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用于人体肠道微生物组应用的工程化癌症靶向微生物和封装设备。

Engineered Cancer Targeting Microbes and Encapsulation Devices for Human Gut Microbiome Applications.

机构信息

Department of Cardiovascular and Metabolic Sciences, Lerner Research Institute of the Cleveland Clinic, Cleveland, Ohio 44195, United States.

Department of Biomedical Engineering, Cleveland State University, Cleveland, Ohio 44115, United States.

出版信息

Biochemistry. 2022 Dec 20;61(24):2841-2848. doi: 10.1021/acs.biochem.2c00251. Epub 2022 Jul 22.

Abstract

The gut microbiota produce specialized metabolites that are important for maintaining host health homeostasis. Hence, unstable production of these metabolites can contribute to diseases such as inflammatory bowel disease and colon cancer. While fecal transplantation or dietary modification approaches can be used to correct the gut microbial community's metabolic output, this Perspective focuses on the use of engineered bacteria. We highlight recent advances in bacterial synthetic biology approaches for the treatment of colorectal cancer and systemic tumors and discuss the functionality and biochemical properties of novel containment approaches using hydrogel-based and electronic devices. Synthetic circuitry refinement and incorporation of novel functional modules have enabled more targeted detection of colonic tumors and delivery of anticancer compounds inside the gastrointestinal (GI) tract, as well as the design of tumor-homing bacteria capable of recruiting infiltrating T cells. Engineering challenges in these applications include the stability of the genetic circuits, long-term engraftment of the chosen chassis, and containment of the synthetic microbes' activity to the diseased tissues. Hydrogels are well-suited to the encapsulationo of living organisms due to their matrix structure and tunable porosity. The matrix structure allows a dried hydrogel to collect and contain GI contents. Engineered bacteria that sense GI tract inflammation or tumors and release bioactive metabolites to the targeted area can be encapsulated. Electronic devices can be enabled with additional measuring and data processing capabilities. We expect that engineered devices will become more important in the containment and delivery of synthetic microbes for diagnostic and therapeutic applications.

摘要

肠道微生物群产生的特殊代谢物对维持宿主健康的内稳态很重要。因此,这些代谢物的不稳定产生可能导致炎症性肠病和结肠癌等疾病。虽然可以使用粪便移植或饮食改变的方法来纠正肠道微生物群落的代谢产物,但本观点主要关注工程细菌的应用。我们重点介绍了细菌合成生物学方法在治疗结直肠癌和系统性肿瘤方面的最新进展,并讨论了利用水凝胶和电子设备的新型封闭方法的功能和生化特性。合成电路的改进和新型功能模块的整合,使我们能够更有针对性地检测结肠肿瘤,并在胃肠道内递抗癌化合物,还可以设计能够招募浸润性 T 细胞的肿瘤归巢细菌。这些应用中的工程挑战包括遗传电路的稳定性、所选底盘的长期定植以及将合成微生物的活性限制在病变组织内。水凝胶由于其基质结构和可调节的孔隙率,非常适合于封装生物体。基质结构允许干燥的水凝胶收集和包含胃肠道内容物。可以封装能够感知胃肠道炎症或肿瘤并向靶向区域释放生物活性代谢物的工程细菌。电子设备可以通过额外的测量和数据处理能力来实现。我们预计,工程设备将在合成微生物的封装和递送上变得更加重要,以用于诊断和治疗应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f23/9785036/007f77cd8ab7/bi2c00251_0001.jpg

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