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... Oxidative Stress ...
The effects of calcium ions on the activites of hexokinase
The effects of calcium ions on the activites of hexokinase

... reflect the maximum rates of these two processes; and therefore maximum activities of x-glycerophosphate oxidase (EC 1.1.2.1) and phosphofructokinase (or hexokinase plus phosphorylase) have been measured in crude muscle extracts. For insect flight muscles the maximum activities of these two enzymes ...
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2010 생명의약연구원 월례정기세미나

... skeletal muscle cell line. In addition, the functional interaction of STIM1 with a Ca 2+dependent phosphatase (calcineurin) and a transcriptional factor (NFATc) was investigated. STIM1, STIM2 and Orai1 gene expression is markedly increased by the induction of C2C12 skeletal muscle differentiation. A ...
Articulate - WordPress.com
Articulate - WordPress.com

... these cards and then describe the word on there! ...
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... Copyright © 2003 Pearson Education, Inc. publishing as Benjamin Cummings ...
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metabolic factors in fatigue
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glucose, amino acids, and fatty acids
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Lecture 13 The Adolescent & The Aging Athlete 2016
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Muscle Tissue - El Camino College
Muscle Tissue - El Camino College

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Chapter 17
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... • >1000 mg/day through food and supplements – Hormone replacement therapy (HRT) • Prevents bone loss and reduces fracture risk • May increase risk of cardiovascular disease and cancers – Exercise • Weight-bearing activities and resistance training • 2–3 hours per week ...
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Myokine

A myokine is one of several hundred cytokines or other small proteins (~5–20 kDa) and proteoglycan peptides that are produced and released by muscle cells (myocytes) in response to muscular contractions. They have autocrine, paracrine and/or endocrine effects; their systemic effects occur at picomolar concentrations.Receptors for myokines are found on muscle, fat, liver, pancreas, bone, heart, immune, and brain cells. The location of these receptors explain the fact that myokines have multiple functions. Foremost, they are involved in exercise-associated metabolic changes, as well as in the metabolic changes following training adaptation. They also participate in tissue regeneration and repair, maintenance of healthy bodily functioning, immunomodulation; and cell signaling, expression and differentiation.
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