Skip to main content
Erschienen in: Clinical Oral Investigations 4/2004

01.12.2004 | Original Article

GTR treatment of intrabony defects with PLA/PGA copolymer or collagen bioresorbable membranes in combination with deproteinized bovine bone (Bio-Oss)

verfasst von: Andreas Stavropoulos, Anton Sculean, Thorkild Karring

Erschienen in: Clinical Oral Investigations | Ausgabe 4/2004

Einloggen, um Zugang zu erhalten

Abstract

The objectives of this study were to evaluate the results of guided tissue regeneration (GTR) treatment of intrabony defects with two kinds of bioresorbable membranes, with deproteinized bovine bone (Bio-Oss) used as an adjunct. Twenty-eight patients with at least one intrabony defect with a probing pocket depth (PPD) ≥7 mm and radiographic evidence of an intrabony component (IC) ≥4 mm were randomly treated with either a polylactic/polyglycolic (PLA/PGA) acid copolymer or a collagen bioresorbable membrane combined with Bio-Oss implantation. Immediately prior to surgery (baseline) and after 1 year, the following parameters were recorded: (1) PPD, (2) gingival recession (REC), (3) probing attachment level (PAL), (4) presence/absence of plaque (PI), and (5) presence/absence of bleeding on probing (BOP). Occurrence of membrane exposure during healing and the smoking habits of the patients were also recorded. Statistical analysis was carried out using x 2 -tests and t-tests. There were no significant differences between the two membrane groups regarding the clinical parameters at baseline. Statistically significant clinical improvements (PAL gains, reduced PPDs) were observed 1 year after treatment in both groups. There were no significant differences, however, between the PLA/PGA and the collagen membrane groups regarding any of the evaluated parameters (mean PAL gain: 2.9 mm vs 3.9 mm; mean residual PPD: 4.8 mm vs 4.1 mm, respectively). The membrane material per se does not seem to be a critical factor for the outcome of GTR treatment of intrabony defects with bioresorbable membranes.
Literatur
1.
Zurück zum Zitat Camargo PM, Lekovic V, Weinlaender M, Nedic M, Vasilic N, Wolinsky LE, Kenney EB (2000) A controlled re-entry study on the effectiveness of bovine porous bone mineral used in combination with a collagen membrane of porcine origin in the treatment of intrabony defects in humans. J Clin Periodontol 27:889–896CrossRefPubMed Camargo PM, Lekovic V, Weinlaender M, Nedic M, Vasilic N, Wolinsky LE, Kenney EB (2000) A controlled re-entry study on the effectiveness of bovine porous bone mineral used in combination with a collagen membrane of porcine origin in the treatment of intrabony defects in humans. J Clin Periodontol 27:889–896CrossRefPubMed
2.
Zurück zum Zitat Camelo M, Nevins ML, Schenk RK, Simion M, Rasperini G, Lynch SE (1998) Clinical, radiographic, and histologic evaluation of human periodontal defects treated with Bio-Oss and Bio-Gide. Int J Periodontics Restorative Dent 18:321–331PubMed Camelo M, Nevins ML, Schenk RK, Simion M, Rasperini G, Lynch SE (1998) Clinical, radiographic, and histologic evaluation of human periodontal defects treated with Bio-Oss and Bio-Gide. Int J Periodontics Restorative Dent 18:321–331PubMed
3.
Zurück zum Zitat Carmagnola D, Berglundh T, Lindhe J (2002) The effect of a fibrin glue on the integration of Bio-Oss with bone tissue. An experimental study in Labrador dogs. J Clin Periodontol 29:377–383CrossRefPubMed Carmagnola D, Berglundh T, Lindhe J (2002) The effect of a fibrin glue on the integration of Bio-Oss with bone tissue. An experimental study in Labrador dogs. J Clin Periodontol 29:377–383CrossRefPubMed
4.
Zurück zum Zitat Carmagnola D, Adriaens P, Berglundh T (2003) Healing of human extraction sockets filled with Bio-Oss. Clin Oral Implants Res 14:137–143PubMed Carmagnola D, Adriaens P, Berglundh T (2003) Healing of human extraction sockets filled with Bio-Oss. Clin Oral Implants Res 14:137–143PubMed
5.
Zurück zum Zitat Christgau M, Bader N, Schmalz G, Hiller KA, Wenzel A (1998) GTR therapy of intrabony defects using 2 different bioresorbable membranes: 12-month results. J Clin Periodontol 25:499–509PubMed Christgau M, Bader N, Schmalz G, Hiller KA, Wenzel A (1998) GTR therapy of intrabony defects using 2 different bioresorbable membranes: 12-month results. J Clin Periodontol 25:499–509PubMed
6.
Zurück zum Zitat Cortellini P, Pini PG, Tonetti MS (1996) Periodontal regeneration of human intrabony defects with bioresorbable membranes. A controlled clinical trial. J Periodontol 67:217–223PubMed Cortellini P, Pini PG, Tonetti MS (1996) Periodontal regeneration of human intrabony defects with bioresorbable membranes. A controlled clinical trial. J Periodontol 67:217–223PubMed
7.
Zurück zum Zitat Dörfer CE, Kim TS, Steinbrenner H, Holle R, Eickholz P (2000) Regenerative periodontal surgery in interproximal intrabony defects with biodegradable barriers. J Clin Periodontol 27:162–168CrossRefPubMed Dörfer CE, Kim TS, Steinbrenner H, Holle R, Eickholz P (2000) Regenerative periodontal surgery in interproximal intrabony defects with biodegradable barriers. J Clin Periodontol 27:162–168CrossRefPubMed
8.
Zurück zum Zitat Ehmke B, Rudiger S, Hommens A, Karch H, Flemmig T (2003) Guided tissue regeneration using a polylactic acid barrier. J Clin Periodontol 30:368–374PubMed Ehmke B, Rudiger S, Hommens A, Karch H, Flemmig T (2003) Guided tissue regeneration using a polylactic acid barrier. J Clin Periodontol 30:368–374PubMed
9.
Zurück zum Zitat Eickholz P, Kim TS, Steinbrenner H, Dorfer C, Holle R (2000) Guided tissue regeneration with bioabsorbable barriers: intrabony defects and class II furcations. J Periodontol 71:999–1008PubMed Eickholz P, Kim TS, Steinbrenner H, Dorfer C, Holle R (2000) Guided tissue regeneration with bioabsorbable barriers: intrabony defects and class II furcations. J Periodontol 71:999–1008PubMed
10.
Zurück zum Zitat Karring T, Nyman S, Gottlow J, Laurell L (1993) Development of the biological concept of guided tissue regeneration—animal and human studies. Periodontol 2000 1:26–35 Karring T, Nyman S, Gottlow J, Laurell L (1993) Development of the biological concept of guided tissue regeneration—animal and human studies. Periodontol 2000 1:26–35
11.
Zurück zum Zitat Karring T, Lindhe J, Cortellini P (2003) Regenerative periodontal therapy. In: Lindhe J, Karring T, Lang NP (eds) Clinical periodontology and implant dentistry. Blackwell, Oxford, pp 650–704 Karring T, Lindhe J, Cortellini P (2003) Regenerative periodontal therapy. In: Lindhe J, Karring T, Lang NP (eds) Clinical periodontology and implant dentistry. Blackwell, Oxford, pp 650–704
12.
Zurück zum Zitat Lundgren D, Slotte C (1999) Reconstruction of anatomically complicated periodontal defects using a bioresorbable GTR barrier supported by bone mineral. A 6-month follow- up study of 6 cases. J Clin Periodontol 26:56–62CrossRefPubMed Lundgren D, Slotte C (1999) Reconstruction of anatomically complicated periodontal defects using a bioresorbable GTR barrier supported by bone mineral. A 6-month follow- up study of 6 cases. J Clin Periodontol 26:56–62CrossRefPubMed
13.
Zurück zum Zitat Mattson JS, Gallagher SJ, Jabro MH (1999) The use of 2 bioabsorbable barrier membranes in the treatment of interproximal intrabony periodontal defects. J Periodontol 70:510–517PubMed Mattson JS, Gallagher SJ, Jabro MH (1999) The use of 2 bioabsorbable barrier membranes in the treatment of interproximal intrabony periodontal defects. J Periodontol 70:510–517PubMed
14.
Zurück zum Zitat Mellonig JT (2000) Human histologic evaluation of a bovine-derived bone xenograft in the treatment of periodontal osseous defects. Int J Periodontics Restorative Dent 20:18–29 Mellonig JT (2000) Human histologic evaluation of a bovine-derived bone xenograft in the treatment of periodontal osseous defects. Int J Periodontics Restorative Dent 20:18–29
15.
Zurück zum Zitat Paolantonio M (2002) Combined periodontal regenerative technique in human intrabony defects by collagen membranes and anorganic bovine bone. A controlled clinical study. J Periodontol 73:158–166PubMed Paolantonio M (2002) Combined periodontal regenerative technique in human intrabony defects by collagen membranes and anorganic bovine bone. A controlled clinical study. J Periodontol 73:158–166PubMed
16.
Zurück zum Zitat Sculean A, Stavropoulos A, Windisch P, Keglevich T, Karring T, Gera I (2004) Healing of human intrabony defects following regenerative periodontal therapy with a bovine-derived xenograft and guided tissue regeneration. Clin Oral Investig 8:70–74PubMed Sculean A, Stavropoulos A, Windisch P, Keglevich T, Karring T, Gera I (2004) Healing of human intrabony defects following regenerative periodontal therapy with a bovine-derived xenograft and guided tissue regeneration. Clin Oral Investig 8:70–74PubMed
17.
Zurück zum Zitat Stavropoulos A, Kostopoulos L, Mardas N, Nyengaard JR, Karring T (2001) Deproteinized bovine bone used as an adjunct to guided bone augmentation: an experimental study in the rat. Clin Implant Dent Relat Res 3:156–165PubMed Stavropoulos A, Kostopoulos L, Mardas N, Nyengaard JR, Karring T (2001) Deproteinized bovine bone used as an adjunct to guided bone augmentation: an experimental study in the rat. Clin Implant Dent Relat Res 3:156–165PubMed
18.
Zurück zum Zitat Stavropoulos A, Kostopoulos L, Nyengaard JR, Karring T (2003) Deproteinized bovine bone (Bio-Oss) and bioactive glass (Biogran) arrest bone formation when used as an adjunct to guided tissue regeneration (GTR): an experimental study in the rat. J Clin Periodontol 30:636–643CrossRefPubMed Stavropoulos A, Kostopoulos L, Nyengaard JR, Karring T (2003) Deproteinized bovine bone (Bio-Oss) and bioactive glass (Biogran) arrest bone formation when used as an adjunct to guided tissue regeneration (GTR): an experimental study in the rat. J Clin Periodontol 30:636–643CrossRefPubMed
19.
Zurück zum Zitat Stavropoulos A, Mardas N, Herrero F, Karring T (2004) Smoking affects the outcome of guided tissue regeneration using bioresorbable membranes. A retrospective analysis of intrabony defects. J Clin Periodontol 31 Stavropoulos A, Mardas N, Herrero F, Karring T (2004) Smoking affects the outcome of guided tissue regeneration using bioresorbable membranes. A retrospective analysis of intrabony defects. J Clin Periodontol 31
20.
Zurück zum Zitat Tatakis DN, Promsudthi A, Wikesjö UM (1999) Devices for periodontal regeneration. Periodontol 2000 19:59–73PubMed Tatakis DN, Promsudthi A, Wikesjö UM (1999) Devices for periodontal regeneration. Periodontol 2000 19:59–73PubMed
21.
Zurück zum Zitat Tonetti, MS, Pini-Prato G, Cortellini P (1993) Periodontal regeneration of human intrabony defects. IV. Determinants of healing response. J Periodontol 64:934–940PubMed Tonetti, MS, Pini-Prato G, Cortellini P (1993) Periodontal regeneration of human intrabony defects. IV. Determinants of healing response. J Periodontol 64:934–940PubMed
22.
Zurück zum Zitat Tonetti MS, Pini-Prato G, Cortellini P (1995) Effect of cigarette smoking on periodontal healing following GTR in intrabony defects. A preliminary retrospective study. J Clin Periodontol 22:229–234PubMed Tonetti MS, Pini-Prato G, Cortellini P (1995) Effect of cigarette smoking on periodontal healing following GTR in intrabony defects. A preliminary retrospective study. J Clin Periodontol 22:229–234PubMed
23.
Zurück zum Zitat Trombelli L, Scabbia A (1997) Healing response of gingival recession defects following guided tissue regeneration procedures in smokers and non-smokers. J Clin Periodontol 24:529–533PubMed Trombelli L, Scabbia A (1997) Healing response of gingival recession defects following guided tissue regeneration procedures in smokers and non-smokers. J Clin Periodontol 24:529–533PubMed
24.
Zurück zum Zitat Trombelli L, Kim CK, Zimmerman GJ, Wikesjö UM (1997) Retrospective analysis of factors related to clinical outcome of guided tissue regeneration procedures in intrabony defects. J Clin Periodontol 24:366–371PubMed Trombelli L, Kim CK, Zimmerman GJ, Wikesjö UM (1997) Retrospective analysis of factors related to clinical outcome of guided tissue regeneration procedures in intrabony defects. J Clin Periodontol 24:366–371PubMed
Metadaten
Titel
GTR treatment of intrabony defects with PLA/PGA copolymer or collagen bioresorbable membranes in combination with deproteinized bovine bone (Bio-Oss)
verfasst von
Andreas Stavropoulos
Anton Sculean
Thorkild Karring
Publikationsdatum
01.12.2004
Verlag
Springer-Verlag
Erschienen in
Clinical Oral Investigations / Ausgabe 4/2004
Print ISSN: 1432-6981
Elektronische ISSN: 1436-3771
DOI
https://doi.org/10.1007/s00784-004-0277-0

Weitere Artikel der Ausgabe 4/2004

Clinical Oral Investigations 4/2004 Zur Ausgabe

Calendar of Events

December 2004

Parodontalbehandlung verbessert Prognose bei Katheterablation

19.04.2024 Vorhofflimmern Nachrichten

Werden Personen mit Vorhofflimmern in der Blanking-Periode nach einer Katheterablation gegen eine bestehende Parodontitis behandelt, verbessert dies die Erfolgsaussichten. Dafür sprechen die Resultate einer prospektiven Untersuchung.

Invasive Zahnbehandlung: Wann eine Antibiotikaprophylaxe vor infektiöser Endokarditis schützt

11.04.2024 Endokarditis Nachrichten

Bei welchen Personen eine Antibiotikaprophylaxe zur Prävention einer infektiösen Endokarditis nach invasiven zahnärztlichen Eingriffen sinnvoll ist, wird diskutiert. Neue Daten stehen im Einklang mit den europäischen Leitlinienempfehlungen.

Zell-Organisatoren unter Druck: Mechanismen des embryonalen Zahnwachstums aufgedeckt

08.04.2024 Zahnmedizin Nachrichten

Der Aufbau von Geweben und Organen während der Embryonalentwicklung wird von den Zellen bemerkenswert choreografiert. Für diesen Prozess braucht es spezielle sogenannte „Organisatoren“. In einer aktuellen Veröffentlichung im Fachjournal Nature Cell Biology berichten Forschende durch welchen Vorgang diese Organisatoren im Gewebe entstehen und wie sie dann die Bildung von Zähnen orchestrieren.

Die Oralprophylaxe & Kinderzahnheilkunde umbenannt

11.03.2024 Kinderzahnmedizin Nachrichten

Infolge der Umbenennung der Deutschen Gesellschaft für Kinderzahnheilkunde in Deutsche Gesellschaft für Kinderzahnmedizin (DGKiZ) wird deren Mitgliederzeitschrift Oralprophylaxe & Kinderzahnheilkunde in Oralprophylaxe & Kinderzahnmedizin umbenannt. Aus diesem Grunde trägt die erste Ausgabe in 2024 erstmalig den neuen Titel.

Newsletter

Bestellen Sie unseren kostenlosen Newsletter Update Zahnmedizin und bleiben Sie gut informiert – ganz bequem per eMail.