The effectiveness of dental implantation
Abstract
This article is a review of the current literature, which reflects data on the survival of dental implants and methods for predicting the effectiveness of their osseointegration. The article provides a review of the description of the mechanisms of bone damage and restoration during the installation of dental implants, as well as existing methods for monitoring the state of bone homeostasis in the implantation zone, including instrumental, biochemical, immunological and genetic techniques. The review also discusses the role of polymorphism of such genes as the type 1 collagen gene - Col1A1; matrix metalloproteinases: MMP1-1607insG and MMP9A-8202G; protease inhibitor - TIMP1C536T in predicting the success of osseointegrative processes.
About the Authors
D. N. LysovRussian Federation
Samara
M. V. Sofronov
Russian Federation
Samara
S. I. Bulanov
Russian Federation
Samara
References
1. Boriskina O.V. Obnaruzhenie prognosticheski znachimyh molekuljarno-geneticheskih markerov dlja rannej vysokotochnoj diagnostiki razvitija agressivnogo parodontita (Detection of prognostically significant molecular genetic markers for early high-precision diagnosis of the development of aggressive periodontitis) : avtoref. dis. … kand. med. nauk. Moscow, 2014:25 (in Russ)
2. Buzer D. Protokoly protezirovanija v implantologicheskoj stomatologii. Chastichnaja adentija (Prosthetics protocols in implantological dentistry. Partial adentia). Tver': Dental-Azbuka, 2011:168. (in Russ)
3. Bulanov S.I., Lysov A.D., Sofronov M.V. Substantiation of the use of connective tissue autograft in dental implantation. Bulletin of the Medical Institute «REAVIZ» (Rehabilitation, doctor and health). 2017;5:81-94. (in Russ)
4. Bykov I.M., Ladut'ko A.A, Esaulenko E.E., Erichev I.V. Biohimija rotovoj i desnevoj zhidkosti : uchebnoe posobie (Biochemistry of oral and gingival fluid : a textbook): Kubanskij gosudarstvennyj medicinskij universitet. Krasnodar: Kachestvo, 2008:99. (in Russ)
5. Gracheva O.V. Diagnostika i lechenie oslozhnenij dental'noj implantacii, svjazannyh s narusheniem funkcij nizhnego al'veoljarnogo nerva (Diagnosis and treatment of complications of dental implantation associated with impaired functions of the inferior alveolar nerve) : avtoref. dis. … kand. med. nauk. Moskva, 2011:23. (in Russ)
6. Kulakov AA, Grigoryan AS, Arkhipov AV. Impact of surface modifications of dental implants on their integration potential. Stomatology. 2012;91(6):75-77. (In Russ.)
7. Kulakov AA, Gvetadze RSh, Braĭlovskaia TV, Khar’kova AA, Dzikovitskaya LS. Modern approaches to dental implants placement in deficient alveolar bone. Stomatology. 2017;96(1):43-45. (In Russ.)
8. Linkevicius, T. Nulevaja utrata kosti (Zero bone loss). St. Petersburg: Dental-Azbuka, 2020:281. (in Russ)
9. Lysov D.N., Zarubina E.G. Clinical and laboratory features of bone homeostasis in uncomplicated installation of dental implants. Bulletin of the Medical Institute «Reaviz». 2018;4:106-112. (in Russ)
10. Lysov D.N. [et al.]. Clinical and laboratory features of the postoperative period during dental implantation. Dental Forum. 2020;1(76):21-27. (in Russ)
11. Mish K. Ortopedicheskoe lechenie s oporoj na dental'nye implantanty (Orthopedic treatment based on dental implants). Moscow: Azbuka, 2010:616. (in Russ)
12. Renwert S., Giovagnoli G.- L. Periimplantit (Peri-Implantitis). Moscow: Alphabet, 2014:255. (in Russ)
13. Rogatskin D.V. Konusno-luchevaja komp'juternaja tomografija. Osnovy vizualizacii (Cone-beam computed tomography. Fundamentals of visualization). Lviv: «GalDent», 2010:146. (in Russ)
14. Rozhko P.D. Clinical effectiveness of therapeutic and preventive measures to accompany orthopedic treatment of patients with diabetes mellitus. Medical Sciences. Colloquium-journal. 2020;29(81):28-32. (in Russ)
15. Sofronov MV, Kuznetsov MV, Bulanov SI, Zarubina EG, Lysov DN. Clinical and laboratory parameters of the postoperative period of dental implantation using a navigation template in patients with chronic obstructive pulmonary disease. Russian Journal of Stomatology. 2023;16(2):13-22. (In Russ.)
16. Ushakov A.A. Dental'naja implantologija. Vchera, segodnja. Zavtra (Dental implantology. Yesterday, today. Tomorrow). Dental Times. 2014;19. [Electronic resourse] URL: http://www.dentaltimes.ru/news/archive/y2014/y2014_53.html (in Russ)
17. Ushakov AI, Yur’ev ЕM. Dental implantation and the choice of the osteoplastic materials taking into consideration the type of the bone tissue of human jaws. Russian Journal of Stomatology. 2016;9(2):12-17. (In Russ.)
18. Tsitsiashvili A.M., Gurevich K.G., Panin A.M., Akimochkina L.A. Quality of life of patients with partially edentolous atrophy jaws getting dental implant treatment. System analysis and management in biomedical systems. 2019;4:138-143. (in Russ)
19. Yakimenko R.O. Creation of 3D models of jaw fragments based on the results of computed tomography for effective implantation. East European Journal of Advanced Technologies. 2010;5:63-65. (in Russ)
20. Abuhussein H., Pagni G., Rebaudi F. The effect of thread pattern upon implant osseointegration. Clin Oral Implants Res. 2010;21(2):129-136. (in Engl)
21. Boraas JC, Messer LB, Till MJ. A genetic contribution to dental caries, occlusion, and morphology as demonstrated by twins reared apart. Dent Res. 1988, Sep;67 (9):1150-1158. (in Engl)
22. Uematsu, T., Nariyama M, Shimizu K, Maeda T. Mapping of affected gene(s) to dental caries susceptibility on mouse chromosome 2. Pediatr Dent J. 2003 Jan.;13(1):75-81. (in Engl)
23. Vieira A.R. Genetics and Caries – Prospects. Braz. Oral Res. 2012;26:7-9. (in Engl)
Review
For citations:
Lysov D.N., Sofronov M.V., Bulanov S.I. The effectiveness of dental implantation. Bashkortostan Medical Journal. 2024;19(5):90-95. (In Russ.)