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      KCI등재 SCOPUS SCIE

      백서의 치아이동 시 피질골 천공이 치주조직의 OPG, RANK, RANKL의 발현에 미치는 영향 = The effect of cortical punching on the expression of OPG, RANK, and RANKL in the periodontal tissue during tooth movement in rats

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      https://www.riss.kr/link?id=A82363601

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      국문 초록 (Abstract)

      치아이동 시 피질골 천공이 치조골 재형성에 미치는 영향을 알아보기 위해서 생후 15주된 자성백서를 사용하여 피질골 천공 후 치아이동을 실시한 실험군(Tooth movement with cortical punching: TMC group, n = 16)과 교정적 치아이동만 실시한 대조군(Tooth movement only group: TM group, n = 16)의 치아주위조직을 면역조직화학염색을 통하여 관찰하였다. 실험군과 대조군의 실험동물에 20 gm의 힘으로 상악 전치부 사이를 이개시키는 치아이동을 시행하였으며 실험군에서는 상악 전치부 구개부위에 피질골 천공을 실시하였다. 치아이동 후 1, 4, 7, 14일째에 실험군과 대조군의 실험동물을 희생시켰다. 면역조직화학염색법으로 OPG, RANK, RANKL의 발현을 비교한 결과, OPG의 발현은 양 군 모두에서 미처치 대조군에 비하여 감소되었으나, 실험군에서의 발현이 대조군보다 컸으며, RANK, RANKL은 피질골 천공을 시행한 경우에 더 강한 발현을 보이는 것이 관찰되었다. 따라서 피질골 천공이 치주조직의 OPG, RANK, RANKL의 발현에 영향을 미치며 치조골의 재형성을 향상시키는 것을 알 수 있었다.
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      치아이동 시 피질골 천공이 치조골 재형성에 미치는 영향을 알아보기 위해서 생후 15주된 자성백서를 사용하여 피질골 천공 후 치아이동을 실시한 실험군(Tooth movement with cortical punching: TMC gro...

      치아이동 시 피질골 천공이 치조골 재형성에 미치는 영향을 알아보기 위해서 생후 15주된 자성백서를 사용하여 피질골 천공 후 치아이동을 실시한 실험군(Tooth movement with cortical punching: TMC group, n = 16)과 교정적 치아이동만 실시한 대조군(Tooth movement only group: TM group, n = 16)의 치아주위조직을 면역조직화학염색을 통하여 관찰하였다. 실험군과 대조군의 실험동물에 20 gm의 힘으로 상악 전치부 사이를 이개시키는 치아이동을 시행하였으며 실험군에서는 상악 전치부 구개부위에 피질골 천공을 실시하였다. 치아이동 후 1, 4, 7, 14일째에 실험군과 대조군의 실험동물을 희생시켰다. 면역조직화학염색법으로 OPG, RANK, RANKL의 발현을 비교한 결과, OPG의 발현은 양 군 모두에서 미처치 대조군에 비하여 감소되었으나, 실험군에서의 발현이 대조군보다 컸으며, RANK, RANKL은 피질골 천공을 시행한 경우에 더 강한 발현을 보이는 것이 관찰되었다. 따라서 피질골 천공이 치주조직의 OPG, RANK, RANKL의 발현에 영향을 미치며 치조골의 재형성을 향상시키는 것을 알 수 있었다.

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      다국어 초록 (Multilingual Abstract)

      Objective: The purpose of this study was to investigate whether cortical punching could stimulate the expression of OPG, RANK, and RANKL during tooth movement by immunohistochemistry. Methods: 34 sprague-dawley rats (15 weeks old) were allocated into 3 groups: TMC group (experimental group; Tooth Movement with Corticotomy, n = 16), TM group (control group; Tooth Movement only group, n = 16), and non-treatment group (n = 2). 20 gm of orthodontic force was applied to rat incisors by inserting elastic bands. The duration of force application was 1, 4, 7 and 14 days. A microscrew (diameter 1.2 mm) was used for cortical punching of the palatal side of the upper incisors in the TMC group. Results: Distributions of OPG, RANK, and RANKL were evaluated by immunohistochemistry. OPG, RANK and RANKL were observed on experimental and control groups. On the compression side, the degree of the expression of OPG decreased in both groups. The expression of RANK was most prominent in the experimental group of day 4. The expression of RANKL was most intensive and extensive in the experimental group of day 7. However, the expression of OPG was decreased in the experimental and control groups compared to the non treatment group. The expression of OPG, RANK and RANKL after force application were decreased at day 14. Conclusions: These findings suggested that cortical punching might stimulate remodeling of alveolar bone during a 2 week period of tooth movement without any pathologic change.
      번역하기

      Objective: The purpose of this study was to investigate whether cortical punching could stimulate the expression of OPG, RANK, and RANKL during tooth movement by immunohistochemistry. Methods: 34 sprague-dawley rats (15 weeks old) were allocated into ...

      Objective: The purpose of this study was to investigate whether cortical punching could stimulate the expression of OPG, RANK, and RANKL during tooth movement by immunohistochemistry. Methods: 34 sprague-dawley rats (15 weeks old) were allocated into 3 groups: TMC group (experimental group; Tooth Movement with Corticotomy, n = 16), TM group (control group; Tooth Movement only group, n = 16), and non-treatment group (n = 2). 20 gm of orthodontic force was applied to rat incisors by inserting elastic bands. The duration of force application was 1, 4, 7 and 14 days. A microscrew (diameter 1.2 mm) was used for cortical punching of the palatal side of the upper incisors in the TMC group. Results: Distributions of OPG, RANK, and RANKL were evaluated by immunohistochemistry. OPG, RANK and RANKL were observed on experimental and control groups. On the compression side, the degree of the expression of OPG decreased in both groups. The expression of RANK was most prominent in the experimental group of day 4. The expression of RANKL was most intensive and extensive in the experimental group of day 7. However, the expression of OPG was decreased in the experimental and control groups compared to the non treatment group. The expression of OPG, RANK and RANKL after force application were decreased at day 14. Conclusions: These findings suggested that cortical punching might stimulate remodeling of alveolar bone during a 2 week period of tooth movement without any pathologic change.

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      참고문헌 (Reference)

      1 Heymann D, "gp130 cytokine family and bone cells" 12 : 1455-1468, 2000

      2 Ren Y, "The rat as a model for orthodontic tooth movement-a critical review and a proposed solution" 26 : 483-490, 2004

      3 Theoleyre S, "The molecular triad OPG/RANK/RANKL: involvement in the orchestration of pathophysiological bone remodeling" 15 : 457-475, 2004

      4 Yamasaki K, "The effect of prostaglandins on experimental tooth movement in monkeys (Macaca fuscata)" 61 : 1444-1446, 1982

      5 Takano-Yamamoto T, "The effect of local application of 1,25-dihydroxycholecalciferol on osteoclast numbers in orthodontically treated rats" 71 : 53-59, 1992

      6 .Frost HM, "The biology of fracture healing. An overview for clinicians" 248 : 294-309, 1989

      7 Frost HM, "The biology of fracture healing. An overview for clinicia" 248 : 283-293, 1989

      8 Kole H, "Surgical operations on the alveolar ridge to correct occlusal abnormalities" 12 : 515-529, 1959

      9 Brudvik P, "Root resoprtion after local injection of prostaglandin E2 during experimental tooth movement" 13 : 255-263, 1991

      10 .Yaffe A, "Regional accelerated phenomenon in the mandible following mucoperiosteal flap surgery" 65 : 79-83, 1994

      1 Heymann D, "gp130 cytokine family and bone cells" 12 : 1455-1468, 2000

      2 Ren Y, "The rat as a model for orthodontic tooth movement-a critical review and a proposed solution" 26 : 483-490, 2004

      3 Theoleyre S, "The molecular triad OPG/RANK/RANKL: involvement in the orchestration of pathophysiological bone remodeling" 15 : 457-475, 2004

      4 Yamasaki K, "The effect of prostaglandins on experimental tooth movement in monkeys (Macaca fuscata)" 61 : 1444-1446, 1982

      5 Takano-Yamamoto T, "The effect of local application of 1,25-dihydroxycholecalciferol on osteoclast numbers in orthodontically treated rats" 71 : 53-59, 1992

      6 .Frost HM, "The biology of fracture healing. An overview for clinicians" 248 : 294-309, 1989

      7 Frost HM, "The biology of fracture healing. An overview for clinicia" 248 : 283-293, 1989

      8 Kole H, "Surgical operations on the alveolar ridge to correct occlusal abnormalities" 12 : 515-529, 1959

      9 Brudvik P, "Root resoprtion after local injection of prostaglandin E2 during experimental tooth movement" 13 : 255-263, 1991

      10 .Yaffe A, "Regional accelerated phenomenon in the mandible following mucoperiosteal flap surgery" 65 : 79-83, 1994

      11 Wilcko WM, "Rapid orthodontics with alveolar reshaping: two case reports of decrowding" 21 : 9-19, 2001

      12 Chung KL, "Rapid orthodontics" Ji-Sung 156-169, 2001

      13 Wilcko WM, "Rapid orthodontic decrowding with alveolar augmentation: case report" 4 : 197-205, 2003

      14 Grieve WG 3rd, "Prostaglandin E (PGE) and interleukin-1 beta (IL-1 beta) levels in gingival crevicular fluid during human orthodontic tooth movement" 105 : 369-374, 1994

      15 Kanzaki H, "Periodontal ligamental cells under mechanical stress induce osteoclastogenesis by receptor activator of nuclear factor kappaB ligand up-regulation via prostaglandin E2 synthesis" 17 : 210-220, 2002

      16 Oshiro T, "Osteoclast induction in periodontal tissue during experimental movement of incisors in osteoprotegerin-deficient mice" 266 : 218-225, 2002

      17 .Boyle WJ, "Osteoclast differentiation and activation" 423 : 337-342, 2003

      18 Takahashi N, "Osteoblastic cells are involved in osteoclast formation" 123 : 2600-2602, 1998

      19 Lowney JJ, "Orthodontic forces increase tumor necrosis factor alpha in the human gingival sulcus" 108 : 519-524, 1995

      20 Suda T, "Modulation of osteoclast differentiation by local factors" 17 : 87S-91S, 1995

      21 Aubin JE, "Mesenchymal stem cells and osteoblast differentiation" Academic Press 59-81, 2002

      22 Shiotani A, "Localization of receptor activator of NF-kappa B ligand, RANKL, in periodontal tissues during experimental movement of rat molars" 50 : 365-369, 2001

      23 Kanzaki H, "Local RANKL gene transfer to the periodontal tissue accelerates orthodontic tooth movment" 13 : 678-685, 2006

      24 Kanzaki H, "Local OPG gene transfer to periodontal tissue inhibits orthodontic tooth movement" 83 : 920-925, 2004

      25 Nishijima Y, "Levels of RANKL and OPG in gingival crevicular fluid during orthodotnic tooth movement and effect of compression force on releases from periodontal ligament cells in vitro" 9 : 63-70, 2006

      26 Ogasawara T, "In situ expression of RANKL, RANK, osteoprotegerin and cytokines in osteoclasts of rat periodontal tissue" 39 : 42-49, 2004

      27 Kwan Tat S, "IL-6, RANKL, TNF-alpha/IL-1: interrelations in bone resorption pathophysio" 15 : 49-60, 2004

      28 Hasegawa T, "Expression of receptor activator of NF-kappa B ligand and osteoprotegerin in culture of human periodontal ligament cells" 37 : 405-411, 2002

      29 Soma S, "Effect of continuous infusion of PTH on orthodontic tooth movement" 1997

      30 Kanzaki H, "Dual regulation of osteoclast differentiation by periodontal ligament cells through RANKL stimulation and OPG inhibition" 80 : 887-891, 2001

      31 Kanzaki H, "Cyclical tensile force on periodontal ligament cells inhibits osteoclastogenesis through OPG induction" 85 : 457-462, 2006

      32 Epker BN, "Correlation of bone resorption and formation with the physical behavior of loaded bone" 44 : 33-41, 1965

      33 Roberts WE, "Bone modeling: biomechanics, molecular mechanisms, and clinical perspectives" 10 : 123-161, 2004

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