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Vaccine Analysis: Strategies, Principles, and Control (Hardcover, 2015 ed.): Brian K. Nunnally, Vincent E. Turula, Robert D.... Vaccine Analysis: Strategies, Principles, and Control (Hardcover, 2015 ed.)
Brian K. Nunnally, Vincent E. Turula, Robert D. Sitrin
R5,712 Discovery Miles 57 120 Ships in 10 - 15 working days

This book is an indispensable tool for anyone involved in the research, development, or manufacture of new or existing vaccines. It describes a wide array of analytical and quality control technologies for the diverse vaccine modalities. Topics covered include the application of both classical and modern bio-analytical tools; procedures to assure safety and control of cross contamination; consistent biological transition of vaccines from the research laboratory to manufacturing scale; whole infectious attenuated organisms, such as live-attenuated and inactivated whole-cell bacterial vaccines and antiviral vaccines using attenuated or inactivated viruses; principles of viral inactivation and the application of these principles to vaccine development; recombinant DNA approaches to produce modern prophylactic vaccines; bacterial subunit, polysaccharide and glycoconjugate vaccines; combination vaccines that contain multiple antigens as well as regulatory requirements and the hurdles of licensure.

Vaccine Analysis: Strategies, Principles, and Control (Paperback, Softcover reprint of the original 1st ed. 2015): Brian K.... Vaccine Analysis: Strategies, Principles, and Control (Paperback, Softcover reprint of the original 1st ed. 2015)
Brian K. Nunnally, Vincent E. Turula, Robert D. Sitrin
R5,759 Discovery Miles 57 590 Ships in 10 - 15 working days

This book is an indispensable tool for anyone involved in the research, development, or manufacture of new or existing vaccines. It describes a wide array of analytical and quality control technologies for the diverse vaccine modalities. Topics covered include the application of both classical and modern bio-analytical tools; procedures to assure safety and control of cross contamination; consistent biological transition of vaccines from the research laboratory to manufacturing scale; whole infectious attenuated organisms, such as live-attenuated and inactivated whole-cell bacterial vaccines and antiviral vaccines using attenuated or inactivated viruses; principles of viral inactivation and the application of these principles to vaccine development; recombinant DNA approaches to produce modern prophylactic vaccines; bacterial subunit, polysaccharide and glycoconjugate vaccines; combination vaccines that contain multiple antigens as well as regulatory requirements and the hurdles of licensure.

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