Synthetic Receptors for Biomolecules: Design Principles and Applications (Monographs in Supramolecular Chemistry, Band 14) - Hardcover

 
9781849739719: Synthetic Receptors for Biomolecules: Design Principles and Applications (Monographs in Supramolecular Chemistry, Band 14)

Inhaltsangabe

Synthetic receptor molecules, molecules that mimic antibody recognition, have many biomedical applications in drug leads, drug delivery vehicles, imaging agents, sensing agents, capture agents, and separation systems. The book will describe the most effective synthetic receptors for each major class of biomolecules within the context of specific applications. Written in an accessible style for readers new to supramolecular chemistry or for those looking for synthetic receptors. Each chapter follows the same systematic format of (a) Chemical structures and physical properties of the biomolecule, (b) Biological recognition of the biomolecule, (c) Synthetic receptors for the biomolecule, (d) Future directions and Challenges. Edited by a leader in the field, the book is aimed at scientists and engineers interested in fundamental supramolecular chemistry as well as those interested in its applications in biochemistry, analytical chemistry, biomedical science and environmental science.

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Über die Autorin bzw. den Autor

Professor Smith is the Emil T. Hofman Professor of Chemistry and Biochemistry and Director of the Notre Dame Integrated Imaging Facility. As an independent investigator he has published 195 papers over the last 22 years in the fields of bioorganic and supramolecular chemistry.

Von der hinteren Coverseite

Synthetic receptor molecules, molecules that mimic antibody recognition, are widely used for developing drug leads; drug delivery vehicles; imaging agents; sensing agents; capture agents and separation systems. Synthetic Receptors for Biomolecules covers the most effective synthetic receptors for each major class of biomolecules within the context of specific applications.

The book starts with an introduction to the applications of synthetic receptors for biomolecules and their design and synthesis for biomolecule recognition. Dedicated chapters then cover synthetic receptors for the key biomolecules including inorganic cations; small organic and inorganic anions; carbohydrates; nucleosides/nucleotides; oligonucleotides; amino acids and peptides; protein surfaces as well as non-polar and polar lipids; Each chapter follows the same systematic format of (a) chemical structures and physical properties of the biomolecule, (b) biological recognition of the biomolecule, (c) synthetic receptors for the biomolecule, (d) future directions and challenges.

Edited by a leader in the field, the book is written in an accessible style for readers new to supramolecular chemistry or for those looking for synthetic receptors.

Aus dem Klappentext

Synthetic receptor molecules, molecules that mimic antibody recognition, are widely used for developing drug leads; drug delivery vehicles; imaging agents; sensing agents; capture agents and separation systems. Synthetic Receptors for Biomolecules covers the most effective synthetic receptors for each major class of biomolecules within the context of specific applications.

The book starts with an introduction to the applications of synthetic receptors for biomolecules and their design and synthesis for biomolecule recognition. Dedicated chapters then cover synthetic receptors for the key biomolecules including inorganic cations; small organic and inorganic anions; carbohydrates; nucleosides/nucleotides; oligonucleotides; amino acids and peptides; protein surfaces as well as non-polar and polar lipids; Each chapter follows the same systematic format of (a) chemical structures and physical properties of the biomolecule, (b) biological recognition of the biomolecule, (c) synthetic receptors for the biomolecule, (d) future directions and challenges.

Edited by a leader in the field, the book is written in an accessible style for readers new to supramolecular chemistry or for those looking for synthetic receptors.

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