• Title/Summary/Keyword: fetal wound healing

검색결과 15건 처리시간 0.015초

Chitosan이 치주인대, 두개관 및 치은섬유아세포의 성상에 미치는 영향 (Effects of chitosan on the characteristics of periodontal ligament, calvaria cells and gingival fibroblasts)

  • 김선희;권영혁;이만섭;박준봉;허익
    • Journal of Periodontal and Implant Science
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    • 제28권1호
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    • pp.17-35
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    • 1998
  • Chitosan, with a chemical structure similar to hyaluronic acid, has been implicated as a wound healing agent. The purpose of this research was to evaluate the effects of chitosan on the characteristics of periodontal ligament cells, calvaria cells and gingival fibroblasts and to define the effects of chitosan on bone formation in vitro. In control group, the cells were cultured alone with Dulbecco's Modified Eagle's Medium contained with 10% Fetal bovine serum, 100unit/ml penicillin, $100{\mu}g/ml$ streptomycin, $0.5{\mu}g/ml$ amphotericin-B. In experimental group, chitosan($40{\mu}g/ml$) is added into the above culture condition. And then each group was characterized by examining the cell proliferation at 1,3,5,7,9,12,15 day, the amount of total protein synthesis, alkaline phosphatase activity at 3, 7 day and the ability to produce mineralized nodules of rat calvaria cell at 11 day. The results were as follows : 1. At early time both periodontal ligament cells and calvaria cells in chitosan-treated group proliferated more rapidly than in non-treated control group, but chitosan-treated group of periodontal ligament cells at 9 days and calvaria cells at 12days showed lower growth rate than control group. Gingival fibroblast in chitosan-treated group had lower growth rate than in control group but the difference was not statistically significant (P< 0.01).2. Both periodontal ligament cells and calvaria cells in chitosan-treated group showed much protein synthesis than in control group at 3 days, but showed fewer than in control group at 7 days. Amount of total protein synthesis of gingival fibroblast didn't have statistically significant difference among the two groups(P< 0.01). 3. At 3 and 7 days, alkaline phosphatase activity of periodontal ligament cells and calvaria cells was increased in chitosan-treated group, but at 7 days there was not statistically significant difference among the two groups of calvaria cells (P< 0.01). Alkaline phosphatase activity of gingival fibroblast didn't have statistically significant difference among the two groups(P<0.01). 4. Mineralized nodules in chitosan-treated group of rat calvaria cells were more than in control group. In summery, chitosan had an effect on the proliferation, protein systhesis, alkaline phosphatase activity of periodontal ligament cells and calvaria cells, and facilitated the formation of bone. It is thought that these effects can be used clinically in periodontal regeneration therapy.

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Drynariae Rhizoma추출물이 백서 두개관세포 및 골수세포 성상에 미치는 영향 (EFFECTS OF EXTRACTS OF DRYNARIAE RHIZOMA ON THE CHARACTERISTICS OF RAT CALARIA AND BONE MARROW CELLS)

  • 임경석;권영혁;박준봉;김성진;정세영;박건구
    • Journal of Periodontal and Implant Science
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    • 제28권2호
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    • pp.291-310
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    • 1998
  • This study was performed to evaluate the effects of extracts of Drynariae Rhizoma on the characteristics of rat calvaria cells(RCV) and bone marrow cells(RBM) which have the important role on the bone formation in vitro. Drynariae Rhizoma has been known as the useful herbal medicament for treatment of the wound healing including regeneration of bone fracture, and also has been used to treat the periodontal lesions, tooth mobility, gingival bleeding and pus discharge via sulcus in Oriental Medicine. In control group, the cells were cultured alone with Dulbeco's Modified Eagle's Medium contained with 10% fetal bovine serum, 100U/ml penicillin, $100{\mu}g/ml$ streptomycin, $0.5{\mu}g/ml$ amphotericin-B. In experimental group, extracts of Drynariae Rhizoma(0.1, 1, 5, 10, $50{\mu}g/ml$) were added into the above culture condition. And then each group was characterized by examing the cell proliferation at 1, 3, 7, 14, 21, 30th day, the amount of total protein synthesis and alkaline phosphatase activity of RCV at 2,4th day and those of RBM at 3, 6th day. And also, the calcified nodule of RCV was examed at 3, 5th day in three goup, control, experimental, culture with the PDGF group. The results were as follow ; 1. Both RCV and RBM cells in Drynariae Rhizoma-treated experimental group proliferated more rapidly than nontreated control group. The experimental group below $5{\mu}g/ml$ Drynariae Rhizoma-treated showed more prominent cell proliferation from the 7th day to the 21st day than the control group and above $10\;{\mu}g/ml$ treated group in RCV. 2. Amount of total protein synthesis was more increased in Drynariae Rhizomatreated group than in control group. In $5{\mu}g/ml$ Drynariae Rhizoma-treated group showed most prominent protein synthesis of the any other exrperimental group and control group. 3. Alkaline phosphatase activity also more increased in Drynariae Rhizomatreated group than control group. 4. Mineralized nodules in Drynariae Rhizoma-treated group were more than not in control group but also in PDGF-treated group. From the above results, Drynariae Rhizoma appeared to enhanced the proliferation, protein synthesis, alkaline phosphatase activity and cellular ability of mineralized nodule formation than PDGF. So that, we conclude that Drynariae Rhizoma enhances the activities of bone cells which have the important role on the periodontal regeneration and optimal application of Drynariae Rhizoma was thought to be useful as the means in bone regeneration.

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혈소판유래성장인자를 함유한 Chitosan/Calcium Metaphosphate의 골조직재생효과에 관한 연구 (The Effect of Platelet Derived Growth Factor - BB Loaded Chitosan/Calcium Metaphosphate on Bone Regeneration)

  • 이승열;설양조;이용무;이주연;이승진;김석영;구영;류인철;한수부;최상묵;정종평
    • Journal of Periodontal and Implant Science
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    • 제31권1호
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    • pp.1-23
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    • 2001
  • Chitosan is biodegradable natural polymer that has been demonstrated its ability to improve wound healing, and calcium metaphosphate(CMP) is a unique class of phosphate minerals having a polymeric structure. In this study, chitosan/CMP and platelet derived growth factor(PDGF-BB) loaded chitosan/CMP sponges were developed, and the effect of the sponges on bone regeneration and their possibility as scaffolds for bone formation by three-dimensional osteoblast culture were examined. PDGF-BB loaded chitosan/CMP sponges were prepared by freeze-drying of a mixture of chitosan solution and CMP powder, and soaking in a PDGF-BB solution. Fabricated sponge retained its 3-dimensional porous structure with $100-200\;{\mu}m$ pores. The release kinetics of PDGF-BB loaded onto the sponge were measured in vitro with $^{125}I-labeled$ PDGF-BB. In order to examine their possibility as scaffolds for bone formation, fetal rat calvarial osteoblastic cells were isolated, cultured, and seeded into the sponges. The cell-sponge constructs were cultured for 28 days. Cell proliferation, alkaline phosphatase activity were measured at 1, 7, 14 and 28 days, and histologic examination was performed. In order to examine the effect on the healing of bone defect, the sponges were implanted into rat calvarial defects. Rats were sacrificed 2 and 4 weeks after implantation and histologic and histomorphometrical examination were performed. An effective therapeutic concentration of PDGF-BB following a high initial burst release was maintained throughout the examination period. PDGF-BB loaded chitosan/CMP sponges supported the proliferation of seeded osteoblastic cells as well as their differentiation as indicated by high alkaline phosphatase activities. Histologic findings indicated that seeded osteoblastic cells well attached to sponge matrices and proliferated in a multi-layer fashion. In the experiments of implantation in rat calvarial defects, histologic and histomorphometric examination revealed that chitosan/CMP sponge promoted osseous healing as compared to controls. PDGF-BB loaded chitosan/CMP sponge further echanced bone regeneration. These results suggested that PDGF-BB loaded chitosan/CMP sponge was a feasable scaffolding material to grow osteoblast in a three-dimentional structure for transplantation into a site for bone regeneration.

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Insulin-like growth factor-I 이 치주인대세포의 생물학적 활성도에 미치는 영향에 대한 연구 (THE STUDY ON THE EFFECTS OF THE INSULIN-LIKE GROWTH FACTOR-I ON THE BIOLOGICAL ACTIVITY OF THE HUMAN PERIODONTAL LIGAMENT CELLS)

  • 김성진;이재목;서조영
    • Journal of Periodontal and Implant Science
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    • 제24권2호
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    • pp.219-237
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    • 1994
  • 치주조직재생에 중요하게 생각되는 요건으로는 치근면의 상태, 전구세포의 증식, 치유 부의 상피조직배제, 치유부의 안정화를 들 수 있으며 이중 가장 중요한 요건중의 하나가 치유부에 치주조직재생을 도모할 수 있는 전구 세포가 실수부로 이주하여 부착과 증식, 분화를 통하여 교원질섬유를 포함한 결체조직의 부착과 백악질, 골조직을 재형성하는 것이다. 최근에 이러한 전구세포들을 자극하고 원치 하는 세포들을 저지하기 위한 방법으로 성장 인자에 대한 연구가 활발히 진행되고 있다 골조직을 조절하는 인자로 알려진 인슐린유사성장인자- I (Insulin-like growth factor-I)는 폴리펩타이드계 성장인자로서 골세포의 증식, 기질합성 등을 촉진시킨다고 보고되고 있으나, 치주조직 재생에 대한 IGF- I 의 영향을 잘 규명되어 있지 않으므로 배양된 치주인대세포에 IGF- I 을 농도별로 주입하여 세포의 증식능, 교원질 및 단백질 합성능, 알카린인산효소활성도를 측정해 보므로써 IGF- I 이 치주인대세포의 활성에 미치는 영향을 알아보고자 하였다. 교정치료를 위해 내원한 환자로부터 건강한 제일소구치를 발거하여 치주인대세포를 분리, 배양하여 IGF- I 을 주입시키지 않은 군을 대조군으로 하고, IGF- I 을 각각 0.1, 1, 10, 100 ng//ml로 주입시킨 군을 실험군으로 하여 DNA합성능, 총단백질과 교원질 합성능 및 알카린인산효소활성도를 측정하여 다음과 같은 결과를 얻었다. DNA 합성능에 미치는 IGF- I 의 효과는 농도가 증가함에 따라 0.1ng/ml를 제외하고는 DNA 합성능이 증가하는 경향을 보였고, 대조군에 비해 10, 100ng/ml투여군에서 통계적으로 유의한 차이(P<0/05)를 나타내었다. 치주인대세포의 총단백질 합성양에 미치는 IGF- I 의 효과는 농도가 증가함에 따라 총단백질 합성양이 증가하는 경향을 보였으며, 대조군에 비해 1, 10, 100ng/ml 투여군에서 통계학적으로 유의한 차이(P<0.001)를 나타내었다. 총단백질을 교원질(collagenase digestible protein : CDP)과 비교원성 단백질(non-collagenous protein : NCP)로 분류하여 비교하였을때 IGF- I 의 농도가 증가함에 따라 비교원성 단백질 합성양과 교원질 합성양이 증가하는 경향을 보였으며, 비교원성 단백질 합성양이 교원질 합성양보다 약간 높게 나타났고, 대조군에 비해 1, 10, 100ng/ml 투여군에서 통계적으로 유의한 차이(P<0.05, P<0.001)를 나타내었다. 총단백질에 대한 교원질합성의 상대적 비율은 농도가 증가함에 따라 각 군당 별차이를 보이지 않았으며, 대조군에 비해 통계적으로 유의한 차이 (P>0.05)를 나타내지 않았다. 알카린인산효소활성도에 미치는 IGF- I 의 효과는 모든군에서 7일째보다 14일째에서 약간 높은 알카린인산효소활성도롤 나타내었으며, 7, 14일 모두 농도가 증가함에 따라 효소활성도가 증가하였으며, 7일째 대조군에 비해 100ng/ml 투여군에서 통계적으로 유의한 차이(p<0.05)를 나타내었다.

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혈소판유래성장인자-BB가 골간질세포와 치주인대세포의 성상에 미치는 영향 (A study of the effects of PDGF-BB on the characteristics of bone stromal and periodontal ligament cells)

  • 권영혁;박준봉
    • Journal of Periodontal and Implant Science
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    • 제26권4호
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    • pp.949-965
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    • 1996
  • The main goal of periodontal therapy is to restore the lost periodontal tissue and establish the attachment appratus. Current acceptable therapeutic techniques are included : removal of diseased soft tissue, demineralization of exposed root surface, using the barrier membrane for preventing the downgrowth of gingival epithelial cell, insertion of graft materials as a scaffolding action, and biological mediators for promoting the cell activity. The latest concept one among them has been studied which based on the knowledge of cellular biology of destructed tissue. Platelet-derived growth factor(PDGF) is one of the polypeptide growth factor which have been reported as a biological mediator to regulate activities of wound healing progress including cell proliferation, migration, and metabolism. The purposes of this study is to evaluate the influences of the PDGF as biological mediator to periodontal ligament and bone marrow cell. Both right and left maxillary first molar were extracted from rat which had treated with 0.4% ${\beta}-Aminopropionitril$ for 5 days, and feeded until designed date to sacrifice under anesthesisa. Periodontal ligament were removed from the extracted socket of the rat, and cultured with Dulbecco's Modified Essential Medium(DMEM) contained with 10% Fetal Bovine Serum, 100U/ml penicillin, $100{\mu}g/ml$ streptomycin, $0.5{\mu}g/ml$ amphotericin-B. Bone marrow cell were culture from bone marrow suspension with which washed out from femur with same medium. The study was performed to evaluate the effect of PDGF to periodontal ligament and bone cell, cell proliferation rate, total protein synthesis, and alkaline phosphatase activity of rat periodontal ligament(PDL) cell and bone stromal(RBS) cell in vitro. The effects of growth factors on both cells were measured at 3, 5th day after cell culture with (control group) or without growth factors(experimental group). The results were as follows: 1. The tendency of cell proliferation under the influence of PDGF showed more rapid proliferation pattern than control at 3 and 5 days after inoculation. 2. The activity of Alkaline phosphatase revealed 14, 80% increased respectively at 3, 5 days culture than control group. Measurements of ALPase levels indicated that PDL cells had significantly higher activity when compared with that of co-culture groups and GF only(P<0.05). And, ALPase activity in 10 days was higher than that of 7 days(P<0.05). 3. The tendency of formation of the mineralized nodule were observed dose-depend pattern of PDL cells. There was statistically significant difference among group l(PDL 100%), 2(PDL 70%:GF 30%), and 3(PDL 50%:GF 50%)(P<0.01). But, there was no difference among group 3, 4(PDL 30%:GF 70%), and 5(GF 100%). 4. Also, the number of nodule was greater in co-culture of PDL 70% and GF 30% than in culture of PDL 70%(P<0.05). From the above results, it is assumed that the PDGF on PDL cells and RMB cell culture. GF stimulates the cell growth, which is not that of PDL cells but GF. And, the activity of ALPase depends on the ratio of PDL cells, and ALPase may relate to the initial phase of nodule formation. Also, it is thought that the calcified nodule formation principally depends on PDL cells, is inhibited by GF, and affected by cell density. In conclusion, platelet-derived growth factor can promote rapid osteogenesis during early stage of periodontal tissue regeneration.

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