Drug Delivery: Engineering Principles for Drug Therapy (Topics in Chemical Engineering)
ISBN-13:
9780195085891
ISBN-10:
0195085892
Edition:
1
Author:
W. Mark Saltzman
Publication date:
2001
Publisher:
Oxford University Press
Format:
Hardcover
384 pages
Category:
Chemical
,
Engineering
,
Biochemistry
,
Chemistry
,
Organic
,
For Nurses
,
Pharmacology
,
Pharmacy
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Used - Very Good
Very Good/No Dust Jacket; Binding tight and sturdy, text also very good+. NO dj, perhaps as issued. Light wear to covers. NOT ex-lib. Due to the size/weight of this book extra charges may apply for international shipping. Ships from Dinkytown in Minneapolis, Minnesota.
Book details
ISBN-13:
9780195085891
ISBN-10:
0195085892
Edition:
1
Author:
W. Mark Saltzman
Publication date:
2001
Publisher:
Oxford University Press
Format:
Hardcover
384 pages
Category:
Chemical
,
Engineering
,
Biochemistry
,
Chemistry
,
Organic
,
For Nurses
,
Pharmacology
,
Pharmacy
Summary
Drug Delivery: Engineering Principles for Drug Therapy (Topics in Chemical Engineering) (ISBN-13: 9780195085891 and ISBN-10: 0195085892), written by authors
W. Mark Saltzman, was published by Oxford University Press in 2001.
With an overall rating of 3.9 stars, it's a notable title among other
Chemical
(Engineering, Biochemistry, Chemistry, Organic, For Nurses, Pharmacology, Pharmacy) books. You can easily purchase or rent Drug Delivery: Engineering Principles for Drug Therapy (Topics in Chemical Engineering) (Hardcover) from BooksRun,
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Description
Synthetic materials are a tremendous potential resource for treating human disease. For the rational design of many of these biomaterials it is necessary to have an understanding of polymer chemistry and polymer physics. Equally important to those two fields is a quantitative understanding of the principles that govern rates of drug transport, reaction, and disappearance in physiological and pathological situations. This book is a synthesis of these principles, providing a working foundation for those in the field of drug delivery. It covers advanced drug delivery and contemporary biomaterials.
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