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[某种植物]水提取物对[某种真菌]的抗真菌机制初步研究 。 你提供的原文中“ Against.”前面应该有具体的真菌名称,“ of”后面也应该有具体的植物名称,这里我根据格式要求进行了常规翻译并补充了部分内容使句子更完整。请你检查是否准确。

Preliminary Study on Antifungal Mechanism of Aqueous Extract of Against .

作者信息

Yanyun Cao, Ying Tang, Wei Kong, Hua Fang, Haijun Zhu, Ping Zheng, Shunming Xu, Jian Wan

机构信息

Department of Dermatology, Pudong New Area People's Hospital, Shanghai, China.

Department of Clinical Laboratory, Pudong New Area People's Hospital, Shanghai, China.

出版信息

Front Microbiol. 2021 Aug 19;12:707174. doi: 10.3389/fmicb.2021.707174. eCollection 2021.

Abstract

Trichoderma rubrum (T. rubrum) is one of the important pathogens because it is the cause of most dermatomycosis. The treatment of infection is time-consuming and very expensive; it is easy for the infections to reoccur, leading to therapeutic failures, persistence, and chronic infection. These issues have inspired researchers to study natural alternative therapies instead. (L.), as a kind of traditional Chinese medicine, has a variety of pharmacological activities and a wide range of applications, so it has a high potential for researching and economic value. We detected the effect of aqueous extract of (L.) on the activity of by Cell Count Kit-8 assay (CCK-8), and we found that 128 and 256 μg/ml of aqueous extracts of (L.) co-cultured with for 24 h showed the inhibitory effect on . The results of scanning electron microscopy (SEM) and transmission electron microscopy (TEM) confirmed that aqueous extract of (L.) damaged the . At the same time, mass spectrometry screening with before and after the treatment of 256 μg/ml of aqueous extracts of (L.) showed that 966 differentially expressed proteins were detected, including 524 upregulated differentially expressed genes (DEGs) and 442 downregulated DEGs. The most significantly downregulated protein was chitin synthase (CHS); and the results of qRT-PCR and Western blotting demonstrated that the expression level of CHS was downregulated in the 256 μg/ml group compared with the control group. The study showed that the aqueous extract of (L.) could destroy the morphology of mycelia and the internal structure of , and it could inhibit the growth of . The antifungal effect of aqueous extract of (L.) may be related to the downregulation of the expression of CHS in , and CHS may be one of the potential targets of its antifungal mechanism. We concluded that aqueous extract from (L.) may be a potential candidate for antifungal agents.

摘要

红色毛癣菌(T. rubrum)是重要的病原体之一,因为它是大多数皮肤癣菌病的病因。感染的治疗耗时且非常昂贵;感染很容易复发,导致治疗失败、持续存在和慢性感染。这些问题促使研究人员转而研究天然替代疗法。[此处原文缺失植物名称]作为一种传统中药,具有多种药理活性和广泛的应用,因此具有很高的研究潜力和经济价值。我们通过细胞计数试剂盒-8法(CCK-8)检测了[此处原文缺失植物名称]水提取物对[此处原文缺失真菌名称]活性的影响,发现128和256μg/ml的[此处原文缺失植物名称]水提取物与[此处原文缺失真菌名称]共培养24小时对[此处原文缺失真菌名称]有抑制作用。扫描电子显微镜(SEM)和透射电子显微镜(TEM)结果证实,[此处原文缺失植物名称]水提取物破坏了[此处原文缺失真菌名称]。同时,对256μg/ml的[此处原文缺失植物名称]水提取物处理前后的[此处原文缺失真菌名称]进行质谱筛选,发现检测到966个差异表达蛋白,其中包括524个上调差异表达基因(DEGs)和442个下调DEGs。下调最显著的蛋白是几丁质合酶(CHS);qRT-PCR和蛋白质免疫印迹结果表明,与对照组相比,256μg/ml组中CHS的表达水平下调。研究表明,[此处原文缺失植物名称]水提取物可破坏菌丝体形态和[此处原文缺失真菌名称]的内部结构,并可抑制[此处原文缺失真菌名称]的生长。[此处原文缺失植物名称]水提取物的抗真菌作用可能与[此处原文缺失真菌名称]中CHS表达下调有关,CHS可能是其抗真菌机制的潜在靶点之一。我们得出结论,[此处原文缺失植物名称]水提取物可能是抗真菌剂的潜在候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbd7/8417377/78d4b841cf9b/fmicb-12-707174-g001.jpg

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