Nanoscale Fabrication, Optimization, Scale-up and Biological Aspects of Pharmaceutical Nanotechnology

Nonfiction, Science & Nature, Science, Other Sciences, Nanostructures, Technology, Health & Well Being, Medical
Cover of the book Nanoscale Fabrication, Optimization, Scale-up and Biological Aspects of Pharmaceutical Nanotechnology by , Elsevier Science
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Author: ISBN: 9780128136300
Publisher: Elsevier Science Publication: December 11, 2017
Imprint: Elsevier Language: English
Author:
ISBN: 9780128136300
Publisher: Elsevier Science
Publication: December 11, 2017
Imprint: Elsevier
Language: English

Nanoscale Fabrication, Optimization, Scale-up and Biological Aspects of Pharmaceutical Nanotechnology focuses on the fabrication, optimization, scale-up and biological aspects of pharmaceutical nanotechnology. In particular, the following aspects of nanoparticle preparation methods are discussed: the need for less toxic reagents, simplification of the procedure to allow economic scale-up, and optimization to improve yield and entrapment efficiency. Written by a diverse range of international researchers, the chapters examine characterization and manufacturing of nanomaterials for pharmaceutical applications. Regulatory and policy aspects are also discussed.

This book is a valuable reference resource for researchers in both academia and the pharmaceutical industry who want to learn more about how nanomaterials can best be utilized.

  • Shows how nanomanufacturing techniques can help to create more effective, cheaper pharmaceutical products
  • Explores how nanofabrication techniques developed in the lab have been translated to commercial applications in recent years
  • Explains safety and regulatory aspects of the use of nanomanufacturing processes in the pharmaceutical industry
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Nanoscale Fabrication, Optimization, Scale-up and Biological Aspects of Pharmaceutical Nanotechnology focuses on the fabrication, optimization, scale-up and biological aspects of pharmaceutical nanotechnology. In particular, the following aspects of nanoparticle preparation methods are discussed: the need for less toxic reagents, simplification of the procedure to allow economic scale-up, and optimization to improve yield and entrapment efficiency. Written by a diverse range of international researchers, the chapters examine characterization and manufacturing of nanomaterials for pharmaceutical applications. Regulatory and policy aspects are also discussed.

This book is a valuable reference resource for researchers in both academia and the pharmaceutical industry who want to learn more about how nanomaterials can best be utilized.

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