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Symmetric-Key Encryption Based on Bioaffinity Interactions

机译:基于生物亲安交互的对称密钥加密

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The research presented here shows a bridge between biochemistry and cryptography. Enzyme-based assays were used in a new methodology linked to ciphers and cipher systems. Three separate enzyme assays, alkaline phosphatase (ALP) (E.C. 3.1.3,1), lysozyme (E.C. 3.2.1.17), and horseradish peroxidase (HRP) (E.C. 1.11.1.7), were used to create a cipher key in order to encrypt a message. By choosing certain parameters for one's experiment that are performed in the same way as a person receiving the message, correct encryption and decryption keys would be produced, resulting in a correct encryption and decryption of a message. It is imperative that both parties perform the same experiment under the same conditions in order to correctly interpret the message. Bioaffinity-based assays, in particular enzymatic assays, provide a specific, yet flexible mechanism to use for the encryption of messages. Because of the nature of this process there are a multitude of sets of parameters that may be chosen, each of which would result in a different key being produced, heightening the security and the robustness of the method. This paper shows that by using this concept of forming encryption keys using a bioaffinity-based approach, one is able to properly encrypt and decrypt a message, which could be viable for other biochemically based techniques.
机译:这里提出的研究显示了生物化学和密码术之间的桥梁。基于酶的测定以与密码和密码系统连接的新方法使用。三个单独的酶测定,碱性磷酸酶(ALP)(EC 3.1.3,1),溶菌酶(EC 3.2.1.17)和辣根过氧化物酶(HRP)(EC 1.11.1.7),以创建密钥键,以便加密消息。通过选择以与接收消息的人相同的实验的某些参数,将产生正确的加密和解密密钥,从而产生正确的加密和解密消息。必须在同一条件下执行相同的实验,以便正确解释信息。基于生物化的测定,特别是酶测定,提供用于用于加密消息的特定但柔性的机制。由于该过程的性质,存在可以选择的多种参数集,每个参数将导致正在产生不同的键,加高方法的安全性和鲁棒性。本文展示,通过使用基于生物化的方法使用这种形成加密密钥的概念,可以正确地加密和解密消息,这可能对其他基于生物化学技术可行。

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