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用于测量吉西他滨化疗药物细菌降解的功能测定法

Functional Assay for Measuring Bacterial Degradation of Gemcitabine Chemotherapy.

作者信息

Sayin Serkan, Mitchell Amir

机构信息

Department of Systems Biology, University of Massachusetts Chan Medical School, Worcester, MA, USA.

出版信息

Bio Protoc. 2023 Sep 5;13(17):e4797. doi: 10.21769/BioProtoc.4797.

Abstract

Drug biotransformation by the host microbiome can impact the therapeutic success of treatment. In the context of cancer, drug degradation can take place within the microenvironment of the targeted tumor by intratumor bacteria. In pancreatic cancer, increased chemo-resistance against the frontline chemotherapy gemcitabine is thought to arise from drug degradation by the tumor microbiome. This bacterial-drug interaction highlights the need for developing rapid assays for monitoring bacterial gemcitabine breakdown. While chemical approaches such as high-performance liquid chromatography are suitable for this task, they require specialized equipment and expertise and are limited in throughput. Functional cell-based assays represent an alternate approach for performing this task. We developed a functional assay to monitor the rate of bacterial gemcitabine breakdown using a highly sensitive bacterial reporter strain. Our method relies on standard laboratory equipment and can be implemented at high throughput to monitor drug breakdown by hundreds of strains simultaneously. This functional assay can be readily adapted to monitor degradation of other drugs. Key features Quantification of gemcitabine breakdown by incubating bacteria that degrades the drug and subsequently testing the growth of a reporter strain on filtered supernatant. Use of an optimized reporter strain that was genetically engineered to be a non-degrader strain and highly sensitive to gemcitabine. A high-throughput assay performed in microplates that can be adjusted for identifying bacteria with a fast or slow gemcitabine degradation rate. The assay results can be compared to results from a standard curve with known drug concentrations to quantify degradation rate.

摘要

宿主微生物群对药物的生物转化会影响治疗的成功与否。在癌症背景下,肿瘤内的细菌可在靶向肿瘤的微环境中发生药物降解。在胰腺癌中,对一线化疗药物吉西他滨的化疗耐药性增加被认为是由肿瘤微生物群导致的药物降解引起的。这种细菌与药物的相互作用凸显了开发快速检测方法以监测细菌对吉西他滨分解的必要性。虽然高效液相色谱等化学方法适用于此任务,但它们需要专门的设备和专业知识,且通量有限。基于功能细胞的检测方法是执行此任务的另一种途径。我们开发了一种功能检测方法,使用高度敏感的细菌报告菌株来监测细菌对吉西他滨的分解速率。我们的方法依赖于标准实验室设备,并且可以高通量实施,以同时监测数百种菌株对药物的分解情况。这种功能检测方法可以很容易地调整用于监测其他药物的降解。关键特性 通过孵育降解药物的细菌,然后检测报告菌株在过滤后的上清液中的生长情况来定量吉西他滨的分解。使用经过基因工程改造的优化报告菌株,使其成为非降解菌株且对吉西他滨高度敏感。在微孔板中进行的高通量检测,可进行调整以识别吉西他滨降解速率快或慢的细菌。检测结果可与已知药物浓度的标准曲线结果进行比较,以定量降解速率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/142a/10501921/80396e0037a2/BioProtoc-13-17-4797-g001.jpg

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