纤溶酶原基因靶向小鼠的生长和行为发育。

Growth Development and Aging Pub Date : 1999-02-01
J Hoover-Plow, N Wang, V Ploplis
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引用次数: 0

摘要

纤溶酶原系统除了在纤维蛋白溶解中起主要作用外,还被认为在神经系统的发育中起关键作用。本研究的目的是直接检测和量化纤溶酶原在2-21日龄纤溶酶原缺陷小鼠(Plg-/-)、纤溶酶原杂合小鼠(Plg+/-)和野生型小鼠(Plg+/+, WT)身体和行为发育中的重要性。值得注意的是,Plg-/-和WT小鼠的生长和行为发育几乎没有差异。体重增加和身体发育的里程碑-耳朵脱离,睁眼和牙齿长出在2-21日龄相似。与WT小鼠相比,Plg-/-小鼠仅在4周龄后的身体发育中发现差异,体重增加较少,阴道开放延迟。在2-21日龄期间,Plg-/-小鼠的行为发展模式与WT小鼠相似。具体来说,Plg-/-和WT小鼠在反射、神经运动能力、运动协调、运动活动、对重力定位的反应、运动和前庭系统的整合、嗅觉发育和听源性癫痫易感性发生率方面没有差异。然而,Plg-/-小鼠在17-21日龄时表现出更快的表面扶正反应和更快的听原性癫痫易感性潜伏期,以及梳理次数的增加。这些差异表明,纤溶酶原缺乏改变反应性和对压力的反应。与WT小鼠相比,Plg-/-小鼠垂体重量较小,垂体和血浆促肾上腺皮质激素释放激素升高。本研究结果提示纤溶酶原系统在激素加工和神经内分泌调节中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Growth and behavioral development in plasminogen gene-targeted mice.

The plasminogen system, in addition to its major role in fibrinolyis, is believed to play a key role in development of the nervous system. The purpose of this study was to directly examine and quantify the importance of plasminogen in physical and behavioral development in plasminogen deficient mice (Plg-/-), plasminogen heterozygous mice (Plg+/-), and wild-type mice (Plg+/+, WT) at 2-21 days of age. Remarkably, little difference in growth and behavioral development was observed between Plg-/- and WT mice. Body weight gain and the milestones of physical development-ear detachment, eye opening and teeth eruption were similar from 2-21 days of age. Differences were found in physical development only after 4 wks of age, body weight gain was less and vaginal patency was delayed in the Plg-/- mice compared to WT mice. Behaviors, assessed during the 2-21 days of age period, developed in the Plg-/- mice in a pattern similar to WT mice. Specifically, no differences were found between Plg-/- and WT mice in the development of reflexes, neuromotor ability, motor coordination, locomotor activity, reaction to gravitational positioning, integration of motor and vestibular systems, olfactory development, and incidence of audiogenic seizure susceptibility. However, Plg-/- mice demonstrated a faster surface righting response and a faster latency for audiogenic seizure susceptibility, as well as an increase in the number of grooming bouts at age 17-21 days. These differences indicate that a plasminogen deficiency alters reactivity and the response to stress. The weight of the pituitary was smaller and pituitary and plasma corticotrophin releasing hormone were elevated in the Plg-/- mice compared to the WT mice. The results of this study suggest a role for the plasminogen system in hormone processing and neuroendocrine regulation.

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