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9781441978554

Pharmaco-Complexity

by ;
  • ISBN13:

    9781441978554

  • ISBN10:

    1441978550

  • Edition: 1st
  • Format: Paperback
  • Copyright: 2010-12-31
  • Publisher: Springer Verlag
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Summary

The interpretation of physical, chemical and biological phenomena as linear relationships between variables, or as simple functions of the variables, has been a significant scientific and mathematical strategy to their elucidation for centuries. It is often the case that the nature of linearity is to follow mathematical functions, e.g. power, exponential or logarithmic functions, nevertheless the desire to fit data to simple predictable expressions is imbued in every scientist and engineer. From a philosophical standpoint there is no reason to criticize this approach as it allows us to interpret the natural world and has a lofty heritage going back to the classical world.However, non-linear phenomena have been identified in many fields and interpreted as periodic, catastrophic, chaotic or complex involving a variety of mathematical tools for analysis. Benoit Mandelbrot's now classic book on the fractal geometry of nature and the many subsequent texts, most recently Wolfram's magnum opus "A New Kind of Science" have raised questions about the nature of reality and the interpretation of observed phenomena. It seems clear that the complexity of dynamic events (on any scale) can rarely be explained by linear interpretations. The rare exceptions are likely to represent a convergence of multiple phenomena giving the appearance of a linear relationship between variables.In fields related to pharmaceutical sciences some texts have been written by pioneers such as Brian Kaye. His eminently readable "A random walk through fractal dimensions" and "Chaos and complexity" were seminal volumes for the editors. Tracing the mathematics of complexity back to the nineteenth century and beyond gives a validity to the search for more accurate interpretations of experimental observations that should impact on the pharmaceutical sciences as significantly as other fields of endeavor.The chemistry and physics literature is replete with papers on complexity from such notables as Ilya Prigogine and Murray Gell-Mann. A broad range of biological phenomena, the most complex imaginable from molecular biology to ecology, are now the subject of complexity analysis. Pharmaceutical sciences encompass the biology, chemistry, physics and mathematics associated with drug discovery, delivery, disposition and action. This text describes a range of topics of importance in the pharmaceutical sciences that indicate a need for a non-linear interpretation if they are to be characterized accurately, understood fully and potentially controlled or modulated in the service of improved therapeutic strategies. It is likely that the future will involve increasingly complex interpretations of data related to drug design and delivery, particularly as our knowledge of the human genome leads inexorably to the potential for individualized therapy. We hope that this text will promote discussion of the varied phenomena leading to pharmacological effect and the complex interactions ultimately resulting in improved disease control and health maintenance.

Table of Contents

The Nature of Complexity and Relevance to Pharmaceutical Sciencesp. 1
Referencesp. 4
Further Readingp. 4
Phenomena in Physical and Surface Chemistryp. 5
Chemical Reactionsp. 5
Surface and Interfacial Chemistryp. 6
Aggregationp. 7
Adsorption from Solutionp. 10
Solid Surface Interactionp. 13
Summaryp. 15
Referencesp. 15
Solid State Pharmaceuticals: Solving Complex Problems in Preformulation and Formulationp. 19
Staticsp. 20
Solubility, Dissolution, and Releasep. 20
Fractal Dimensions and Surface Phenomenap. 21
Monte Carlo Methods in Modeling Drug Releasep. 22
Surfaces and Particlesp. 24
Dynamicsp. 27
Powder Flow and Mixingp. 27
Summaryp. 31
Referencesp. 31
Considerations in Monitoring and Controlling Pharmaceutical Manufacturingp. 37
Statistics and Experimental Designp. 37
Sources of Errorp. 37
Randomized and Latin Square Designsp. 38
Factorial Designp. 38
Fractional Factorial Designp. 39
Central Composite Designp. 39
Response Surface Mapsp. 39
Process Design and Controlp. 40
Quality by Designp. 40
Design Spacep. 41
Process Analytical Technologyp. 42
Risk Assessment and Managementp. 43
Summaryp. 44
Referencesp. 44
Pharmacokinetics and Pharmacodynamicsp. 47
Pharmacokinetics/Toxicokineticsp. 47
Compartmental Modelingp. 48
Fractal Kineticsp. 49
Physiologically Relevant Modelingp. 50
Efficacy/Safetyp. 50
Summaryp. 53
Referencesp. 53
Impact of Complexity on Population Biologyp. 55
Nature of Diseasep. 55
Potential for Disease Interventionp. 56
Epidemiological Studies and Adverse Eventsp. 57
Summaryp. 58
Referencesp. 58
Conclusionp. 61
Referencesp. 66
Indexp. 67
About the Authorsp. 71
Table of Contents provided by Ingram. All Rights Reserved.

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