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磷脂在釉质形成和牙本质形成中的作用。

Phospholipids in amelogenesis and dentinogenesis.

作者信息

Goldberg M, Septier D

机构信息

Laboratoire de Biologie et Physiopathologie Crânio-Faciale EA 2496, Groupe Matrices Extracellulaires et Biominéralisation, Faculté de Chirurgie Dentaire-Université Paris V, Montrouge, France.

出版信息

Crit Rev Oral Biol Med. 2002;13(3):276-90. doi: 10.1177/154411130201300305.

Abstract

Phospholipids have been identified in enamel and dentin. Before demineralization, a group of phospholipids extracted by lipid solvents was associated with cell membranes and is therefore closely related to cell growth and intracellular regulations. After demineralization, a second group of phospholipids, associated with the extracellular matrix, was extracted; this group is probably linked to the mineralized phase. Using imidazole-osmium tetroxide fixation of rat incisors, we stained cellular unsaturated fatty acids, so that we could visualize the membrane domains, coated pits, and endocytic inclusions. Filipin, a probe for cholesterol, varied in density along the plasma membrane of secretory ameloblasts, and allowed us to visualize membrane remnants inside the forming enamel. With respect to phospholipids located in the extracellular matrix, the malachite-green-glutaraldehyde (MGA) method or iodoplatinate (IP) reaction retains and visualizes enamel and dentin phospholipids. In predentin, aggregates appearing as granules and filaments, or liposome-like structures, were located in the spaces between collagen fibrils. In dentin, organic envelopes coating the crystals, also named "crystal-ghost" structures, outlined groups of collagen fibrils. Histochemical data provided evidence that phospholipids are co-distributed or interact with proteoglycans. Radioautography after IP reaction established that [3H] choline was detected in dentin as early as 30 min after the intravenous injection of the labeled precursor, before any labeling was seen in odontoblasts and predentin. This suggests that blood-serum-labeled phospholipids pass between odontoblasts, cross the distal permeable junctional complex, and diffuse in dentin prior to any cellular uptake and phospholipid synthesis. Pharmacologically and genetically induced pathology also supports the suggestion that phospholipids play an important role in the formation and mineralization of dental tissues.

摘要

磷脂已在牙釉质和牙本质中被鉴定出来。脱矿之前,一组由脂质溶剂提取的磷脂与细胞膜相关,因此与细胞生长和细胞内调节密切相关。脱矿后,另一组与细胞外基质相关的磷脂被提取出来;这一组可能与矿化阶段有关。通过对大鼠切牙进行咪唑 - 四氧化锇固定,我们对细胞不饱和脂肪酸进行了染色,以便能够观察到膜结构域、被膜小窝和内吞小体。 Filipin 是一种胆固醇探针,其在分泌性成釉细胞的质膜上密度各异,使我们能够观察到正在形成的牙釉质内部的膜残余物。关于位于细胞外基质中的磷脂,孔雀石绿 - 戊二醛(MGA)法或碘铂酸盐(IP)反应能保留并显示牙釉质和牙本质中的磷脂。在前期牙本质中,呈颗粒、细丝状或脂质体样结构出现的聚集体位于胶原纤维之间的间隙中。在牙本质中,包裹晶体的有机包膜,也被称为“晶体 - 幽灵”结构,勾勒出胶原纤维束。组织化学数据表明磷脂与蛋白聚糖共同分布或相互作用。IP 反应后的放射自显影显示,在静脉注射标记前体后 30 分钟,早在成牙本质细胞和前期牙本质出现任何标记之前,就在牙本质中检测到了[3H]胆碱。这表明血液血清标记的磷脂在成牙本质细胞之间传递,穿过远端可渗透连接复合体,并在任何细胞摄取和磷脂合成之前在牙本质中扩散。药理学和基因诱导的病理学也支持磷脂在牙齿组织形成和矿化中起重要作用这一观点。

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