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Nanotechnology and drug delivery / [edited by] Jose L. Arias.

Contributor(s): Material type: TextTextPublisher: Boca Raton : Taylor & Francis, 2014Description: v.1 : illustrations ; 24 cmContent type:
  • text
Media type:
  • unmediated
Carrier type:
  • volume
ISBN:
  • 9781466599475 (hardcover : alk. paper)
Subject(s): DDC classification:
  • 615.19 N 23
LOC classification:
  • RS199.5 .N368 2014
NLM classification:
  • QV 785
Online resources:
Contents:
Volume 1. Nanoplatforms in Drug Delivery.
Summary: "Pharmacotherapy is often limited by the inefficient activity and severe toxicity of drug molecules. Nanotechnology offers a revolutionary and definitive approach for the efficient delivery of drug molecules to non-healthy tissues and cells. This first volume of a series of two volumes analyzes the basics in the development of drug-loaded nanoplatforms, the so-called nanomedicines. Special attention is given to physicochemical engineering, pharmacokinetics, biocompatibility and biodegradability, representative nanoplatforms (based on lipids, polymers, cyclodextrins, metals, carbon, silica, iron oxides, etc.), and advanced nano-engineering strategies for passive, ligand-mediated, and/or stimuli-sensitive drug delivery and release"--Provided by publisher.
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Volume 1. Nanoplatforms in Drug Delivery.

pharmacy bookfair2016

Includes bibliographical references and index.

Volume 1. Nanoplatforms in Drug Delivery.

"Pharmacotherapy is often limited by the inefficient activity and severe toxicity of drug molecules. Nanotechnology offers a revolutionary and definitive approach for the efficient delivery of drug molecules to non-healthy tissues and cells. This first volume of a series of two volumes analyzes the basics in the development of drug-loaded nanoplatforms, the so-called nanomedicines. Special attention is given to physicochemical engineering, pharmacokinetics, biocompatibility and biodegradability, representative nanoplatforms (based on lipids, polymers, cyclodextrins, metals, carbon, silica, iron oxides, etc.), and advanced nano-engineering strategies for passive, ligand-mediated, and/or stimuli-sensitive drug delivery and release"--Provided by publisher.

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