New Frontiers and Applications of Synthetic Biology

Forfatter: info mangler
Bog
  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

New Frontiers and Applications of Synthetic Biology presents a collection of chapters from eminent synthetic biologists across the globe who have established experience and expertise working with synthetic biology. This book offers several important areas of synthetic biology which allow us to read and understand easily. It covers the introduction of synthetic biology and design of promoter, new DNA synthesis and sequencing technology, genome assembly, minimal cells, small synthetic RNA, directed evolution, protein engineering, computational tools, de novo synthesis, phage engineering, a sensor for microorganisms, next-generation diagnostic tools, CRISPR-Cas systems, and more. This book is a good source for not only researchers in designing synthetic biology, but also for researchers, students, synthetic biologists, metabolic engineers, genome engineers, clinicians, industrialists, stakeholders and policymakers interested in harnessing the potential of synthetic biology in many areas.

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Detaljer
  • SprogEngelsk
  • Sidetal486
  • Udgivelsesdato19-01-2022
  • ISBN139780128244692
  • Forlag Academic Press Inc
  • FormatPaperback
Størrelse og vægt
  • Vægt1250 g
  • coffee cup img
    10 cm
    book img
    21,6 cm
    27,6 cm

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    Fitness DNA Plant Cancer Automation Experimental design Genetic engineering Genomics Oligonucleotides Biosensors Computer-aided design Autonomy Metabolic Diseases Microfluidics Machine learning Bacteria Biofilms Drug carriers Fairness Cyanobacteria Artificial cells Diagnostics Biomimicry Metabolic Engineering CRISPR/Cas Infectious diseases Fragments Bioluminescent sensors Next Generation Technologies Artificial Chromosomes Molecular Biosensors Genome editing Biocomputation Phage therapy Aptamers High-throughput DNA Synthesis DNA sequencing Bottom-up Biomaterials CRISPR-Cas Bacterial Complexity Metabolic pathways Design principles Phage engineering Principlism Deep sequencing Cell-free protein synthesis Human cells Organ on a chip Chemical diversity Living materials Molecular computation Computational design Mathematical modeling, Gene regulation CRISPR Genome assembly Directed Evolution Eukaryotes Design automation CAR T Meganucleases Activity-based biosensors Allosteric ribozymes Base pair (bp) Cell-free codon bias CRISPR-Cas-based detection of nucleic acids Detection of microorganisms Dynamic regulation DBT cycles De Novo Design Gene Gene design genetic circuits Engineering techniques Genome design Genetic alphabet Deep mutational scanning Difficult to express Isothermal amplification of nucleic acids LoxPsym sites Microbes-on-chip Genetic logic device Genome tools minimal genome nonmaleficence Genetic circuit Neochromosome HTS arrays Genotype–phenotype mapping Promoter design Promoter characterization Molecular Circuits Metabolic pathway design Phage-based detection

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