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大鼠再生的交叉移植快肌和慢肌的收缩及组织化学特性

Contractile and histochemical properties of regenerating cross-transplanted fast and slow muscles in the rat.

作者信息

Gutmann E, Carlson B M

出版信息

Pflugers Arch. 1975;353(3):227-39. doi: 10.1007/BF00584286.

Abstract

The soleus (SOL) or extensor digitorum longus (EDL) muscles of month-old rats were denervated for 14 days and then cross-transplanted so that the fast muscle was placed into the bed of the slow muscle and vice versa. At 17, 30, 60, and 90 days the transplants were tested for certain contractile and histochemical properties. By 90 days the cross-transplanted SOL showed complete conversion of the full contraction time and nearly complete conversion of the half relaxation time to those of the normal EDL. In contrast, the contraction and relaxation times of the cross-transplanted EDL became considerably slowed, but did not attain the values of the normal SOL. Histochemical staining for ATPase and SDH activity demonstrated similar transformations of fiber types. The degree of transformation of twitch and histochemical characteristics in cross-transplanted muscles was greater than the values reported after cross-innervation of the same muscles. The cross-transplantation model has certain advantages over nerve cross-union experiments because the cross-transplanted muscle is placed in the normal functional environment of the other muscle.

摘要

将月龄大鼠的比目鱼肌(SOL)或趾长伸肌(EDL)去神经支配14天,然后进行交叉移植,使快肌置于慢肌的床中,反之亦然。在第17、30、60和90天,对移植肌肉的某些收缩和组织化学特性进行检测。到90天时,交叉移植的SOL的完全收缩时间已完全转变为正常EDL的收缩时间,半松弛时间也几乎完全转变为正常EDL的半松弛时间。相比之下,交叉移植的EDL的收缩和松弛时间明显减慢,但未达到正常SOL的值。ATP酶和琥珀酸脱氢酶(SDH)活性的组织化学染色显示纤维类型有类似转变。交叉移植肌肉中抽搐和组织化学特征的转变程度大于相同肌肉交叉神经支配后报道的值。与神经交叉联合实验相比,交叉移植模型具有某些优势,因为交叉移植的肌肉被置于另一肌肉的正常功能环境中。

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