Chinese Journal of Oral Implantology ›› 2024, Vol. 29 ›› Issue (2): 144-149.DOI: 10.12337/zgkqzzxzz.2024.04.009
• Key Column on Transalveolar Technique for Sinus Floor Elevation • Previous Articles Next Articles
Liu Chengwu, Xu Leyao, Liu Yuanxiang, Chen Zhuofan
Received:2023-10-22
Online:2024-04-30
Published:2024-05-08
Contact:
Chen Zhuofan, Email:chzhuof@mail.sysu.edu.cn, Tel: 0086-20-87599860
Supported by:Liu Chengwu, Xu Leyao, Liu Yuanxiang, Chen Zhuofan. Current clinical applications of scaffold materials for maxillary sinus floor elevation[J]. Chinese Journal of Oral Implantology, 2024, 29(2): 144-149.
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| [1] Tatum H Jr.Maxillary and sinus implant reconstructions[J]. Dent Clin North Am, 1986,30(2):207-229. DOI: 10.1016/S0011-8532(22)02107-3. [2] Summers RB. A new concept in maxillary implant surgery: the osteotome technique[J]. Compendium, 1994,15(2):152, 154-156, 158 passim; quiz 162. [3] Reich KM, Huber CD, Heimel P, et al.A quantification of regenerated bone tissue in human sinus biopsies: influences of anatomical region, age and sex[J]. Clin Oral Implants Res, 2016,27(5):583-590. DOI: 10.1111/clr.12627. [4] Qian SJ, Mo JJ, Shi JY, et al.Endo-sinus bone formation after transalveolar sinus floor elevation without grafting with simultaneous implant placement: histological and histomorphometric assessment in a dog model[J]. J Clin Periodontol, 2018, 45(9): 1118-1127. DOI: 10.1111/jcpe.12975. [5] Guo J, Weng J, Rong Q, et al.Investigation of multipotent postnatal stem cells from human maxillary sinus membrane[J]. Sci Rep, 2015, 5(1): 11660. DOI: 10.1038/srep11660. [6] Wang J, Sun Y, Liu Y, et al.Effects of platelet-rich fibrin on osteogenic differentiation of Schneiderian membrane derived mesenchymal stem cells and bone formation in maxillary sinus[J]. Cell Commun Signal, 2022,20(1):88. DOI: 10.1186/s12964-022-00844-0. [7] Weng Y, Wang H, Wu D, et al.A novel lineage of osteoprogenitor cells with dual epithelial and mesenchymal properties govern maxillofacial bone homeostasis and regeneration after MSFL[J]. Cell Res, 2022,32(9):814-830. DOI: 10.1038/s41422-022-00687-x. [8] 周延民, 秦秋月. 上颌窦三维成骨模式促进上颌窦内成骨的临床意义[J]. 中国口腔种植学杂志, 2023, 28(2): 69-76. DOI: 10.12337/zgkqzzxzz.2023.04.001. [9] 邓磊, 黄海涛. 上颌窦底提升术后窦腔内成骨机制的研究进展[J]. 中国口腔种植学杂志, 2023, 28(1): 53-57. DOI: 10.12337/zgkqzzxzz.2023.02.010. [10] 中华口腔医学会口腔种植专业委员会. 上颌窦底提升骨增量材料的专家共识:骨代用品[J]. 中国口腔种植学杂志, 2023, 28(1): 3-8. DOI: 10.12337/zgkqzzxzz.2023.02.002. [11] Starch-Jensen T, Aludden H, Hallman M, et al.A systematic review and meta-analysis of long-term studies (five or more years) assessing maxillary sinus floor augmentation[J]. Int J Oral Maxillofac Surg, 2018, 47(1): 103-116. DOI: 10.1016/j.ijom.2017.05.001. [12] Sbordone L, Levin L, Guidetti F, et al.Apical and marginal bone alterations around implants in maxillary sinus augmentation grafted with autogenous bone or bovine bone material and simultaneous or delayed dental implant positioning[J]. Clin Oral Implants Res, 2011,22(5):485-491. DOI: 10.1111/j.1600-0501.2010.02030.x. [13] Lutz R, Berger-Fink S, Stockmann P, et al.Sinus floor augmentation with autogenous bone vs. a bovine-derived xenograft - a 5-year retrospective study[J]. Clin Oral Implants Res, 2015,26(6):644-648. DOI: 10.1111/clr.12352. [14] Mordenfeld A, Albrektsson T, Hallman M.A 10-year clinical and radiographic study of implants placed after maxillary sinus floor augmentation with an 80:20 mixture of deproteinized bovine bone and autogenous bone[J]. Clin Implant Dent Relat Res, 2014,16(3):435-446. DOI: 10.1111/cid.12008. [15] Hatano N, Shimizu Y, Ooya K.A clinical long-term radiographic evaluation of graft height changes after maxillary sinus floor augmentation with a 2:1 autogenous bone/xenograft mixture and simultaneous placement of dental implants[J]. Clin Oral Implants Res, 2004,15(3):339-345. DOI: 10.1111/j.1600-0501.2004.00996.x. [16] Lee JS, Shin HK, Yun JH, et al.Randomized clinical trial of maxillary sinus grafting using deproteinized porcine and bovine bone mineral[J]. Clin Implant Dent Relat Res, 2017, 19(1): 140-150. DOI: 10.1111/cid.12430. [17] Krennmair S, Postl L, Schwarze UY, et al.Clinical, radiographic, and histological/histomorphometric analysis of maxillary sinus grafting with deproteinized porcine or bovine bone mineral: a randomized clinical trial[J]. Clin Oral Implants Res, 2023,34(11):1230-1247. DOI: 10.1111/clr.14164. [18] Galindo-Moreno P, Abril-García D, Carrillo-Galvez AB, et al.Maxillary sinus floor augmentation comparing bovine versus porcine bone xenografts mixed with autogenous bone graft. A split-mouth randomized controlled trial[J]. Clin Oral Implants Res, 2022,33(5):524-536. DOI: 10.1111/clr.13912. [19] 刘泉, 陈首丞, 陈卓凡. 氟化猪源性骨替代材料:从概念到实践[J]. 中国口腔种植学杂志, 2022, 27(5): 280-284. DOI: 10.12337/zgkqzzxzz.2022.10.004. [20] Liu R, Qiao W, Huang B, et al.Fluorination enhances the osteogenic capacity of porcine hydroxyapatite[J]. Tissue Eng Part A, 2018, 24(15-16): 1207-1217. DOI: 10.1089/ten.TEA.2017.0381. [21] Liu Y, Liu C, Huang R, et al.Effects of fluorinated porcine hydroxyapatite on lateral ridge augmentation: an experimental study in the canine mandible[J]. Am J Transl Res, 2020, 12(6): 2473-2487. [22] 李志鹏, 刘远翔, 黄若萱, 等. 氟化猪骨羟基磷灰石修复犬植体周骨缺损的显微CT与组织形态学评价[J]. 中华口腔医学杂志, 2020, 55(11): 908-914. DOI: 10.3760/cma.j.cn112144-20200908-00496. [23] Xavier SP, Dias RR, Sehn FP, et al.Maxillary sinus grafting with autograft vs. fresh frozen allograft: a split-mouth histomorphometric study[J]. Clin Oral Implants Res, 2015,26(9):1080-1085. DOI: 10.1111/clr.12404. [24] Xavier SP, Santos Tde S, Sehn FP, et al.Maxillary sinus grafting with fresh frozen allograft versus bovine bone mineral: a tomographic and histological study[J]. J Craniomaxillofac Surg, 2016,44(6):708-714. DOI: 10.1016/j.jcms.2016.03.005. [25] Kungvarnchaikul I, Subbalekha K, Sindhavajiva PR, et al.Deproteinized bovine bone and freeze-dried bone allograft in sinus floor augmentation: a randomized controlled trial[J]. Clin Implant Dent Relat Res, 2023,25(2):343-351. DOI: 10.1111/cid.13179. [26] Flore D, Yannick S, Constantinus P.Survival rate of implants following maxillary sinus floor augmentation using freeze-dried allografts vs bovine derived xenografts: a retrospective multicenter study[J]. J Stomatol Oral Maxillofac Surg, 2023, 124(6): 101605. DOI: 10.1016/j.jormas.2023.101605. [27] Ebrahimi M, Botelho MG, Dorozhkin SV.Biphasic calcium phosphates bioceramics (HA/TCP): concept, physicochemical properties and the impact of standardization of study protocols in biomaterials research[J]. Mater Sci Eng C Mater Biol Appl, 2017,71:1293-1312. DOI: 10.1016/j.msec.2016.11.039. [28] Mangano C, Sinjari B, Shibli JA, et al.A human clinical, histological, histomorphometrical, and radiographical study on biphasic HA-Beta-TCP 30/70 in maxillary sinus augmentation[J]. Clin Implant Dent Relat Res, 2015,17(3):610-618. DOI: 10.1111/cid.12145. [29] Arunjaroensuk S, Nampuksa K, Monmaturapoj N, et al.Gene expression, micro-CT and histomorphometrical analysis of sinus floor augmentation with biphasic calcium phosphate and deproteinized bovine bone mineral: a randomized controlled clinical trial[J]. Clin Implant Dent Relat Res, 2024,26(2):402-414. DOI: 10.1111/cid.13303. [30] Cordioli G, Mazzocco C, Schepers E, et al.Maxillary sinus floor augmentation using bioactive glass granules and autogenous bone with simultaneous implant placement. Clinical and histological findings[J]. Clin Oral Implants Res, 2001,12(3):270-278. DOI: 10.1034/j.1600-0501.2001.012003270.x. [31] Toffler M, Toscano N, Holtzclaw D.Osteotome-mediated sinus floor elevation using only platelet-rich fibrin: an early report on 110 patients[J]. Implant Dent, 2010,19(5):447-456. DOI: 10.1097/ID.0b013e3181f57288. [32] Kanayama T, Horii K, Senga Y, et al.Crestal approach to sinus floor elevation for atrophic maxilla using platelet-rich fibrin as the only grafting material: a 1-year prospective study[J]. Implant Dent, 2016, 25(1): 32-38. DOI: 10.1097/ID.0000000000000327. [33] Pichotano EC, De Molon RS, De Souza RV, et al.Evaluation of L-PRF combined with deproteinized bovine bone mineral for early implant placement after maxillary sinus augmentation: a randomized clinical trial[J]. Clin Implant Dent Relat Res, 2019, 21(2): 253-262. DOI: 10.1111/cid.12713. [34] Liu Y, Sun X, Yu J, et al.Platelet-rich fibrin as a bone graft material in oral and maxillofacial bone regeneration: classification and summary for better application[J]. Biomed Res Int, 2019, 2019: 3295756. DOI: 10.1155/2019/3295756. [35] Li Q, Reed DA, Min L, et al.Lyophilized platelet-rich fibrin (PRF) promotes craniofacial bone regeneration through Runx2[J]. Int J Mol Sci, 2014,15(5):8509-8525. DOI: 10.3390/ijms15058509. [36] Lin GH, Lim G, Chan HL, et al.Recombinant human bone morphogenetic protein 2 outcomes for maxillary sinus floor augmentation: a systematic review and meta-analysis[J]. Clin Oral Implants Res, 2016,27(11):1349-1359. DOI: 10.1111/clr.12737. [37] James AW, Lachaud G, Shen J, et al.A review of the clinical side effects of bone morphogenetic protein-2[J]. Tissue Eng Part B Rev, 2016, 22(4): 284-297. DOI: 10.1089/ten.teb.2015.0357. [38] Suárez-López Del Amo F, Monje A. Efficacy of biologics for alveolar ridge preservation/reconstruction and implant site development: an American Academy of Periodontology best evidence systematic review[J]. J Periodontol, 2022,93(12):1827-1847. DOI: 10.1002/JPER.22-0069. [39] Berberi A, Nader N, Assaf RB, et al.Sinus floor augmentation with ambient blood and an absorbable collagen sponge: a prospective pilot clinical study[J]. Implant Dent, 2017, 26(5): 674-681. DOI: 10.1097/ID.0000000000000631. [40] Menassa G, Kassir AR, Landi L, et al.Implant placement with sinus floor elevation via the lateral approach using only absorbable collagen sponge: 12-month post-loading radiographical outcomes and implant survival rate[J]. Oral Maxillofac Surg, 2021,25(2):231-236. DOI: 10.1007/s10006-020-00908-w. [41] Vincent-Bugnas SEV, Charbit Y, Charbit M, et al.Maxillary sinus floor elevation surgery with Bio-Oss mixed with enamel matrix derivative: a human randomized controlled clinical and histologic study[J]. J Oral Implantol, 2020, 46(5): 507-513. DOI: 10.1563/aaid-joi-D-19-00119. [42] Nakajima Y, Botticelli D, De Rossi EF, et al.Schneiderian membrane collateral damage caused by collagenated and non-collagenated xenografts: a histological study in rabbits[J]. Dent J (Basel), 2023,11(2):31. DOI: 10.3390/dj11020031. [43] Scala A, Lang NP, Velez JU, et al.Effects of a collagen membrane positioned between augmentation material and the sinus mucosa in the elevation of the maxillary sinus floor. An experimental study in sheep[J]. Clin Oral Implants Res, 2016,27(11):1454-1461. DOI: 10.1111/clr.12762. [44] Favero V, Lang NP, Canullo L, et al.Sinus floor elevation outcomes following perforation of the Schneiderian membrane. An experimental study in sheep[J]. Clin Oral Implants Res, 2016,27(2):233-240. DOI: 10.1111/clr.12576. [45] Wildburger A, Payer M, Jakse N, et al.Impact of autogenous concentrated bone marrow aspirate on bone regeneration after sinus floor augmentation with a bovine bone substitute--a split-mouth pilot study[J]. Clin Oral Implants Res, 2014,25(10):1175-1181. DOI: 10.1111/clr.12228. |
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