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胶原酶介导的胶原溶解作为豚鼠分娩时宫颈扩张机制的生化证据。

Biochemical evidence of collagenase-mediated collagenolysis as a mechanism of cervical dilatation at parturition in the guinea pig.

作者信息

Rajabi M R, Solomon S, Poole A R

机构信息

Department of Obstetrics and Gynecology, McGill University, Montreal, Quebec, Canada.

出版信息

Biol Reprod. 1991 Nov;45(5):764-72. doi: 10.1095/biolreprod45.5.764.

Abstract

Dilatation of the uterine cervix at parturition is accompanied by a remarkable alteration in its biomechanical characteristics leading to a significant reduction in its strength and stiffness. Our previous studies and those of others have suggested the involvement of collagenolysis leading to cervical dilatation. This study provides further evidence for the occurrence of collagenolysis in the dilated guinea pig cervix at birth. The changes in collagenase and collagenase inhibitory activity in vivo in cervices of nonpregnant, pregnant, and postpartum guinea pigs were determined. There were no significant changes in procollagenase, collagenase inhibitory activity, and net procollagenase in animals at 25 and 50 days of gestation compared with nonpregnant animals. At parturition (68 +/- 2 days), there was a 6-fold increase in procollagenase, a 26-fold increase in collagenase inhibitory activity, and a 2-fold increase in net procollagenase activity. Cervices in organ culture obtained at birth produced 2.9-fold more procollagenase, 1.6-fold more collagenase inhibitory activity, and a 10-fold increase in net procollagenase activity when compared to nonpregnant or 25-day pregnant animals. These studies indicate that dilatation of the guinea pig cervix at parturition involves collagenase-mediated degradation of collagen in the cervix.

摘要

分娩时子宫颈的扩张伴随着其生物力学特性的显著改变,导致其强度和硬度大幅降低。我们之前的研究以及其他人的研究表明,胶原溶解与宫颈扩张有关。本研究为出生时扩张的豚鼠子宫颈中发生胶原溶解提供了进一步的证据。测定了未怀孕、怀孕和产后豚鼠子宫颈中胶原酶和胶原酶抑制活性的体内变化。与未怀孕的动物相比,妊娠25天和50天的动物中前胶原酶、胶原酶抑制活性和净前胶原酶没有显著变化。在分娩时(68±2天),前胶原酶增加了6倍,胶原酶抑制活性增加了26倍,净前胶原酶活性增加了2倍。与未怀孕或妊娠25天的动物相比,出生时获得的器官培养子宫颈产生的前胶原酶多2.9倍,胶原酶抑制活性多1.6倍,净前胶原酶活性增加了10倍。这些研究表明,豚鼠分娩时子宫颈的扩张涉及胶原酶介导的子宫颈中胶原的降解。

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