Kobayashi J
First Department of Oral and Maxillofacial Surgery, Faculty of Dentistry, Tokyo Medical and Dental University.
Kokubyo Gakkai Zasshi. 1992 Mar;59(1):105-23. doi: 10.5357/koubyou.59.105.
Proteoglycans (PGs), or their component glycosaminoglycan (GAG) chains, have long been recognized as small in quantity but as significant components for many connective tissues. The temporomandibular joint (TMJ) disc and synovial fluid were rarely investigated in this regard. This research was aimed at the biochemical analysis of the composition of collagen, GAGs and PGs in the normal human and porcine TMJ discs, and of PGs in the synovial fluid. 1. The collagen type analysis by gel electrophoresis revealed that the human and porcine TMJ discs were composed only of type I collagen. 2. The human TMJ disc contained 69.9% chondroitin sulfate, 24.5% dermatan sulfate, 5.6% hyaluronic acid and a trace amount of keratan sulfate, and the porcine TMJ disc, 5.8%, 91.4%, 2.8% and a trace amount, respectively. Immunohistochemical staining of the functional parts of the TMJ disc showed a universal distribution of these GAGs. 3. PGs were extracted from the TMJ disc with 4 M guanidine chloride and separated by ion-exchange and gel-filtration chromatography. A high molecular weight PG resembling the cartilage PG and two low molecular weight PGs having a core protein of Mr 40 K were isolated. 4. PGs suggested to be derived from the matrix of other tissues were found in the abnormal human synovial fluid. From these results it was suggested that the TMJ disc was thought not to be fibrocartilage but a fibrous tissue adapted against to the compressive and tensile force.
蛋白聚糖(PGs)或其组成成分糖胺聚糖(GAG)链,长期以来一直被认为在许多结缔组织中含量虽少但却是重要成分。颞下颌关节(TMJ)盘和滑液在这方面很少被研究。本研究旨在对正常人和猪的TMJ盘的胶原蛋白、GAG和PG成分以及滑液中的PG进行生化分析。1. 凝胶电泳分析胶原类型显示,人和猪的TMJ盘仅由I型胶原组成。2. 人TMJ盘含有69.9%的硫酸软骨素、24.5%的硫酸皮肤素、5.6%的透明质酸和微量的硫酸角质素,而猪TMJ盘分别为5.8%、91.4%、2.8%和微量。TMJ盘功能部分的免疫组织化学染色显示这些GAG广泛分布。3. 用4M氯化胍从TMJ盘中提取PG,并通过离子交换和凝胶过滤色谱法进行分离。分离出一种类似于软骨PG的高分子量PG和两种核心蛋白分子量为40KDa的低分子量PG。4. 在异常人滑液中发现了提示来源于其他组织基质的PG。从这些结果推测,TMJ盘被认为不是纤维软骨,而是一种适应压缩和拉伸力的纤维组织。