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神经损伤过程中骨生成的异位诱导

Heterotopic induction of osteogenesis in the course of neural injury.

作者信息

Otfinowski J

机构信息

Department of Orthopedics, Jagellonian University Medical College, Kraków.

出版信息

Patol Pol. 1993;44(3):133-68.

PMID:8247639
Abstract

Encountered in orthopedics cases of accelerated bone union and abundant formation of the callus in patients after craniocerebral injuries as well as cases of extraskeletal ossification in neural diseases give rise to a question whether neural damage affects in any way the course of osteogenesis. The present study was carried out in an attempt to answer this question in an animal model. The study included 120 inbred WAG rats in which heterotopic induction of osteogenesis was performed by intramuscular placement of decalcified and lyophilized implants of rat cortical bones. By producing various neural damages their effect on the course of osteogenesis was evaluated. The rats were divided into four groups of 30 subjects each. In group I cerebral cortical damage was induced by intracortical injection of kainic acid solution, in group II paraplegia was produced by transverse dissection of the spinal cord on the level of Th 10-11, in group III denervation of the hind limb was performed by dissection of all supplying peripheral nerves, group IV consisted of controls. An attempt was made to evaluate changes in the course of osteogenesis while observing advancing with the passage of time changes in histological patterns of the preparations obtained from the site of bone implantation at 3, 5, 10, 20 and 40 days after the operation. While analyzing the histological pattern I paid attention to features characteristic for the process of osteogenesis such as: formation of granulation around bone grafts, penetration of mesenchymal cells into transplants, differentiation of mesenchymal cells into osteogenic cells, formation of bone tissue and development of bone marrow. The rate of development of these features in the consecutive preparations reflected the dynamics of induced osteogenesis. Analysis of the results showed that experimentally induced neural damage affects the course of osteogenesis. In case of cerebral cortical injury and peripheral neurotomy the formation of granulation around bone grafts was very abundant, whereas penetration of mesenchymal cells into the implants and differentiation of mesenchymal cells into chondroblasts occurred more rapidly than in other animal groups. In contrast, spinal cord injury resulted in a markedly decreased dynamics of osteogenesis which was manifested by weaker cell reaction around the implants and delayed differentiation of mesenchymal cells into chondroblasts. The effect was seen on the 20th day. In the final stage of the study--at 40 days--the effect of neural damage on the course of osteogenesis was reduced and the histological pattern was similar in all animal groups.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

在骨科领域,人们发现颅脑损伤患者出现骨愈合加速和骨痂大量形成的情况,以及神经疾病患者出现骨外骨化的情况,这引发了一个问题,即神经损伤是否会以某种方式影响骨生成过程。本研究旨在通过动物模型回答这个问题。该研究纳入了120只近交WAG大鼠,通过肌肉内植入脱钙冻干的大鼠皮质骨植入物进行异位骨生成诱导。通过造成各种神经损伤,评估其对骨生成过程的影响。大鼠被分为四组,每组30只。第一组通过皮质内注射 kainic 酸溶液诱导大脑皮质损伤,第二组通过在胸10 - 11水平横断脊髓造成截瘫,第三组通过切断所有供应后肢的外周神经进行后肢去神经支配,第四组为对照组。在术后3、5、10、20和40天,观察从骨植入部位获取的标本的组织学模式随时间推移的变化,试图评估骨生成过程中的变化。在分析组织学模式时,我关注了骨生成过程的特征,如:骨移植周围肉芽组织的形成、间充质细胞向移植物的浸润、间充质细胞向成骨细胞的分化、骨组织的形成和骨髓的发育。这些特征在连续标本中的发育速度反映了诱导骨生成的动态变化。结果分析表明,实验诱导的神经损伤会影响骨生成过程。在大脑皮质损伤和外周神经切断的情况下,骨移植周围肉芽组织的形成非常丰富,而间充质细胞向植入物的浸润和间充质细胞向软骨细胞的分化比其他动物组发生得更快。相比之下,脊髓损伤导致骨生成动态明显下降,表现为植入物周围细胞反应较弱且间充质细胞向软骨细胞的分化延迟。这种效应在第20天可见。在研究的最后阶段——40天时——神经损伤对骨生成过程的影响减弱,所有动物组的组织学模式相似。(摘要截断于400字)

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