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Cellular viability and genetic expression of human gingival fibroblasts to zirconia with enamel matrix derivative ($Emdogain^{(R)}$)
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  • Cellular viability and genetic expression of human gingival fibroblasts to zirconia with enamel matrix derivative ($Emdogain^{(R)}$)
저자명
Kwon. Yong-Dae,Choi. Hyun-Jung,Lee. Heesu,Lee. Jung-Woo,Weber. Hans-Peter,Pae. Ahran
간행물명
The journal of advanced prosthodontics
권/호정보
2014년|6권 5호|pp.406-414 (9 pages)
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대한치과보철학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

PURPOSE. The objective of this study was to investigate the biologic effects of enamel matrix derivative (EMD) with different concentrations on cell viability and the genetic expression of human gingival fibroblasts (HGF) to zirconia surfaces. MATERIALS AND METHODS. Immortalized human gingival fibroblasts (HGF) were cultured (1) without EMD, (2) with EMD $25{mu}g/mL$, and (3) with EMD $100{mu}g/mL$ on zirconia discs. MTT assay was performed to evaluate the cell proliferation activity and SEM was carried out to examine the cellular morphology and attachment. The mRNA expression of collagen type I, osteopontin, fibronectin, and TGF-${eta}1$ was evaluated with the real-time polymerase chain reaction (RT-PCR). RESULTS. From MTT assay, HGF showed more proliferation in EMD $25{mu}g/mL$ group than control and EMD $100{mu}g/mL$ group (P<.05). HGFs showed more flattened cellular morphology on the experimental groups than on the control group after 4h culture and more cellular attachments were observed on EMD $25{mu}g/mL$ group and EMD $100{mu}g/mL$ group after 24h culture. After 48h of culture, cellular attachment was similar in all groups. The mRNA expression of type I collagen increased in a concentration dependent manner. The genetic expression of osteopontin, fibronectin, and TGF-${eta}1$ was increased at EMD $100{mu}g/mL$. However, the mRNA expression of proteins associated with cellular attachment was decreased at EMD $25{mu}g/mL$. CONCLUSION. Through this short term culture of HGF on zirconium discs, we conclude that EMD affects the proliferation, attachment, and cell morphology of HGF cells. Also, EMD stimulates production of extracellular matrix collagen, osteopontin, and TGF-${eta}1$ in high concentration levels. CLINICAL RELEVANCE. With the use of EMD, protective barrier between attached gingiva and transmucosal zirconia abutment may be enhanced leading to final esthetic results with implants.