ASCII码
密码学
多米诺骨牌
DNA折纸
加密
隐写术
计算机科学
DNA纳米技术
DNA运算
DNA
理论计算机科学
纳米技术
计算生物学
生物
材料科学
遗传学
算法
计算机安全
嵌入
人工智能
催化作用
操作系统
生物化学
作者
Sisi Fan,Dongfang Wang,Jin Cheng,Yan Liu,Tao Luo,Daxiang Cui,Yonggang Ke,Jie Song
标识
DOI:10.1002/anie.202003823
摘要
DNA nanostructures with programmable nanoscale patterns has been achieved in the past decades, and molecular information coding (MIC) on those designed nanostructures has gained increasing attention for information security. However, achieving steganography and cryptography synchronously on DNA nanostructures remains a challenge. Herein, we demonstrated MIC in a reconfigurable DNA origami domino array (DODA), which can reconfigure intrinsic patterns but keep the DODA outline the same for steganography. When a set of keys (DNA strands) are added, the cryptographic data can be translated into visible patterns within DODA. More complex cryptography with the ASCII code within a programmable 6×6 lattice is demonstrated to demosntrate the versatility of MIC in the DODA. Furthermore, an anti-counterfeiting approach based on conformational transformation-mediated toehold strand displacement reaction is designed to protect MIC from decoding and falsification.
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