Dubový P, Bednárová J
Department of Anatomy, Division of Neuroanatomy, School of Medicine, Masaryk University, Brno, Kamenice 3, CZ-625 00 Brno, Czech Republic.
Anat Embryol (Berl). 1999 Dec;200(6):615-23. doi: 10.1007/s004290050309.
The Pacinian corpuscle consists of a sensory axon terminal that is enveloped by two different structures, the inner core and the capsule. Since proteoglycans are extremely water soluble and are extracted by conventional methods for electron microscopy, the current picture of the structural composition of the extracellular matrix in the inner core and the capsule of the Pacinian corpuscle is incomplete. To study the structural composition of the extracellular matrix of the Pacinian corpuscles, cationic dyes (ruthenium red, alcian blue, acridine orange) and tannic acid were applied simultaneously with the aldehyde fixation. The interosseal Pacinian corpuscles of the rat were fixed either in 2% formaldehyde and 1.5% glutaraldehyde, with the addition of one of these cationic dyes or, in Zamboni's fixative, with tannic acid added. The cationic dyes and tannic acid revealed a different structural pattern of proteoglycans in the extracellular matrix in the inner core and in the capsule of the rat Pacinian corpuscles. The inner core surrounding the sensory axon terminal is a compartment containing proteoglycans that were distributed not only in the extracellular matrix but also in the cytoplasm of the lamellae. In addition, this excitable domain was separated from the capsular fluid by a thick layer of proteoglycans on its surface. An enlarged interlamellar space of the capsule contained large amounts of proteoglycans that were removed by digestion with chondroitinase-ABC. Ruthenium red and alcian blue provided only electron dense granules, probably corresponding to collapsed monomeric proteoglycan molecules. Acridine orange and tannic acid preserved proteoglycans very well and made it possible to visualize them as "bottlebrush" structures in the electron microscope. These results show that the inner core and the capsule of rat Pacinian corpuscles have different structural patterns of proteoglycans, which are probably involved in different functions.
帕西尼小体由一个被两种不同结构(内核和被膜)包裹的感觉轴突终末组成。由于蛋白聚糖极易溶于水,且会被传统的电子显微镜方法提取出来,因此目前关于帕西尼小体内核和被膜细胞外基质结构组成的认识并不完整。为了研究帕西尼小体细胞外基质的结构组成,在醛类固定时同时使用了阳离子染料(钌红、阿尔辛蓝、吖啶橙)和单宁酸。将大鼠的骨间帕西尼小体固定在2%甲醛和1.5%戊二醛中,并添加其中一种阳离子染料,或者固定在赞博尼固定液中并添加单宁酸。阳离子染料和单宁酸揭示了大鼠帕西尼小体内核和被膜细胞外基质中蛋白聚糖的不同结构模式。围绕感觉轴突终末的内核是一个包含蛋白聚糖的区域,这些蛋白聚糖不仅分布在细胞外基质中,还分布在薄片的细胞质中。此外,这个可兴奋区域在其表面被一层厚厚的蛋白聚糖与被膜液分隔开。被膜中扩大的片层间空间含有大量被软骨素酶ABC消化去除的蛋白聚糖。钌红和阿尔辛蓝仅提供电子致密颗粒,可能对应于塌陷的单体蛋白聚糖分子。吖啶橙和单宁酸能很好地保存蛋白聚糖,并使其在电子显微镜下能够被可视化为“刷状”结构。这些结果表明,大鼠帕西尼小体的内核和被膜具有不同的蛋白聚糖结构模式,这可能与不同的功能有关。