Skip to main content
Top
Published in: Clinical Oral Investigations 8/2019

01-08-2019 | Original Article

Split-mouth evaluation of connective tissue graft with or without enamel matrix derivative for the treatment of isolated gingival recession defects in dogs

Authors: Y. Shirakata, T. Nakamura, Y. Shinohara, K. Nakamura-Hasegawa, C. Hashiguchi, N. Takeuchi, T. Imafuji, A. Sculean, K. Noguchi

Published in: Clinical Oral Investigations | Issue 8/2019

Login to get access

Abstract

Objectives

The potential additive effect of an enamel matrix derivative (EMD) to a subepithelial connective tissue graft (CTG) for recession coverage is still controversially discussed. Therefore, the aim of this study was to histologically evaluate the healing of gingival recessions treated with coronally advanced flap (CAF) and CTG with or without EMD in dogs.

Materials and methods

Gingival recession defects (5 mm wide and 7 mm deep) were surgically created on the labial side of bilateral maxillary canines in 7 dogs. After 8 weeks of plaque accumulation and subsequent 2 weeks of chemical plaque control, the 14 chronic defects were randomized to receive either CAF with CTG (CAF/CTG) or CAF with CTG and EMD (CAF/CTG/EMD). The animals were sacrificed 10 weeks after reconstructive surgery for histologic evaluation.

Results

Treatment with CAF/CTG/EMD demonstrated statistically significantly better results in terms of probing pocket depth reduction (P < 0.05) and clinical attachment level gain (P < 0.001). The length of the epithelium was statistically significantly shorter in the CAF/CTG/EMD group than in the CAF/CTG group (1.00 ± 0.75 mm vs. 2.38 ± 1.48 mm, respectively, P < 0.01). Cementum formation was statistically significantly greater in the CAF/CTG/EMD group than following treatment with the CAF/CTG group (3.20 ± 0.89 mm vs. 1.88 ± 1.58 mm, respectively, P < 0.01). The CAF/CTG/EMD group showed statistically significantly greater complete periodontal regeneration (i.e., new cementum, new periodontal ligament, and new bone) than treatment with CAF/CTG (0.54 ± 0.73 mm vs. 0.07 ± 0.27 mm, respectively, P < 0.05).

Conclusion

Within their limits, the present findings indicate that the additional use of EMD in conjunction with CAF + CTG favors periodontal regeneration in gingival recession defects.

Clinical relevance

The present findings support the use of EMD combined with CTG and CAF for promoting periodontal regeneration in isolated gingival recession defects.
Literature
1.
go back to reference Löe H, Anerud A, Boysen H (1992) The natural history of periodontal disease in man: prevalence, severity, and extent of gingival recession. J Periodontol 63:489–495CrossRefPubMed Löe H, Anerud A, Boysen H (1992) The natural history of periodontal disease in man: prevalence, severity, and extent of gingival recession. J Periodontol 63:489–495CrossRefPubMed
2.
go back to reference Cheng GL, Fu E, Tu YK, Shen EC, Chiu HC, Huang RY, Yuh DY, Chiang CY (2015) Root coverage by coronally advanced flap with connective tissue graft and/or enamel matrix derivative: a meta-analysis. J Periodontal Res 50:220–230CrossRefPubMed Cheng GL, Fu E, Tu YK, Shen EC, Chiu HC, Huang RY, Yuh DY, Chiang CY (2015) Root coverage by coronally advanced flap with connective tissue graft and/or enamel matrix derivative: a meta-analysis. J Periodontal Res 50:220–230CrossRefPubMed
3.
go back to reference Hofmänner P, Alessandri R, Laugisch O, Aroca S, Salvi GE, Stavropoulos A, Sculean A (2012) Predictability of surgical techniques used for coverage of multiple adjacent gingival recessions—a systematic review. Quintessence Int 43:545–554PubMed Hofmänner P, Alessandri R, Laugisch O, Aroca S, Salvi GE, Stavropoulos A, Sculean A (2012) Predictability of surgical techniques used for coverage of multiple adjacent gingival recessions—a systematic review. Quintessence Int 43:545–554PubMed
4.
go back to reference Griffin TJ, Cheung WS, Zavras AI, Damoulis PD (2006) Postoperative complications following gingival augmentation procedures. J Periodontol 77:2070–2079CrossRefPubMed Griffin TJ, Cheung WS, Zavras AI, Damoulis PD (2006) Postoperative complications following gingival augmentation procedures. J Periodontol 77:2070–2079CrossRefPubMed
5.
go back to reference Aroca S, Molnár B, Windisch P, Gera I, Salvi GE, Nikolidakis D, Sculean A (2013) Treatment of multiple adjacent Miller class I and II gingival recessions with a modified coronally advanced tunnel (MCAT) technique and a collagen matrix or palatal connective tissue graft: a randomized, controlled clinical trial. J Clin Periodontol 40:713–720CrossRefPubMed Aroca S, Molnár B, Windisch P, Gera I, Salvi GE, Nikolidakis D, Sculean A (2013) Treatment of multiple adjacent Miller class I and II gingival recessions with a modified coronally advanced tunnel (MCAT) technique and a collagen matrix or palatal connective tissue graft: a randomized, controlled clinical trial. J Clin Periodontol 40:713–720CrossRefPubMed
6.
go back to reference Hammarström L (1997) Enamel matrix, cementum development and regeneration. J Clin Periodontol 24:658–668CrossRefPubMed Hammarström L (1997) Enamel matrix, cementum development and regeneration. J Clin Periodontol 24:658–668CrossRefPubMed
7.
go back to reference Heijl L, Heden G, Svardström G, Östgren A (1997) Enamel matrix derivative (Emdogain®) in the treatment of intrabony periodontal defects. J Clin Periodontol 24:705–714CrossRefPubMed Heijl L, Heden G, Svardström G, Östgren A (1997) Enamel matrix derivative (Emdogain®) in the treatment of intrabony periodontal defects. J Clin Periodontol 24:705–714CrossRefPubMed
8.
go back to reference Miron RJ, Sculean A, Cochran DL, Froum S, Zucchelli G, Nemcovsky C, Donos N, Lyngstadaas SP, Deschner J, Dard M, Stavropoulos A, Zhang Y, Trombelli L, Kasaj A, Shirakata Y, Cortellini P, Tonetti M, Rasperini G, Jepsen S, Bosshardt DD (2016) 20 years of enamel matrix derivative: the past, the present and the future. J Clin Periodontol 43:668–683CrossRefPubMed Miron RJ, Sculean A, Cochran DL, Froum S, Zucchelli G, Nemcovsky C, Donos N, Lyngstadaas SP, Deschner J, Dard M, Stavropoulos A, Zhang Y, Trombelli L, Kasaj A, Shirakata Y, Cortellini P, Tonetti M, Rasperini G, Jepsen S, Bosshardt DD (2016) 20 years of enamel matrix derivative: the past, the present and the future. J Clin Periodontol 43:668–683CrossRefPubMed
9.
go back to reference Wennström JL, Lindhe J (2002) Some effects of enamel matrix proteins on wound healing in the dento-gingival region. J Clin Periodontol 29:9–14CrossRefPubMed Wennström JL, Lindhe J (2002) Some effects of enamel matrix proteins on wound healing in the dento-gingival region. J Clin Periodontol 29:9–14CrossRefPubMed
10.
go back to reference Miron RJ, Dard M, Weinreb M (2015) Enamel matrix derivative, inflammation and soft tissue wound healing. J Periodontal Res 50:555–569CrossRefPubMed Miron RJ, Dard M, Weinreb M (2015) Enamel matrix derivative, inflammation and soft tissue wound healing. J Periodontal Res 50:555–569CrossRefPubMed
11.
go back to reference Maymon-Gil T, Weinberg E, Nemcovsky C, Weinreb M (2016) Enamel matrix derivative promotes healing of a surgical wound in the rat oral mucosa. J Periodontol 87:601–609CrossRefPubMed Maymon-Gil T, Weinberg E, Nemcovsky C, Weinreb M (2016) Enamel matrix derivative promotes healing of a surgical wound in the rat oral mucosa. J Periodontol 87:601–609CrossRefPubMed
12.
go back to reference Al-Hezaimi K, Al-Fahad H, O'Neill R, Shuman L, Griffin T (2012) The effect of enamel matrix protein on gingival tissue thickness in vivo. Odontology 100:61–66CrossRefPubMed Al-Hezaimi K, Al-Fahad H, O'Neill R, Shuman L, Griffin T (2012) The effect of enamel matrix protein on gingival tissue thickness in vivo. Odontology 100:61–66CrossRefPubMed
13.
go back to reference Berlucchi I, Francetti L, Del Fabbro M, Testori T, Weinstein RL (2002) Enamel matrix proteins (Emdogain) in combination with coronally advanced flap or subepithelial connective tissue graft in the treatment of shallow gingival recessions. Int J Periodontics Restorative Dent 22:583–593PubMed Berlucchi I, Francetti L, Del Fabbro M, Testori T, Weinstein RL (2002) Enamel matrix proteins (Emdogain) in combination with coronally advanced flap or subepithelial connective tissue graft in the treatment of shallow gingival recessions. Int J Periodontics Restorative Dent 22:583–593PubMed
14.
go back to reference Sato S, Yamada K, Kato T, Haryu K, Ito K (2006) Treatment of Miller class III recessions with enamel matrix derivative (Emdogain) in combination with subepithelial connective tissue grafting. Int J Periodontics Restorative Dent 26:71–77PubMed Sato S, Yamada K, Kato T, Haryu K, Ito K (2006) Treatment of Miller class III recessions with enamel matrix derivative (Emdogain) in combination with subepithelial connective tissue grafting. Int J Periodontics Restorative Dent 26:71–77PubMed
15.
go back to reference Henriques PS, Pelegrine AA, Nogueira AA, Borghi MM (2010) Application of subepithelial connective tissue graft with or without enamel matrix derivative for root coverage: a split-mouth randomized study. J Oral Sci 52:463–471CrossRefPubMed Henriques PS, Pelegrine AA, Nogueira AA, Borghi MM (2010) Application of subepithelial connective tissue graft with or without enamel matrix derivative for root coverage: a split-mouth randomized study. J Oral Sci 52:463–471CrossRefPubMed
16.
go back to reference Rasperini G, Roccuzzo M, Francetti L, Acunzo R, Consonni D, Silvestri M (2011) Subepithelial connective tissue graft for treatment of gingival recessions with and without enamel matrix derivative: a multicenter, randomized controlled clinical trial. Int J Periodontics Restorative Dent 31:133–139PubMed Rasperini G, Roccuzzo M, Francetti L, Acunzo R, Consonni D, Silvestri M (2011) Subepithelial connective tissue graft for treatment of gingival recessions with and without enamel matrix derivative: a multicenter, randomized controlled clinical trial. Int J Periodontics Restorative Dent 31:133–139PubMed
17.
go back to reference Aroca S, Keglevich T, Nikolidakis D, Gera I, Nagy K, Azzi R, Etienne D (2010) Treatment of class III multiple gingival recessions: a randomized-clinical trial. J Clin Periodontol 37:88–97CrossRefPubMed Aroca S, Keglevich T, Nikolidakis D, Gera I, Nagy K, Azzi R, Etienne D (2010) Treatment of class III multiple gingival recessions: a randomized-clinical trial. J Clin Periodontol 37:88–97CrossRefPubMed
18.
go back to reference Roman A, Soancă A, Kasaj A, Stratul SI (2013) Subepithelial connective tissue graft with or without enamel matrix derivative for the treatment of Miller class I and II gingival recessions: a controlled randomized clinical trial. J Periodontal Res 48:563–572CrossRefPubMed Roman A, Soancă A, Kasaj A, Stratul SI (2013) Subepithelial connective tissue graft with or without enamel matrix derivative for the treatment of Miller class I and II gingival recessions: a controlled randomized clinical trial. J Periodontal Res 48:563–572CrossRefPubMed
19.
go back to reference Rasperini G, Silvestri M, Schenk RK, Nevins ML (2000) Clinical and histologic evaluation of human gingival recession treated with a subepithelial connective tissue graft and enamel matrix derivative (Emdogain): a case report. Int J Periodontics Restorative Dent 20:269–275PubMed Rasperini G, Silvestri M, Schenk RK, Nevins ML (2000) Clinical and histologic evaluation of human gingival recession treated with a subepithelial connective tissue graft and enamel matrix derivative (Emdogain): a case report. Int J Periodontics Restorative Dent 20:269–275PubMed
20.
go back to reference Carnio J, Camargo PM, Kenney EB, Schenk RK (2002) Histological evaluation of 4 cases of root coverage following a connective tissue graft combined with an enamel matrix derivative preparation. J Periodontol 71:31–43 Carnio J, Camargo PM, Kenney EB, Schenk RK (2002) Histological evaluation of 4 cases of root coverage following a connective tissue graft combined with an enamel matrix derivative preparation. J Periodontol 71:31–43
21.
go back to reference Casati MZ, Sallum EA, Caffesse RG, Nociti FH Jr, Sallum AW, Pereira SL (2000) Guided tissue regeneration with a bioabsorbable polylactic acid membrane in gingival recessions. A histometric study in dogs. J Periodontol 71:238–248CrossRefPubMed Casati MZ, Sallum EA, Caffesse RG, Nociti FH Jr, Sallum AW, Pereira SL (2000) Guided tissue regeneration with a bioabsorbable polylactic acid membrane in gingival recessions. A histometric study in dogs. J Periodontol 71:238–248CrossRefPubMed
22.
go back to reference Harris RJ (1997) Creeping attachment associated with the connective tissue with partial-thickness double pedicle grafts. J Periodontol 68:890–899CrossRefPubMed Harris RJ (1997) Creeping attachment associated with the connective tissue with partial-thickness double pedicle grafts. J Periodontol 68:890–899CrossRefPubMed
23.
go back to reference Al-Zahrani MS, Bissada NF (2005) Predictability of connective tissue grafts for root coverage: clinical perspectives and a review of the literature. Quintessence Int 36:609–616PubMed Al-Zahrani MS, Bissada NF (2005) Predictability of connective tissue grafts for root coverage: clinical perspectives and a review of the literature. Quintessence Int 36:609–616PubMed
24.
go back to reference Shirakata Y, Sculean A, Shinohara Y, Sena K, Takeuchi N, Bosshardt DD, Noguchi K (2016) Healing of localized gingival recessions treated with a coronally advanced flap alone or combined with an enamel matrix derivative and a porcine acellular dermal matrix: a preclinical study. Clin Oral Investig 20:1791–1800CrossRefPubMed Shirakata Y, Sculean A, Shinohara Y, Sena K, Takeuchi N, Bosshardt DD, Noguchi K (2016) Healing of localized gingival recessions treated with a coronally advanced flap alone or combined with an enamel matrix derivative and a porcine acellular dermal matrix: a preclinical study. Clin Oral Investig 20:1791–1800CrossRefPubMed
25.
go back to reference Cortellini P, Tonetti MS, Baldo C, Francetti L, Rasperini G, Rotundo R, Nieri M, Franceschi D, Labriola A, Prato GP (2009) Does placement of a connective tissue graft improve the outcomes of coronally advanced flap for coverage of single gingival recessions in upper anterior teeth? A multi-centre, randomized, double-blind, clinical trial. J Clin Periodontol 36:68–79CrossRefPubMed Cortellini P, Tonetti MS, Baldo C, Francetti L, Rasperini G, Rotundo R, Nieri M, Franceschi D, Labriola A, Prato GP (2009) Does placement of a connective tissue graft improve the outcomes of coronally advanced flap for coverage of single gingival recessions in upper anterior teeth? A multi-centre, randomized, double-blind, clinical trial. J Clin Periodontol 36:68–79CrossRefPubMed
26.
go back to reference Cairo F, Cortellini P, Pilloni A, Nieri M, Cincinelli S, Amunni F, Pagavino G, Tonetti MS (2016) Clinical efficacy of coronally advanced flap with or without connective tissue graft for the treatment of multiple adjacent gingival recessions in the aesthetic area: a randomized-controlled clinical trial. J Clin Periodontol 43:849–856CrossRefPubMed Cairo F, Cortellini P, Pilloni A, Nieri M, Cincinelli S, Amunni F, Pagavino G, Tonetti MS (2016) Clinical efficacy of coronally advanced flap with or without connective tissue graft for the treatment of multiple adjacent gingival recessions in the aesthetic area: a randomized-controlled clinical trial. J Clin Periodontol 43:849–856CrossRefPubMed
27.
go back to reference Hammarström L, Heijl L, Gestrelius S (1997) Periodontal regeneration in a buccal dehiscence model in monkeys after application of enamel matrix proteins. J Clin Periodontol 24:669–677CrossRefPubMed Hammarström L, Heijl L, Gestrelius S (1997) Periodontal regeneration in a buccal dehiscence model in monkeys after application of enamel matrix proteins. J Clin Periodontol 24:669–677CrossRefPubMed
28.
go back to reference Nemcovsky CE, Zahavi S, Moses O, Kebudi E, Artzi Z, Beny L, Weinreb M (2006) Effect of enamel matrix protein derivative on healing of surgical supra-infrabony periodontal defects in rat molar. J Periodontol 77:996–1002CrossRefPubMed Nemcovsky CE, Zahavi S, Moses O, Kebudi E, Artzi Z, Beny L, Weinreb M (2006) Effect of enamel matrix protein derivative on healing of surgical supra-infrabony periodontal defects in rat molar. J Periodontol 77:996–1002CrossRefPubMed
29.
go back to reference Kawase T, Okuda K, Yoshie H, Burns DM (2000) Cytostatic action of enamel matrix derivative (EMDOGAIN®) on human oral squamous cell carcinoma-derived SCC25 epithelial cells. J Periodontal Res 35:291–300CrossRefPubMed Kawase T, Okuda K, Yoshie H, Burns DM (2000) Cytostatic action of enamel matrix derivative (EMDOGAIN®) on human oral squamous cell carcinoma-derived SCC25 epithelial cells. J Periodontal Res 35:291–300CrossRefPubMed
30.
go back to reference Weinberg E, Topaz M, Dard M, Lyngstadaas P, Nemcovsky C, Weinreb M (2010) Differential effects of prostaglandin E2 and enamel matrix derivative on the proliferation of human gingival and dermal fibroblasts and gingival keratinocytes. J Periodontal Res 45:731–740CrossRefPubMed Weinberg E, Topaz M, Dard M, Lyngstadaas P, Nemcovsky C, Weinreb M (2010) Differential effects of prostaglandin E2 and enamel matrix derivative on the proliferation of human gingival and dermal fibroblasts and gingival keratinocytes. J Periodontal Res 45:731–740CrossRefPubMed
31.
go back to reference Bruno JF, Bowers GM (2000) Histology of a human biopsy section following the placement of a subepithelial connective tissue graft. Int J Periodontics Restorative Dent 20:225–231PubMed Bruno JF, Bowers GM (2000) Histology of a human biopsy section following the placement of a subepithelial connective tissue graft. Int J Periodontics Restorative Dent 20:225–231PubMed
32.
go back to reference McGuire MK, Cochran DL (2003) Evaluation of human recession defects treated with coronally advanced flaps and either enamel matrix derivative or connective tissue. Part 2: histological evaluation. J Periodontol 74:1126–1135CrossRefPubMed McGuire MK, Cochran DL (2003) Evaluation of human recession defects treated with coronally advanced flaps and either enamel matrix derivative or connective tissue. Part 2: histological evaluation. J Periodontol 74:1126–1135CrossRefPubMed
33.
go back to reference McGuire MK, Scheyer ET, Schupbach P (2016) A prospective, case-controlled study evaluating the use of enamel matrix derivative on human buccal recession defects: a human histologic examination. J Periodontol 87:645–653CrossRefPubMed McGuire MK, Scheyer ET, Schupbach P (2016) A prospective, case-controlled study evaluating the use of enamel matrix derivative on human buccal recession defects: a human histologic examination. J Periodontol 87:645–653CrossRefPubMed
34.
go back to reference Mellonig JT (1999) Enamel matrix derivative for periodontal reconstructive surgery: technique and clinical and histologic case report. Int J Periodontics Restorative Dent 19:8–19PubMed Mellonig JT (1999) Enamel matrix derivative for periodontal reconstructive surgery: technique and clinical and histologic case report. Int J Periodontics Restorative Dent 19:8–19PubMed
35.
go back to reference Sallum EA, Casati MZ, Caffesse RG, Funis LP, Nociti Júnior FH, Sallum AW (2003) Coronally positioned flap with or without enamel matrix protein derivative for the treatment of gingival recessions. Am J Dent 16:287–291PubMed Sallum EA, Casati MZ, Caffesse RG, Funis LP, Nociti Júnior FH, Sallum AW (2003) Coronally positioned flap with or without enamel matrix protein derivative for the treatment of gingival recessions. Am J Dent 16:287–291PubMed
36.
go back to reference de Oliveira CA, Spolidório LC, Cirelli JA, Marcantonio RA (2005) Acellular dermal matrix allograft used alone and in combination with enamel matrix protein in gingival recession: histologic study in dogs. Int J Periodontics Restorative Dent 25:595–603 de Oliveira CA, Spolidório LC, Cirelli JA, Marcantonio RA (2005) Acellular dermal matrix allograft used alone and in combination with enamel matrix protein in gingival recession: histologic study in dogs. Int J Periodontics Restorative Dent 25:595–603
37.
go back to reference Suaid FF, Carvalho MD, Santamaria MP, Casati MZ, Nociti FH Jr, Sallum AW, Sallum EA (2008) Platelet-rich plasma and connective tissue grafts in the treatment of gingival recessions: a histometric study in dogs. J Periodontol 79:888–895CrossRefPubMed Suaid FF, Carvalho MD, Santamaria MP, Casati MZ, Nociti FH Jr, Sallum AW, Sallum EA (2008) Platelet-rich plasma and connective tissue grafts in the treatment of gingival recessions: a histometric study in dogs. J Periodontol 79:888–895CrossRefPubMed
38.
go back to reference Shirakata Y, Taniyama K, Yoshimoto T, Miyamoto M, Takeuchi N, Matsuyama T, Noguchi K (2010) Regenerative effect of basic fibroblast growth factor on periodontal healing in two-wall intrabony defects in dogs. J Clin Periodontol 37:374–381CrossRefPubMed Shirakata Y, Taniyama K, Yoshimoto T, Miyamoto M, Takeuchi N, Matsuyama T, Noguchi K (2010) Regenerative effect of basic fibroblast growth factor on periodontal healing in two-wall intrabony defects in dogs. J Clin Periodontol 37:374–381CrossRefPubMed
39.
go back to reference Windisch P, Sculean A, Klein F, Tóth V, Gera I, Reich E, Eickholz P (2002) Comparison of clinical, radiographic, and histometric measurements following treatment with guided tissue regeneration or enamel matrix proteins in human periodontal defects. J Periodontol 73:409–417CrossRefPubMed Windisch P, Sculean A, Klein F, Tóth V, Gera I, Reich E, Eickholz P (2002) Comparison of clinical, radiographic, and histometric measurements following treatment with guided tissue regeneration or enamel matrix proteins in human periodontal defects. J Periodontol 73:409–417CrossRefPubMed
40.
go back to reference Fujita T, Yamamoto S, Ota M, Shibukawa Y, Yamada S (2011) Coverage of gingival recession defects using guided tissue regeneration with and without adjunctive enamel matrix derivative in a dog model. Int J Periodontics Restorative Dent 31:247–253PubMed Fujita T, Yamamoto S, Ota M, Shibukawa Y, Yamada S (2011) Coverage of gingival recession defects using guided tissue regeneration with and without adjunctive enamel matrix derivative in a dog model. Int J Periodontics Restorative Dent 31:247–253PubMed
41.
go back to reference Suzuki S, Nagano T, Yamakoshi Y, Gomi K, Arai T, Fukae M, Katagiri T, Oida S (2005) Enamel matrix derivative gel stimulates signal transduction of BMP and TGF-β. J Dent Res 84:510–514CrossRefPubMed Suzuki S, Nagano T, Yamakoshi Y, Gomi K, Arai T, Fukae M, Katagiri T, Oida S (2005) Enamel matrix derivative gel stimulates signal transduction of BMP and TGF-β. J Dent Res 84:510–514CrossRefPubMed
42.
go back to reference Heng NH, N'Guessan PD, Kleber BM, Bernimoulin JP, Pischon N (2007) Enamel matrix derivative induces connective tissue growth factor expression in human osteoblastic cells. J Periodontol 78:2369–2379CrossRefPubMed Heng NH, N'Guessan PD, Kleber BM, Bernimoulin JP, Pischon N (2007) Enamel matrix derivative induces connective tissue growth factor expression in human osteoblastic cells. J Periodontol 78:2369–2379CrossRefPubMed
43.
go back to reference Wu SM, Chiu HC, Chin YT, Lin HY, Chiang CY, Tu HP, Fu MM, Fu E (2014) Effects of enamel matrix derivative on the proliferation and osteogenic differentiation of human gingival mesenchymal stem cells. Stem Cell Res Ther 5:52CrossRefPubMedPubMedCentral Wu SM, Chiu HC, Chin YT, Lin HY, Chiang CY, Tu HP, Fu MM, Fu E (2014) Effects of enamel matrix derivative on the proliferation and osteogenic differentiation of human gingival mesenchymal stem cells. Stem Cell Res Ther 5:52CrossRefPubMedPubMedCentral
44.
go back to reference Hoang AM, Klebe RG, Steffensen B, Ryu OH, Simmer JP, Cochran DL (2002) Amelogenin is a cell adhesion protein. J Dent Res 81:497–500CrossRefPubMed Hoang AM, Klebe RG, Steffensen B, Ryu OH, Simmer JP, Cochran DL (2002) Amelogenin is a cell adhesion protein. J Dent Res 81:497–500CrossRefPubMed
45.
go back to reference Schlueter SR, Carnes DL, Cochran DL (2007) In vitro effects of enamel matrix derivative on microvascular cells. J Periodontol 78:141–151CrossRefPubMed Schlueter SR, Carnes DL, Cochran DL (2007) In vitro effects of enamel matrix derivative on microvascular cells. J Periodontol 78:141–151CrossRefPubMed
46.
go back to reference Haase HR, Bartold PM (2001) Enamel matrix derivative induces matrix synthesis by cultured human periodontal fibroblast cells. J Periodontol 72:341–348CrossRefPubMed Haase HR, Bartold PM (2001) Enamel matrix derivative induces matrix synthesis by cultured human periodontal fibroblast cells. J Periodontol 72:341–348CrossRefPubMed
47.
go back to reference Faler BJ, Macsata RA, Plummer D, Mishra L, Sidawy AN (2006) Transforming growth factor-beta and wound healing. Perspect Vasc Surg Endovasc Ther 18:55–62CrossRefPubMed Faler BJ, Macsata RA, Plummer D, Mishra L, Sidawy AN (2006) Transforming growth factor-beta and wound healing. Perspect Vasc Surg Endovasc Ther 18:55–62CrossRefPubMed
48.
go back to reference Rodrigues TL, Marchesan JT, Coletta RD, Novaes AB Jr, Grisi MF, Souza SL, Taba M Jr, Palioto DB (2007) Effects of enamel matrix derivative and transforming growth factor-beta 1 on human periodontal ligament fibroblasts. J Clin Periodontol 34:514–522CrossRefPubMed Rodrigues TL, Marchesan JT, Coletta RD, Novaes AB Jr, Grisi MF, Souza SL, Taba M Jr, Palioto DB (2007) Effects of enamel matrix derivative and transforming growth factor-beta 1 on human periodontal ligament fibroblasts. J Clin Periodontol 34:514–522CrossRefPubMed
49.
go back to reference Van der Pauw MT, Van den Bos T, Everts V, Beertsen W (2000) Enamel matrix-derived protein stimulates attachment of periodontal ligament fibroblasts and enhances alkaline phosphatase activity and transforming growth factor beta1 release of periodontal ligament and gingival fibroblasts. J Periodontol 71:31–43CrossRefPubMed Van der Pauw MT, Van den Bos T, Everts V, Beertsen W (2000) Enamel matrix-derived protein stimulates attachment of periodontal ligament fibroblasts and enhances alkaline phosphatase activity and transforming growth factor beta1 release of periodontal ligament and gingival fibroblasts. J Periodontol 71:31–43CrossRefPubMed
50.
go back to reference Okubo K, Kobayashi M, Takiguchi T, Takada T, Ohazama A, Okamatsu Y, Hasegawa K (2003) Participation of endogenous IGF-I and TGF-beta 1 with enamel matrix derivative-stimulated cell growth in human periodontal ligament cells. J Periodontal Res 38:1–9CrossRefPubMed Okubo K, Kobayashi M, Takiguchi T, Takada T, Ohazama A, Okamatsu Y, Hasegawa K (2003) Participation of endogenous IGF-I and TGF-beta 1 with enamel matrix derivative-stimulated cell growth in human periodontal ligament cells. J Periodontal Res 38:1–9CrossRefPubMed
Metadata
Title
Split-mouth evaluation of connective tissue graft with or without enamel matrix derivative for the treatment of isolated gingival recession defects in dogs
Authors
Y. Shirakata
T. Nakamura
Y. Shinohara
K. Nakamura-Hasegawa
C. Hashiguchi
N. Takeuchi
T. Imafuji
A. Sculean
K. Noguchi
Publication date
01-08-2019
Publisher
Springer Berlin Heidelberg
Published in
Clinical Oral Investigations / Issue 8/2019
Print ISSN: 1432-6981
Electronic ISSN: 1436-3771
DOI
https://doi.org/10.1007/s00784-018-2750-1

Other articles of this Issue 8/2019

Clinical Oral Investigations 8/2019 Go to the issue