LOCALIZATION OF BONE MATRIX GENE mRNA IN REGENERATING BONE TISSUE DURING THE GUIDED BONE REGENERATION

골재생유도술에 의한 골재생과정에서의 골기질 유전자 발현 양상

  • Lee, Chang-Kon (Department of Oral Pathology, College of Dentistry, Kyungpook National University) ;
  • Ryoo, Hyun-Mo (Department of Biochemistry, College of Dentistry, Kyungpook National University) ;
  • Shin, Hong-In (Department of Oral Pathology, College of Dentistry, Kyungpook National University)
  • 이창곤 (경북대학교 치과대학 구강병리학교실) ;
  • 류현모 (경북대학교 치과대학 구강생화학교실) ;
  • 신홍인 (경북대학교 치과대학 구강병리학교실)
  • Received : 1999.06.23
  • Accepted : 1999.07.05
  • Published : 1999.09.30

Abstract

To investigate the expression pattern of noncollagenous bone matrix proteins such as osteonectin(OSN), osteopontin(OPN) and osteocalcin(OSC) mRNA during bony healing procedure induced by guided bone regeneration method, we made artificial defects on bilateral femur of rats. Then induced bony healing by application of a nonabsorbable PTFE membrane in experimental sites and without its application in control sites for 3 weeks. The mRNA expression pattern at specimens obtained at 1, 2 and 3 weeks after operation was detected by in situ hybridization method using its antisense mRNA probes. The experimental sites revealed more rapid and favorable bony healing than control sites and new bone formation was limited within defected area by inhibitory activity of bone marrow cells. In experimental sites, the OSN and OSC mRNA were expressed strongly on osteoblasts of regenerating cortical bone at 1st week and on osteoblasts lining the trabecular bone in marrow space at 3rd week, whereas, in control sites, their expression were noted on osteoblasts lining the reactively formed sponge bones at 2nd and 3rd week. In addition, the OPN mRNA was expressed on osteoblasts and osteoclasts at sites of remodeling and osteocytes of remained trabecular bone of defected area in experimental sites and on macrophages at 1st week and osteoclasts at sites of remolding at 2nd and 3rd week in control sites. The above findings suggest that the more rapid and favorable bony healing might be induced by blocking of invading fibrous connective tissue into bony defects. And the earlier expression of OSN and OSC mRNA on osteoblasts of experimental sites suggest that the formation and resorption of regenerating bone was more rapidly progressed in confined spaces made by applicate membranes.

골재생유도술에 의한 골재생 과정에서의 생물학적 현상을 보다 구체적으로 이해하고자 인위적으로 골결손부를 형성하고, 비흡수성 비공유성 차폐막을 이용하여 골성회복 시 주위 연조직의 유입을 차단한 다음 골수강 및 골면으로부터 유래되는 세포들에 의한 골성회복 양상과 이때 이들 세포의 조골세포로의 분화정도를 판정하기 위하여 비교원성 골기질 단백질인 OSN, OPN 그리고 OSC mRNA의 발현 양상을 비교 검토하여 다음과 같은 결과를 얻었다. 실험 전기간에 걸쳐 골재생유도술을 시행한 군에서 보다 신속하고 양호한 골성회복을 보였다. 차폐막을 처리한 실험군에서는 인접골의 주변부로부터 신생골이 형성되어 조골세포의 분화가 조기에 골결손부에 국한되어 유도된 반면, 대조군에서는 주변연조직의 개입으로 인하여 실험군 보다는 약 1주정도 신생골의 형성이 지연되었으며, 따라서 골수강 내의 기질세포의 조골세포로의 분화 역시 지연되었다. 이상의 사실에서 골창상부에서 차폐막에 의해 형성된 차폐공간은 기질 세포들의 보다 신속한 조골세포로의 분화 증식과 이들에 의해 신생된 골주들의 빠른 골 개조를 조장하였음을 시사한다.

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