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8
Pericryptal myofibroblast growth in rat descending colon induced by low-sodium diets is mediated by aldosterone and not by angiotensin II.低钠饮食诱导的大鼠降结肠隐窝周围肌成纤维细胞生长是由醛固酮介导的,而非由血管紧张素II介导。
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Nature. 1962 Jan 27;193:347-8. doi: 10.1038/193347a0.
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Regional differences in rat large intestinal crypt function in relation to dehydrating capacity in vivo.大鼠大肠隐窝功能的区域差异与体内脱水能力的关系
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Myofibroblasts and local angiotensin II in rat cardiac tissue repair.大鼠心脏组织修复中的肌成纤维细胞与局部血管紧张素II
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大鼠大肠局部隐窝功能与液体吸收及隐窝周围鞘生长的关系

Regional crypt function in rat large intestine in relation to fluid absorption and growth of the pericryptal sheath.

作者信息

Naftalin R J, Pedley K C

机构信息

Physiology Group, Division of Biological Sciences, King's College London, Strand and Kensington Sites, London,, UK.

出版信息

J Physiol. 1999 Jan 1;514 ( Pt 1)(Pt 1):211-27. doi: 10.1111/j.1469-7793.1999.211af.x.

DOI:10.1111/j.1469-7793.1999.211af.x
PMID:9831728
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2269061/
Abstract
  1. Confocal microscopic studies of rat colonic mucosa showed that the pericryptal sheath surrounding distal colonic crypts is an effective barrier both to dextran and NaCl movement, whereas no such structure surrounds the caecal crypts. 2. The distal colonic pericryptal barrier was functionally demonstrated by accumulation of Sodium Green within the pericryptal space. After exposure to benzamil, Sodium Green accumulation was decreased. Fluorescein isocyanate-labelled dextran (FITC dextran; molecular mass 10000 Da) was accumulated in the crypt lumens and pericryptal spaces. Both dextran and Sodium Green accumulation were absent from the pericryptal zone surrounding caecal crypts. 3. Low dietary Na+ intake raised rat plasma aldosterone and stimulated distal pericryptal sheath growth and adhesiveness as shown by increased amounts of F-actin, smooth muscle actin, beta-catenin and E-cadherins in the pericryptal zone. It also raised the capacity of the distal colon to dehydrate against a high luminal hydraulic resistance. This linkage indicates that trophic effects on the colon resulting from a low Na+ diet are not confined solely to effects on transepithelial Na+ transport, but are observed in the pericryptal sheath. 4. A computer model of crypt function confirms that a pericryptal sheath with low permeability to NaCl is an essential component of the crypt dehydrating mechanism.
摘要
  1. 对大鼠结肠黏膜的共聚焦显微镜研究表明,围绕远端结肠隐窝的隐窝周围鞘对右旋糖酐和氯化钠的移动均构成有效屏障,而盲肠隐窝周围不存在这样的结构。2. 通过隐窝周围空间内钠绿的积聚在功能上证实了远端结肠隐窝周围屏障的存在。暴露于苄胺后,钠绿的积聚减少。异硫氰酸荧光素标记的右旋糖酐(FITC右旋糖酐;分子量10000 Da)积聚在隐窝腔和隐窝周围空间。盲肠隐窝周围的隐窝周围区域不存在右旋糖酐和钠绿的积聚。3. 低钠饮食摄入会提高大鼠血浆醛固酮水平,并刺激远端隐窝周围鞘的生长和黏附,表现为隐窝周围区域中F-肌动蛋白、平滑肌肌动蛋白、β-连环蛋白和E-钙黏蛋白的量增加。它还提高了远端结肠在高腔内水力阻力下脱水的能力。这种联系表明,低钠饮食对结肠产生的营养作用不仅局限于对跨上皮钠转运的影响,在隐窝周围鞘中也能观察到。4. 隐窝功能的计算机模型证实,对氯化钠具有低渗透性的隐窝周围鞘是隐窝脱水机制的重要组成部分。