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肥胖老鼠在机械负荷下比瘦老鼠更容易发生肌纤维膜破裂。

Obese mice incur greater myofiber membrane disruption in response to mechanical load compared with lean mice.

机构信息

Department of Health and Human Performance, University of Houston, Houston, Texas, USA.

出版信息

Obesity (Silver Spring). 2013 Jan;21(1):135-43. doi: 10.1002/oby.20253.

Abstract

OBJECTIVE

Obesity is associated with modified transmembrane signaling events in skeletal muscle, such as insulin signaling and glucose transport. The underlying cause of these obesity-related effects on transmembrane signaling is still unknown. In general, the function of membrane proteins responsible for transmembrane signaling is modulated by the biochemical makeup of the membrane, such as lipid composition, in which they are embedded. Any obesity-related alterations in membrane composition would also be predicted to modify membrane biomechanical properties and membrane susceptibility to mechanical load-induced damage. The primary objective of this study was to investigate whether obesity influences myofiber membrane susceptibility to mechanical damage in skeletal muscle.

DESIGN AND METHODS

Myofiber membrane damage was compared between 12-week-old obese, hypercholesterolemic (B6.V Lep(ob) /J) and isogenic, normocholesterolemic control (C57BL6/J) male mice following either normal cage activity or strenuous eccentric exercise (downhill running). Myofiber membrane damage was quantified in perfusion-fixed frozen sections of the gastrocnemius muscle via sarcoplasmic concentration of either albumin (cage activity experiment) or a fluorescent marker that had been injected immediately before activity (eccentric exercise experiment).

RESULTS

Obese mice exhibited evidence of increased myofiber membrane damage compared with lean mice after both normal cage activity and eccentric exercise indicating that myofiber membranes of obese mice are more susceptible to mechanical damage in general and that eccentric exercise exacerbates this effect.

CONCLUSIONS

These observations are consistent with the notion that obesity influences the biochemical and biomechanical properties of myofiber membranes.

摘要

目的

肥胖与骨骼肌中跨膜信号转导事件的改变有关,如胰岛素信号和葡萄糖转运。这些与肥胖相关的跨膜信号转导效应的根本原因尚不清楚。一般来说,负责跨膜信号转导的膜蛋白的功能受膜的生化组成的调节,如嵌入其中的脂质组成。预计任何与肥胖相关的膜组成变化也会改变膜的生物力学特性和膜对机械负荷诱导损伤的敏感性。本研究的主要目的是研究肥胖是否会影响骨骼肌中肌纤维膜对机械损伤的敏感性。

设计和方法

在正常笼内活动或剧烈离心运动(下坡跑)后,比较 12 周龄肥胖、高胆固醇血症(B6.V Lep(ob) /J)和同基因、正常胆固醇血症对照(C57BL6/J)雄性小鼠的肌纤维膜损伤。通过在活性前立即注射的荧光标记物或肌浆内白蛋白浓度,在胃经肌的灌注固定冷冻切片中定量肌纤维膜损伤(笼内活动实验)。

结果

与瘦鼠相比,肥胖鼠在正常笼内活动和离心运动后均表现出肌纤维膜损伤增加的证据,这表明肥胖鼠的肌纤维膜通常更容易受到机械损伤,而离心运动则加剧了这种损伤。

结论

这些观察结果与肥胖影响肌纤维膜的生化和生物力学特性的观点一致。

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