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Characterization of Pharmaceutical Nano- and Microsystems

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Learn about the analytical tools used to characterize particulate drug delivery systems with this comprehensive overview Edited by a leading expert in the field, Characterization of Pharmaceutical Nano- and Microsystems provides a complete description of the analytical techniques used to characterize particulate drug systems on the micro- and nanoscale. The book offers readers a full understanding of the basic physicochemical characteristics, material properties and differences between micro- and nanosystems. It explains how and why greater experience and more reliable measurement techniques are required as particle size shrinks, and the measured phenomena grow weaker. Characterization of Pharmaceutical Nano- and Microsystems deals with a wide variety of topics relevant to chemical and solid-state analysis of drug delivery systems, including drug release, permeation, cell interaction, and safety. It is a complete resource for those interested in the development and manufacture of new medicines, the drug development process, and the translation of those drugs into life-enriching and lifesaving medicines. Characterization of Pharmaceutical Nano- and Microsystems covers all of the following topics: * An introduction to the analytical tools applied to determine particle size, morphology, and shape * Common chemical approaches to drug system characterization * A description of solid-state characterization of drug systems * Drug release and permeation studies * Toxicity and safety issues * The interaction of drug particles with cells Perfect for pharmaceutical chemists and engineers, as well as all other industry professionals and researchers who deal with drug delivery systems on a regular basis, Characterization of Pharmaceutical Nano- and Microsystems also belongs on bookshelves of interested students and faculty who interact with this topic.

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  • Sprog:
  • Engelsk
  • ISBN:
  • 9781119414049
  • Indbinding:
  • Hardback
  • Sideantal:
  • 416
  • Udgivet:
  • 19. november 2020
  • Størrelse:
  • 170x244x30 mm.
  • Vægt:
  • 879 g.
  • Ukendt - mangler pt..
Forlænget returret til d. 31. januar 2025

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Beskrivelse af Characterization of Pharmaceutical Nano- and Microsystems

Learn about the analytical tools used to characterize particulate drug delivery systems with this comprehensive overview
Edited by a leading expert in the field, Characterization of Pharmaceutical Nano- and Microsystems provides a complete description of the analytical techniques used to characterize particulate drug systems on the micro- and nanoscale.
The book offers readers a full understanding of the basic physicochemical characteristics, material properties and differences between micro- and nanosystems. It explains how and why greater experience and more reliable measurement techniques are required as particle size shrinks, and the measured phenomena grow weaker.
Characterization of Pharmaceutical Nano- and Microsystems deals with a wide variety of topics relevant to chemical and solid-state analysis of drug delivery systems, including drug release, permeation, cell interaction, and safety. It is a complete resource for those interested in the development and manufacture of new medicines, the drug development process, and the translation of those drugs into life-enriching and lifesaving medicines.
Characterization of Pharmaceutical Nano- and Microsystems covers all of the following topics:
* An introduction to the analytical tools applied to determine particle size, morphology, and shape
* Common chemical approaches to drug system characterization
* A description of solid-state characterization of drug systems
* Drug release and permeation studies
* Toxicity and safety issues
* The interaction of drug particles with cells
Perfect for pharmaceutical chemists and engineers, as well as all other industry professionals and researchers who deal with drug delivery systems on a regular basis, Characterization of Pharmaceutical Nano- and Microsystems also belongs on bookshelves of interested students and faculty who interact with this topic.

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