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一种用于真菌细胞学分析的成像流式细胞术方法的开发及其在抗真菌药物研发中的潜在应用

Development of an Imaging Flow Cytometry Method for Fungal Cytological Profiling and Its Potential Application in Antifungal Drug Development.

作者信息

McMahon Courtney L, Esqueda Marisol, Yu Jieh-Juen, Wall Gina, Romo Jesus A, Vila Taissa, Chaturvedi Ashok, Lopez-Ribot Jose L, Wormley Floyd, Hung Chiung-Yu

机构信息

Department of Molecular Microbiology and Immunology and South Texas Center for Emerging Infectious Diseases, The University of Texas at San Antonio, San Antonio, TX 78249, USA.

出版信息

J Fungi (Basel). 2023 Jun 30;9(7):722. doi: 10.3390/jof9070722.

Abstract

Automated imaging techniques have been in increasing demand for the more advanced analysis and efficient characterization of cellular phenotypes. The success of the image-based profiling method hinges on assays that can rapidly and simultaneously capture a wide range of phenotypic features. We have developed an automated image acquisition method for fungal cytological profiling (FCP) using an imaging flow cytometer that can objectively measure over 250 features of a single fungal cell. Fungal cells were labeled with calcofluor white and FM4-64FX, which bind to the cell wall and lipophilic membrane, respectively. Images of single cells were analyzed using IDEAS software. We first acquired FCPs of fungal cells treated with fluconazole, amphotericin B, and caspofungin, each with a distinct mode of action, to establish FCP databases of profiles associated with specific antifungal treatment. Once fully established, we investigated the potential application of this technique as a screening methodology to identify compounds with novel antifungal activity against and . Altogether, we have developed a rapid, powerful, and novel image-profiling method for the phenotypic characterization of fungal cells, also with potential applications in antifungal drug development.

摘要

对于细胞表型的更高级分析和高效表征,自动化成像技术的需求一直在增加。基于图像的分析方法的成功取决于能够快速且同时捕获广泛表型特征的检测方法。我们开发了一种用于真菌细胞学分析(FCP)的自动化图像采集方法,使用成像流式细胞仪,该仪器可以客观地测量单个真菌细胞的250多个特征。真菌细胞用分别与细胞壁和亲脂性膜结合的荧光增白剂和FM4-64FX进行标记。使用IDEAS软件分析单个细胞的图像。我们首先获取了用氟康唑、两性霉素B和卡泊芬净处理的真菌细胞的FCP,每种药物都有独特的作用方式,以建立与特定抗真菌治疗相关的FCP数据库。一旦完全建立,我们研究了该技术作为一种筛选方法的潜在应用,以鉴定对……具有新型抗真菌活性的化合物。总之,我们开发了一种快速、强大且新颖的图像分析方法,用于真菌细胞的表型表征,在抗真菌药物开发中也具有潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3f0/10381375/c2660d6919ed/jof-09-00722-g001.jpg

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