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基底膜(晶状体囊膜)的厚度、体积常数及超微结构组织

Thickness and volume constants and ultrastructural organization of basement membrane (lens capsule).

作者信息

Fisher R F, Hayes B P

出版信息

J Physiol. 1979 Aug;293:229-45. doi: 10.1113/jphysiol.1979.sp012887.

Abstract
  1. The basement membrane of the crystalline lens of the rat has been found to have the following elastic constants: a Young's Modulus of elasticity of 0.56 +/- 0.38 x 10(6) Nm-2 at low stress and 11.3 +/- 1.9 x 10(6) Nm-2 at rupture, an ultimate stress of 28.8 +/- 4.5 x 10(5) Nm-2, and a maximum percentage elongation of 41.3 +/- 5.8. 2. The ratio of initial thickness of the membrane to the thickness at the point of rupture is 0.271 +/- 0.02 while the similar ratio for volume is 0.461 +/- 0.031. 3. Electron microscopic observations of ultrasonicated fragments of the entire membrane show long filaments in parallel arrays and sheets. The filaments show a periodicity of 3.7 nm and a spacing of 3.5 nm. 4. Electron microscopic observations of collagenase-treated membrane show a poorly staining matrix associated with separate short straight non-periodic filaments some 2.5 nm in diameter. In addition strands project from the ends of the filaments with a diameter of between 0.5 and 1.0 nm. 5. A model is proposed which consists of these filaments, composed of between three and five parallel strands, some 0.8 nm in diameter, wound in a superhelix. 6. The model predicts satisfactorily thickness and volume changes in the membrane when subjected to stress, and also indicates that the filaments would have a similar Young's Modulus of elasticity and ultimate stress to those of collagen. 7. If the basement membrane of the smallest retinal capillaries is subjected to a change of pressure of only 5 mmHg within the vessel lumen, then the membrane is likely to undergo some 30% reduction in thickness.
摘要
  1. 已发现大鼠晶状体的基底膜具有以下弹性常数:低应力下的杨氏弹性模量为0.56±0.38×10⁶ Nm⁻²,破裂时为11.3±1.9×10⁶ Nm⁻²,极限应力为28.8±4.5×10⁵ Nm⁻²,最大伸长百分比为41.3±5.8。2. 膜的初始厚度与破裂点处厚度的比值为0.271±0.02,而体积的类似比值为0.461±0.031。3. 对整个膜的超声破碎片段进行电子显微镜观察,显示出平行排列的长丝和薄片。这些长丝的周期为3.7 nm,间距为3.5 nm。4. 对胶原酶处理过的膜进行电子显微镜观察,显示出一种染色较差的基质,与直径约2.5 nm的单独短直无周期细丝相关。此外,细丝末端伸出直径在0.5至1.0 nm之间的链。5. 提出了一个模型,该模型由这些细丝组成,细丝由三到五根平行链组成,直径约0.8 nm,缠绕成超螺旋。6. 该模型令人满意地预测了膜在受力时的厚度和体积变化,还表明这些细丝的杨氏弹性模量和极限应力与胶原的相似。7. 如果最小视网膜毛细血管的基底膜在血管腔内仅承受5 mmHg的压力变化,那么该膜的厚度可能会减少约30%。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bbc/1280711/79e2276b2a06/jphysiol00867-0241-a.jpg

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