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Mitochondrial Dynamics and Neurodegeneration (Hardcover, 2011 ed.): Bingwei Lu Mitochondrial Dynamics and Neurodegeneration (Hardcover, 2011 ed.)
Bingwei Lu
R4,372 Discovery Miles 43 720 Ships in 10 - 15 working days

Mitochondria are essential organelles in eukaryotic cells that control such diverse processes as energy metabolism, calcium buffering, and cell death. Recent studies have revealed that changes in mitochondrial morphology by fission and fusion, a process known as mitochondrial dynamics, is particularly important for neuronal function and survival. Defects in this process are commonly found in neurodegenerative diseases, offering a new paradigm for investigating mechanisms of neurodegeneration. To provide researchers working on neurodegenerative diseases and mitochondria with updated information on this rapidly progressing field, we have invited experts in the field to critically review recent progresses and identify future research directions. The topics include genetics of mitochondrial dynamics, mitochondrial dynamics and bioenergetics, autophagy, apoptosis, and axonal transport, and its role in neurological diseases, including Alzheimer s, Parkinson s, and Huntington 's diseases.

Mitochondrial Dynamics and Neurodegeneration (Paperback, 2011 ed.): Bingwei Lu Mitochondrial Dynamics and Neurodegeneration (Paperback, 2011 ed.)
Bingwei Lu
R4,342 Discovery Miles 43 420 Ships in 10 - 15 working days

Mitochondria are essential organelles in eukaryotic cells that control such diverse processes as energy metabolism, calcium buffering, and cell death. Recent studies have revealed that changes in mitochondrial morphology by fission and fusion, a process known as mitochondrial dynamics, is particularly important for neuronal function and survival. Defects in this process are commonly found in neurodegenerative diseases, offering a new paradigm for investigating mechanisms of neurodegeneration. To provide researchers working on neurodegenerative diseases and mitochondria with updated information on this rapidly progressing field, we have invited experts in the field to critically review recent progresses and identify future research directions. The topics include genetics of mitochondrial dynamics, mitochondrial dynamics and bioenergetics, autophagy, apoptosis, and axonal transport, and its role in neurological diseases, including Alzheimer's, Parkinson's, and Huntington's diseases.

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