2020, Number 3
Alveolar biomodification as an indispensable procedure before guided bone regeneration
Language: English
References: 15
Page: 1-11
PDF size: 657.41 Kb.
ABSTRACT
Introduction: The placement of dental implants is based on the creation of optimal conditions in the remnant bone. In some cases, it is indispensable to perform bone regeneration procedures and use barrier membranes to create such optimal conditions capable of favorably supporting the dental implant.Objective: Describe alternatives of barrier membranes in cases of guided bone regeneration.
Case report: A female 53-year-old patient presents with a gingival fistula attached to tooth 14. Root fracture is diagnosed and extraction is conducted. Next, alveolar biomodification is performed to carry out guided bone regeneration and placement of a fibrin-rich plasma membrane. When healing is complete dental implants will be placed.
Conclusions: The use of barrier membrane alternatives has shown to be effective in cases of guided bone regeneration.
REFERENCES
Mangano C, Shibli JA, Pires JT, Luongo G, Piattelli A, Iezzi G. Early Bone Formation around Immediately Loaded Transitional Implants Inserted in the Human Posterior Maxilla: The Effects of Fixture Design and Surface. Biomed Res Int. 2017 [access: 23/02/2019]; 2017:1-8. Available at: https://www.hindawi.com/journals/bmri/2017/4152506/abs/
Gómez Arcila V, Benedetti Angulo G, Castellar Mendoza C, Fang Mercado L, Díaz Caballero A. Regeneración ósea guiada: nuevos avances en la terapéutica de los defectos óseos. Rev Cubana Estomatol. 2014 [Access: 23/02/2019]; 51(2):187-94. Available at: http://scielo.sld.cu/scielo.php?script=sci_arttext&pid=S0034-75072014000200007
Prins H-J, Schulten EA, Ten Bruggenkate CM, Klein-Nulend J, Helder MN. Bone regeneration using the freshly isolated autologous stromal vascular fraction of adipose tissue in combination with calcium phosphate ceramics. Stem Cells Transl Med. 2016 [access: 23/02/2019];5(10):1362-74. Available at: https://onlinelibrary.wiley.com/doi/pdf/10.5966/sctm.2015-0369
Solórzano MFM, Yumi LFN, Peñaherrera MS. Regeneración de tejidos periradiculares mediante tratamiento endodóntico y cirugía paraendodóntica, regeneración ósea guiada (plasma rico en fibrina). POCAIP. 2017 [access: 23/02/2019];3(1):331-45. Available at: https://dialnet.unirioja.es/servlet/articulo?codigo=5802902
Peer F. Comparing clinical outcomes of connective tissue grafts to platelet rich fibrin in gingival recession treatment: an extended case series. [Tesis of Master]: [Johannesburgo]: University of the Witwatersrand, 2018. [access: 28/02/2018] Available at: http://wiredspace.wits.ac.za/bitstream/handle/10539/25233/Research%20Report%20for%20final%20submission.pdf?sequence=1&isAllowed=y
Chakraborti M, Jackson JK, Plackett D, Brunette DM, Burt HM. Drug intercalation in layered double hydroxide clay: Application in the development of a nanocomposite film for guided tissue regeneration. Int J Pharm. 2011 [access: 23/02/2019];416(1):305-13. Available at: https://www.sciencedirect.com/science/article/pii/S0378517311005503
Echeverri CM, Baquero AE, Santos FB. Evaluación clínica comparativa del tratamiento de la periodontitis moderada o severa con y sin aplicación local de Tetraciclina (HCL). Rev Fac Odontol Univ Antioq. 2016 [access: 23/02/2019];7(2). Available at: http://rccp.udea.edu.co/index.php/odont/article/view/323293
Shahi R, Albuquerque M, Münchow E, Blanchard S, Gregory R, Bottino M. Novel bioactive tetracycline-containing electrospun polymer fibers as a potential antibacterial dental implant coating. Odontology. 2017 [access: 23/02/2019];105(3):354-63. Available at: https://link.springer.com/article/10.1007/s10266-016-0268-z
Golub LM, Elburki MS, Walker C, Ryan M, Sorsa T, Tenenbaum H, et al. Non-antibacterial tetracycline formulations: host-modulators in the treatment of periodontitis and relevant systemic diseases. Int Dent J. 2016 [access 23/02/2019];66(3):127-35. Available at: https://onlinelibrary.wiley.com/doi/abs/10.1111/idj.12221