Resorbability and histological reaction of bioabsorbable membranes

수종의 흡수성 차단막의 생체 분해도와 조직학적 반응

  • Suk, Hun-Joo (Department of Periodontology, College of Dentisty, Yonsei University, Research Institute for Periodontal Regeneration) ;
  • Kwon, Suk-Hoon (Department of Periodontology, College of Dentisty, Yonsei University, Research Institute for Periodontal Regeneration) ;
  • Kim, Chang-Sung (Department of Periodontology, College of Dentisty, Yonsei University, Research Institute for Periodontal Regeneration) ;
  • Choi, Seong-Ho (Department of Periodontology, College of Dentisty, Yonsei University, Research Institute for Periodontal Regeneration) ;
  • Jeon, Dong-Won (Department of Clothing & Textiles, Ewha Womans University) ;
  • Kim, Chong-Kwan (Department of Periodontology, College of Dentisty, Yonsei University, Research Institute for Periodontal Regeneration)
  • 석헌주 (연세대학교 치과대학 치주좌학교실, 치주조직재생연구소) ;
  • 권석훈 (연세대학교 치과대학 치주좌학교실, 치주조직재생연구소) ;
  • 김창성 (연세대학교 치과대학 치주좌학교실, 치주조직재생연구소) ;
  • 최성호 (연세대학교 치과대학 치주좌학교실, 치주조직재생연구소) ;
  • 전동원 (이화여자대학교 가정대학 의류직물학과) ;
  • 김종관 (연세대학교 치과대학 치주좌학교실, 치주조직재생연구소)
  • Published : 2002.12.31

Abstract

The major goals of periodontal therapy are the functional regeneration of periodontal supporting structures already destructed by periodontal disease. There have been many efforts to develop materials and therapeutic methods to promote periodontal wound healing. With the development of non-resorbable membrane, GTR has proved to be the representive technique of periodontal regeneration. However, due to various clinical problems of non-resorbable membrane, resorbable membrane was developed and it showed to be clinically effective. The newly developed Para-Dioxanone membrane has a characteristic of non-woven fabric structures which is different from the generally used membranes with structure of mesh form. In addition, Chitosan membrane has been developed to apply its adventage maximally in GTR. Although a number of different types of membranes had been clinically used, researches on absorption rate of membranes were inadequate and limited to subjective opinions. However, since long term period of resorption and space maintenance are required in implant or ridge augmentation, accurate verification of resorption rate is clinically important. In this study, we had implanted Resolut(R), Biomesh(R), Para-Dioxanone membrane and Chitosan membrane (Size : 4mm ${\times}$ 4mm) on dorsal side of Sprague Dawley rat, and sacrified them after 4 weeks, 8 weeks, 12 weeks respectively. Histologic observation was carried out, and the following results were obtained by calculating the objective resorption rate. 1. In case of Resolut(R), external resorption took place initially, followed by internal resorption. Surface area are 5.76${\pm}$2.37$mm^2$, 4.90${\pm}$l.06$mm^2$, 4.90${\pm}$0.98$mm^2$ at 4 weeks, 8 weeks, 12 weeks respectively, and invasion rate of connective tissue to membrane are 31.6${\pm}$4.5%, 52.8${\pm}$9.4%, 56.4${\pm}$5.1% respectively. 2. Biomesh(R) showed a pattern of folding, relatively slow resorption rate with small size of membrane. Surface area are 3.62${\pm}$0.82$mm^2$, 3.63${\pm}$0.76$mm^2$, 4.07${\pm}$1.14$mm^2$ at 4 weeks, 8 weeks, 12 weeks respectively, and invasion rate of connective tissue to membrane are 26.1${\pm}$5.8%, 30.9${\pm}$3.4%, 29.2${\pm}$3.6%, respectively. 3. Para-Dioxanone membrane was surrounded by fibrous conncetive tissue externally, and resorption took place internally and externally. Surface area are 5.96${\pm}$1.05$mm^2$, 4.77${\pm}$10.76$mm^2$, 3.86${\pm}$0.84$mm^2$ at 4 weeks, 8 weeks, 12 weeks respectively, and invasion rate of connective tissue to membrane are 30.7${\pm}$5.1%, 53.3${\pm}$4.4%, 69.5${\pm}$3.1%, respectively. 4. Each fiber of Chitosan membrane was surrounded by connective tissue and showed external resorption pattern. It showed little invasion of inflammatory cells and excellent biocompatability. The resorption rate was relatively slow. Surface area are 6.01${\pm}$2.01$mm^2$, 5.49${\pm}$1.3$mm^2$, 5.06${\pm}$1.38$mm^2$ at 4 weeks, 8 weeks, 12 weeks respectively, and invasion rate of connective tissue to membrane are 31.3${\pm}$3.6%, 38.4${\pm}$3.80%, 39.7${\pm}$5.6%, respectively. Consequently, Para-Dioxanone membrane and Chitosan membrane are found to be clinically effective for their excellent tissue reaction and biocompatibility. Futhermore, the advantage of bone regenerating ability as well as the relatively long resorption period of Chitosan membrane, it might be widely used in implant or ridge augmentation.

Keywords

References

  1. Caffesse G, Nasjlete E, Anderson B : Periodontal healing following guided tissue regeneration with citric acid and fibronectin application, J Periodontol, 1991;62: 21-29 https://doi.org/10.1902/jop.1991.62.1.21
  2. Wikesjo UME, Nilveus RE, Selvig KA : Significanceof early healing events on periodontal repair. A review, J Periodontol, 1992;158-165
  3. Melcher AH: On the repair potential of periodontal tissues, J Periodontol, 1976;47(5):256-260 https://doi.org/10.1902/jop.1976.47.5.256
  4. Caton J, Nyman S, Zander H : Histometric evaluation of periodontal surgery . II. Connective tissue attachment levels after four regenerative procedure. J Periodontol, 1980;7: 223-231
  5. Nyman S, Gottlow J, Karring T, Lindhe J: Healing following implantation of periodontitis-affected roots into gingival connective tissue, J Clin Periodontol, 1980;7: 394-401 https://doi.org/10.1111/j.1600-051X.1980.tb02012.x
  6. Nyman S, Lindhe J, Karring T, Rylander H: New attachment following surgical treatment of human periodontal disease, J Clin Periodontol, 1982;9(4): 290-296 https://doi.org/10.1111/j.1600-051X.1982.tb02095.x
  7. Gottlow J, Nyman S, Karring T, Wennstrom J: New attachment formation in the human periodontium by guided tissue regeneration. Case reports, J Clin Periodontol, 1986;13(6): 604-616 https://doi.org/10.1111/j.1600-051X.1986.tb00854.x
  8. Becker W, Becker BE, Prichard JF, Caffesse R, Rosenberg E, Gian-Grasso J : Root isolation for new attachment procedures: A surgical and suturing method: Three case reports, J Clin Periodontol, 1987;58(12): 819-826 https://doi.org/10.1902/jop.1987.58.12.819
  9. Gottlow J, Karring T: Maintenance of new attachment gained through guided tissue regeneration. J Clin Periodontol, 1992;19(5):315-317 https://doi.org/10.1111/j.1600-051X.1992.tb00651.x
  10. Pontoriero R, Lindhe J, Nyman S, Karring T, Rosenberg E, Sanavi F : Guided tissue regeneration in the treatment of furcation defects in mandibular molars. A clinical study of degree III involvernents. J Clin Periodontol, 1989;16(3):170-174 https://doi.org/10.1111/j.1600-051X.1989.tb01635.x
  11. Pontoriero R, Lindhe J, Nyman S, Karring T, Rosenberg E, Sanavi F : Guided tissue regeneration in degree II furcation-involved mandibular molars. A clinical study, J Clin Periodontol, 1988;15(4):247-254 https://doi.org/10.1111/j.1600-051X.1988.tb01578.x
  12. Magnusson I, Batich C, Collins BR, : New attachment formation following controlled tissue regeneration using biodegradable membranes, J Periexlontol, 1988;59: 1-6 https://doi.org/10.1902/jop.1988.59.1.1
  13. Simon M, Trisi P, Maglione M, Piatelli A: A preliminary report on a method for studying the permeability of expanded polytetrafluoroethylene membrane to bacteria in vitro ; A scanning electron microscopic and histologic study, J Periodontol, 1994;65 : 755-761 https://doi.org/10.1902/jop.1994.65.8.755
  14. Simon M, Baldoni M, Rossi P, Zaffe D : A comparative study of the effectiveness of e-PTFE membranes with and without early exposure during the healing period, Int J Periodontics Restorative Dent, 1994;14: 167-180
  15. Simon M, Trisi P, Maglione M, Piatelli A : Bacterial penetration in vitro throuth GTAM membrane with and without topical chlorhexidine application. A light and scanning electron microscopic study. J Clin Periodontol, 1995;22: 321-331 https://doi.org/10.1111/j.1600-051X.1995.tb00155.x
  16. Aukhil I, Iglhaut J : Periodontal ligament cell kinetics following experimental regeneration procedure, J Clin Periodontol, 1988;15: 374-382 https://doi.org/10.1111/j.1600-051X.1988.tb01015.x
  17. Key SA, Lynch LW, Marxer M, Lynch SE : Guided bone regeneration : Integration of a resorbable membrane and a bone graft material, Prdct Periodont Aesthet Dent, 1997;9: 185-194
  18. Milella E, Ramires PA, Brescia E, La Sala G, Di Paola L, Bruno V: Physicochemical, mechanical, and biological properties of commercial membranes for GTR, J Biomedical Materials Res, 2001;58(4): 427-35 https://doi.org/10.1002/jbm.1038
  19. Peleg M, Chaushu G, Blinder D, Taicher S : Use of lyodura for bone augmentation of osseous defects around dental implant, J Periodontol, 1999;70: 853-860 https://doi.org/10.1902/jop.1999.70.8.853
  20. Wang HL, O'Neal RH, Thomas CL, Shyr Y, MacNeil RL : Evaluation of an absorbable collagen membrane in treating class II furcation defect, J Periodontol, 1994;65 : 1029-1036 https://doi.org/10.1902/jop.1994.65.11.1029
  21. 권석훈, 김종관, 문익상: 백서 두개골 실험적 결손부에서 Para-Dioxanone 차단막의 골조직 재생 효과, 대한 치주과학회지 계제 예정
  22. 류인철, 구영. 정종평, 한수부, 최상묵 : Poly(alpha-hydroxy acid~)제 제 생분해성 차폐막의 치주조직 재생 유도 능력에 관한 조직학적 장기 관찰, 대한 치주과학회지, 1997;27(3) : 633-645
  23. 허지선, 김현영, 김창성, 최성호, 조규성, 채중규, 김종관 : Polylactic/polyglycolic copolymer 차단막의 이개부 병소의 치유 효과, 대한치주과학회지, 2001;31(2) : 345-356
  24. Donos N, Kostopoulos L, Karring T : Alveolar ridge augmentation using a resorbable copolymer membrane and autogenous bone grafts. An experimental study in the rat, Clin Oral Implants Res 2002;13(2): 203-13 https://doi.org/10.1034/j.1600-0501.2002.130211.x
  25. Sculean A, Berakdar M, Pahl S, Windisch P, Brecx M, Reich E, Donos N : Patterns of cytokeratin expression in monkey and human periodontium following regenerative and conventional periodontal surgery, J Perio Res, 2001;36(4): 260-8 https://doi.org/10.1034/j.1600-0765.2001.036004260.x
  26. Sculean A, Donos N, Miliauskaite N, Arweiler N, Brecx M : Treatment of intrabony defects with enamel matrix proteins or bioabsorbable membranes. A 4-year follow-up split-mouth study, J Periodontol, 2001;72(12): 1695-1701 https://doi.org/10.1902/jop.2001.72.12.1695
  27. Takata T, Wang HL, Miyauchi M : Attachment, proliferation and differentiation of periodontal ligament cells on various guided tissue regeneration membranes, J Perio Res, 2001;36(5): 322-7 https://doi.org/10.1034/j.1600-0765.2001.360508.x
  28. Caffesse RG, Nasjleti CE., Morrison EC, Sanchez R : Guided tissue regeneration: Comparison of bioabsorbable and non-bioabsorbable membranes. Histologic and histometric study in dogs, J Periodontol, 1994;65: 583-591 https://doi.org/10.1902/jop.1994.65.6.583
  29. Wang HL, Miyauchi M, Takata T : Initial attachment of osteoblasts to various guided bone regeneration membranes: an in vitro study, J Perio Res 2002;37(5): 340-4 https://doi.org/10.1034/j.1600-0765.2002.01625.x
  30. 서종진, 정예진, 최병갑, 최성호, 조규성: 골내 치주낭에 $Biomesh^{\circledR}$ 차단막과 자가골이식의 치료 효과에 대한 연구, 대한치주과학회지, 2000;30:779-792
  31. 이학철, 한승민, 설양조, 이철우, 엄홍식, 장범석, 정종평, 한수부: 2급 치근 분지부 병소에서의 생분해성 차폐막의 효과, 대한치주과학회지, 1999;29: 539-552
  32. Aspinall GO : The polysaccharides. Chitin and chitosan. New York: Academic Press , Inc.1983;2: 386
  33. 백정원, 이현정, 유윤정, 조규성, 김종관, 최성호 : 키토산이 치주인대 섬유아세포에 미치는 영향, 대한치주과학회지, 2001;31(4) : 823-832
  34. Kind GM, Bind SD, Staren ED, Templeton AJ, Economou SG: Chitosan: Evaluation of a new hemostatic agent, Curr Surg, 1990;47: 37-39
  35. Klokkevold PR, Fukayama H, Sung EC, Bertolami CN: The effect of chitosan (poly-Nacetyl glucosamine) on lingual hemostasis in heparinized rabbits, J Oral Maxillofac Surg, 1999;57: 49-52 https://doi.org/10.1016/S0278-2391(99)90632-8
  36. Klokkevold PR, Lew DS, Ellis DG, Bertolami CN: Effect of chitosan on lingual hemostasis in rabbits, J Oral Maxillofac Surg, 1991;49: 858-863 https://doi.org/10.1016/0278-2391(91)90017-G
  37. Muzzarelli RA, Baldassarre M, Conti F, Ferrara P, Biagini B: Biological activity of chitosan:Ultrastructural study, Biomaterials, 1988;9: 247-252 https://doi.org/10.1016/0142-9612(88)90092-0
  38. Muzzarelli RA: In vivo biochemical significance of chitin-based medical items, Polymeric Materials for Biomedical ApplicationsfEds S. Dumitriu and M. Szycher), Marcel Dekker, New York, USA, 1992
  39. Sandford PA : Chitosan: Commercial uses and potential applications, In: Skjak-Braek G, Anthonsen T, Sandford P, eds, Chitin and Chitosan. London: Elsevier Applied Science, 1989;51-70
  40. Reynolds BL: Wound healing III: Artificial maturation of arrested regenerate with an acetylated amino sugar, Am Surgeon, 1960;26: 113-117
  41. Balassa LL, Prudden JF : Applications of chitin and chitosan in wound healing acceleration, In: Muzzarelli R.A., Pariser E.R., eds, Proceedings of the 1st International Conference on Chitin and Chitosan, Cambridge, MA: MIT Press, 1978
  42. Sapelli PL, Baldassare V, Muzzarelli RA, Emanuelli M: Chitosan in dentistry, Chitin in Nature and Technology, 1986;507-512
  43. Muzzarelli RA, Biagini G, Bellardini M, Simonelli L, Castaldini C, Fratto G: Osteoconduction exerted by methylpyrrolidinone chitosan used in dental surgery, Biomaterials, 1993;14: 39-43 https://doi.org/10.1016/0142-9612(93)90073-B
  44. Muzzarelli RA, Biagini G, Pugnaloni A, Filippini O, Baldassarre V: Reconstruction of parodontal tissue with chitosan, Biomaterials, 1989;10: 598-603 https://doi.org/10.1016/0142-9612(89)90113-0
  45. 계승범, 손성희, 최상묵: Chitosan과 chitosan-cellulose를 이용한 차폐막의 골조직 재생유도능력에 관한 연구, 대한치주과학회지, 1998;28: 611-630
  46. Lee ML, Park YJ, Lee SJ, Ku Y, Han SB, Choi SM, Klokkevold PR, Chung CP : Tissue Engineered Bone formation Using chitosan/tricalcium phosphate sponges, J Periodontol, 2000;71(3): 410-417 https://doi.org/10.1902/jop.2000.71.3.410
  47. Lee ML, Park YJ, Lee SJ, Ku Y, Han SB, Choi SM, Klokkevold PR, Chung CP : The Bone Regenerative effect of platalet-derived growth factor-BB delivered with a Chitosan/Tricalcium phosphate sponge carrier, J Periodontal, 2000;71(3): 418-424
  48. Caffesse RG, Smith BA, Castelli WA, Nasjleti CE : New attachment achieved by guided tissue regeneration in beagle dogs, J Periodontol, 1988;59(9): 589-594 https://doi.org/10.1902/jop.1988.59.9.589
  49. Nyman S, Gottlow J, Lindhe J , Karring T, Wennstrom J: New attachment formation by guided tissue regeneration, J Periodont Res, 1987;22(3): 252-254
  50. Iglhaut J, Aukhil I, Simpson DM, Johnston MC, Koch G : Progenitor cell kinetics during guided tissue regeneration in experimental periodontal wounds, J Periodont Res, 1988; 23: 107-117 https://doi.org/10.1111/j.1600-0765.1988.tb01342.x
  51. Araujo MG, Berblundh T, Lindhe J : GTR treatment of degree III furcation defects with 2 different resorbable barriers. An experimental study in dogs, J Clin Periodontol, 1998;25: 253-259 https://doi.org/10.1111/j.1600-051X.1998.tb02436.x
  52. Wikesjo ME, Claffey N, Nilveus R : Periodontal repair in dogs : Effect of root surface treatment with stannous fluoride or citric acid on root resorption, J Periodontol, 1991;62 : 180-184 https://doi.org/10.1902/jop.1991.62.3.180
  53. Minabe M : Acritical review for the biologic rational for guided tissue regeneration, J Periodontol, 1991;62:171-179 https://doi.org/10.1902/jop.1991.62.3.171