Viruses and nanotechnology /

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Bibliographic Details
Imprint:Berlin : Springer-Verlag, c2009.
Description:1 online resource (x, 144 p.) : ill. (some col.)
Language:English
Series:Current topics in microbiology and immunology ; v. 327
Current topics in microbiology and immunology ; 327.
Subject:
Format: E-Resource Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/8891443
Hidden Bibliographic Details
Other authors / contributors:Manchester, Marianne.
Steinmetz, Nicole F.
ISBN:9783540693796
3540693793
9783540693765
9783540697365
Notes:Includes bibliographical references and index.
Description based on print version record.
Other form:Print version: Viruses and nanotechnology. Berlin : Springer-Verlag, c2009 9783540693765 3540693769
Description
Summary:Nanotechnology is a collective term describing a broad range of relatively novel topics. Scale is the main unifying theme, with nanotechnology being concerned with matter on the nanometer scale. A quintessential tenet of nanotechnology is the precise self-assembly of nanometer-sized components into ordered devices. Nanotechnology seeks to mimic what nature has achieved, with precision at the nanometer level down to the atomic level. Nanobiotechnology, a division of nanotechnology, involves the exploitation of biomaterials, devices or methodologies in the nanoscale. In recent years a set of b- molecules has been studied and utilized. Virus particles are natural nanomaterials and have recently received attention for their tremendous potential in this field. The extensive study of viruses as pathogens has yielded detailed knowledge about their biological, genetic, and physical properties. Bacterial viruses (bacte- ophages), plant and animal eukaryotic viruses, and viruses of archaea have all been characterized in this manner. The knowledge of their replicative cycles allows manipulation and tailoring of particles, relying on the principles of self-assembly in infected hosts to build the base materials. The atomic resolution of the virion structure reveals ways in which to tailor particles for higher-order functions and assemblies.
Physical Description:1 online resource (x, 144 p.) : ill. (some col.)
Bibliography:Includes bibliographical references and index.
ISBN:9783540693796
3540693793
9783540693765
9783540697365