加密
计算机科学
概率加密
多重加密
信息流
磁盘加密
动态加密
文件系统级加密
解码方法
信息安全
40位加密
密码学
范围(计算机科学)
编码(内存)
磁盘加密理论
理论计算机科学
序列(生物学)
分布式计算
钥匙(锁)
56位加密
维数(图论)
客户端加密
作者
Wen Cheng,Wanyan Zeng,Hang Xiao,Jiacheng Li,Jiahao Fan,Yixuan Wu,Xiaohai Yang,Kemin Wang,Jin Huang
摘要
ABSTRACT DNA molecules exhibit remarkable specificity and sequence plasticity, making them an excellent medium for information encryption and storage. However, a significant challenge remains in simplifying sequence design and accelerating readout while maintaining encryption security. Here, we introduce a platform based on DNA self‐assembly on bead surfaces. Information encryption is accomplished by precisely controlling the distance between Q and F labeled on the DNA strands, and information decryption is carried out using flow cytometry. This platform supports both the writing and erasing of signals. Moreover, it allows for the customization of encryption methods according to the significance of the information, offering a high degree of flexibility. Furthermore, this platform can be applied to achieve encryption functionality in jigsaw puzzle games, expanding its scope of application. The DNA sequence design of this method is notably straightforward, and it enables the rapid decoding of information through a flow cytometer, significantly increasing encryption and decryption efficiency while ensuring information security. In summary, this approach provides a new avenue for developing next‐generation cryptographic systems with promising future applications.
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