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生长中和成熟食蟹猴(猕猴)颞下颌关节的光镜和电镜形态学:髁突关节层

Light and electron microscopic morphology of the temporomandibular joint in growing and mature crab-eating monkeys (Macaca fascicularis): the condylar articular layer.

作者信息

Luder H U, Schroeder H E

机构信息

Department of Oral Structural Biology, University of Zurich, Switzerland.

出版信息

Anat Embryol (Berl). 1990;181(5):499-511. doi: 10.1007/BF02433797.

Abstract

In an attempt to establish maturational alterations in the morphology of the articular tissue layer, mandibular condyles of four immature and four mature male monkeys (Macaca fascicularis) were studied using light microscopy as well as scanning and transmission electron microscopy. Specimens were fixed in situ by perfusion in the presence of ruthenium red to stabilize proteoglycans. Preparations intended for observation in the scanning electron microscope were first dehydrated and sputtered for the examination of articular surfaces, and afterwards treated with trypsin to expose the spatial arrangement of collagen fibrils. Gross anatomical relations between joint components indicated that the anterior and central, but not the posterior region of the condylar articular surface can be subject to compressional load. Load-bearing and non-load-bearing regions differed with respect to the morphology of the articular layer. Load-bearing surfaces were covered by a prominent articular surface lamina similar to that observed on articular cartilage. This lamina seemed to constitute an integral part of the articular layer, distinct from the lining of synovial fluid, and to be composed largely of proteoglycans. It was unaffected by maturation. The subjacent, load-bearing articular layer differed markedly in structure, both from articular cartilage, and between immature and mature animals. Articular cells of immature animals were classified as fibroblastlike, but unlike typical fibroblasts, were surrounded by a thin, often incomplete halo of fibril-free pericellular matrix, presumably consisting of proteoglycans. In mature animals, articular cells closely resembled chondrocytes, but exhibited prominent nuclear fibrous laminae, which usually are found only in fibroblasts. Thus, the load-bearing part of the articular layer seems to undergo a maturation-dependent metaplastic conversion, from a dense connective tissue with some features of fibrocartilage, to a fibrocartilage-like tissue containing chondrocyte-like cells with some features of fibroblasts. This conversion might reflect an adaptation to a maturation-associated increase in articular stress.

摘要

为了确定关节组织层形态的成熟变化,我们使用光学显微镜以及扫描和透射电子显微镜对4只未成年雄性猕猴(食蟹猴)和4只成年雄性猕猴的下颌髁进行了研究。在钌红存在的情况下通过灌注将标本原位固定,以稳定蛋白聚糖。用于扫描电子显微镜观察的标本首先进行脱水和溅射,以检查关节表面,然后用胰蛋白酶处理,以暴露胶原纤维的空间排列。关节组件之间的大体解剖关系表明,髁突关节表面的前部和中部而非后部区域可能承受压缩负荷。承重区域和非承重区域在关节层形态方面存在差异。承重表面覆盖着一层突出的关节表面薄片,类似于在关节软骨上观察到的薄片。该薄片似乎构成关节层的一个组成部分,与滑液衬里不同,并且主要由蛋白聚糖组成。它不受成熟的影响。下方的承重关节层在结构上与关节软骨明显不同,并且在未成年和成年动物之间也存在差异。未成年动物的关节细胞被归类为成纤维细胞样,但与典型的成纤维细胞不同,它们被一层薄的、通常不完整的无纤维细胞周基质晕包围,推测该基质由蛋白聚糖组成。在成年动物中,关节细胞与软骨细胞非常相似,但表现出突出的核纤维层,这种结构通常仅在成纤维细胞中发现。因此,关节层的承重部分似乎经历了一种依赖成熟的化生转变,从具有一些纤维软骨特征的致密结缔组织,转变为含有具有一些成纤维细胞特征的软骨细胞样细胞的纤维软骨样组织。这种转变可能反映了对与成熟相关的关节应力增加的一种适应。

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