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成骨细胞向骨细胞的转变。兔股骨骨内膜附着的扫描电镜密度分析。

Osteoblast-osteocyte transformation. A SEM densitometric analysis of endosteal apposition in rabbit femur.

作者信息

Pazzaglia Ugo E, Congiu Terenzio, Sibilia Valeria, Quacci Daniela

机构信息

Department of Medical and Surgical Specialties, Radiological Sciences and Public Health, University of Brescia, Brescia, Italy.

出版信息

J Anat. 2014 Feb;224(2):132-41. doi: 10.1111/joa.12138. Epub 2013 Nov 20.

Abstract

Transformation of osteoblasts into osteocytes is marked by changes in volume and cell shape. The reduction of volume and the entrapment process are correlated with the synthesis activity of the cell which decreases consequently. This transformation process has been extensively investigated by transmission electron microscopy (TEM) but no data have yet been published regarding osteoblast-osteocyte dynamic histomorphometry. Scanning electron microscope (SEM) densitometric analysis was carried out to determine the osteoblast and open osteocyte lacunae density in corresponding areas of a rabbit femur endosteal surface. The lining cell density was 4900.1 ± 30.03 n mm(-2), the one of open osteocyte lacunae 72.89 ± 22.55 n mm(-2). This corresponds to an index of entrapment of one cell every 67.23 osteoblasts (approximated by defect). The entrapment sequence begins with flattening of the osteoblast and spreading of equatorial processes. At first these are covered by the new apposed matrix and then also the whole cellular body of the osteocyte undergoing entrapment. The dorsal aspect of the cell membrane suggests that closure of the osteocyte lacuna may be partially carried out by the same osteoblast-osteocyte which developed a dorsal secretory territory. A significant proportion of the endosteal surface was analysed by SEM, without observing any evidence of osteoblast mitotic figures. This indicates that recruitment of the pool of osteogenic cells in cortical bone lamellar systems occurs prior to the entrapment process. No further additions occurred once osteoblasts were positioned on the bone surface and began lamellar apposition. The number of active osteoblasts on the endosteal surface exceeded that of the cells which become incorporated as osteocytes (whose number was indicated by the number of osteocyte lacunae). Therefore such a balance must be equilibrated by the osteoblasts' transformation in resting lining cells or by apoptosis. The current work characterised osteoblast shape changes throughout the entrapment process, allowing approximate calculation of an osteoblast entrapment index in the rabbit endosteal cortex.

摘要

成骨细胞向骨细胞的转变以体积和细胞形状的变化为特征。体积的减小和包埋过程与细胞合成活性的降低相关,而细胞合成活性随后也会下降。透射电子显微镜(TEM)已对这一转变过程进行了广泛研究,但尚未有关于成骨细胞-骨细胞动态组织形态计量学的数据发表。采用扫描电子显微镜(SEM)密度分析来确定兔股骨内膜表面相应区域的成骨细胞和开放骨细胞陷窝的密度。衬里细胞密度为4900.1±30.03个/mm²,开放骨细胞陷窝的密度为72.89±22.55个/mm²。这相当于每67.23个成骨细胞中有一个细胞被包埋的指数(通过缺陷近似计算)。包埋序列始于成骨细胞变平以及赤道突起的伸展。起初,这些被新附着的基质覆盖,随后正在被包埋的骨细胞的整个细胞体也被覆盖。细胞膜的背侧表明,骨细胞陷窝的封闭可能部分由同一个发育出背侧分泌区域的成骨细胞-骨细胞完成。通过SEM分析了相当大比例的内膜表面,未观察到任何成骨细胞有丝分裂图像的证据。这表明在包埋过程之前,皮质骨板层系统中成骨细胞池的补充就已发生。一旦成骨细胞定位在骨表面并开始板层附着,就不会再有进一步的补充。内膜表面活跃成骨细胞的数量超过了作为骨细胞被纳入的细胞数量(骨细胞陷窝的数量表明了其数量)。因此,这种平衡必须通过成骨细胞转变为静止的衬里细胞或通过凋亡来实现。当前的研究描述了整个包埋过程中成骨细胞形状的变化,从而能够近似计算兔内膜皮质中的成骨细胞包埋指数。

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