Hayashi Y, Nagasawa H
Department of Conservative Dentistry, Faculty of Dentistry, Kyushu University, Fukuoka, Japan.
Calcif Tissue Int. 1990 Dec;47(6):365-72. doi: 10.1007/BF02555888.
The ultrastructure of crystal formation in vitro associated with extracellular membrane-bound matrix vesicles (MV) isolated from rat incisor pulp was studied in Dulbecco's modified Eagle's medium (DMEM) supplemented with an organic phosphate, Na-beta-glycerophosphate (BGP). Matrix vesicles were isolated from basal regions of the pulps using a collagenase digestion and ultra-centrifugation method. Isolated MV contained alkaline phosphatase (ALP) activity and had diameters of 30-200 nm. Membrane structures of the isolated MV were well preserved. Incubation of MV in DMEM in the presence of BGP caused the development of bilaminar electron densities associated with the vesicle membrane. These preceded crystal deposition which was observed in the culture medium after 3 days. Both heat-inactivated MV incubated with BGP, and fresh MV incubated in the absence of BGP failed to show crystal formation, even after 3 days. Staining of demineralized sections of mineralized MV with uranyl acetate and lead citrate, revealed numerous needle-like structures similar in shape to the untreated crystals. Electron diffraction patterns of the newly formed crystals revealed a pattern consistent with hydroxyapatite. The requirement of BGP for mineralization of these MV and the long lag time before crystal formation is probably due to the low calcium (Ca) x inorganic phosphate (Pi) ion product in the original medium. The requirement of ALP activity which would cause hydrolysis of BGP and a rise in Pi would favor the precipitation of biologic apatite from the culture medium.
在补充了有机磷酸盐β-甘油磷酸钠(BGP)的杜氏改良 Eagle 培养基(DMEM)中,研究了从大鼠切牙牙髓分离的与细胞外膜结合基质小泡(MV)相关的体外晶体形成的超微结构。使用胶原酶消化和超速离心法从牙髓的基部区域分离基质小泡。分离出的 MV 含有碱性磷酸酶(ALP)活性,直径为 30 - 200 纳米。分离出的 MV 的膜结构保存良好。在 BGP 存在的情况下,将 MV 在 DMEM 中孵育会导致与小泡膜相关的双分子层电子密度的形成。这些在 3 天后在培养基中观察到的晶体沉积之前出现。即使在 3 天后,用 BGP 孵育的热灭活 MV 和在没有 BGP 的情况下孵育的新鲜 MV 都未能显示出晶体形成。用醋酸铀和柠檬酸铅对矿化 MV 的脱矿化切片进行染色,发现了许多形状与未处理晶体相似的针状结构。新形成晶体的电子衍射图谱显示出与羟基磷灰石一致的图案。BGP 对这些 MV 矿化的需求以及晶体形成前的长时间延迟可能是由于原始培养基中钙(Ca)×无机磷酸盐(Pi)离子产物较低。ALP 活性的需求会导致 BGP 水解和 Pi 升高,这将有利于从培养基中沉淀出生物磷灰石。