计算机科学
逻辑门
模块化设计
可扩展性
数字电子学
电子线路
限制
理论计算机科学
分布式计算
二进制数
构造(python库)
合成生物学
DNA运算
DNA
DNA纳米技术
逻辑综合
解码方法
异步电路
编码(社会科学)
算法
时序逻辑
锁(火器)
键盘
和大门
加法器
计算机工程
电子工程
编码(内存)
纳米技术
专用集成电路
计算机体系结构
并行计算
作者
Jiayang He,Xinyi Hu,Min Long,Yuqing Zhang,Ruo Yuan,Wenju Xu
出处
期刊:Nano Letters
[American Chemical Society]
日期:2026-07-18
卷期号:26 (29): 9658-9668
标识
DOI:10.1021/acs.nanolett.6c02608
摘要
Toehold-mediated strand displacement (TMSD) is essential for dynamic DNA nanotechnology but often suffers from slow kinetics and nonspecific leakage, limiting efficient logic systems. To address this, we propose an anchorhold-actuated strand migration (AASM) strategy that programs a modular duplex with three specific sites to modulate the dynamic exchange, selective recognition, and transient equilibrium. The anchorhold promotes invader docking and forms metastable intermediates for rapid, leak-free separator detachment via an out-of-equilibrium branch migration. With flexible DNA building blocks, we construct basic logic gates and two-layer circuits that perform algorithmic tasks with high efficiency and accuracy. We further update the responsive AASM to realize a square-root circuit for four-bit binary numbers and a two-digit DNA molecular keypad lock for information security using cascaded combinations. These systems exhibit a fast response, simple arithmetic, and correct input-output reporting. This scalable AASM strategy offers great potential for advancing complex yet effective digital biocomputing networks for molecular information processing applications.
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