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Nanomaterial Biointeractions at the Cellular, Organismal and System Levels (Nanotechnology in the Life Sciences) - Softcover

Buch 27 von 30: Nanotechnology in the Life Sciences
 
9783030657949: Nanomaterial Biointeractions at the Cellular, Organismal and System Levels (Nanotechnology in the Life Sciences)

Inhaltsangabe

The range of nanomaterial applications has expanded recently from catalysis, electronics, and filtration to therapeutics, diagnostics, agriculture, and food because of unique properties and potentials of different nanoparticles and nanomaterials. Research shows that these exquisite particles can interact with an organism at the cellular, physiological, biochemical, and molecular levels. However, our knowledge of how they affect these changes, selectively or generally, in diverse organism or ecosystems is very limited and far from satisfactory. Data indicate that the biological function largely depends on the shape, size, and surface characteristics of the nanoparticles used besides life cycle stages of an organism. Therefore, this compilation will focus on the body of work carried out by distinguished investigators using diverse nanomaterials and plant and animal species. This book includes specific case studies as well as general review articles highlighting aspects of multilayered interactions, and targets not only research and academic scholars but also the concerned industry and policy makers as well.

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Über die Autorin bzw. den Autor

Dr. Nilesh Sharma

Department of Biology
Western Kentucky University
1906 College Heights Blvd
Bowling Green, KY USA

Dr. Shivendra Sahi
Professor and Chair, Department of Biology
University of the Sciences
600 South 43rd Street
Philadelphia, PA USA

Von der hinteren Coverseite

The range of nanomaterial applications has expanded recently from catalysis, electronics, and filtration to therapeutics, diagnostics, agriculture, and food because of the unique properties and potentials of different nanoparticles and nanomaterials. Research shows that these exquisite particles can interact with an organism at the cellular, physiological, biochemical, and molecular levels. Our knowledge, however, of how they affect these changes, selectively or generally, in diverse organisms or ecosystems is very limited and far from satisfactory. Data indicate that the biological function largely depends on the shape, size, and surface characteristics of the nanoparticles used along with life cycle stages of an organism. 


This book focuses on the body of work carried out by distinguished investigators using diverse nanomaterials in both plant and animal species. It includes specific case studies as well as general reviews highlighting aspects of multilayeredinteractions. This volume provides a comprehensive resource for academic scholars, as well as for researchers in the concerned industries and policy makers.

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