小泡
纳米技术
滚动圆复制
纳米孔
生物物理学
DNA纳米技术
DNA折纸
刚度(电磁)
化学
联轴节(管道)
人工细胞
细胞骨架
DNA
合成生物学
微型反应器
脚手架
膜
A-DNA
材料科学
工作(物理)
分子机器
结构刚度
仿生学
微流控
原细胞
张拉整体
集体运动
弹头
微技术
作者
Mallikarjuna Reddy Kesama,Jeffery Guo,Anusha,Yancheng Du,Chengde Mao,Jong Hyun Choi
出处
期刊:Nano Letters
[American Chemical Society]
日期:2026-04-01
卷期号:26 (14): 4866-4873
标识
DOI:10.1021/acs.nanolett.6c00726
摘要
We present a biomimetic vesicular platform that can act as a programmable microreactor via rolling circle amplification (RCA). The RCA signal drives the construction of long DNA chains within a giant vesicle, which are organized into an internal network for structural reinforcement, resembling the cytoskeleton inside a cell that provides structural stability, adaptive responses, and mechanical strength. This emergent structure increases the rigidity of synthetic vesicles by an order of magnitude over pristine vesicles, coupling molecular-scale biochemical activity with mesoscale mechanical behavior. DNA origami nanopores create synthetic compartments that exhibit life-like functions, demonstrating molecular transport and linking the vesicle cavity with external environments for controlled amplification. This work shows that it is possible to create synthetic cells that possess both functional regulation and mechanical feedback, opening new opportunities in synthetic biology, biomanufacturing, and bioinspired materials.
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