Otwarty dostęp

The link between Noncarious Cervical Lesions (NCCL) and gingival recession. Etiology and treatment. A narrative review.


Zacytuj

Galvão ADM, Gonzaga RCQ, Oliveira MAVC, Machado AC, Barbosa GLR, Soares PV, Silva GRD. Can non-carious cervical lesions depth affect clinical response in pain intensity and remaining dentin thickness? Braz Dent J. 2022 Sep-Oct;33(5):108-115. Search in Google Scholar

Ali AST, Varghese SS, Shenoy RP. Association Between Cervical Abrasion, Oral Hygiene Practices and Buccolingual Dimension of Tooth Surfaces: A Cross-Sectional Study. J Pharm Bioallied Sci. 2022 Jul;14(Suppl 1):S403-S409. Search in Google Scholar

Grippo JO, Simring M, Coleman TA. Abfraction, abrasion, biocorrosion, and the enigma of noncarious cervical lesions: a 20-year perspective. J Esthet Restor Dent. 2012 Feb;24(1):10-23. Search in Google Scholar

Deepika BA, Ramamurthy J. Evaluation of occlusal pattern in periodontitis patients using T-scan analysis. J Adv Pharm Technol Res. 2022 Nov;13(Suppl 1):S265-S271. Search in Google Scholar

Gomes RR, Zeola LF, Barbosa TAQ, Fernandes Neto AJ, de Araujo Almeida G, Soares PV. Prevalence of non-carious cervical lesions and orthodontic treatment: a retrospective study. Prog Orthod. 2022 May 16;23(1):17. Search in Google Scholar

Rusu Olaru A, Popescu MR, Dragomir LP, Popescu DM, Arsenie CC, Rauten AM. Identifying the Etiological Factors Involved in the Occurrence of Non-Carious Lesions. Curr Health Sci J. 2019 Apr-Jun;45(2):227-234. Search in Google Scholar

Kitasako Y, Ikeda M, Takagaki T, Burrow MF, Tagami J. The prevalence of non-carious cervical lesions (NCCLs) with or without erosive etiological factors among adults of different ages in Tokyo. Clin Oral Investig. 2021 Dec;25(12):6939-6947. Search in Google Scholar

Lussi A, Schlueter N, Rakmatullina E, Ganss C: Dental erosion–an overview with emphasis on chemical and histopathological aspects. Caries Res, 2011; 45 (Suppl 1), 2–12, 2011. Search in Google Scholar

Bartlett DW, Shah P: A critical review of noncarious cervical (wear) lesions and the role of abfraction, erosion, and abrasion. J Dent Res, 2006; 85:306–312. Search in Google Scholar

Worawongvasu R. Scanning electron microscope characterization of noncarious cervical lesions in human teeth. J Oral Maxillofac Pathol. 2021 Jan-Apr;25(1):202. Search in Google Scholar

Badavannavar AN, Ajari S, Nayak KUS, Khijmatgar S. Abfraction: Etiopathogenesis, clinical aspect, and diagnostic-treatment modalities: A review. Indian J Dent Res. 2020 Mar-Apr;31(2):305-311. Search in Google Scholar

Hayashi M, Kubo S, Pereira PNR, Ikeda M, Takagaki T, Nikaido T, Tagami J. Progression of non-carious cervical lesions: 3D morphological analysis. Clin Oral Investig. 2022 Jan;26(1):575-583. Search in Google Scholar

Sirous S, Navadeh A, Ebrahimgol S, Atri F. Effect of preparation design on marginal adaptation and fracture strength of ceramic occlusal veneers: A systematic review. Clin Exp Dent Res. 2022 Dec;8(6):1391-1403. Search in Google Scholar

Haralur SB, Alqahtani AS, AlMazni MS, Alqahtani MK. Association of Non-Carious Cervical Lesions with Oral Hygiene Habits and Dynamic Occlusal Parameters. Diagnostics (Basel). 2019 Apr 12;9(2):43. Search in Google Scholar

Teixeira DNR, Thomas RZ, Soares PV, Cune MS, Gresnigt MMM, Slot DE. Prevalence of noncarious cervical lesions among adults: A systematic review. J Dent. 2020 Apr;95:103285. Search in Google Scholar

Al-Khalifa KS. The Prevalence of Tooth Wear in an Adult Population from the Eastern Province of Saudi Arabia. Clin Cosmet Investig Dent. 2020 Nov 17;12:525-531. Search in Google Scholar

Kothari S, Ranjan M, Ganesh B. Association of age and gender of patients undergoing class V tooth coloured restoration in maxillary teeth. Bioinformation. 2020 Dec 31;16(12):1121-1127 Search in Google Scholar

Marinescu IR, Popescu SM, Răghici EC, Scrieciu M, Mercuț V, Turcu AA, Nicola AG. Etiological Aspects of Noncarious Dental Lesions. Curr Health Sci J. 2017 Jan-Mar;43(1):54-61. Search in Google Scholar

Peumans M, Politano G, Van Meerbeek B. Treatment of noncarious cervical lesions: when, why, and how. Int J Esthet Dent. 2020;15(1):16-42. PMID: 31994534. Search in Google Scholar

Barnhart EC, Campbell PM, Noureldin A, Julien K, Buschang PH. The quality of etched enamel in different regions and tooth types and its significance in bonding and the development of white spot lesions. Angle Orthod. 2021 Sep 1;91(5):576-582. Search in Google Scholar

Dzakovich JJ, Oslak RR: In vitro reproduction of noncarious cervical lesions, Journal of Prosthetic Dentistry, 2008, 100(1):1–10. Search in Google Scholar

Fischer VL, Winkler DE, Głogowski R, Attin T, Hatt JM, Clauss M, Wegehaupt F. Species-specific enamel differences in hardness and abrasion resistance between the permanent incisors of cattle (Bos primigenius taurus) and the ever-growing incisors of nutria (Myocastor coypus). PLoS One. 2022 Mar 17;17(3):e0265237. Search in Google Scholar

Borges AB, Santos LF, Augusto MG, Bonfiette D, Hara AT, Torres CR. Toothbrushing abrasion susceptibility of enamel and dentin bleached with calcium-supplemented hydrogen peroxide gel. J Dent. 2016 Jun;49:54-9. Search in Google Scholar

Donovan T, Nguyen-Ngoc C, Abd Alraheam I, Irusa K. Contemporary diagnosis and management of dental erosion. J Esthet Restor Dent. 2021 Jan;33(1):78-87. Search in Google Scholar

Crastechini E, Borges AB, Torres C. Effect of Remineralizing Gels on Microhardness, Color and Wear Susceptibility of Bleached Enamel. Oper Dent. 2019 Jan/Feb;44(1):76-87. Search in Google Scholar

Sobral-Souza DF, Gouveia THN, Ortiz MIG, Condeles AL, Junior JCT, Franz-Montan M, Aguiar FHB, Lima DANL. Altered physical-chemical properties of home bleaching gels after an accelerated stability study and their effects on tooth enamel. Clin Oral Investig. 2022 Dec;26(12):7229-7242. Search in Google Scholar

Pinelli MD, Catelan A, de Resende LF, Soares LE, Aguiar FH, Liporoni PC. Chemical composition and roughness of enamel and composite after bleaching, acidic beverages and toothbrushing. J Clin Exp Dent. 2019 Dec 1;11(12):e1175-e1180. Search in Google Scholar

Nascimento MM, Dilbone DA, Pereira PNR: Abfraction lesions: etiology, diagnosis, and treatment options. Clin Cosm and Invest Dent, 8:79-87, 2016. Search in Google Scholar

Rees JS. The biomechanics of abfraction. Proc Inst Mech Eng H. 2006 Jan;220(1):69-80. Search in Google Scholar

Silva AG, Martins CC, Zina LG et al: The association between occlusal factors and noncarious cervical lesions: a systematic review. J Dent, 41(1):9–16, 2013. Search in Google Scholar

Cairo F, Nieri M, Cincinelli S, Mervelt J, Pagliaro U. The interproximal clinical attachment level to classify gingival recessions and predict root coverage outcomes: an explorative and reliability study. J Clin Periodontol. 2011;38:661–666. Search in Google Scholar

Cortellini P, Bissada NF. Mucogingival conditions in the natural dentition: Narrative review, case definitions, and diagnostic considerations. J Clin Periodontol. 2018 Jun;45 Suppl 20:S190-S198. Search in Google Scholar

Yang SE, Lee HJ, Jin SH: A combined approach to non-carious cervical lesions associated with gingival recession. Rest Dent and End, 41(3):218-224, 2016. Search in Google Scholar

Zucchelli G, Gori G, Mele M, Stefanini M: Non-Carious Cervical Lesions Associated With Gingival Recessions: A Decision-Making Process. J Perio, 82(12):1713-1724, 2011. Search in Google Scholar

Zucchelli G, Testori T, De Sanctis M: Clinical and anatomical factors limiting treatment outcomes of gingival recession: A new method to predetermine the line of root coverage. J Perio, 77:714-721, 2006. Search in Google Scholar

Chu FC, Yip HK, Newsome PR, Chow TW, Smales RJ. Restorative management of the worn dentition: I. Aetiology and diagnosis. Dent Update. 2002 May;29(4):162-8. Search in Google Scholar

Milosevic A, O'Sullivan E; Royal College of Surgeons of England. Diagnosis, prevention and management of dental erosion: summary of an updated national guideline. Prim Dent Care. 2008 Jan;15(1):11-2. Search in Google Scholar

Zucchelli G, Mele M, Stefanini M, Mazzotti C: Predetermination of Root Coverage. J Perio, 2010, 81(7):1019-1026. Search in Google Scholar

Takei H, Azzi R: Periodontal plastic and esthetic surgery. In: Newman MG, Takei HH, Carranza FA, editors. Carranza’s Clinical Periodontology, 2002, p. 804 Search in Google Scholar

Takei H, Azzi R, Han J: Periodontal plastic and esthetic surgery. In: Newman MG, Takei HH, Carranza FA, editors. Carranza’s Clinical Periodontology, 2006, p. 1005 Search in Google Scholar

Chambrone L, Tatakis DN. Periodontal soft tissue root coverage procedures: a systematic review from the AAP Regeneration Workshop. J Periodontol. 2015 Feb;86(2 Suppl):S8-51. Search in Google Scholar

Cairo F, Nieri M, Pagliaro U. Efficacy of periodontal plastic surgery procedures in the treatment of localized facial gingival recessions. A systematic review. J Clin Periodontol. 2014 Apr;41 Suppl 15:S44-62. Search in Google Scholar

Nanavati B, V Bhavsar N, Jaydeepchandra M. Coronally Positioned Flap for Root Coverage: Comparison between Smokers and Nonsmokers. J Int Oral Health. 2013 Apr;5(2):21-7. Search in Google Scholar

Mitra D, Kandawalla S, Potdar P, Patil S, Naniwadekar A, Shetty G. Evaluation of the efficacy of sticky bone and concentrated growth factor membrane along with a coronally advanced flap as compared to coronally advanced flap alone in the treatment of Miller's Class I and Class II gingival recession defects. J Indian Soc Periodontol. 2022 Nov-Dec;26(6):577-584. Search in Google Scholar

Martu S. Managementul terapeutic chirurgical al recesiunii gingivale. Date din literatura. Rom J of Med and Dent Educ, 2015, 4(1):36-43. Search in Google Scholar

Ahmedbeyli C, Ipci SD, Cakar G, Yilmaz S: Laterally positioned flap along with acellular dermal matrix graft in the management of maxillary localized recessions. Clin Oral Invest, 2019, 23:595-601, Search in Google Scholar

Chambrone LA, Chambrone L. Treatment of Miller Class I and II localized recession defects using laterally positioned flaps: a 24-month study. Am J Dent. 2009 Dec;22(6):339-44. Search in Google Scholar

Zucchelli G, Cesari C, Amore C, Montebugnoli L, De Sanctis M. Laterally moved, coronally advanced flap: a modified surgical approach for isolated recession-type defects. J Periodontol. 2004 Dec;75(12):1734-41. Search in Google Scholar

Zucchelli G. Mucogingival Esthetic Surgery, Hardcover, 2013, p. 330. Search in Google Scholar

Hwang D, Wang HL: Flap thickness as a predictor of root coverage: a systematic review. J Perio, 2006, 77(10):1625–1634. Search in Google Scholar

Imber JC, Kasaj A. Treatment of Gingival Recession: When and How? Int Dent J. 2021 Jun;71(3):178-187. Search in Google Scholar

Camargo PM, Melnick PR, Kenney EB. The use of free gingival grafts for aesthetic purposes. J Perio, 2001, 27:72-96. Search in Google Scholar

Griffin TJ, Cheung WS, Zavras AI, Damoulis PD: Post-operative complications following gingival augmentation procedures. J Perio, 2006, 77:2070-2079. Search in Google Scholar

Berlucchi I, Francetti L, Del Fabbro M, Basso M, Weinstein RL: The influence of anatomical features on the outcome of gingival recessions treated with coronally advanced flap and enamel matrix derivative: a 1-year prospective study. J Perio, 2005, 76(6):899-907. Search in Google Scholar

Goyal L, Gupta ND, Gupta N, Chawla K: Free Gingival Graft as a Single Step Procedure for Treatment of Mandibular Miller Class I and II Recession Defects Lata Goyal. World J of Plastic Surgery, 2019, 8(1):12-17. Search in Google Scholar

Shah R, Thomas R, Mehta DS. Recent modifications of free gingival graft: A case series. Contemp Clin Dent. 2015 Jul-Sep;6(3):425-7. Search in Google Scholar

Cortellini P, Tonetti M, Prato GP. The partly epithelialized free gingival graft (pe-fgg) at lower incisors. A pilot study with implications for alignment of the mucogingival junction. J Clin Periodontol. 2012 Jul;39(7):674-80. Search in Google Scholar

Lopes TR, Machado CN, Rogacheski MC, Verbicaro T, Giovanini AF, Deliberador TM: Aesthetic improvements in free gingival graft due to its association with frenectomy. RSBO (online). 2013, 10:135-142. Search in Google Scholar

Ripoll S, Fernández de Velasco-Tarilonte A, Bullón B, Ríos-Carrasco B, Fernández-Palacín A. Complications in the Use of Deepithelialized Free Gingival Graft vs. Connective Tissue Graft: A One-Year Randomized Clinical Trial. Int J Environ Res Public Health. 2021 Apr 23;18(9):4504. Search in Google Scholar

Raoofi S, Asadinejad SM, Khorshidi H. Evaluation of Color and Width of Attached Gingiva Gain in Two Surgical Techniques: Free Gingival Graft and Connective Tissue Graft Covered By Thin Mucosal Flap, a Clinical Trial. J Dent (Shiraz). 2019 Dec;20(4):224-231 Search in Google Scholar

Sanz-Martín I, Rojo E, Maldonado E, Stroppa G, Nart J, Sanz M. Structural and histological differences between connective tissue grafts harvested from the lateral palatal mucosa or from the tuberosity area. Clin Oral Investig. 2019 Feb;23(2):957-964. Search in Google Scholar

Tavelli L, Barootchi S, Greenwell H, Wang HL. Is a soft tissue graft harvested from the maxillary tuberosity the approach of choice in an isolated site? J Periodontol. 2019 Aug;90(8):821-825. Search in Google Scholar

Reino DM, Novaes AB Jr, Grisi MF, Maia LP, de Souza SL. Palatal harvesting technique modification for better control of the connective tissue graft dimensions. Braz Dent J, 2013, 24:565-568. Search in Google Scholar

Carranza N, Rojas MA. Bilaminar Palatal Connective Tissue Grafts Obtained With the Modified Double Blade Harvesting Technique: Technical Description and Case Series. Clin Adv Periodontics. 2020 Dec;10(4):186-194. Search in Google Scholar

Cortellini P, Pini Prato G: Coronally advanced flap and combination therapy for root coverage. Clinical strategies based on scientific evidence and clinical experience, Periodontology 2000, 59:158–184, 2012. Search in Google Scholar

Zuhr O, Baumer D, Hurzeler M: The addition of soft tissue replacement grafts in plastic periodontal and implant surgery: critical elements in design and execution. J Clin Periodontol, 41:S123-S142, 2014. Search in Google Scholar

Thoma DS, Naenni N, Figuero E, Hämmerle CHF, Schwarz F, Jung RE, Sanz-Sánchez I. Effects of soft tissue augmentation procedures on peri-implant health or disease: A systematic review and meta-analysis. Clin Oral Implants Res. 2018 Mar;29 Suppl 15:32-49. Search in Google Scholar

Chambrone L, Salinas Ortega MA, Sukekava F, Rotundo R, Kalemaj Z, Buti J, Pini Prato GP. Root coverage procedures for treating localised and multiple recession-type defects. Cochrane Database Syst Rev. 2018 Oct 2;10(10):CD007161. Search in Google Scholar

Zuhr O, Rebele SF, Schneider D, Jung RE, Hürzeler MB. Tunnel technique with connective tissue graft versus coronally advanced flap with enamel matrix derivative for root coverage: a RCT using 3D digital measuring methods. Part I. Clinical and patient-centred outcomes. J Clin Periodontol. 2014 Jun;41(6):582-92. Search in Google Scholar

Gadi S, Subramanian S, Prakash PSG, Appukuttan D, Thanigaimalai A, Bahammam MA, Alzahrani KJ, Alsharif KF, Halawani IF, Alnfiai MM, Balaji TM, Patil S. Interdental Papillary Reconstruction by Microtunnelling Technique Using Autologous Biomatrices-A Randomised Controlled Clinical Trial. Medicina (Kaunas). 2022 Sep 22;58(10):1326. Search in Google Scholar

Sharma E, Sharma A, Singh K: The role of subepithelial connective tissue graft for reconstruction of interdental papilla: Clinical study. Singapure Dent J, 38:27-38, 2017. Search in Google Scholar

Ul Hassan S, Bilal B, Nazir MS, Naqvi SAR, Ali Z, Nadeem S, Muhammad N, Palvasha BA, Mohyuddin A. Recent progress in materials development and biological properties of GTR membranes for periodontal regeneration. Chem Biol Drug Des. 2021 Dec;98(6):1007-1024. Search in Google Scholar

Müller HP, Stahl M, Eger T. Failure of root coverage of shallow gingival recessions employing GTR and a bioresorbable membrane. Int J Periodontics Restorative Dent. 2001 Apr;21(2):171-81. Search in Google Scholar

Lim G, Lin GH, Monje A, Chan HL, Wang HL. Wound Healing Complications Following Guided Bone Regeneration for Ridge Augmentation: A Systematic Review and Meta-Analysis. Int J Oral Maxillofac Implants. 2018 January/February;33(1):41–50. Search in Google Scholar

eISSN:
2601-6877
Język:
Angielski
Częstotliwość wydawania:
2 razy w roku
Dziedziny czasopisma:
Life Sciences, other, Medicine, Clinical Medicine, Surgery, Materials Sciences