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Assessment of Energy Metabolism in Health and Disease

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Release : 1980
Genre : Bioenergetics
Kind : eBook
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Book Synopsis Assessment of Energy Metabolism in Health and Disease by : Ross Laboratories

Download or read book Assessment of Energy Metabolism in Health and Disease written by Ross Laboratories. This book was released on 1980. Available in PDF, EPUB and Kindle. Book excerpt:

Assessment of Energy Metabolism in Health and Disease

Download Assessment of Energy Metabolism in Health and Disease PDF Online Free

Author :
Release : 1980
Genre :
Kind : eBook
Book Rating : /5 ( reviews)

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Book Synopsis Assessment of Energy Metabolism in Health and Disease by : John Martin Kinney

Download or read book Assessment of Energy Metabolism in Health and Disease written by John Martin Kinney. This book was released on 1980. Available in PDF, EPUB and Kindle. Book excerpt:

Cardiac Energy Metabolism in Health and Disease

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Release : 2014-08-22
Genre : Science
Kind : eBook
Book Rating : 275/5 ( reviews)

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Book Synopsis Cardiac Energy Metabolism in Health and Disease by : Gary D. Lopaschuk

Download or read book Cardiac Energy Metabolism in Health and Disease written by Gary D. Lopaschuk. This book was released on 2014-08-22. Available in PDF, EPUB and Kindle. Book excerpt: The heart has a very high energy demand but very little energy reserves. In order to sustain contractile function, the heart has to continually produce a large amount of ATP. The heart utilizes free fatty acids mainly and carbohydrates to some extent as substrates for making energy and any change in this energy supply can seriously compromise cardiac function. It has emerged that alterations in cardiac energy metabolism are a major contributor to the development of a number of different forms of heart disease. It is also now known that optimizing energy metabolism in the heart is a viable and important approach to treating various forms of heart disease. Cardiac Energy Metabolism in Health and Disease describes the research advances that have been made in understanding what controls cardiac energy metabolism at molecular, transcriptional and physiological levels. It also describes how alterations in energy metabolism contribute to the development of heart dysfunction and how optimization of energy metabolism can be used to treat heart disease. The topics covered include a discussion of the effects of myocardial ischemia, diabetes, obesity, hypertrophy, heart failure, and genetic disorders of mitochondrial oxidative metabolism on cardiac energetics. The treatment of heart disease by optimizing energy metabolism is also discussed, which includes increasing overall energy production as well as increasing the efficiency of energy production and switching energy substrate preference of the heart. This book will be a valuable source of information to graduate students, postdoctoral fellows, and investigators in the field of experimental cardiology as well as biochemists, physiologists, pharmacologists, cardiologists, cardiovascular surgeons and other health professionals.

Brain Energy Metabolism in Health and Disease

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Author :
Release : 2012
Genre : Medicine
Kind : eBook
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Book Synopsis Brain Energy Metabolism in Health and Disease by : Felipe A. Beltrán

Download or read book Brain Energy Metabolism in Health and Disease written by Felipe A. Beltrán. This book was released on 2012. Available in PDF, EPUB and Kindle. Book excerpt: Brain Energy Metabolism in Health and Disease.

Systems Analysis of Energy Metabolism Elucidates the Roles of Mitochondria in Human Health and Disease

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Release : 2007
Genre :
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Book Synopsis Systems Analysis of Energy Metabolism Elucidates the Roles of Mitochondria in Human Health and Disease by : Thuy D. Vo

Download or read book Systems Analysis of Energy Metabolism Elucidates the Roles of Mitochondria in Human Health and Disease written by Thuy D. Vo. This book was released on 2007. Available in PDF, EPUB and Kindle. Book excerpt: Beginning as the science of life, biology has been transformed and expanded throughout the years to give rise to fields such as ecology, molecular biology, biophysics, and biochemistry. The distinction among these disciplines is perhaps artificial as the study of any particular biological process or system often spans multiple fields. The research on energy metabolism to follow involves three fields: bioinformatics, bioengineering, and systems biology. The informatics aspect deals with the mining, organization, and management of genomic, proteomic, microarray and biochemical data for reconstructing metabolic networks. The engineering aspect employs the application of mathematics and scientific fundamentals to construct constraint-based models for examination. The systems biology paradigm allows the analysis and interpretation of the models and data from a holistic perspective. Specifically, the findings of this work center on energy metabolism as understood by resource allocation and roles or mitochondria in mammalian cells in health and diseased states. The constraint-based framework provides the facilities for biological discovery using tools from the three mentioned disciplines. This modeling approach describes a biological system as a network of components whose behaviors can be predicted upon the application of constraints. Energy metabolism of four systems - mitochondria, cardiomyocytes, hepatocytes, and fibroblasts - is investigated here. The application of linear constraints on metabolite mass, reaction reversibility and substrate utilization allows an exploration of network capability and topology. The capability and topology of the mitochondrial metabolic network are evaluated based on the theoretical energetic yield of substrates, the number of alternate pathways satisfying the same metabolic objective, and the effects of diabetic and ischemic conditions on feasible steady states. The second part of this dissertation involves the use of stable isotopes to uncover physiological steady states assumed by the cell. Nonlinear constraints are used to balance isotopomers and select for a set of flux distributions that match GC-MS data. Results from studies with cardiomyocytes and hepatocytes elucidate the paths undertaken by substrates as well as effects of media composition on intracellular flux distributions. Most significantly, results from tissue culture study identify complex II as the deficient complex in fibroblasts derived from a patient affected with Leigh's disease.

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