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DNA Beyond Genes: From Data Storage and Computing to Nanobots, Nanomedicine, and Nanoelectronics by Vadim V. Demidov

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166
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28.71 MB
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The book DNA Beyond Genes: From Data Storage and Computing to Nanobots, Nanomedicine, and Nanoelectronics by Vadim V. Demidov** explores the wide range of non-biological, material-based applications of DNA. It details how the programmable and self-recognizing properties of DNA are being used as a backbone for nanoengineering. [1, 2, 3]
The primary topics and fields covered in the book include:
💾 DNA Data Storage
  • Information Archiving: Mechanisms for encoding text, images, and binary code into the four nucleotide letters (A, C, G, T).
  • Data Retrieval: Utilizing next-generation and third-generation portable DNA sequencers to read and decode hidden information.
  • Security & Cryptography: The use of DNA for steganography, cryptography, and creating physical identity tags. [1, 2]
💻 DNA Computing
  • Molecular Computation: Utilizing DNA molecule interactions to process data and act as a universal chemical substrate.
  • Logic Circuits: Designing enzyme-free and enzymatic DNA-based logic circuits and primitive molecular neural networks. [1, 2]
🤖 Structural DNA Nanotechnology & Nanobots
  • DNA Origami: The technique of folding long single-stranded DNA into precise 2D and 3D shapes.
  • Molecular Machines: The fabrication of dynamic nanoscale devices like molecular walkers, switches, hinges, and nanorobots. [1]
🩺 Nanomedicine & Biosensing
  • Targeted Drug Delivery: Using drug-loaded DNA nanocapsules and nanobots that can respond to environmental stimuli to deliver therapies precisely to diseased cells.
  • Biosensors: Employing engineered DNA architectures to sense biochemical signals or disease markers. [1, 2, 3, 4]
⚡ DNA Nanoelectronics
  • DNA Wires: Exploring the electrical conductivity properties of DNA strands.
  • Nanoscale Components: Using DNA scaffolding to organize nanoparticles, proteins, and carbon materials for advanced electronic and plasmonic components. [1, 2]
The book is structured to be accessible to a wide audience—ranging from university students and researchers to biotech managers and tech investors—by pairing technical principles with clear, lively illustrations. [1, 2]

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