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      매복 하악 제3대구치 발치와에 Atelo-collagen Sponge 삽입이 제2대구치 예후에 미치는 영향 = THE EFFECTS OF ATELO-COLLAGEN SPONGE INSERTION ON THE PERIODONTAL HEALING OF SECOND MOLARS AFTER IMPACTED MANDIBULAR THIRD MOLAR EXTRACTION

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      https://www.riss.kr/link?id=A105738688

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      다국어 초록 (Multilingual Abstract)

      Extracellular matrix(ECM) is known to function as a reservoir of endogenous growth factors, can be an effective delivery system of growth factor that easily lost bioactivity in solution. Fibrillar collagens like type I collagen, are the major constituent of the ECM and structural protein of bone. Also, it can be a scaffold for osteoblast migration. The purpose of this study was to compare the effects of absorbable Atelo-collagen Sponge($Teruplug^{(R)}$) insertion in tooth extraction sites on periodontal healing of the mandibular second molar after the extraction of the impacted third molar. The study population comprised 31 cases who had been scheduled for surgical removal of impacted mandibular third molars. All patients were in good general health and were not using any medication that would influence wound healing after surgery. In 15 cases control group, none was inserted into the tooth extraction site. In 16 cases experimental groups, $Teruplug^{(R)}$ was inserted into the tooth extraction site. We evaluated tooth mobility, pocket depth, gingival margin level preoperatively and 1 week, 2 weeks, 4 weeks, and 3 months postoperatively. The change was compared with two groups using Mann-Whitney test. The results were as follows. 1. There was no significant change of tooth mobility on both groups. 2. There was tendency of decreasing of previous pocket depth causing tooth extraction on both groups. 3. On gingival margin level, there was various change according to initial swelling and loss of attachment on both groups. 4. There was tendency of decreasing of gingival margin level on both groups because of removal of inflammation and decreasing of previous pocket depth. 5. There was large change of pocket depth on buccal middle, distal, lingual distal area because of tooth extraction and bone reduction. Compared with the control group and experimental group, we observed significant difference during some periods. The results of this study suggest that absorbable atelo-collagen sponge($Teruplug^{(R)}$) is relatively favorable bone void filler with prevention of tissue collapse, food packing and enhance periodontal healing.
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      Extracellular matrix(ECM) is known to function as a reservoir of endogenous growth factors, can be an effective delivery system of growth factor that easily lost bioactivity in solution. Fibrillar collagens like type I collagen, are the major constitu...

      Extracellular matrix(ECM) is known to function as a reservoir of endogenous growth factors, can be an effective delivery system of growth factor that easily lost bioactivity in solution. Fibrillar collagens like type I collagen, are the major constituent of the ECM and structural protein of bone. Also, it can be a scaffold for osteoblast migration. The purpose of this study was to compare the effects of absorbable Atelo-collagen Sponge($Teruplug^{(R)}$) insertion in tooth extraction sites on periodontal healing of the mandibular second molar after the extraction of the impacted third molar. The study population comprised 31 cases who had been scheduled for surgical removal of impacted mandibular third molars. All patients were in good general health and were not using any medication that would influence wound healing after surgery. In 15 cases control group, none was inserted into the tooth extraction site. In 16 cases experimental groups, $Teruplug^{(R)}$ was inserted into the tooth extraction site. We evaluated tooth mobility, pocket depth, gingival margin level preoperatively and 1 week, 2 weeks, 4 weeks, and 3 months postoperatively. The change was compared with two groups using Mann-Whitney test. The results were as follows. 1. There was no significant change of tooth mobility on both groups. 2. There was tendency of decreasing of previous pocket depth causing tooth extraction on both groups. 3. On gingival margin level, there was various change according to initial swelling and loss of attachment on both groups. 4. There was tendency of decreasing of gingival margin level on both groups because of removal of inflammation and decreasing of previous pocket depth. 5. There was large change of pocket depth on buccal middle, distal, lingual distal area because of tooth extraction and bone reduction. Compared with the control group and experimental group, we observed significant difference during some periods. The results of this study suggest that absorbable atelo-collagen sponge($Teruplug^{(R)}$) is relatively favorable bone void filler with prevention of tissue collapse, food packing and enhance periodontal healing.

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      참고문헌 (Reference)

      1 Akihiro Kanematsu, "Type I collagen can function as a reservoir of basic fibroblast growth factor" 99 : 281-292, 2004

      2 S.P. Bruder, "Tissue engineering of bone-cell based strategies" 367 : 68-83, 1999

      3 Kugelberg CF, "The influence of anatomical, pathophysiological and other factors on periodontal healing" 18 : 37-, 1991

      4 Quee TA, "Surgical removal of the fully impacted mandibular third molar. The influence of flap design and alveolar bone height on the periodontal status of the second molar" 56 : 625-, 1985

      5 Radhika M, "Studies on the desamidation of bovine collagen" 35 : 497-503, 1997

      6 S. Ye, "Structural basis for interaction of FGF-1, FGF-2 and FGF-7 with different heparin sulfate motifs" 40 (40): 14429-14439, 2001

      7 Toung JS, "Repair of a rodent nasal critical size osseous defect with osteoblast augmented collagen gel" 109 : 1580-1584, 1999

      8 DeLustro F, "Reaction to injectable collagen : results in animal model and clinical use" 79 : 581-594, 1987

      9 Jakse N, "Primary wound healing after lower third molar surgery: Evaluation of 2 different flap designs" 93 : 7-, 2002

      10 Pieper JS, "Preparation and characterization of porous crosslinked collagenous matrices containing bioavailable chondroitin sulphate" 20 : 847-858, 1999

      1 Akihiro Kanematsu, "Type I collagen can function as a reservoir of basic fibroblast growth factor" 99 : 281-292, 2004

      2 S.P. Bruder, "Tissue engineering of bone-cell based strategies" 367 : 68-83, 1999

      3 Kugelberg CF, "The influence of anatomical, pathophysiological and other factors on periodontal healing" 18 : 37-, 1991

      4 Quee TA, "Surgical removal of the fully impacted mandibular third molar. The influence of flap design and alveolar bone height on the periodontal status of the second molar" 56 : 625-, 1985

      5 Radhika M, "Studies on the desamidation of bovine collagen" 35 : 497-503, 1997

      6 S. Ye, "Structural basis for interaction of FGF-1, FGF-2 and FGF-7 with different heparin sulfate motifs" 40 (40): 14429-14439, 2001

      7 Toung JS, "Repair of a rodent nasal critical size osseous defect with osteoblast augmented collagen gel" 109 : 1580-1584, 1999

      8 DeLustro F, "Reaction to injectable collagen : results in animal model and clinical use" 79 : 581-594, 1987

      9 Jakse N, "Primary wound healing after lower third molar surgery: Evaluation of 2 different flap designs" 93 : 7-, 2002

      10 Pieper JS, "Preparation and characterization of porous crosslinked collagenous matrices containing bioavailable chondroitin sulphate" 20 : 847-858, 1999

      11 C.A. Kirker-Hand, "Potential applications and delivery strategies for bone morphogenetic proteins" 43 : 65-92, 2000

      12 Camargo PM, "Platelet-rich plasma and bovine porous bone mineral combined with guided tissue regeneration in the treatment of intrabony defects in humans" 37 : 300-, 2002

      13 Marx RE, "Platelet-rich plasma : Growth factor enhancement for bone grafts" 85 : 638-, 1998

      14 Whitman DH, "Platelet gel : An autologous alternative to fibrin glue with applications in oral and macillofacial surgery" 55 : 1294-, 1997

      15 Kugelberg CF, "Periodontal healing two and four years after impacted lower third molar surgery. A comparative restospective study" 19 : 340-, 1990

      16 Stephens RJ, "Periodontal evaluation of two mucoperiosteal flaps used in removing impacted mandibular third molars" 41 : 719-, 1983

      17 Pohunkova H, "Morphological features of bone healing under effect of collagengraft- glycosaminoglycan copolymer supplemented with the tripeptide Gly-His-Lys" 17 : 1567-1574, 1996

      18 G. Venkataraman, "Molecular characteristics of fibroblast growth factor-fibroblast growth factor receptor-heparin-like glycosaminoglycan complex" 96 (96): 3658-3663, 1999

      19 G. Bergers, "Matrix metalloproteinase-9 triggers the angiogenic switch during carcinogenesis" 2 (2): 737-744, 2000

      20 Suarez-Cunqueiro MM, "Marginal flap versus paramarginal flap in impacted third molar surgery : A prospective study" 95 : 403-, 2003

      21 Schofield ID, "Long-term comparison of two surgical flap designs for third molar surgery on the health of the periodontal tissue of the second molar tooth" 54 : 689-, 1988

      22 Grondahl HG, "Influence of mandibular third molars on related supporting tissue" 2 : 137-, 1973

      23 Rosa AL, "Influence of flap design on periodontal healing of second molars after extraction of impacted mandibular third molars" 93 : 404-, 2002

      24 J.E. Babensee, "Growth factor delivery for tissue engineering" 17 (17): 497-504, 200

      25 I. Vlodavsky, "Extracellular matrix-resident basic fibroblast growth factor: implication for the control of angiogenesis" 45 (45): 167-176, 1991

      26 E. Schonherr, "Extracellular matrix and cytokines : a functional unit" 7 (7): 89-101, 2000

      27 Szmyd L, "Crevicular depth of the second molar in impacted third molar surgery" 21 : 185-, 1963

      28 Tugrul Kirtiloglu, "Comparison of 2 flap designs in the periodontal healing of second molars after fully impacted mandibular third molar extractions" 65 : 2206-2210, 2007

      29 Chiang TM, "Collagen-platelet interaction : platelet non-integrin receptors" 14 : 579-585, 1999

      30 Pachence JM, "Collagen-based devices for soft tissue repair" 33 : 35-40, 1996

      31 M. Geiger, "Collagen sponges for bone reeneration with rhBMP-2" 55 : 1613-1629, 2003

      32 M. Chvapil, "Collagen sponge: theory and practice of medical application" 17 (17): 497-504, 2000

      33 M. Geiger, "Collagen sponge implants: application, characteristics and evaluation" 14 : 48-56, 2002

      34 M. Geiger, "Collagen sponge implants : application, characteristics and evaluation" 14 : 58-66, 2002

      35 Watson SP, "Collagen receptor signalling in platelets and megakaryocystes" 82 : 365-376, 1999

      36 Delbalso AM, "Collagen gel in osseous defects : a preliminary study" 42 : 562-569, 1976

      37 Kamer FM, "Clinical use of injectable collagen : a three year retrospective review" 110 : 93-98, 1984

      38 Nimni ME, "Chemically modified collagen : a natural biomaterial for tissue replacement" 21 : 741-771, 1987

      39 Radhika M, "Cellular proliferation on desaminated collagen matrices" 124 : 131-139, 1999

      40 Horton MA, "Cell surface attachment molecules in bone" 217-230, 1996

      41 K.J.L. Burg, "Biomaterial developments for bone tissue engineering" 21 : 2348-2359, 2000

      42 Lenaldo B. Rocha, "Biocompatibility of anionic collagen matrix as scaffold for bone healing" 23 : 449-456, 2002

      43 S.J. Prestrelski, "Binding of heparin to basic fibroblast growth factor induces a conformational change" 293 (293): 314-319, 1992

      44 Konishi J, "An investigation into the wound healing action of the atelocollagen tooth extraction wound protection material(TRE-641) on tooth extraction site" 16 : 266-275, 1998

      45 Mitchell R, "An evaluation of bone healing in cavities in the jaws implanted with a collagen matrix" 30 : 180-182, 1992

      46 Ash M, "A study of periodontal hazards of 3rd molars" 33 : 209-, 1962

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      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
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      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
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      2003-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2002-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.15 0.15 0.17
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.15 0.14 0.597 0
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