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利用对分子刺激有反应的合成基因回路增强基于细胞的疗法。

Enhancing cell-based therapies with synthetic gene circuits responsive to molecular stimuli.

作者信息

Galvan Silvia, Teixeira Ana P, Fussenegger Martin

机构信息

Department of Biosystems Science and Engineering, ETH Zurich, Basel, Switzerland.

Faculty of Science, University of Basel, Basel, Switzerland.

出版信息

Biotechnol Bioeng. 2024 Oct;121(10):2987-3000. doi: 10.1002/bit.28770. Epub 2024 Jun 12.

Abstract

Synthetic biology aims to contribute to the development of next-generation patient-specific cell-based therapies for chronic diseases especially through the construction of sophisticated synthetic gene switches to enhance the safety and spatiotemporal controllability of engineered cells. Indeed, switches that sense and process specific cues, which may be either externally administered triggers or endogenous disease-associated molecules, have emerged as powerful tools for programming and fine-tuning therapeutic outputs. Living engineered cells, often referred to as designer cells, incorporating such switches are delivered to patients either as encapsulated cell implants or by infusion, as in the case of the clinically approved CAR-T cell therapies. Here, we review recent developments in synthetic gene switches responsive to molecular stimuli, spanning regulatory mechanisms acting at the transcriptional, translational, and posttranslational levels. We also discuss current challenges facing clinical translation of cell-based therapies employing these devices.

摘要

合成生物学旨在推动下一代针对慢性病的患者特异性细胞疗法的发展,特别是通过构建复杂的合成基因开关来提高工程细胞的安全性和时空可控性。事实上,能够感知和处理特定信号的开关已成为用于编程和微调治疗输出的强大工具,这些信号可以是外部给予的触发因素,也可以是与疾病相关的内源性分子。包含此类开关的活工程细胞,通常被称为设计细胞,作为封装细胞植入物或通过输注的方式输送给患者,就像临床批准的嵌合抗原受体T细胞(CAR-T)疗法那样。在这里,我们综述了对分子刺激有响应的合成基因开关的最新进展,涵盖了在转录、翻译和翻译后水平起作用的调控机制。我们还讨论了采用这些装置的细胞疗法临床转化目前面临的挑战。

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