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Open AccessJournal ArticleDOI

An Operational DNA Strand Displacement Encryption Approach

Enqiang Zhu, +3 more
- 01 Mar 2022 - 
- Vol. 12, Iss: 5, pp 877-877
TLDR
The proposed encryption framework provides a potential way to realize DNA-strand-displacement-based encryption via biological experiments and promotes the research on DNA- Strand-Displacement -based encryption.
Abstract
DeoxyriboNucleic Acid (DNA) encryption is a new encryption method that appeared along with the research of DNA nanotechnology in recent years. Due to the complexity of biology in DNA nanotechnology, DNA encryption brings in an additional difficulty in deciphering and, thus, can enhance information security. As a new approach in DNA nanotechnology, DNA strand displacement has particular advantages such as being enzyme free and self-assembly. However, the existing research on DNA-strand-displacement-based encryption has mostly stayed at a theoretical or simulation stage. To this end, this paper proposes a new DNA-strand-displacement-based encryption framework. This encryption framework involves three main strategies. The first strategy was a tri-phase conversion from plaintext to DNA sequences according to a Huffman-coding-based transformation rule, which enhances the concealment of the information. The second strategy was the development of DNA strand displacement molecular modules, which produce the initial key for information encryption. The third strategy was a cyclic-shift-based operation to extend the initial key long enough, and thus increase the deciphering difficulty. The results of simulation and biological experiments demonstrated the feasibility of our scheme for encryption. The approach was further validated in terms of the key sensitivity, key space, and statistic characteristic. Our encryption framework provides a potential way to realize DNA-strand-displacement-based encryption via biological experiments and promotes the research on DNA-strand-displacement-based encryption.

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Citations
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Journal ArticleDOI

DNA strand displacement based computational systems and their applications

TL;DR: In this paper , a review introduced the recent development of DSD-based computational systems and their applications and some DSDrelated tools and issues are also discussed, as well as some issues and solutions.
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An image cryptography method in highly error-prone DNA storage channel

TL;DR: Wang et al. as mentioned in this paper proposed an image encryption method based on the modulation-based storage architecture, which takes advantage of the unpredictable modulation signals to encrypt image in highly error-prone DNA storage channel.
Journal ArticleDOI

Mapping Temporally Ordered Inputs to Binary Message Outputs with a DNA Temporal Logic Circuit

TL;DR: In this paper , a DNA temporal logic circuit based on DNA strand displacement reactions was proposed, which can map temporally ordered inputs to corresponding binary message outputs, where the presence or absence of the output signal is determined by the type of substrate reaction with the input so that different orders of inputs correspond to different binary outputs.
Posted ContentDOI

A novel image encryption scheme for DNA storage systems based on gene hybridization and gene mutation

TL;DR: Wang et al. as discussed by the authors proposed a DNA storage-oriented image encryption algorithm utilizing the information processing mechanisms in molecule biology, which performs pixel replacement by gene hybridization, and implements dual diffusion by pixel diffusion and gene mutation.
References
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Journal ArticleDOI

Image encryption using DNA complementary rule and chaotic maps

TL;DR: Experimental results and security analysis show that the scheme can not only achieve good encryption result, but also the key space is large enough to resist against common attacks.
Journal ArticleDOI

Image encryption using 2D Hénon-Sine map and DNA approach

TL;DR: A novel image encryption scheme whose image pixels are diffused by the DNA approach and permutated by 2D-HSM, is proposed to protect image content while an image is transferred over the Internet.
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Visual DSD

TL;DR: The Visual DSD (DNA Strand Displacement) tool allows rapid prototyping and analysis of computational devices implemented using DNA strand displacement, in a convenient web-based graphical interface.
Journal ArticleDOI

Selective encryption for gray images based on chaos and DNA complementary rules

TL;DR: The simulated experimental results and the security analysis show that this block cipher can not only achieve good encryption effect to resist the exhaustive and statistical attacks but also is a good candidate for encrypting large sized uncompressed gray images.

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TL;DR: In this article, the authors present procedures for DNA-based cryptography based on one-time-pads that are in principle unbreakable and discuss various modified DNA steganography methods which appear to have improved security.
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