Vidal B de C
Departamento de Biologia Celular, IB, CP. 6109 UNICAMP, SP, Brazil.
C R Acad Sci III. 1995 Feb;318(2):173-8.
Crimp is generally conceived of as a ribbon, i.e. a planar periodic orientation variation of collagen fibers. This study was carried out to demonstrate that crimps are complex structures with the possibility of being helically arranged. Thick sections, imbibed in glycerol or even in mineral oil and studied under the polarizing microscope with the help of 1st order red and lambda/4 Sénarmont's compensators proved to be adequate to detect details of collagen fiber orientation with respect to crimp structure. It was found that collagen bundles are ordered aggregates forming helical structures, and crimps are part of such a helical arrangement. The major part of the macromolecules in tendons have a helix conformation that probably influences a complex hierarchical construct. It is possible that thermodinamically this ordering is better fitted to respond to the biomechanical requirements of the tendons and to correspond to their rheological properties.
通常认为卷曲是一种带状结构,即胶原纤维的平面周期性取向变化。本研究旨在证明卷曲是具有螺旋排列可能性的复杂结构。用甘油甚至矿物油浸润的厚切片,借助一级红色和λ/4 塞拿蒙补偿器在偏光显微镜下进行研究,结果证明足以检测胶原纤维相对于卷曲结构的取向细节。研究发现,胶原束是形成螺旋结构的有序聚集体,卷曲是这种螺旋排列的一部分。肌腱中的大分子主要部分具有螺旋构象,这可能影响复杂的层次结构。从热力学角度来看,这种排列可能更适合应对肌腱的生物力学需求并与其流变特性相对应。