• 제목/요약/키워드: cbfa1

검색결과 15건 처리시간 0.017초

폴리카프로락톤 실리카 나노 복합체를 이용한 골이식대체재 개발에 관한 연구 (Study on the development of polycaprolacton silica nanohybrid for bone substitutes)

  • 정근식;임성빈;정진형;홍기석;김종여
    • Journal of Periodontal and Implant Science
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    • 제34권2호
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    • pp.425-448
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    • 2004
  • A bioactive and degradable poly(epsilon -caprolactone)/silica nanohybrid(PSH) was synthesized for the application as a bone substitute. PSH was manufactured by using silica and polycaprolacton. PSH was manufactured in some composition after low crystaline apatite had been formed in simulated body fluid and, was used this study. The safety of the PSH was established by test of acute, and subacute toxicity, sensitization cytotoxicity and sterility. In order to assess activity of osteoblast, the test for attaching osteoblast, proliferation test for osteoblast, differentiating gene expression test are performed in vitro. And bone substitutes were grafted in rabbit's calvarium, during 8 weeks for testing efficacy of bone substitutes. Degree of osteogenesis and absorption of substitutes were evaluated in microscopic level. In result, it was not appeared that acute and subacute toxicity, sensitization in intradermal induction phase, topical induction phase and challenge phase. It was shown that the test can not inhibit cell proliferation. adversely, it had some ability to accelerate cell proliferation. The result of sterility test described bacterial growth was not detected in most test tube. The attaching and proliferation test of osteoblast had good results. In the result of differentiating gene expression test for osteoblast, cbfa1 and, alkaline phosphatase, osteocalcin and GAPDH were detected with mRNA analysis. In the PSH bone formation test, ostgeoblastic activity would be different as material constitution but it had good new bone formation ability except group #218. futhermore, some material had been absorbed within 8 weeks. Above studies, PSH had bio-compatibility with human body, new bone formation ability and accelerate osteoblastic activity. So it would be the efficient bone substitute material with bio-active and biodegradable.

FGF signaling이 연골 형성에 미치는 영향 (THE EFFECT OF FIBROBLAST GROWTH FACTOR SIGNALING ON CARTILAGE FORMATION)

  • 박충제;이상원;남순현;김영진;류현모;김현정
    • 대한소아치과학회지
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    • 제30권4호
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    • pp.643-653
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    • 2003
  • 막내골화와 연골내골화 등의 정상적인 골격 성장은 섬유아세포 성장인자 (FGF) 와 이들 수용체들 (FGFR) 에 의한 신호 전달체계에 의해 조절된다. 또한 전사조절인자인 Runx2 ($Cbfa1/Pebp2{\alpha}A/AML3$) 는 골아세포분화 뿐만 아니라 골형성에도 필수적인 유전자로 알려져 있다. FGF signaling이 mouse의 두개관과 하악에서의 연골 형성에 어떤 영향을 미치고 있으며, 이 과정에서 Runx2의 연관성을 알아보고자 in vivo 및 in vitro 실험을 시행하여 다음과 같은 결과를 얻었다. 두개관과 하악을 Alcian blue 염색한 결과 시상두개봉합부 연골은 태생 16일부터, Meckel's 연골은 태생11일부터 형성되기 시작하였다. 이들 연골세포들의 성상을 알아보기위한 in situ hybridization 결과 시상두개봉합부 연골 및 Meckel's 연골 모두에서 type II collagen은 발현되었으나, Type X collagen은 발현되지 않았다. Runx2 mRNA는 시상두개봉합부 연골과 Meckel's 연골 모두에서 발현되지 않았지만, 이들 연골들의 가장자리를 둘러싸고 있는 독특한 발현양상을 나타내었다. 두개봉합부에서의 FGF2 protein의 국소적 적용은 두개봉합부 하방의 연골형성을 억제하였다. 또한 하악의 Meckel's 연골 발생 부위에 FGF2 protein의 국소적 적용 역시 Meckel's 연골의 형성을 억제하였다. FGF2 protein은 시상두개봉합부상의 bead 주위로 Runx2의 발현을 유도하였다. 이 결과들을 종합해볼 때, FGF signaling은 골아세포와 연골아세포가 공존하고 있는 조직에서의 연골 형성을 억제하고 있음을 시사해 주고 있으며, 이 과정에서 FGF signaling은 부분적으로 Runx2 유전자의 발현을 조절하므로써 연골세포의 증식과 분화에 관여할 것으로 사료된다.

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골형성유도단백질의 첨가가 ${\Delta}^{12}-PGJ_2$가 유도하는 석회화에 미치는 영향 (The effect of rhBMP-2 on ${\Delta}^{12}-PGJ_2$ induced osteoblastic differentiation and mineralization)

  • 김원경;김경화;김종진;이영규;구영
    • Journal of Periodontal and Implant Science
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    • 제35권2호
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    • pp.345-357
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    • 2005
  • Prostaglandin plays a significant role in the local control of bone metabolism associated with periodontal disease. ${\Delta}^{12}-PGJ_2$ is a natural $PGD_2$ metabolite that is formed in vivo in the presence of plasma. It is known for ${\Delta}^{12}-PGJ_2$ to stimulate calcification in osteoblastic cells. Bone morphogenetic protein(BMP) stimulated osteoblastic differentiation in various types of cells and greatly enhanced healing of bony defects. The purpose of this study was to evaluate the effect of rhEMP-2 on ${\Delta}^{12}-PGJ_2$ induced osteoblastic differentiation and mineralization in vitro. A human osteosarcoma cells line Saos-2 were cultured. In the test groups, 10-7M of ${\Delta}^{12}-PGJ_2$ or mixture of 10-8M of ${\Delta}^{12}-PGJ_2$ and 100ng/ml of rhBMP-2 or 100ng/ml of rhEMP-2 were added to culture media. After 1 day, 2 days and 4 days of culture period, the cell number was measured. Alkaline phosphatase activity was measure at 3 days. Reverse transcription polymerase chain reaction(RT-PCR) was performed to determine the expression of mRNA of bone matrix protein at 8 hours, 1 day and 7 days. The ability to produce mineralized nodules in rat osteoblasts(MC3T3-E1) was evaluated at 21 days. The results were as follows : 1. rhEMP-2 or mixture of rhBMP-2 and ${\Delta}^{12}-PGJ_2$ inhibited cell proliferation of human osteosarcoma cells. 2. rhEMP-2 or mixture of rhBMP-2 and ${\Delta}^{12}-PGJ_2$ stimulated alkaline phosphatase activity significantly higher than ${\Delta}^{12}-PGJ_2$ alone. 3. rhBMP-2 or mixture of rhEMP-2 and ${\Delta}^{12}-PGJ_2$ stimulated mineralization compared to ${\Delta}^{12}-PGJ_2$ alone. 4. mRNA of alkaline phosphatase, BMP-2, cbfa 1, Type I collagen were detected in the group treated with ${\Delta}^{12}-PGJ_2$/rhBMP-2, rhBMP-2 alone, ${\Delta}^{12}-PGJ_2$ alone. These results show that mixture of ${\Delta}^{12}-PGJ_2$ and rhBMP-2 causes more bone formation than ${\Delta}^{12}-PGJ_2$ alone while the bone formation effects of mixture of ${\Delta}^{12}-PGJ_2$ and rhBMP-2 are less than those of rhBMP-2 alone. Further researches would be necessary to clarify the interactions of these agents.

쥐의 골수로부터 추출한 줄기세포를 이용한 조골세포로의 분화 유도과정에서 나타난 문제점에 관한 분석 연구 (PROBLEMS IN OSTEOGENIC DIFFERENTIATION OF RAT BONE MARROW STROMAL CELLS)

  • 김인숙;조태형;장옥련;이규백;박용두;노인섭;;이종호;김명진;황순정
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제27권1호
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    • pp.1-8
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    • 2005
  • This study was aimed to characterize osteogenic potential of rat bone marrow stromal cells (BMSC) isolated with standard flushing method and investigate the plasticity of transdifferentiation between osteoblastic and adipocytic lineage of cultured BMSC. Unlike aspiration method in human, rat bone marrow was extracted by means of irrigation with culture media that elevates the possibility of co-extraction of committed osteoprogenitor, or preosteoblast or other progenitor cells of several types present inside bone marrow. The cultured stromal cells showed high ALP activity which is representative marker of osteoblast without any treatment. Osteogenic inducers such as Dex and BMP-2 were examined for the evaluation of their effect on osteogenic and adipocytic differentiation of stromal cells, because they function as osteoinductive agent in stromal cells, but simultaneously induce adipogenic differentiation. Osteogenic differentiation was evaluated by measuring alkaline phosphatase activity or mRNA expression of osteoblast markers such as osteopontin, bone sialoprotein, collagen type I and CbfaI, and in vitro matrix mineralization by von Kossa staining. Oil red staining method was used to detect adipocyte and adipocytic marker, aP2 and $PPAR{\gamma}2$ expression was examined using RT-PCR. It can be supposed that irrigation procedure resulted in high portion of already differentiation-committed osteoprogenitor cell showing elevated ALP activity and strong mineralization only under the supplement of $100{\mu}M$ ascorbic 2-phosphate and 10mM ${\beta}$-glycerophosphate without any treatment of osteogenic inducers such as Dex and BMP-2. Dex and BMP-2 seemed to transdifferentiate osteoprogenitor cells having high ALP activity into adipocytes temporarily, but continuous treatment redifferentiated into osteoblast and developed in vitro matrix mineralization. This property must be considered either in tissue engineering for bone regeneration, or in research of characterization of osteogenic differentiation, with rat BMSC isolated by the standard irrigation method.

HA/TCP 골이식재상에 이식된 지방유래 줄기세포의 골모세포로의 분화 및 골형성에 대한 연구 (BONE REGENERATION WITH ADIPOSE TISSUE-DERIVED MESENCHYMAL STEM CELL AND HA/TCP)

  • 임재석;권종진;장현석;이의석;정유민;이태형;박정균
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제32권2호
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    • pp.97-106
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    • 2010
  • Aim of the study: An alternative source of adult stem cells that could be obtained in large quantities, under local anesthesia, with minimal discomfort would be advantageous. Adipose tissue could be processed to obtain a fibroblast-like population of cells or adipose tissue-derived stromal cells (ATSCs). This study was performed to confirm the availability of ATSCs in bone tissue engineering. Materials amp; Methods: In this study, adipose tissue-derived mesenchymal stem cell was extracted from the liposuctioned abdominal fat of 24-old human and cultivated, and the stem cell surface markers of CD 105 and SCF-R were confirmed by immunofluorescent staining. The proliferation of bone marrow mesenchymal stem cell and ATSCs were compared, and evaluated the osteogenic differentiation of ATSCs in a specific osteogenic induction medium. Osteogenic differentiation was assessed by von Kossa and alkaline phosphatase staining. Expression of osteocyte specific BMP-2, ALP, Cbfa-1, Osteopontin and osteocalcin were confirmed by RT-PCR. With differentiation of ATSCs, calcium concentration was assayed, and osteocalcin was evaluated by ELISA (Enzyme-linked immunosorbant assay). The bone formation by 5-week implantation of HA/TCP block loaded with bone marrow mesenchymal stem cells and ATSCs in the subcutaneous pocket of nude mouse was evaluated by histologic analysis. Results: ATSCs incubated in the osteogenic medium were stained positively for von Kossa and alkaline phosphatase staining. Expression of osteocyte specific genes was also detected. ATSCs could be easily identified through fluorescence microscopy, and bone formation in vivo was confirmed by using ATSC-loaded HA/TCP scaffold. Conclusions: The present results show that ATSCs have an ability to differentiate into osteoblasts and formed bone in vitro and in vivo. So ATSCs may be an ideal source for further experiments on stem cell biology and bone tissue engineering.