2-辛基环戊酮抑制β -内酰胺耐药糖尿病伤口病原体

IF 1.1 Q3 BIOLOGY Tropical life sciences research Pub Date : 2023-03-01 DOI:10.21315/tlsr2023.34.1.15
Nur Amiera Syuhada Rozman, Tong Woei Yenn, Leong Chean Ring, Syarifah Ab Rashid, Tan Wen-Nee, Jun Wei Lim
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摘要

微生物感染是糖尿病足溃疡的常见并发症,高达82%的溃疡在糖尿病的初始阶段被感染。此外,β -内酰胺耐药病原体的出现设法消除了β -内酰胺抗生素作为化疗替代方案的使用。这进一步增加了截肢率和死亡率。因此,本研究的目的是评价酮类衍生物2-辛基环戊酮对糖尿病伤口病原菌的抗菌效果。采用圆盘扩散法和肉汤微量稀释法测定化合物的抑菌活性。一般来说,2-辛基环戊酮具有广谱抗菌活性,特别是对β -内酰胺耐药病原体。与氯霉素、链霉素、氨苄西林、青霉素等参比抗生素相比,该化合物具有较好的抗菌活性。此外,该化合物还抑制临床分离的铜绿假单胞菌,该假单胞菌对所有参考抗生素都具有耐药性。根据记录的最低致死浓度,该活性具有杀微生物作用,特别是对MRSA、铜绿假单胞菌和实用假丝酵母。该化合物的杀虫效果与浓度有关。在杀伤曲线分析中,2-辛基环戊酮的抑制活性与浓度和时间有关。细菌生长减少99.9%。MRSA和P. aeruginosa是两种重要的糖尿病伤口感染,该分子在最低致死浓度下完全抑制MRSA和P. aeruginosa。总之,2-辛基环戊酮对多种糖尿病创面病原菌具有显著的抑制作用。这是至关重要的,因为它将为糖尿病溃疡感染提供一种安全有效的替代治疗方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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2-Octylcyclopentanone Inhibits Beta Lactam Resistant Diabetic Wound Pathogens.

Microbial infection is a frequent complication of diabetic foot ulcers, with up to 82% of ulcers being infected at the initial stage of diabetes. Furthermore, the emergence of beta lactam resistant pathogens managed to eliminate the use of beta lactam antibiotics as a chemotherapeutic alternative. This further increases the amputation and mortality rate. Hence, the aim of this study is to evaluate antimicrobial efficacy of a ketone derivative 2-octylcyclopentanone against diabetic wound pathogens. The inhibitory activity of the compound was determined using disc diffusion and broth microdilution assay. Generally, 2-octylcyclopentanone showed broad-spectrum antimicrobial activity, particularly against beta lactam resistant pathogens. The compound showed comparably better antimicrobial activity than all reference antibiotics, including chloramphenicol, streptomycin, ampicillin and penicillin. In addition, the same compound also inhibits a clinically isolated Pseudonomas aeruginosa that was resistant to all reference antibiotics. The activity was microbicidal based on the low minimal lethality concentration recorded, particularly on MRSA, P. aeruginosa and Candida utilis. The killing efficiency of the compound was concentration dependent. During kill curve analysis, the inhibitory activity of 2-octylcyclopentanone was concentration and time-dependent. 99.9% of reduction of bacterial growth was observed. MRSA and P. aeruginosa, two significant diabetic wound infections, are totally inhibited by the molecule at a concentration of minimum lethality concentration. In short, 2-octylcyclopentanone exhibited significant inhibitory towards wide range of diabetic wound pathogens. Which is considered crucial since it will provide a safe and effective alternative treatment for diabetic ulcer infection.

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来源期刊
CiteScore
2.60
自引率
0.00%
发文量
40
审稿时长
20 weeks
期刊介绍: Tropical Life Sciences Research (TLSR) formerly known as Journal of Bioscience seeks to publish relevant ideas and knowledge addressing vital life sciences issues in the tropical region. The Journal’s scope is interdisciplinary in nature and covers any aspects related to issues on life sciences especially from the field of biochemistry, microbiology, biotechnology and animal, plant, environmental, biomedical and pharmaceutical sciences. TLSR practices double blind peer review system to ensure and maintain the good quality of articles published in this journal. Two issues are published annually in printed and electronic form. TLSR also accepts review articles, experimental papers and short communications. The Chief Editor would like to invite researchers to use this journal as a mean to rapidly promote their research findings.
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