Suppr超能文献

5-溴戊酸的氨基酸和肽缀合物的合成及生物评价。

Synthesis and Biological Evaluation of Amino Acid and Peptide Conjugates of 5-Bromovaleric Acid.

机构信息

GNA School of Pharmacy, Shri Hargobindgarh, Phagwara, District Kapurthala, 144401, Punjab, India.

University Institute of Pharmaceutical Sciences, Panjab University, Chandigarh, 160014, India.

出版信息

Med Chem. 2024;20(10):950-956. doi: 10.2174/0115734064302733240621054643.

Abstract

BACKGROUND

Among various carboxylic acid derivatives, valeric acid or pentanoic acid is found to be widely distributed in nature. It is a straight-chain alkyl carboxylic acid containing five carbon atoms. Due to the therapeutic value of valeric acid, it is used as a versatile nucleus in the pharmaceutical field. Valeric acid derivatives are associated with a broad spectrum of biological activities, like anticonvulsant, antiplatelet, antidiabetic, and plant growth activities.

AIM

It has previously been revealed that peptide derivatives of carboxylic acids are accountable for enhanced antimicrobial activity. Therefore, it was hypothesized that coupling peptides with valeric acid would increase the antimicrobial properties of the target compounds. So, the objective of the present study was to synthesize peptide derivatives of 5-bromovaleric acid and evaluate their antibacterial and antifungal activities.

METHODS

5-bromovaleric acid was synthesized by the reaction of cyclopentanone and hydrogen peroxide in the presence of copper bromide and sodium bromide. Additionally, 5-bromovaleric acid was coupled with amino acid methyl esters, dipeptides, tripeptides, and tetrapeptides in the presence of dicyclohexylcarbodimide (DCC) and N-methylmorpholine (NMM) as a base under continuous stirring for 36 hours to produce its peptide derivatives.

RESULTS

The results obtained showed that 5-bromovaleric acid possesses more potent antibacterial activity than N-terminal 5-bromovaleric acid conjugates of selected di-, tri, and tetra peptide Cterminal methyl esters against ciprofloxacin as a standard. The selected dipeptide and tripeptide Nterminal 5-bromovaleric acid-conjugated C-terminal methyl ester derivatives were more active than the selected tetrapeptide methyl ester analogue. Using fluconazole as a reference, the antifungal efficacy of 5-bromovaleric acid against and declined as it was combined with C-terminal methyl esters of selected dipeptides, tripeptides, and tetrapeptides.

CONCLUSION

The novel selected peptide derivatives had less antibacterial and antifungal action than the parent 5-bromovaleric acid. Antibacterial and antifungal investigations showed that 5- bromopentanoic acid peptide derivatives might impair antimicrobial efficacy. Further, attaching 5- bromopentanoic acid to di, tri, and tetra peptides did not boost their antibacterial potential.

摘要

背景

在各种羧酸衍生物中,戊酸或正戊酸被广泛发现于自然界中。它是一种含有五个碳原子的直链烷羧酸。由于戊酸具有治疗价值,因此它被用作药物领域中的多功能核心。戊酸衍生物与广泛的生物活性相关,如抗惊厥、抗血小板、抗糖尿病和植物生长活性。

目的

先前已经揭示,羧酸的肽衍生物负责增强抗菌活性。因此,假设将肽与戊酸偶联将增加目标化合物的抗菌特性。因此,本研究的目的是合成 5-溴戊酸的肽衍生物,并评估它们的抗菌和抗真菌活性。

方法

通过环戊酮和过氧化氢在溴化铜和溴化钠存在下的反应合成 5-溴戊酸。此外,在二环己基碳二亚胺 (DCC) 和 N-甲基吗啉 (NMM) 作为碱的存在下,将 5-溴戊酸与氨基酸甲酯、二肽、三肽和四肽连续搅拌 36 小时进行偶联,以生成其肽衍生物。

结果

结果表明,5-溴戊酸比所选二肽、三肽和四肽 C 末端甲酯的 N 末端 5-溴戊酸缀合物对环丙沙星作为标准具有更强的抗菌活性。所选二肽和三肽 N 末端 5-溴戊酸缀合的 C 末端甲酯衍生物比所选四肽甲酯类似物更具活性。与氟康唑作为参考相比,5-溴戊酸与所选二肽、三肽和四肽的 C 末端甲酯结合后,对 和 的抗真菌功效下降。

结论

新型选定的肽衍生物的抗菌和抗真菌作用比母体 5-溴戊酸弱。抗菌和抗真菌研究表明,5-溴戊酸肽衍生物可能会损害抗菌功效。此外,将 5-溴戊酸连接到二肽、三肽和四肽上并没有增强它们的抗菌潜力。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验