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正常妊娠期间小鼠宫颈组织中胶原交联的定量评估及相应的拉伸力学性能

Quantitative evaluation of collagen crosslinks and corresponding tensile mechanical properties in mouse cervical tissue during normal pregnancy.

作者信息

Yoshida Kyoko, Jiang Hongfeng, Kim MiJung, Vink Joy, Cremers Serge, Paik David, Wapner Ronald, Mahendroo Mala, Myers Kristin

机构信息

Department of Mechanical Engineering, Columbia University, New York, New York, United States of America.

Department of Medicine, Columbia University Medical Center, New York, New York, United States of America; Irving Institute for Clinical and Translational Research, Columbia University Medical Center, New York, New York, United States of America.

出版信息

PLoS One. 2014 Nov 14;9(11):e112391. doi: 10.1371/journal.pone.0112391. eCollection 2014.

Abstract

The changes in the mechanical integrity of the cervix during pregnancy have implications for a successful delivery. Cervical collagens are known to remodel extensively in mice with progressing gestation leading to a soft cervix at term. During this process, mature crosslinked collagens are hypothesized to be replaced with immature less crosslinked collagens to facilitate cervical softening and ripening. To determine the mechanical role of collagen crosslinks during normal mouse cervical remodeling, tensile load-to-break tests were conducted for the following time points: nonpregnant (NP), gestation day (d) 6, 12, 15, 18 and 24 hr postpartum (PP) of the 19-day gestation period. Immature crosslinks (HLNL and DHLNL) and mature crosslinks (DPD and PYD) were measured using ultra performance liquid chromatography-electrospray ionization tandem mass spectrometry (UPLC-ESI-MS/MS). There were no significant changes in the total immature crosslink density (HLNL+DHLNL mol per collagen mol) throughout normal mouse gestation (range: 0.31-0.49). Total mature crosslink density (PYD+DPD mol per collagen mol) decreased significantly in early softening from d6 to d15 (d6: 0.17, d12: 0.097, d15: 0.026) and did not decrease with further gestation. The maturity ratio (total mature to total immature crosslinks) significantly decreased in early softening from d6 to d15 (d6: 0.2, d15: 0.074). All of the measured crosslinks correlated significantly with a measure of tissue stiffness and strength, with the exception of the immature crosslink HLNL. This data provides quantitative evidence to support the hypothesis that as mature crosslinked collagens decline, they are replaced by immature collagens to facilitate increased tissue compliance in the early softening period from d6 to d15.

摘要

孕期子宫颈机械完整性的变化对成功分娩具有重要意义。已知在小鼠妊娠过程中,子宫颈胶原蛋白会随着妊娠进展而广泛重塑,导致足月时子宫颈变软。在此过程中,据推测成熟的交联胶原蛋白会被交联程度较低的未成熟胶原蛋白所取代,以促进子宫颈软化和成熟。为了确定胶原蛋白交联在正常小鼠子宫颈重塑过程中的机械作用,在以下时间点进行了拉伸断裂负荷试验:非妊娠(NP)、妊娠第6天、第12天、第15天、第18天以及妊娠19天的产后24小时(PP)。使用超高效液相色谱 - 电喷雾电离串联质谱法(UPLC - ESI - MS/MS)测量未成熟交联(HLNL和DHLNL)和成熟交联(DPD和PYD)。在正常小鼠整个妊娠期,未成熟交联的总密度(每摩尔胶原蛋白中HLNL + DHLNL的摩尔数)没有显著变化(范围:0.31 - 0.49)。从第6天到第15天早期软化阶段,成熟交联的总密度(每摩尔胶原蛋白中PYD + DPD的摩尔数)显著下降(第6天:0.17,第12天:0.097,第15天:0.026),且随着妊娠进展不再下降。成熟度比(成熟交联总数与未成熟交联总数之比)在从第6天到第15天的早期软化阶段显著下降(第6天:0.2,第15天:0.074)。除了未成熟交联HLNL外,所有测量的交联与组织硬度和强度的测量值均显著相关。该数据提供了定量证据,支持以下假设:随着成熟交联胶原蛋白减少,它们被未成熟胶原蛋白取代,以促进从第6天到第15天早期软化阶段组织顺应性增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3473/4232411/edbb570f7ec3/pone.0112391.g001.jpg

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