Hollyfield J G, Varner H H, Rayborn M E, Osterfeld A M
Cullen Eye Institute, Baylor College of Medicine, Houston, Texas 77030.
Retina. 1989;9(1):59-68.
The interphotoreceptor matrix, which occupies the so-called subretinal space in normal human eyes, was examined with electron microscopy after treatment with Cuprolinic Blue, a dye that selectively stains sulfated polyanions. A cylindrically shaped, extracellular ensheathing domain, composed of Cuprolinic Blue-positive particles, was observed surrounding each cone photoreceptor examined. Equivalent structures were not present around rods. Surrounding peripheral cones, the unit particles which comprised the sheath, were punctate in shape whereas in foveal and foveolar cones the particles were more elongate. A matrix domain completely enveloped each cone photoreceptor, beginning at the outer limiting membrane, extending beyond the tip of the cone outer segment, and ending at the apical surface of the pigment epithelium. Proximal to the pigment epithelium, specialized extensions of apical microvilli were present in the lumen of the matrix sheath and shorter microvilli appeared to be embedded in the sheath wall. When retinas were experimentally detached from the pigment epithelium and washed extensively before fixation and staining, the cone matrix domains remained associated with the cones, and broken fragments of pigment epithelial cell processes were present embedded in the distal tip of the cone matrix sheath wall. These observations indicate that the cone matrix sheath is insoluble and is closely associated with both the cone photoreceptor and the apical surface of the pigment epithelium. The implication of these findings is that the cone matrix sheath is a bridge through which the retina and pigment epithelium are physically attached.
在正常人类眼睛中占据所谓视网膜下间隙的光感受器间基质,在用铜叶绿酸(一种选择性染色硫酸化多阴离子的染料)处理后,用电子显微镜进行了检查。在检查的每个视锥光感受器周围观察到一个由铜叶绿酸阳性颗粒组成的圆柱形细胞外包裹结构域。视杆周围不存在类似结构。在周边视锥周围,构成鞘的单位颗粒呈点状,而在中央凹和中央小凹视锥中,颗粒则更长。一个基质结构域完全包裹每个视锥光感受器,起始于外界膜,延伸至视锥外段的尖端之外,并终止于色素上皮的顶面。在色素上皮近端,基质鞘管腔内存在顶端微绒毛的特化延伸,较短的微绒毛似乎嵌入鞘壁中。当视网膜在实验中与色素上皮分离并在固定和染色前广泛冲洗时,视锥基质结构域仍与视锥相关联,色素上皮细胞突起的破碎片段嵌入视锥基质鞘壁的远端。这些观察结果表明,视锥基质鞘是不可溶的,并且与视锥光感受器和色素上皮的顶面都紧密相关。这些发现的意义在于,视锥基质鞘是视网膜和色素上皮在物理上相连的桥梁。