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硫酸化复合碳水化合物在幼兔弹性软骨中的超微结构分布

Ultrastructural distribution of sulfated complex carbohydrates in elastic cartilage of the young rabbit.

作者信息

Takagi M, Parmley R T, Denys F R, Kageyama M, Yagasaki H

出版信息

Anat Rec. 1983 Dec;207(4):547-56. doi: 10.1002/ar.1092070403.

Abstract

Sulfated glycosaminoglycans are an integral component of elastic cartilage. We have investigated the ultrastructural distribution of sulfated complex carbohydrates (CC) in the mature cartilage and the perichondrium of young rabbit auricles using the high iron diamine-thiocarbohydrazide-silver proteinate (HID-TCH-SP) and the tannic acid-ferric chloride (TA-Fe) methods. In the mature cartilage, HID-TCH-SP stained intracellular Golgi saccules of the mature face, secretory granules, and the extracellular matrix granules, but staining was not discernible in collagen fibrils and osmiophilic elastic fibers consisting of only amorphous elastin. The HID and TA-Fe staining were similarly observed in matrix granules, whereas the elastic fibers and collagen fibrils lacked the staining. The pericellular matrix granules had a diameter of 34 +/- 5 nm (mean +/- SD; n = 30). Thiéry's periodate-TCH-SP (PA-TCH-SP) method stained vicinal glycol-containing CC in collagen fibrils but failed to stain matrix granules and elastic fibers. In the perichondrium, HID-TCH-SP staining of the organelles was less intense in the flattened chondrocytes when compared with those in large mature chondrocytes. The extracellular HID and HID-TCH-SP staining were observed in the matrix granules. The diameter of pericellular matrix granules (19 +/- 4 nm, mean +/- SD; n = 30) was significantly smaller when compared to those in the mature cartilage (P less than 0.001). The HID-TCH-SP staining was closely associated with collagen fibrils. However, the staining was not seen in collagen fibrils and osmiophilic elastic fibers consisting of elastin and microfibrils. The PA-TCH-SP method stained collagen fibrils and microfibrils but did not stain the amorphous elastin. Thus these studies demonstrate that sulfated CC are packaged in chondrocyte secretory granules and are released into the extracellular matrix to form matrix granules, but are not incorporated into collagen fibrils and elastic fibers.

摘要

硫酸化糖胺聚糖是弹性软骨的一个组成部分。我们使用高铁二胺-硫代碳酰肼-蛋白银(HID-TCH-SP)和鞣酸-氯化铁(TA-Fe)方法,研究了硫酸化复合碳水化合物(CC)在幼兔耳廓成熟软骨和软骨膜中的超微结构分布。在成熟软骨中,HID-TCH-SP染色显示成熟面的细胞内高尔基体囊泡、分泌颗粒和细胞外基质颗粒,但在仅由无定形弹性蛋白组成的胶原纤维和嗜锇弹性纤维中未观察到染色。在基质颗粒中同样观察到HID和TA-Fe染色,而弹性纤维和胶原纤维缺乏染色。细胞周围基质颗粒的直径为34±5nm(平均值±标准差;n = 30)。蒂埃里高碘酸盐-TCH-SP(PA-TCH-SP)方法可染色胶原纤维中含邻位二醇的CC,但未能染色基质颗粒和弹性纤维。在软骨膜中,与大的成熟软骨细胞相比,扁平软骨细胞中细胞器的HID-TCH-SP染色强度较低。在基质颗粒中观察到细胞外HID和HID-TCH-SP染色。细胞周围基质颗粒的直径(19±4nm,平均值±标准差;n = 30)与成熟软骨中的相比显著更小(P小于0.001)。HID-TCH-SP染色与胶原纤维密切相关。然而,在由弹性蛋白和微原纤维组成的胶原纤维和嗜锇弹性纤维中未观察到染色。PA-TCH-SP方法可染色胶原纤维和微原纤维,但不染色无定形弹性蛋白。因此,这些研究表明硫酸化CC被包装在软骨细胞分泌颗粒中,并释放到细胞外基质中形成基质颗粒,但不掺入胶原纤维和弹性纤维中。

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