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宫内生长受限新生仔猪小腿肌肉收缩功能加速及疲劳抵抗能力改善

Accelerated contractile function and improved fatigue resistance of calf muscles in newborn piglets with IUGR.

作者信息

Wank V, Bauer R, Walter B, Kluge H, Fischer M S, Blickhan R, Zwiener U

机构信息

Institute of Sports Science, Friedrich Schiller University, D-07740 Jena, Germany.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2000 Feb;278(2):R304-10. doi: 10.1152/ajpregu.2000.278.2.R304.

Abstract

Asymmetrical intrauterine growth restriction is denoted by disproportional reduction of muscle mass compared with body weight reduction. However, effects on contractile function or tissue development of skeletal muscles were not studied until now. Therefore, isometric force output of serial-stimulated hindlimb plantar flexors was measured in thiopental-anesthetized normal weight (NW) and intrauterine growth-restricted (IUGR) 1-day-old piglets under conditions of normal, reduced (aortic cross clamping), and reestablished (clamp release) blood supply (measured by colored microspheres technique). Furthermore, muscle fiber type distribution was determined after histochemical staining, specific muscle force of the plantar flexors [quotient from absolute force divided by muscle mass (N/g)] was calculated, and glycogen content and morphometric data of the investigated muscles were estimated. Regional blood flow of hindlimb muscles was similar in NW (6 +/- 2 ml. min(-1). 100 g(-1)) and IUGR piglets (8 +/- 1 ml. min(-1). 100 g(-1)). Isometric muscle contractions induced a marked increase in regional blood flow of 4.1-fold in NW and 5-fold in stimulated hindlimb muscles of IUGR piglets (baseline blood flow). Specific force of NW piglet muscles (5.2 +/- 0.2 N/g) was significantly lower than IUGR piglet muscles (6.1 +/- 0.6 N/g; P < 0.05). Isometric muscle contractions (NW: 32.7 +/- 4.7 N; IUGR: 21.7 +/- 4.0 N) resulted in a higher rate of force decrease in the calf muscles of NW animals compared with IUGR piglets (8 +/- 2 vs. 3 +/- 1%; P < 0. 01). Functional restoration of contractile performance after hindlimb recirculation was nearly complete in IUGR piglets (98 +/- 1%), whereas in NW piglets a deficit of 9 +/- 3% was found (P < 0. 01). Muscle fiber type estimation revealed an increased proportion of type I fibers in flexor digitalis superficialis and gastrocnemius medialis in IUGR piglets (P < 0.05). These data clearly indicate that contractile function is accelerated in newborn IUGR piglets.

摘要

不对称性宫内生长受限表现为肌肉量减少与体重减轻不成比例。然而,迄今为止尚未研究其对骨骼肌收缩功能或组织发育的影响。因此,在硫喷妥钠麻醉的正常体重(NW)和宫内生长受限(IUGR)的1日龄仔猪中,在正常、减少(主动脉交叉夹闭)和恢复(夹闭释放)血供的条件下(通过彩色微球技术测量),测量了连续刺激的后肢跖屈肌的等长力输出。此外,在组织化学染色后确定了肌纤维类型分布,计算了跖屈肌的比肌力[绝对力除以肌肉量的商(N/g)],并估算了所研究肌肉的糖原含量和形态学数据。NW仔猪(6±2 ml·min⁻¹·100 g⁻¹)和IUGR仔猪(8±1 ml·min⁻¹·100 g⁻¹)后肢肌肉的局部血流量相似。等长肌肉收缩导致NW仔猪后肢肌肉局部血流量显著增加4.1倍,IUGR仔猪刺激后肢肌肉局部血流量增加5倍(基础血流量)。NW仔猪肌肉的比肌力(5.2±0.2 N/g)显著低于IUGR仔猪肌肉(6.1±0.6 N/g;P<0.05)。等长肌肉收缩(NW:32.7±4.7 N;IUGR:21.7±4.0 N)导致NW动物小腿肌肉的力下降速率高于IUGR仔猪(8±2%对3±1%;P<0.01)。IUGR仔猪后肢再灌注后收缩性能的功能恢复几乎完全(98±1%),而NW仔猪存在9±3%的缺陷(P<0.01)。肌纤维类型评估显示,IUGR仔猪的趾浅屈肌和腓肠肌内侧I型纤维比例增加(P<0.05)。这些数据清楚地表明,新生IUGR仔猪的收缩功能加快。

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