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심성규,이종수,김상식 한국전기전자재료학회 2004 전기전자재료 Vol.17 No.5
현대 사회는 지식 정보화를 추구하며 변화하고 있다. 지식, 정보화 사회는 개인, 기업 및 사회 모든 주체의 업무효과의 극대화할 수 있는 인프라를 제공하게 될 것이며 이는 영상, 음성, 데이터 등의 다양한 정보의 교환으로 이어져 인간생활의 새로운 혁신을 예고하고 있다. 한편 지식 정보화에는 고도의 정보 저장 및 통신기술이 필수적으로 요구되며 기존의 실리콘기반 소자의 고성능화 이외에 새로운 기술혁신을 요구하고 있다. 1980년대 이후 광통신에 레이저가 응용되고 1990년대 후반에 이르러 수십 나노미터 크기의 양자우물 구조의 화합물 반도체기반의 녹색 및 청색 LD, LED 및 백색 광 다이오드가 구현되면서 화합물 반도체는 정보 통신에 적합한 소재로 인식되기 시작하였다. 기존 실리콘과 다른 물리적 화학적 성질로 인하여 적극적인 연구와 기술적인 시도가 이루어지고 있다. 1900년대 실리콘기반 전자 소자 기술이 비약적으로 발전하면서 새로운 혁신을 보여주었고 그 포화된 기술에 뒤를 이어 화합물 반도체에 의한 기술의 혁신이 예고 되고 있는 것이다.(중략)
생체유리와 천연산호 골이식재가 치주인대 섬유아세포 활성에 미치는 영향
심성규,한수부,Shim, Sung-Kyu,Han, Soo-Boo 대한치주과학회 1999 Journal of Periodontal & Implant Science Vol.29 No.1
The purpose of this study was to evaluate the effects of bioactive glass and natural coral on the human periodontal ligament fibroblast(HPLF) behaviors during the regeneration process of peridontium. To determine the cellular events occuring in the presence of the particles of bioactive glass and natural coral, HPLF were isolated from healthy premolar teeth extracted for orthodontic treatment. Cells were cultured in ${\alpha}$MEM at 37$^{\circ}C$, 5% $CO_2$, 95% humidity incubator. Bioactive glass and natural coral were powdered, and each particles(<40${\mu}$m) were placed on the cultured cells at the concentration of 0.3mg/ml, and 1,0mg/ml for experimental group. In control group no particles were added. And each group was evaluated by examining the cell morphology under phase-contrast micrograph at 4 day and transmission electron micrograph(TEM) and scanning electron micrograph(SEM) at 14 day, alkaline phosphatase activity at 5 and 9 day, protain synthesis at 4 day, DNA synthesis at 1, 2, 3 and 4 day, cell proliferation at 1, 3, 5,7 and 9 day and the formation of bone nodule at 30 day after culturing all groups in mineralizing supplemented mediun, No significant changes in cell morphology by adding these two matirials were found under phase contrast microscopy and TEM. HPLF phagocytocized each particles suggesting that HPLF is involved in the process of resorbing each particles and that bioactive glass were more biocompatible than natural coral. The ALPase activity of bioactive glass 0.3 mg/ml was similar with control groups and all the rests of control groups were significantly low(P<0.01) indicating a transient dedifferentiation of HPLF in the presence of bioactive glass and natural coral particles. There were no significant differences of protein synthesis between all groups. The DNA synthesis in experimental groups were significantly lower than control groups at 1, 2 and 3 day (P<0.01) but became similar to control groups at 4 day. Between control groups, the DNA synthesis in bioactive glass O.3mglml group was significantly higher than other groups(P<0.01). Cell proliferation in natural coral 1.0mg/ml and bioactive glass 1.0mglml groups were significantly lower than control group at 3 day(P<0.05) and there were no differences at 5, 7, 9 day. There were more bone nodule formation in experimental groups than in control groups. In conclusion, these results indicated that bioactive glass and natural coral have some effects of a transient dedifferentiation on HPLF and regeneration of periodontal tissues, however any significant cytotoxic effect on HPLF by these two particles were not found.