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Nathan Brown

Bioisosteres in Medicinal Chemistry

Buch

Written with the practicing medicinal chemist in mind, this is the first modern handbook to systematically address the topic of bioisosterism.As such, it provides a ready reference on the principles and methods of bioisosteric replacement as a key tool in preclinical drug development.The first part provides an overview of bioisosterism, classical bioisosteres and typical molecular interactions that need to be considered,while the second part describes a number of molecular databases as sources of bioisosteric identification and rationalization. The third partcovers the four key methodologies for bioisostere identification and replacement: phy… Mehr

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Produktdetails


Weitere Autoren: Mannhold, Raimund / Kubinyi, Hugo / Folkers, Gerd
  • ISBN: 978-3-527-33015-7
  • EAN: 9783527330157
  • Produktnummer: 12377993
  • Verlag: Wiley-VCH
  • Sprache: Englisch
  • Erscheinungsjahr: 2012
  • Seitenangabe: 256 S.
  • Masse: H24.8 cm x B17.4 cm x D1.7 cm 629 g
  • Abbildungen: s/w. Tab.
  • Reihenbandnummer: 54
  • Gewicht: 629

Über den Autor


Nathan Brown is the Head of the In Silico Medicinal Chemistry group in the Cancer Research UK Cancer Therapeutics Unit at the Institute of Cancer Research in London (UK). At the ICR, Dr. Brown and his group support the entire drug discovery portfolio together with developing new computational methodologies to enhance the drug design work. Nathan Brown conducted his doctoral research in Sheffield with Professor Peter Willett focusing on evolutionary algorithms and graph theory applied to challenges in chemoinformatics. After a two-year Marie Curie fellowship in Amsterdam in collaboration with Professor Johann Gasteiger in Erlangen, he joined the Novartis Institutes for BioMedical Research in Basel for a three year Presidential fellowship in Basel working with Professors Peter Willett and Karl-Heinz Altmann.His work has led to the pioneering work on mulitobjective design in addition to a variety of discoveries and method development in bioisosteric identification and replacement, scaffold hopping, molecular descriptors and statistical modeling. Nathan continues to pursue his research in all aspects of medicinal chemistry.

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