/C22H30FNO14/c1-9(25)24-16-18(17(35-12(4)28)15(34-11(3)27)8-33-10(2)26)38-22(21(31)32-7,37-14(6)30)20(23)19(16)36-13(5)29/h15-20H,8H2,1-7H3,(H,24,25)/t15-,16?,17-,18?,19?,20?,22?/m1/s1
InChI Key
COXHVKPJIOSDPS-RTEYEINBSA-N
SMILES
CC(=O)NC1C(C(C(OC1C(C(COC(=O)C)OC(=O)C)OC(=O)C)(C(=O)OC)OC(=O)C)F)OC(=O)C
Synonyms
5-(acetylamino)-3,5-dideoxy-3-fluoro-D-erythro-α-L-manno-2-nonulopyranosonic acid methyl ester 2,4,7,8,9-pentaacetate
Method of Synthesis or Extraction
P-3FAX-Neu5Ac can be synthesized using various methods, including chemical synthesis, enzymatic synthesis, and microbial fermentation. Chemical synthesis involves the use of chemical reagents to produce the compound, while enzymatic synthesis utilizes enzymes to catalyze the reaction. Microbial fermentation involves the use of microorganisms to produce the compound. Each method has its advantages and disadvantages in terms of efficiency, yield, and environmental and safety considerations.
Chemical Structure and Biological Activity
P-3FAX-Neu5Ac is a sialic acid derivative that contains a phosphate group and a fatty acid chain. It has been shown to have potent anti-inflammatory and immunomodulatory effects, making it a potential therapeutic agent for various diseases. The compound has also been found to have antimicrobial properties and can inhibit the growth of certain bacteria and viruses.
Biological Effects
P-3FAX-Neu5Ac has been shown to modulate cell function and signal transduction pathways, leading to its potential therapeutic effects. It has been studied for its potential use in treating inflammatory diseases, such as arthritis and colitis, as well as cancer. However, the compound also has potential toxic effects, and further studies are needed to determine its safety and efficacy.
Applications
P-3FAX-Neu5Ac has various applications in medical, environmental, and industrial research. In medical research, the compound has been studied for its role in drug development and clinical trials. It has also been found to have potential benefits in treating inflammatory diseases and cancer. In environmental research, P-3FAX-Neu5Ac has been studied for its effects on ecosystems and its role in pollution management. In industrial research, the compound has been used in manufacturing processes to improve product quality and efficiency, with health and safety considerations.
Future Perspectives and Challenges
Despite the potential applications of P-3FAX-Neu5Ac, there are still limitations in its use and study. Further research is needed to determine its safety and efficacy, as well as to develop more efficient and sustainable methods of synthesis and extraction. However, the compound shows promise in various fields, and future trends and prospects in its application in scientific research are promising.
In conclusion, P-3FAX-Neu5Ac is a sialic acid derivative with potential therapeutic and industrial applications. Its synthesis and extraction methods, chemical structure, biological activity, and applications have been discussed in this paper. Further research is needed to fully understand the compound's potential and limitations, but its potential benefits make it an exciting area of study in scientific research.
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