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- W2980459612 abstract "Abstract Our previous study has indicated that the sarcolemma of nystatin treated fiber bundles from guinea pig taenia coli is permeable to small molecules and that the permeability could be regulated by change of the temperature (Japan. J. Pharmacol. 32, 118P, 1982). To get further insight into the temperature dependent hyperpermeation of nystatin-treated smooth muscle fiber, chemically skinned fibers were prepared from single skeletal muscle fiber by treatment of nystatin and compared with mechanically skinned fibers. Single fibers were isolated from iliofibularis muscle or semiten-dinosus muscle of Rana japonica and extensor digitorum longus muscle of guinea pig. When frog skeletal muscle fibers were treated with 300μg/ml nystatin in the relaxing solution at 30°C for 30min, the sarcolemma became permeable to such small molecules as ATP, Ca2+, and EGTA. The chemically skinned fibers showed no difference in the. pCa-tension curve and the rate of tension development on exposure to Ca2+ from mechanically skinned ones. The function of sarcoplasmic reticulum also is maintained as well: there was increased response to caffeine with an increase in the duration of Ca loading. However, in marked contrast to smooth muscle from guinea pig teania coli, the fibers were fully permeable at temperature as low as 4°C. This difference seems to be due to species specificity because in nystatin treated skeletal muscle from guinea pig, the rate of tension development was much slower at 15°C than at 30°C, while tha rates at 15°C and 30°C were similar in the mechanically skinned fibers." @default.
- W2980459612 created "2019-10-25" @default.
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- W2980459612 date "1983-01-01" @default.
- W2980459612 modified "2023-09-24" @default.
- W2980459612 title "The properties of the skeletal muscle fiber skinned chemically by nystatin" @default.
- W2980459612 doi "https://doi.org/10.1016/s0021-5198(19)60466-x" @default.
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