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속단의 dichloromethane 분획물이 태아골모세포의 골형성 유도에 미치는 효과
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  • 속단의 dichloromethane 분획물이 태아골모세포의 골형성 유도에 미치는 효과
저자명
이영준,최희인,김윤철,신형식,유형근,Lee. Young-Joon,Choi. Hee-In,Kim. Yun-Chul,Shin. Hyung-Shik,You. Hyung-Keun
간행물명
대한치주과학회지
권/호정보
2003년|33권 2호|pp.259-269 (11 pages)
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대한치주과학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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The ideal goal of periodontal therapy is the regeneration of periodontal tissue repair of function. Although is very difficult to attain the goal, recent advances in periodontal wound healing concepts encourage hope reaching it. Recently many efforts are concentrated on the regeneration potential of material used in traditional Korean medicine. Phlomidis Radix has been used for the treatment of blood stasis, bone fracture and osteoporosis in traditional Korean medicine. The purpose of this study is to examine effects of dichloromethane fraction Phlomidis Radix on Bone Formation in Human Fetal Osteoblasts. Human fetal osteoblastic cell line(hFOB1 1.19 ;American Type Culture Collection, Manassas, VA) were used and cells were cultured containing DMEM and dichloromethane fraction Phlomidis Radix(100 ng/ml , 1 ${mu}$/ml, 10 ${mu}$/ml) at 34$^{circ}C$ with 5% $CO_2$ in 100% humidity. MTT was performed to examine the viability of the cell, and alkaline phosphatase activity was analyzed to examine the mineralization. Also bone calcification nodules were evaluated. The cellular activity of hFOB1 was increased in 100 ng/ml, 1 ${mu}$/ml , 10 ${mu}$/ml of dichloromethane fraction of Phlomidis Radix and especially significant increation was showed in 100 ng/ml of dichloromethane fraction of Phlomidis Radix at 6days (p <0.05). ALP level of hFOB1 was significantly increased in 100 ng/ml , 1 ${mu}$/ml, 10 ${mu}$/ml of dichloromethane fraction of Phlomidis Radix and especially more increation was showed in 10 ${mu}$/ml of dichloromethane fraction of Phlomidis Radix (p <0,05). Calcification nodules of hFOB1 significantly increased in 10 ${mu]$/ml of dichloromethane fraction of Phlomidis Radix at 21 days of incubation(p<0.05). The results indicate that dicholoromethane fraction of Phlomidis Radix has excellent effects on mineralization of hFOB1.