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在无血清、化学成分明确的器官型培养中牙本质和釉质生物矿化内在发育程序的代谢表达

Metabolic expression of intrinsic developmental programs for dentine and enamel biomineralization in serumless, chemically-defined, organotypic culture.

作者信息

Evans J, Bringas P, Nakamura M, Nakamura E, Santos V, Slavkin H C

机构信息

Department of Basic Sciences (Biochemistry), School of Dentistry, University of Southern California, Los Angeles 90089-0191.

出版信息

Calcif Tissue Int. 1988 Apr;42(4):220-30. doi: 10.1007/BF02553747.

Abstract

Biomineralization was investigated using embryonic mouse mandibular first molars (M1) cultured in the presence or absence of fetal calf serum. Metabolic features including cell division and Ca2+ and phosphate incorporation into dentine and enamel extracellular matrices were analyzed. The relative timing and magnitude of DNA synthesis for serumless cultures was comparable to in vivo controls. Isotopic calcium and phosphate incorporation into the mineral phase of dentine and enamel matrices, in the absence of serum, fluctuated during development. Molar tooth morphogenesis, cytodifferentiation, and extracellular matrix formation approximated late crown-stage development in serumless cultures. Von Kossa histochemical staining indicated calcium phosphate salt formation in serumless cultures. Analysis of anhydrous fixation-prepared enamel and dentine representing serumless cultured explants indicated that crystal size and orientation were comparable to in vivo enamel and dentine. In contrast, serum-supplemented cultures showed atypical crystal size and orientation. Calcium/phosphorous (Ca/P) ratio values for serumless cultures after 21 days showed Ca/P enamel values of 2.03 (SD +/- 0.04, p less than 0.025) and dentine values of 1.89 (SD +/- 0.01, p less than 0.025). Electron diffraction patterns of enamel and dentine formed in serumless cultures were principally those of highly-ordered crystalline hydroxyapatite. Our results suggest that tissue-specific dentine and enamel biomineralization is regulated by endogenous factors intrinsic to the developmental program of embryonic tooth organs during serumless culture.

摘要

利用在有或无胎牛血清存在的情况下培养的胚胎小鼠下颌第一磨牙(M1)来研究生物矿化。分析了包括细胞分裂以及钙和磷掺入牙本质和釉质细胞外基质在内的代谢特征。无血清培养中DNA合成的相对时间和幅度与体内对照相当。在无血清的情况下,钙和磷同位素掺入牙本质和釉质基质的矿化相中,在发育过程中会发生波动。在无血清培养中,磨牙的形态发生、细胞分化和细胞外基质形成接近冠后期发育。冯·科萨组织化学染色表明在无血清培养中有磷酸钙盐形成。对代表无血清培养外植体的无水固定制备的釉质和牙本质的分析表明,晶体大小和取向与体内釉质和牙本质相当。相比之下,补充血清的培养显示出非典型的晶体大小和取向。21天后无血清培养的钙/磷(Ca/P)比值显示,釉质的Ca/P值为2.03(标准差±0.04,p<0.025),牙本质的Ca/P值为1.89(标准差±0.01,p<0.025)。在无血清培养中形成的釉质和牙本质的电子衍射图谱主要是高度有序的结晶羟基磷灰石的图谱。我们的结果表明,在无血清培养期间,组织特异性的牙本质和釉质生物矿化受胚胎牙齿器官发育程序内在的内源性因素调节。

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