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Biochemical basis of muscular fatigue associated with repetitious contractions of skeletal muscle 总被引:2,自引:0,他引:2
The decline in force generating capabilities of skeletal muscle associated with prolonged, repetitive low force producing contractions does have a biochemical basis. It is our view that an alteration in neuromuscular transmission results in an uncoupling of excitation-contraction via disturbances in Ca2+ imbalance, an uncoupling of energy utilization and production may result, which affect a favourable cellular environment for the initiation of myofilament degradation. The myofilament dissolution may be the last stage in this fatigue process and associated with only extreme conditions of muscle use. 相似文献
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David H. McGarry Ian R. Cooper Rolf Walker Catherine E. Warrilow Mark Pichowicz Andrew J. Ratcliffe Anne-Marie Salisbury Victoria J. Savage Emmanuel Moyo John Maclean Andrew Smith Cédric Charrier Neil R. Stokes David M. Lindsay William J. Kerr 《Bioorganic & medicinal chemistry letters》2018,28(17):2998-3003
According to the World Health Organization (WHO), approximately 1.7 million deaths per year are caused by tuberculosis infections. Furthermore, it has been predicted that, by 2050, antibacterial resistance will be the cause of approximately 10 million deaths annually if the issue is not tackled. As a result, novel approaches to treating broad-spectrum bacterial infections are of vital importance. During the course of our wider efforts to discover unique methods of targeting multidrug-resistant (MDR) pathogens, we identified a novel series of amide-linked pyrimido[4,5-b]indol-8-amine inhibitors of bacterial type II topoisomerases. Compounds from the series were highly potent against gram-positive bacteria and mycobacteria, with excellent potency being retained against a panel of relevant Mycobacterium tuberculosis drug-resistant clinical isolates. 相似文献
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Laboratory maintenance does not alter ecological and physiological patterns among species: a Drosophila case study 下载免费PDF全文
H. J. Maclean T. N. Kristensen J. G. Sørensen J. Overgaard 《Journal of evolutionary biology》2018,31(4):530-542
Large comparative studies in animal ecology, physiology and evolution often use animals reared in the laboratory for many generations; however, the relevance of these studies hinges on the assumption that laboratory populations are still representative for their wild living conspecifics. In this study, we investigate whether laboratory‐maintained and freshly collected animal populations are fundamentally different and whether data from laboratory‐maintained animals are valid to use in large comparative investigations of ecological and physiological patterns. Here, we obtained nine species of Drosophila with paired populations of laboratory‐maintained and freshly collected flies. These species, representing a range of ecotypes, were assayed for four stress‐tolerance, two body‐size traits and six life‐history traits. For all of these traits, we observed small differences in species‐specific comparisons between field and laboratory populations; however, these differences were unsystematic and laboratory maintenance did not eclipse fundamental species characteristics. To investigate whether laboratory maintenance influence the general patterns in comparative studies, we correlated stress tolerance and life‐history traits with environmental traits for the laboratory‐maintained and freshly collected populations. Based on this analysis, we found that the comparative physiological and ecological trait correlations are similar irrespective of provenience. This finding is important for comparative biology in general because it validates comparative meta‐analyses based on laboratory‐maintained populations. 相似文献