DOI:

10.37988/1811-153X_2023_3_100

Immediate denture with printed polymethylmethacrylate dentition and polyethylene terephthalate denture base: a clinical case

Authors

  • E.A. Chizhmakov 1, assistant at the Propaedeutics and prosthodontics technology Department
    ORCID: 0000-0003-1313-3307
  • E.G. Zherebtsov 2, dentist
    ORCID: 0009-0004-0345-9244
  • M.A. Galankina 1, 5th year student at the Dental Faculty
    ORCID: 0000-0001-9713-7422
  • A.S. Arutyunov 1, PhD in Medical Sciences, full professor of the Propaedeutics and prosthodontics technology Department
    ORCID: 0000-0002-2655-6707
  • 1 Moscow State University of Medicine and Dentistry, 127473, Moscow, Russia
  • 2 Dental Clinic MARS-53, 127474, Moscow, Russia

Abstract

Despite its widespread use, the traditional method of treatment with removable dentures has a number of disadvantages. These are considerable labor intensity of production, necessity of moving the base of the construction during the period of wound healing and formation of the prosthetic bed, unsatisfactory biocompatibility due to the presence of residual monomer after polymerization of polymethylmethacrylate (PMMA) material, etc. At the same time, computer technologies are actively integrated, which allow optimization of clinical and laboratory steps, thus shortening the treatment period, expanding the range of construction materials, as well as manufacturing technologies of dental prostheses. The article describes a clinical case of a patient who required planned extraction of all teeth. The main stages of treatment included simultaneous extraction of the teeth, direct application of a prefabricated immediate prosthesis, and subsequent fabrication of a final fully removable plate prosthesis. All clinical and laboratory steps were based on the use of CAD/CAM systems, which allowed the creation of a hybrid design of the immediate prosthesis as a prototype for the final prosthesis with a polyethylene terephthalate (PET) base and a printed PMMA denture. Follow-up examinations on days 1, 7, and 30 (after placement of the final prosthesis) revealed no complaints from the patient and no functional and/or structural abnormalities.
Conclusion.
The analog-digital approach to prosthetic treatment of patients requiring simultaneous extraction of all teeth, using the developed constructions with PET base and printed dentures, makes it possible to eliminate the need for traditional base corrections by relining, shorten the period of wound healing and denture bed tissue remodeling, and improve the conditions for the patient‘s rapid adaptation to the final fully removable dentures.

Key words:

denture base, artificial teeth, polymethyl methacrylate, polyethylene terephthalate, immediat denture, complete removable dentures

For Citation

[1]
Chizhmakov E.A., Zherebtsov E.G., Galankina M.A., Arutyunov A.S. Immediate denture with printed polymethylmethacrylate dentition and polyethylene terephthalate denture base: a clinical case. Clinical Dentistry (Russia).  2023; 26 (3): 100—109. DOI: 10.37988/1811-153X_2023_3_100

References

  1. Arutyunov A.S., Shanidze Z.L., Tsareva E.V., Arutyunov S.D. Prosthodontic treatment of edentulous patients with postoperative mandibular defects of oncological origin. Stomatology. 2018; 1: 54—58 (In Russian). eLIBRARY ID: 32449471
  2. Arutyunov S.D., Grachev D.I., Martynenko A.V. The medical social work with individuals of elderly and senile age with total loss of teeth. Problems of Social Hygiene, Public Health and History of Medicine. 2021; 3: 509—513 (In Russian). eLIBRARY ID: 46230510
  3. Arutyunov S.D., Muslov S.A., Ruzuddinov N.S., Chizhmakov E.A., Grachev D.I., Kharakh Y.N., Nersesov G.S. Quality of life of patients with total loss of teeth and psychometric properties of the OHIP-20 DG enquireR. Part 2. Monitoring stages of dental orthopedic treatment. Russian Journal of Dentistry. 2021; 5: 399—408 (In Russian). eLIBRARY ID: 48846045
  4. Arutyunov S.D., Solovykh Ye.A., Molchanov K.A. Psychological peculiarities of elderly patients and their manifestations during dental treatment. Russian Journal of Dentistry. 2008; 2: 46—50 (In Russian). eLIBRARY ID: 11576115
  5. Dawid M.T., Moldovan O., Rudolph H., Kuhn K., Luthardt R.G. Technical complications of removable partial dentures in the moderately reduced dentition: A systematic review. Dent J (Basel). 2023; 11 (2): 55. PMID: 36826200
  6. Grachev D.I., Tsarev V.N., Majidova E.R., Malginov N.N., Zolotnisky I.V., Tsimbalistov A.V., Voytyatskaya I.V., Chuev V.P., Arutyunov S.D. Physical, mechanical and microbiological characteristics of the first domestic base material hybrid polymerization. Clinical Dentistry (Russia). 2021; 1 (97): 144—148 (In Russian). eLIBRARY ID: 44847642
  7. Tsimbalistov A.V., Soboleva A.V., Tsarev V.N., Zolotnitsky I.V., Dubova L.V., Malginov N.N., Dobrovolsky P.V., Chuev V.P., Arutyunov S.D. Clinical efficacy of removable dentures made of Nolatec photopolymeric base substance. Clinical Dentistry (Russia). 2020; 2 (94): 121—125 (In Russian). eLIBRARY ID: 43125616
  8. Goiato M.C., Freitas E., dos Santos D., de Medeiros R., Sonego M. Acrylic resin cytotoxicity for denture base Literature review. Adv Clin Exp Med. 2015; 24 (4): 679—86. PMID: 26469114
  9. Raszewski Z. Influence of polymerization method on the cytotoxicity of three different denture base acrylic resins polymerized in different methods. Saudi J Biol Sci. 2020; 27 (10): 2612—2616. PMID: 32994718
  10. Arutyunov S.D., Ibragimov T.I., Tsarev V.N., Lebedenko I.Yu., Savkina N.I., Trefilov A.G., Arutyunov A.S., Klimashin Yu.I. Microbiological validation of the choice of basic plastic for removable dentures. Stomatology. 2002; 3: 4—8 (In Russian). eLIBRARY ID: 46305479
  11. Arutyunov S.D., Ippolitov E.V., Pivovarov A.A., Tsarev V.N. Relationship between basic dental polymethyl methacrylate polymer roughness and surface topography and microbial biofilm formation using different polishing techniques. Kazan Medical Journal. 2014; 2: 224—231 (In Russian). eLIBRARY ID: 21701499
  12. Arutyunov S.D., Chumachenko Ye.N., Yanushevich O.O., Lebedenko I.Yu., Ignatyeva D.N., Losev F.F., Ibragimov T.I., Malginov N.N. The use of information technologies to choose rational dental prosthesis constructions. Russian Journal of Dentistry. 2010; 3: 19—22 (In Russian). eLIBRARY ID: 15169968
  13. Tsarev V.N., Ippolitov E.V., Trefilov A.G., Arutyunov S.D., Pivovarov A.A. Features of adhesion of anaerobic periodontopathogenic bacteria and Candida albicans fungi to experimental samples of basis dental plastic depending on surface roughness and polishing method. Journal of Microbiology, Epidemiology and Immunobiology. 2014; 6: 21—27 (In Russian). eLIBRARY ID: 23492909
  14. Arutyunov S., Kirakosyan L., Dubova L., Kharakh Y., Malginov N., Akhmedov G., Tsarev V. Microbial adhesion to dental polymers for conventional, computer-aided subtractive and additive manufacturing: A comparative in vitro study. J Funct Biomater. 2022; 13 (2): 42. PMID: 35466224
  15. Arutyunov S.D., Grachev D.I., Nikitin A.D. Mathematical modelling on the fracture of a laminar prosthesis basis under natural chewing loads. IOP Conference Series: Materials Science and Engineering. 2020; 747: 012065. DOI: 10.1088/1757-899X/747/1/012065
  16. Arutyunov S.D., Nikitin A.D., Grachev D.I., Bagdasaryan G.G. Critical stress analysis for the basis of a denture prosthesis. IOP Conference Series: Materials Science and Engineering. 2020; 927: 012008. DOI: 10.1088/1757-899X/927/1/012008
  17. Grachev D.I., Ruzuddinov N.S., Arutyunov A.S., Akhmedov G.D., Dubova L.V., Kharakh Y.N., Panin S.V., Arutyunov S.D. Algorithm for designing a removable complete denture (RCD) based on the FEM analysis of its service life. Materials (Basel). 2022; 15 (20): 7246. PMID: 36295314
  18. Sunbuloglu E. Stress analysis of a complete maxillary denture under various drop impact conditions: a 3D finite element study. Comput Methods Biomech Biomed Engin. 2015; 18 (14): 1543—54. PMID: 24945936
  19. Çaykara T., Sande M.G., Azoia N., Rodrigues L.R., Silva C.J. Exploring the potential of polyethylene terephthalate in the design of antibacterial surfaces. Med Microbiol Immunol. 2020; 209 (3): 363—372. PMID: 32037497
  20. Galo Silva G., Valente M.L.D.C., Bachmann L., Dos Reis A.C. Use of polyethylene terephthalate as a prosthetic component in the prosthesis on an overdenture implant. Mater Sci Eng C Mater Biol Appl. 2019; 99: 1341—1349. PMID: 30889668
  21. Hamanaka I., Takahashi Y., Shimizu H. Mechanical properties of injection-molded thermoplastic denture base resins. Acta Odontol Scand. 2011; 69 (2): 75—9. PMID: 20873995
  22. Hamanaka I., Takahashi Y., Shimizu H. Properties of injection-molded thermoplastic polyester denture base resins. Acta Odontol Scand. 2014; 72 (2): 139—44. PMID: 24255964
  23. Kawara M., Iwata Y., Iwasaki M., Komoda Y., Iida T., Asano T., Komiyama O. Scratch test of thermoplastic denture base resins for non-metal clasp dentures. J Prosthodont Res. 2014; 58 (1): 35—40. PMID: 24332086
  24. Wada J., Fueki K., Yatabe M., Takahashi H., Wakabayashi N. A comparison of the fitting accuracy of thermoplastic denture base resins used in non-metal clasp dentures to a conventional heat-cured acrylic resin. Acta Odontol Scand. 2015; 73 (1): 33—7. PMID: 25314120
  25. Yanushevich O.O., Kirakosyan L.G., Sokolov E.V., Kostyrin E.V., Zolotnitsky I.V., Bagdasaryan G.G., Malginov N.N., Kharakh Ya.N., Arutyunov S.D. Economic efficiency of the use of three-dimensional printing in the manufacturing technology of fixed prostheses-prototypes. Economics and management: problems, solutions. 2022; 8 (128): 111—132 (In Russian). eLIBRARY ID: 49344103
  26. Mubaraki M.Q., Moaleem M.M.A., Alzahrani A.H., Shariff M., Alqahtani S.M., Porwal A., Al-Sanabani F.A., Bhandi S., Tribst J.P.M., Heboyan A., Patil S. Assessment of conventionally and digitally fabricated complete dentures: A comprehensive review. Materials (Basel). 2022; 15 (11): 3868. PMID: 35683165
  27. Kirakosyan L.G., Varukha A.P., Antonik P.M., Arutyunov A.S., Timoshchenko M.V. Clinical effectiveness of fixed polymer prototype prostheses: a randomized controlled trial. Parodontologiya. 2022; 3: 272—284 (In Russian). eLIBRARY ID: 49556590
  28. Alalawi H., Al-Qarni F.D., Gad M.M. Comparative evaluation of the accuracy of 3D-printed denture teeth. Saudi Dent J. 2023; 35 (4): 365—371. PMID: 37251714
  29. Deng K., Chen H., Wei W., Wang X., Sun Y. Accuracy of tooth positioning in 3D-printing aided manufactured complete dentures: An in vitro study. J Dent. 2023; 131: 104459. PMID: 36804581
  30. Van Assche N., Van Essche M., Pauwels M., Teughels W., Quirynen M. Do periodontopathogens disappear after full-mouth tooth extraction? J Clin Periodontol. 2009; 36 (12): 1043—7. PMID: 19930094
  31. Balmasova I.P., Tsarev V.N., Yushchuk E.N., Dorovskikh A.S., Malova E.S., Karakov K.G., Elbekyan K.S., Arutyunov S.D. Periodontal diseases and atherosclerosis: microecological, metabolic and immunological mechanisms of interconnection. Immunologiya. 2020; 4: 370—380 (In Russian). eLIBRARY ID: 44074053
  32. Kerimov Kh.N., Arutyunov S.D., Malova E.S., Morozov V.G., Degtyareva Y.S., Kharakh Y.N., Balmasova I.P., Tsarev V.N. Periodontal diseases and non-alcoholic fatty liver disease. Parodontologiya. 2022; 1: 4—12 (In Russian). eLIBRARY ID: 48074251
  33. Balmasova I.P., Lomakin Y.A., Babaev E.A., Tsarev V.N., Gabibov A.G., Smirnov I.V., Knorre V.D., Ovchinnikova L.A., Gnuchev N.V., Khurs E.N., Deev M.S., Kostin N.N., Arutyunov S.D. “Shielding” of cytokine induction by the periodontal microbiome in patients with periodontitis associated with type 2 diabetes mellitus. Acta Naturae. 2019; 11 (4): 79—87. PMID: 31993238
  34. Balmasova I.P., Olekhnovich E.I., Klimina K.M., Korenkova A.A., Vakhitova M.T., Babaev E.A., Ovchinnikova L.A., Lomakin Y.A., Smirnov I.V., Tsarev V.N., Mkrtumyan A.M., Belogurov A.A. Jr, Gabibov A.G., Ilina E.N., Arutyunov S.D. Drift of the subgingival periodontal microbiome during chronic periodontitis in type 2 diabetes mellitus patients. Pathogens. 2021; 10 (5): 504. PMID: 33922308
  35. Martínez-García M., Hernández-Lemus E. Periodontal inflammation and systemic diseases: An overview. Front Physiol. 2021; 12: 709438. PMID: 34776994
  36. Patil S., Licari F.W., Bhandi S., Awan K.H., Badnjević A., Belli V., Cervino G., Minervini G. The cytotoxic effect of thermoplastic denture base resins: A systematic review. J Funct Biomater. 2023; 14 (8): 411. PMID: 37623656
  37. Rashid H., Sheikh Z., Vohra F. Allergic effects of the residual monomer used in denture base acrylic resins. Eur J Dent. 2015; 9 (4): 614—619. PMID: 26929705
  38. Tsareva T.V., Kirakosyan L.G., Grachev D.I., Krasheninnikov S.V., Chizhmakov E.A., Kharah Y.N., Tsarev V.N., Arutyunov S.D. The clinical significance of adhesion of representatives of the oral microbiota to polymer materials recommended for dental technology of computer milling and 3D printing. Clinical Dentistry (Russia). 2020; 3 (95): 113—118 (In Russian). eLIBRARY ID: 44008077
  39. Srinivasan M., Chien E.C., Kalberer N., Alambiaga Caravaca A.M., Castelleno A.L., Kamnoedboon P., Sauro S., Özcan M., Müller F., Wismeijer D. Analysis of the residual monomer content in milled and 3D-printed removable CAD-CAM complete dentures: an in vitro study. J Dent. 2022; 120: 104094. PMID: 35301079
  40. Manin O.I., Dubova L.V., Romodanovskiy P.O. Comparative assessment of individual sensitivity to structural materials of removable dentures in patients with intolerance phenomena. Russian Stomatology. 2022; 3: 51—52 (In Russian). eLIBRARY ID: 49387855

Received

August 23, 2023

Accepted

September 3, 2023

Published on

September 24, 2023