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Updated: Jan 8, 2026

A Multilayer Microfluidic Platform for the Conduction of Prolonged Cell-Free Gene Expression
Published on: October 6, 2019
Dynamic Interaction: Synthetic Biology and Cell-Free Biosensors Drive Each Other Forward
Shan Liu1, Boyu Ma2, Hongjie Chi2
1Sichuan Provincial Key Laboratory for Human Disease Gene Study, Department of Medical Genetics, Sichuan Academy of Medical Sciences and Sichuan Provincial People's Hospital, University of Electronic Science and Technology, Chengdu 610072, China.
Abstract:
The convergence of synthetic biology and biosensor technology is driving a scientific and technological revolution in biotechnology. Characterized by its interdisciplinary nature, synthetic biology applies engineering principles to design and construct novel biological components and systems, significantly advancing biosensor development. As a key interface between the digital and biomolecular worlds within synthetic biology, cell-free biosensors (CFBs) leverage core advantages─including rapid prototyping, high controllability, excellent biosafety, and tolerance to potentially toxic substances─to demonstrate increasingly significant strategic value and broad application potential in numerous frontier fields. These fields encompass the precise design of biological circuits, intelligent optimization of metabolic pathways, and efficient in vitro diagnostics. CFBs overcomes limitations inherent in traditional cell-based sensors, offering a powerful platform for instant, on-demand biomolecular detection. This review aims to explore the innovative potential unlocked by the integration of synthetic biology and biosensors and to systematically summarize the latest research progress and technological breakthroughs in the CFB field.
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