Journal of Oral Science Research ›› 2023, Vol. 39 ›› Issue (4): 295-299.DOI: 10.13701/j.cnki.kqyxyj.2023.04.002
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ZHANG Jingqiu1, HE Shuqi1,2*
Received:
2022-08-16
Online:
2023-04-28
Published:
2023-04-19
ZHANG Jingqiu, HE Shuqi. Advance in Effects of Deep Margin Elevation on Periodontal Tissue[J]. Journal of Oral Science Research, 2023, 39(4): 295-299.
[1] Castelo BP, Argibay LO, Muñoz F, et al. Periodontal response to a tricalcium silicate material or resin composite placed in close contact to the supracrestal tissue attachment: A histomorphometric comparative study [J]. Clin Oral Investig, 2021, 25(10): 5743-5753. [2] Yu H, Zhu H. The management of a complicated crown-root fracture incorporating modified crown-lengthening surgery [J]. Br Dent J, 2021, 230(4): 217-222. [3] Reichardt E, Krug R, Bornstein MM, et al. Orthodontic forced eruption of permanent anterior teeth with subgingival fractures: A systematic review [J]. Int J Environ Res Public Health, 2021, 18(23): 12580. [4] Dietschi D, Spreafico R. Current clinical concepts for adhesive cementation of tooth-colored posterior restorations [J]. Pract Periodontics Aesthet Dent, 1998, 10(1): 47-54. [5] Bresser RA, Gerdolle D, Heijkant IA, et al. Up to 12 years clinical evaluation of 197 partial indirect restorations with deep margin elevation in the posterior region [J]. J Dent, 2019, 91: 103227. [6] Park JW, An JS, Lim WH, et al. Microbial changes in biofilms on composite resins with different surface roughness: An in vitro study with a multispecies biofilm model [J]. J Prosthet Dent, 2019, 122(5): 493.e491-493.e498. [7] Bamashmous S, Kotsakis GA, Kerns KA, et al. Human variation in gingival inflammation [J]. Proc Natl Acad Sci U S A, 2021, 118(27): e2012578118. [8] Ehrmann E, Medioni E, Brulat-Bouchard N. Finishing and polishing effects of multiblade burs on the surface texture of 5 resin composites: Microhardness and roughness testing [J]. Restor Dent Endod, 2019, 44(1): e1. [9] Yantcheva SM. Marginal adaptation and micropermeability of class ii cavities restored with three different types of resin composites-a comparative ten-month in vitro study [J]. Polymers, 2021, 13(10): 1660-1677. [10] Fróes NR, Silva LM, Kawano Y, et al. Composite pre-heating: Effects on marginal adaptation, degree of conversion and mechanical properties [J]. Dent Mater, 2010, 26(9): 908-914. [11] Arregui M, Giner L, Ferrari M, et al. Six-month color change and water sorption of 9 new-generation flowable composites in 6 staining solutions [J]. Braz Oral Res, 2016, 30(1): e123. [12] Amit C, Jyoti K, Nikhil V, et al. Comparative evaluation of microleakage in class Ⅱ restoration using intermediate layers of flowable resin composite and resin modified glass ionomer cement using stereomicroscope [J]. Int Med J, 2022, 29(1): 68-71. [13] Furtado S, Hegde V, Fanibunda U. Deep margin elevation: Raising the bar in adhesive restorations-a case series [J]. Int J App Dent Sci, 2021, 7(3): 387-392. [14] 王瑞莉,袁重阳,潘怡湘,等.流动与膏体复合树脂表面抛光性能的比较研究[J].中华口腔医学杂志,2017,52(4): 243-247. [15] Cayo CF, Hernández KK, Aliaga AS, et al. Microleakage in class Ⅱ restorations of two bulk fill resin composites and a conventional nanohybrid resin composite: An in vitro study at 10,000 thermocycles [J]. BMC Oral Health, 2021, 21(1): 619. [16] Warad J, Manish A, Airani AK, et al. Comparative evaluation of novel bulk fill resin composites with conventional composites for microleakage formation a steromicroscopic study [J]. J Pharm Bioallied Sci, 2022, 14(Suppl 1):S928-S932. [17] Karadaş M, Demirbuğa S. Evaluation of color stability and surface roughness of bulk-fill resin composites and nanocomposites [J]. Meandros Med Dent J, 2017, 18(3): 199-205. [18] Ismail HS, Ali AI, Garcia GF. In vitro biocompatibility testing of different base materials used for elevation of proximal subgingival margins using human gingival epithelial cells [J]. J Oral Sci, 2022, 64(2): 118-123. [19] Spreafico R, Marchesi G, Turco G, et al. Evaluation of the in vitro effects of cervical marginal relocation using composite resins on the marginal quality of CAD/CAM crowns [J]. J Adhes Dent, 2016, 18(4): 355-362. [20] Elbanna K, Zidan A, Al A. Evaluation of cervical margin relocation for cad/cam zirconia crowns using different composite resin materials and cavity designs: Marginal gap and microleakage [J]. Egypt Dent J, 2021, 67(4): 3475-3790. [21] Zhang H, Li H, Cong Q, et al. Effect of proximal box elevation on fracture resistance and microleakage of premolars restored with ceramic endocrowns [J]. PLoS One, 2021, 16(5): e0252269. [22] Ismail HS, Ali AI, Mehesen RE, et al. In vitro marginal and internal adaptation of four different base materials used to elevate proximal dentin gingival margins [J]. J Clin Exp Dent, 2022, 14(7): e550-e559. [23] Juloski J, Köken S, Ferrari M. No correlation between two methodological approaches applied to evaluate cervical margin relocation [J]. Dent Mater J, 2020, 39(4): 624-632. [24] Da Silva D, Ceballos L, Fuentes MV. Influence of the adhesive strategy in the sealing ability of resin composite inlays after deep margin elevation [J]. J Clin Exp Dent, 2021, 13(9): e886-e893. [25] Alahmari NM, Adawi HA, Moaleem MMA, et al. Effects of the cervical marginal relocation technique on the marginal adaptation of lithium disilicate CAD/CAM ceramic crowns on premolars [J]. J Contemp Dent Pract, 2021, 22(8): 900-906. [26] Ilgenstein I, Zitzmann NU, Buhler J, et al. Influence of proximal box elevation on the marginal quality and fracture behavior of root-filled molars restored with CAD/CAM ceramic or composite onlays [J]. Clin Oral Investig, 2015, 19(5): 1021-1028. [27] Discepoli N, Marruganti C, Santoro F, et al. Impact of interproximal composite restorations on periodontal tissue health: Clinical and cytokine profiles from a pre-post quasi-experimental study [J]. J Periodontol, 2022, 93(6): 911-923. [28] Paolantonio M, D'ercole S, Perinetti G, et al. Clinical and microbiological effects of different restorative materials on the periodontal tissues adjacent to subgingival class Ⅴ restorations [J]. J Clin Periodontol, 2004, 31(3): 200-207. [29] Bertoldi C, Monari E, Cortellini P, et al. Clinical and histological reaction of periodontal tissues to subgingival resin composite restorations [J]. Clin Oral Investig, 2020, 24(2): 1001-1011. [30] Jepsen S, Caton JG, Albandar JM, et al. Periodontal manifestations of systemic diseases and developmental and acquired conditions: Consensus report of workgroup 3 of the 2017 world workshop on the classification of periodontal and peri-implant diseases and conditions [J]. J Clin Periodontol, 2018, 45(Suppl 20): S219-S229. [31] Muscholl C, Zamorska N, Schoilew K, et al. Retrospective clinical evaluation of subgingival composite resin restorations with deep-margin elevation [J]. J Adhes Dent, 2022, 24(1): 335-344. [32] Ismail HS, Ali AI. Periodontal health evaluation for deep margin elevation using bioactive composite versus bulk fill composite. A case report [J]. International Journal of Medical and Dental Case Reports, 2021, 9(1): 1-4. [33] Sarfati A, Tirlet G. Deep margin elevation versus crown lengthening: Biologic width revisited [J]. Int J Esthet Dent, 2018, 13(3): 334-356. [34] Blanco DAB, Carrión BJ, Biedma MB, et al. Management of large class Ⅱ lesions in molars: How to restore and when to perform surgical crown lengthening? [J]. Restor Dent Endod, 2017, 42(3): 240-252. |
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