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Peptide and Protein Design for Biopharmaceutical Applications (Jensen/Peptide and Protein Design for Biopharmaceutical Applications) || Front Matter

✍ Scribed by Jensen, Knud J.


Book ID
120645520
Publisher
John Wiley & Sons, Ltd
Year
2009
Tongue
English
Weight
257 KB
Edition
1
Category
Article
ISBN
0470319615

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✦ Synopsis


Peptides serve as effective drugs in the clinic today. However the inherent drawbacks of peptide structures can limit their efficacy as drugs. To overcome this researchers are developing new methods to create β€˜tailor-made’ peptides and proteins with improved pharmacological properties.

Design of Peptides and Proteins provides an overview of the experimental and computational methods for peptide and protein design, with an emphasis on specific applications for therapeutics and biomedical research. Topics covered include:

  • Computer modeling of peptides and proteins

    • Peptidomimetics

      • Design and synthesis of cyclic peptides

        • Carbohydrates in peptide and protein design

          • De novo design of peptides and proteins

            • Medical development applications

              • An extended case study – the design of insulin variants

Design of Peptides and Proteins presents the state-of-the-art of this exciting approach for therapeutics, with contributions from international experts. It is an essential resource for academic and industrial scientists in the fields of peptide and protein drug design, biomedicine, biochemistry, biophysics, molecular modelling, synthetic organic chemistry and medicinal/pharmaceutical chemistry.


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Peptides serve as effective drugs in the clinic today. However the inherent drawbacks of peptide structures can limit their efficacy as drugs. To overcome this researchers are developing new methods to create β€˜tailor-made’ peptides and proteins with improved pharmacological properties. ***Design of

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Peptide and Protein Design for Biopharma
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Peptides serve as effective drugs in the clinic today. However the inherent drawbacks of peptide structures can limit their efficacy as drugs. To overcome this researchers are developing new methods to create β€˜tailor-made’ peptides and proteins with improved pharmacological properties. ***Design of