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来自[具体来源]的芪类化合物对[具体对象]的抗菌活性及其对细胞膜的影响。

Antimicrobial Activity of Stilbenes from against and Its Effect on Cell Membrane.

作者信息

Yu Qian, Sun Luyao, Peng Fu, Sun Chen, Xiong Fang, Sun Meiji, Liu Juan, Peng Cheng, Zhou Qinmei

机构信息

State Key Laboratory of Characteristic Chinese Medicine Resources in Southwest China, Chengdu University of Traditional Chinese Medicine, Chengdu 611137, China.

School of Basic Medicine, Chengdu University of Traditional Chinese Medicine, Chengdu 611137, China.

出版信息

Microorganisms. 2023 Dec 11;11(12):2958. doi: 10.3390/microorganisms11122958.

Abstract

The abnormal proliferation of is the main cause of acne vulgaris. Natural antibacterial plant extracts have gained great interest due to the efficacy and safety of their use in skin care products. is a common externally used traditional Chinese medicine, and several of its isolated stilbenes were reported to exhibit good antibacterial activity. In this study, the antimicrobial activity of stilbenes from (BSS) against and its potential effect on cell membrane were elucidated by determining the minimum inhibitory concentration (MIC), minimum bactericidal concentration (MBC), bacterial growth curve, adenosine triphosphate (ATP) levels, membrane potential (MP), and the expression of genes related to fatty acid biosynthesis in the cell membrane. In addition, the morphological changes in by BSS were observed using transmission electron microscopy (TEM). Experimentally, we verified that BSS possessed significant antibacterial activity against , with an MIC and MBC of 15.62 μg/mL and 62.5 μg/mL, respectively. The growth curve indicated that BSS at 2 MIC, MIC, 1/2 MIC, and 1/4 MIC concentrations inhibited the growth of . TEM images demonstrated that BSS at an MIC concentration disrupted the morphological structure and cell membrane in . Furthermore, the BSS at the 2 MIC, MIC, and 1/2 MIC concentrations caused a decrease in the intracellular ATP levels and the depolarization of the cell membrane as well as BSS at an MIC concentration inhibited the expression of fatty acid biosynthesis-associated genes. In conclusion, BSS could exert good antimicrobial activity by interfering with cell membrane in , which have the potential to be developed as a natural antiacne additive.

摘要

[此处原文中第一个“is”前缺少具体内容,第二个“is”前也缺少具体内容,以下是按照完整逻辑翻译的内容]

[某种物质]的异常增殖是寻常痤疮的主要原因。天然抗菌植物提取物因其在护肤品中使用的有效性和安全性而备受关注。[某种植物]是一种常用的外用中药,据报道其分离出的几种芪类化合物具有良好的抗菌活性。在本研究中,通过测定最低抑菌浓度(MIC)、最低杀菌浓度(MBC)、细菌生长曲线、三磷酸腺苷(ATP)水平、膜电位(MP)以及细胞膜中与脂肪酸生物合成相关基因的表达,阐明了[某种植物]中的芪类化合物(BSS)对[某种细菌]的抗菌活性及其对细胞膜的潜在影响。此外,使用透射电子显微镜(TEM)观察了BSS对[某种细菌]形态的影响。实验表明,BSS对[某种细菌]具有显著的抗菌活性,MIC和MBC分别为15.62μg/mL和62.5μg/mL。生长曲线表明,2MIC、MIC、1/2MIC和1/4MIC浓度的BSS抑制了[某种细菌]的生长。TEM图像显示,MIC浓度的BSS破坏了[某种细菌]的形态结构和细胞膜。此外,2MIC、MIC和1/2MIC浓度的BSS导致细胞内ATP水平降低和细胞膜去极化,并且MIC浓度的BSS抑制了脂肪酸生物合成相关基因的表达。总之,BSS可通过干扰[某种细菌]细胞膜发挥良好的抗菌活性,具有开发成为天然抗痤疮添加剂的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35e5/10746055/1923141308f2/microorganisms-11-02958-g001.jpg

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