[CHARACTERISTICS OF OSTEOCYTE CELL LINES FROM BONES FORMED AS A RESULT OF MEMBRANOUS (SKULL BONES) AND CHONDRAL (LONG BONES) OSSIFICATION].

A S Avrunin, A A Doktorov
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Abstract

The aim of this work was to analyze the literature data and the results of authors' own research, to answer the question--if the osteocytes of bone tissues resulting from membranous and chondral ossification, belong to one or to different cell lines. The differences between the cells of osteocyte lines derived from bones resulting from membranous and chondral ossification were established in: 1) the magnitude of the mechanical signal, initiating the development of the process of mechanotransduction; 2) the nature of the relationship between the magnitude of the mechanical signal that initiates the reorganization of the architecture of bone structures and the resource of their strength; in membranous bones significantly lower mechanical signal caused a substantially greater increment of bone strength resource; 3) the biological activity of bone structures, bone fragments formed from membranous tissue were more optimal for transplantation; 4) the characteristics of expression of functional markers of bone cells at different stages of their differentiation; 5) the nature of the reaction of bone cells to mechanical stress; 6) the sensitivity of bone cells to one of the factors controlling the process of mechanotransduction (PGI2); 7) the functioning of osteocytes during lactation. These differences reflect the functional requirements to the bones of the skeleton--the supporting function in the bones of the limbs and the shaping and protection in the bones of the cranial vault. These data suggest that the results of research conducted on the bones of the skull, should not be transferred to the entire skeleton as a whole.

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[骨细胞细胞系的特征,由骨膜(颅骨)和软骨(长骨)骨化而形成]。
本工作的目的是分析文献资料和作者自己的研究结果,回答膜性和软骨性成骨的骨组织的骨细胞是属于一个细胞系还是不同细胞系的问题。膜性和软骨性成骨所产生的骨细胞系细胞之间的差异体现在:1)机械信号的大小,启动了机械转导过程的发展;2)引发骨结构重组的机械信号的大小与其强度来源之间关系的本质;在膜性骨中,机械信号显著降低导致骨强度资源显著增加;3)骨结构的生物活性,膜性组织形成的骨碎片更适合移植;4)骨细胞不同分化阶段功能标志物的表达特征;5)骨细胞对机械应力的反应性质;6)骨细胞对控制机械转导过程的因子之一的敏感性(PGI2);7)哺乳期间骨细胞的功能。这些差异反映了对骨骼的功能要求——四肢骨骼的支撑功能和颅顶骨骼的塑造和保护功能。这些数据表明,对头盖骨进行的研究结果,不应该被转移到整个骨骼作为一个整体。
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