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Updated: Jan 14, 2026

Using Synthetic Biology to Engineer Living Cells That Interface with Programmable Materials
Published on: March 9, 2017
Applications of synthetic polymers directed toward living cells
Anqi Zhang1,2, Spencer Zhao1, Jonathan Tyson1,2,3
1Department of Chemical Engineering, Stanford University, Stanford, CA 94305, USA.
Abstract:
Cells execute remarkable functions using biopolymers synthesized from natural building blocks. Engineering cells to leverage the vast array of synthesizable abiotic polymers could provide enhanced or entirely new cellular functions. In this review, we discuss the applications of in situ synthesized abiotic polymers in three distinct domains: intracellular polymerization, cell surface polymerization, and extracellular polymerization. These advances have led to novel applications in various areas, such as cancer therapy, cell imaging, cellular activity manipulation, cell protection, and electrode assembly. Examples of these synthetic approaches can be applied across all domains of life, ranging from microbes and cultured mammalian cells to plants and animals. Finally, we discuss challenges and future opportunities in this emerging field, which could enable new synthetic approaches to influence biological processes and functions.
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