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Gestational Undernourishment Modifies the Composition of Skeletal Muscle Transverse Tubule Membranes and the Mechanical Properties of Muscles in Newborn Rats

机译:妊娠营养不良改变了新生大鼠骨骼肌横小管膜的组成和肌肉的力学性能

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biBackgroud/Aims/i/b Skeletal muscle (SM) constitutes more than 40% of the body weight in adulthood. Transports dietary glucose mainly through the insulin-dependent glucose transporter (Glut-4) located in the Transverse tubule membrane system (TT). The TT development ends shortly after birth. The TT membrane hosts the proteins involved in excitation-contraction coupling and glucose uptake. Glycaemic regulation through movement is a key function of fully developed skeletal muscle. In this study, we aimed to characterize the effect of gestational undernourishment (GUN) in rats GLUT-4 expression and on the protein/lipid content of the TT membranes. We also examined the effect of GUN on the mechanical properties of muscles as an indication of the metabolic condition of the SM at birth. biMethods/i/b Isolated TT membrane from SM of GUN rats were used to study lipid/protein content and protein stability by differential scanning calorimetry. The effect of GUN on the SM mechanical properties was determined in isolated Extensor Digitorum Longus (EDL) muscle. biResults/i/b We demonstrate that compared to control, GUN in the new-born produces; i) decreases body weight; ii) diminution in SM mass; iii) decreases the formation of TT membranes; iv) expresses TT membrane proteins with higher thermal stability. The TT membrane expression of GLUT-4 in GUN offspring was twice that of controls. The isolated EDL of GUN offspring was 20% stronger as measured by contractile force and more resistant to fatigue relative to controls. biConclusion;/i/b These results provide the first evidence of adaptive changes of the SM in new-borns exposed to severe gestational food restriction. The effects of GUN on muscle at birth are the first step toward detrimental SM metabolic function, contributing to the physiopathology of metabolic diseases in adulthood.
机译:Backgroud /目标 骨骼肌(SM)占成年人体重的40%以上。主要通过横管膜系统(TT)中的胰岛素依赖性葡萄糖转运蛋白(Glut-4)转运膳食葡萄糖。出生后不久,TT的发展就结束了。 TT膜托管着与兴奋-收缩偶联和葡萄糖摄取有关的蛋白质。通过运动调节血糖是骨骼肌充分发育的关键功能。在这项研究中,我们旨在表征妊娠期营养不良(GUN)对大鼠GLUT-4表达的影响以及对TT膜蛋白/脂质含量的影响。我们还检查了枪支对肌肉机械性能的影响,作为出生时SM代谢状况的指标。 方法 使用GUN大鼠SM分离的TT膜通过差示扫描量热法研究脂质/蛋白质含量和蛋白质稳定性。在孤立的伸指长肌(EDL)肌肉中确定了GUN对SM力学性能的影响。 结果 我们证明,相比于对照,新生产品中的GUN更高; i)减轻体重; ii)SM质量减少; iii)减少TT膜的形成; iv)表达具有更高热稳定性的TT膜蛋白。 GUN后代中GLUT-4的TT膜表达是对照的两倍。通过收缩力测定,GUN后代的孤立EDL增强20%,相对于对照,它更耐疲劳。 结论; 这些结果为暴露于严重妊娠食物限制的新生儿SM的适应性变化提供了第一个证据。 GUN在出生时对肌肉的影响是迈向有害的SM代谢功能的第一步,有助于成年后代谢疾病的生理病理。

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