首页> 外文期刊>Age. >Eccentric contraction-induced injury to type I, IIa, and IIa/IIx muscle fibers of elderly adults.
【24h】

Eccentric contraction-induced injury to type I, IIa, and IIa/IIx muscle fibers of elderly adults.

机译:老年人对I型,IIa型和IIa / IIx型肌纤维的偏心收缩诱导损伤。

获取原文
获取原文并翻译 | 示例
           

摘要

Muscles of old laboratory rodents experience exaggerated force losses after eccentric contractile activity. We extended this line of inquiry to humans and investigated the influence of fiber myosin heavy chain (MHC) isoform content on the injury process. Skinned muscle fiber segments, prepared from vastus lateralis biopsies of elderly men and women (78?±?2?years, N?=?8), were subjected to a standardized eccentric contraction (strain, 0.25 fiber length; velocity, 0.50 unloaded shortening velocity). Injury was assessed by evaluating pre- and post-eccentric peak Ca(2+)-activated force per fiber cross-sectional area (F (max)). Over 90% of the variability in post-eccentric F (max) could be explained by a multiple linear regression model consisting of an MHC-independent slope, where injury was directly related to pre-eccentric F (max), and MHC-dependent y-intercepts, where the susceptibility to injury could be described as type IIa/IIx fibers?>?type IIa fibers?>?type I fibers. We previously reported that fiber type susceptibility to the same standardized eccentric protocol was type IIa/IIx?>?type IIa?=?type I for vastus lateralis fibers of 25-year-old adults (Choi and Widrick, Am J Physiol Cell Physiol 299:C1409-C1417, 2010). Modeling combined data sets revealed significant age by fiber type interactions, with post-eccentric F (max) deficits greater for type IIa and type IIa/IIx fibers from elderly vs. young subjects at constant pre-eccentric F (max). We conclude that the resistance of the myofilament lattice to mechanical strain has deteriorated for type IIa and type IIa/IIx, but not for type I, vastus lateralis fibers of elderly adults.
机译:在偏心的收缩活动后,旧实验室啮齿动物的肌肉会经历过大的力损失。我们将这一研究范围扩展到人类,并研究了纤维肌球蛋白重链(MHC)同工型含量对损伤过程的影响。由老年男性和女性的股外侧肌活检(78?±?2?年,N?=?8)制备的皮肤肌纤维段受到标准化的偏心收缩(应变,纤维长度为0.25;速度为0.50,空载起酥油速度)。通过评估每根纤维横截面积的偏心前和偏心峰值Ca(2+)激活力(F(max))评估损伤。偏心后F(max)的超过90%的变异性可以由多元线性回归模型解释,该模型由MHC独立斜率组成,其中损伤与偏心前F(max)和MHC依赖y直接相关-拦截,其中易受伤害性可以描述为IIa / IIx型纤维>> IIa型纤维>> I型纤维。我们以前曾报道过,对于25岁成年人的阔侧肌纤维,对同一标准化的偏心规程的纤维类型敏感性为IIa / IIx→> IIa→= I型(Choi和Widrick,Am J Physiol Cell Physiol 299 :C1409-C1417,2010)。对组合数据集进行建模显示,通过纤维类型的相互作用显示出显着的年龄,在恒定的偏心前F(最大值)下,老年人与年轻受试者的IIa型和IIa / IIx型纤维的偏心后F(最大值)缺陷更大。我们得出的结论是,对于IIa型和IIa / IIx型,肌丝晶格对机械应变的抵抗力有所下降,但对于I型老年人的股外侧肌纤维却没有。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号