Record ID | harvard_bibliographic_metadata/ab.bib.10.20150123.full.mrc:104905621:2526 |
Source | harvard_bibliographic_metadata |
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LEADER: 02526cam a22003734a 4500
001 010153190-7
005 20060721182426.0
008 000929s2001 enka b 001 0 eng c
010 $a 00050140
020 $a0195085892 (alk. paper)
035 0 $aocm45129150
040 $aDNLM/DLC$cDLC$dDLC
042 $apcc
050 00 $aRS199.5$b.S25 2001
060 10 $aWB 354$bS179d 2001
082 00 $a615/.7$221
100 1 $aSaltzman, W. Mark.
245 10 $aDrug delivery :$bengineering principles for drug therapy /$cW. Mark Saltzman.
260 $aOxford [England] ;$aNew York :$bOxford University Press,$c2001.
300 $axi, 372 p. :$bill. ;$c24 cm.
490 1 $aTopics in chemical engineering
504 $aIncludes bibliographical references and index.
505 00 $tIntroduction --$tDrug administration and drug effectiveness --$tDiffusion and drug dispersion --$tDiffusion in biological systems --$tDrug permeation through biological barriers --$tDrug transport by fluid motion --$tPharmcokinetics of drug distribution --$tDrug modification --$tControlled drug delivery systems --$tCase studies in drug delivery.
520 1 $a"The rational design of advanced drug delivery systems requires an understanding of polymer science as well as a quantitative understanding of the principles that govern rates of drug transport, reaction, and disappearance in physiological and pathological situations. Drug Delivery: Engineering Principles for Drug Therapy provides a working foundation in these principles, from the fundamentals of drug modification and diffusion in biological systems to an overview of polymeric biomaterials, and is a complete introduction and guide to this growing field of study. Case studies, overviews of physiological parameters, useful nomenclature and discussion of drug and protein properties all help to round out the text and complete the necessary information needed for further study." "Drug Delivery will be an invaluable reference for those presently working with advanced drug delivery systems and contemporary biomaterials or anyone who needs reference to the basics of the resources available in treating human disease."--Jacket.
650 0 $aDrug delivery systems.
650 0 $aBiomedical materials.
650 12 $aDrug Delivery Systems.
650 22 $aBiocompatible Materials.
650 22 $aDrug Implants.
650 22 $aPharmacokinetics.
650 22 $aPolymers.
830 0 $aTopics in chemical engineering (Oxford University Press)
988 $a20060727
906 $0OCLC