基质金属蛋白酶2、7、9及其组织抑制剂1、2在兔气管发育中的表达。

Biology of the neonate Pub Date : 2006-01-01 Epub Date: 2005-11-24 DOI:10.1159/000089952
Thomas L Miller, Suzanne M Touch, Clifford J Singhaus, Polani B Ramesh Babu, Aaron Chidekel, Thomas H Shaffer
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引用次数: 7

摘要

背景:发育中的传导气道的结构变化影响气道的刚性,改变气道在通气过程中维持其形状的能力。气道顺应性的发育变化与肺顺应性的变化相反;因此,在这些发育中的器官中,基质建模蛋白的表达谱可能也是相反的。目的:确定基质金属蛋白酶(MMPs) -2、-7和-9以及组织抑制剂(TIMPs) -1和-2在发育中的气管中的谱图,并验证这些谱图与先前报道的肺中的谱图相对照的假设。方法:分别于兔妊娠21天、妊娠3天、妊娠17天及成年时取气管。组织匀浆采用底物酶谱法分析MMPs的活性,反向酶谱法分析TIMPs的活性。新生羔羊气管环免疫染色定位MMP-2和mmp - 9。结果:分析显示MMP-2总量和活性与潜伏形式之比呈年龄依赖性下降。TIMP-2在整个气道发育过程中呈时间依赖性增加。MMP-9和TIMP-1的总量在这些年龄段中没有变化,尽管MMP-9蛋白在发育期间主要以潜伏形式存在,而在成年期主要以活性形式存在。呼吸道上皮细胞MMP-2和mmp - 9均呈阳性反应,气管肌纤维MMP-2呈阳性反应。家兔气道未见MMP-7表达。结论:气道和肺中MMP-2表达的相反发育模式导致人们猜测MMP-2活性在器官顺应性变化中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Expression of matrix metalloproteinases 2, 7 and 9, and their tissue inhibitors 1 and 2, in developing rabbit tracheae.

Background: Structural changes in the developing conducting airway impact the rigidity of the airway, altering the airway's ability to sustain its shape during ventilation. The developmental changes in airway compliance oppose the changes in compliance of the developing lung; thus the expression profiles of matrix modeling proteins likely are also opposite in these developing organs.

Objectives: To determine the profiles of matrix metalloproteinases (MMPs) -2, -7, and -9 and tissue inhibitors (TIMPs) -1 and -2 in the developing trachea and test the hypothesis these profiles would contrast those previously reported for the lung.

Methods: Rabbits tracheae were harvested at 21 days of gestation, 3 and 17 days postgestation and at adulthood. Tissue homogenates were analyzed by substrate zymography for the activity of MMPs, and reverse zymography for TIMPs. Immunostainings on neonatal lamb tracheal rings were used to localize MMP-2 and 9.

Results: Analysis revealed an age-dependent decrease in total MMP-2 quantity and the ratio of active to latent forms. TIMP-2 shows a time-dependent increase throughout airway development. Total MMP-9 and TIMP-1 quantities were unchanged across these ages, although MMP-9 protein was found predominantly in its latent form during development and predominantly in its active form during adulthood. Respiratory epithelial cells reacted positive for both MMP-2 and 9 and trachealis muscle fibers were positive for MMP-2. No MMP-7 expression was identified in the rabbit airway.

Conclusions: The opposing developmental patterns in MMP-2 expression between the airway and lung lead to speculation regarding the role of MMP-2 activity on changes in organ compliance.

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