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声遗传学控制的合成设计细胞用于肿瘤小鼠模型中的癌症治疗。

Sonogenetics-controlled synthetic designer cells for cancer therapy in tumor mouse models.

机构信息

Shanghai Frontiers Science Center of Genome Editing and Cell Therapy, Biomedical Synthetic Biology Research Center, Shanghai Key Laboratory of Regulatory Biology, Institute of Biomedical Sciences and School of Life Sciences, East China Normal University, Dongchuan Road 500, Shanghai 200241, China.

Shanghai Frontiers Science Center of Genome Editing and Cell Therapy, Biomedical Synthetic Biology Research Center, Shanghai Key Laboratory of Regulatory Biology, Institute of Biomedical Sciences and School of Life Sciences, East China Normal University, Dongchuan Road 500, Shanghai 200241, China; The Radiology Department of Shanxi Provincial People's Hospital, The Fifth Hospital of Shanxi Medical University, Taiyuan 030001, China.

出版信息

Cell Rep Med. 2024 May 21;5(5):101513. doi: 10.1016/j.xcrm.2024.101513. Epub 2024 Apr 11.

Abstract

Bacteria-based therapies are powerful strategies for cancer therapy, yet their clinical application is limited by a lack of tunable genetic switches to safely regulate the local expression and release of therapeutic cargoes. Rapid advances in remote-control technologies have enabled precise control of biological processes in time and space. We developed therapeutically active engineered bacteria mediated by a sono-activatable integrated gene circuit based on the thermosensitive transcriptional repressor TlpA. Through promoter engineering and ribosome binding site screening, we achieved ultrasound (US)-induced protein expression and secretion in engineered bacteria with minimal noise and high induction efficiency. Specifically, delivered either intratumorally or intravenously, engineered bacteria colonizing tumors suppressed tumor growth through US-irradiation-induced release of the apoptotic protein azurin and an immune checkpoint inhibitor, a nanobody targeting programmed death-ligand 1, in different tumor mouse models. Beyond developing safe and high-performance designer bacteria for tumor therapy, our study illustrates a sonogenetics-controlled therapeutic platform that can be harnessed for bacteria-based precision medicine.

摘要

基于细菌的疗法是癌症治疗的有力策略,但由于缺乏可调节的遗传开关来安全调节治疗货物的局部表达和释放,其临床应用受到限制。远程控制技术的快速发展使我们能够精确地控制生物过程的时间和空间。我们开发了一种基于热敏感转录抑制剂 TlpA 的声激活整合基因回路的治疗活性工程细菌。通过启动子工程和核糖体结合位点筛选,我们实现了工程细菌中超声诱导的蛋白质表达和分泌,具有最小的噪声和高诱导效率。具体而言,通过肿瘤内或静脉内给药,定植于肿瘤中的工程细菌通过超声辐射诱导凋亡蛋白天青蛋白和针对程序性死亡配体 1 的纳米抗体(一种免疫检查点抑制剂)的释放,在不同的肿瘤小鼠模型中抑制肿瘤生长。除了为肿瘤治疗开发安全且高性能的设计细菌外,我们的研究还说明了可以用于基于细菌的精准医学的声遗传学控制治疗平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc19/11148564/7d6083b2f762/fx1.jpg

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