Giraud-Guille M M
Histophysique & Cytophysique EPHE, Université P. & M. Curie and CNRS, Observatoire Océanologique, Banyuls-sur-Mer, France.
Microsc Res Tech. 1994 Apr 1;27(5):420-8. doi: 10.1002/jemt.1070270508.
Microscopic studies at different scales have shown that in biological tissues the three-dimensional arrangement of chitin-protein or of collagen fibrillar networks can follow the same spatial distributions as those described in certain liquid crystals. The present work reviews the structural analogies established between the dense fibrillar organic matrix found in two materials: crab cuticles and compact bones. In both systems mobile fringes are described in polarizing microscopy, periodic cleavage aspects in scanning electron microscopy (SEM), and arched patterns in transmission electron microscopy (TEM). In parallel to these structural data, results obtained in vitro are recalled which corroborate the relationship established between ordered arrays of biopolymers and liquid crystalline assembly principles, highly concentrated solutions of purified collagen molecules spontaneously form ordered assemblies characterized in polarizing microscopy as cholesteric phases. This particular state of matter joins both fluidity and order and could correspond to a transient state of collagen or chitin secretion, before the stiffening of these skeletal structures, bone or cuticle, by molecular cross-links and crystalline deposition.
不同尺度的微观研究表明,在生物组织中,几丁质 - 蛋白质或胶原纤维网络的三维排列可以遵循与某些液晶中所描述的相同空间分布。本工作回顾了在两种材料(蟹壳和致密骨)中发现的致密纤维状有机基质之间建立的结构类比。在这两个系统中,偏光显微镜下描述了移动条纹,扫描电子显微镜(SEM)下观察到周期性裂解现象,透射电子显微镜(TEM)下呈现出拱形图案。与这些结构数据并行的是,回顾了体外实验结果,这些结果证实了生物聚合物有序阵列与液晶组装原理之间的关系,纯化胶原分子的高浓度溶液会自发形成有序组装体,在偏光显微镜下其特征为胆甾相。这种特殊的物质状态兼具流动性和有序性,可能对应于在这些骨骼结构(骨或角质层)通过分子交联和晶体沉积变硬之前,胶原蛋白或几丁质分泌的过渡状态。