口腔医学 ›› 2024, Vol. 44 ›› Issue (12): 941-945.doi: 10.13591/j.cnki.kqyx.2024.12.012
收稿日期:
2024-01-19
出版日期:
2024-12-28
发布日期:
2024-12-26
通讯作者:
郑园娜 E-mail:基金资助:
SONG Haolun1,ZHENG Yuanna1,2()
Received:
2024-01-19
Online:
2024-12-28
Published:
2024-12-26
摘要:
种植体周围炎是种植修复后最常见的并发症之一,可能导致种植失败。生物膜的控制在种植体周围炎的治疗中扮演着至关重要的角色。电化学处理作为一种辅助治疗手段应用于种植体周围炎的治疗,在生物膜去除方面已取得一定的疗效。本文对应用电化学处理去除种植体周围炎生物膜的效果、机制、影响因素和不良反应进行了全面综述,旨在为未来的临床实践和研究设计提供有益的指导。
中图分类号:
宋昊伦, 郑园娜. 电化学处理去除种植体周围炎生物膜研究进展[J]. 口腔医学, 2024, 44(12): 941-945.
SONG Haolun, ZHENG Yuanna. Progress of research on the biofilm removal of peri-implantitis by electrochemical treatment[J]. Stomatology, 2024, 44(12): 941-945.
[1] | Berglundh T, Armitage G, Araujo MG, et al. Peri-implant diseases and conditions: Consensus report of workgroup 4 of the 2017 World Workshop on the Classification of Periodontal and Peri-Implant Diseases and Conditions[J]. J Periodontol, 2018, 89(Suppl 1):S313-S318. |
[2] | 宫苹. 口腔种植学[M]. 北京: 人民卫生出版社, 2020:138. |
[3] | Derks J, Tomasi C. Peri-implant health and disease. A systematic review of current epidemiology[J]. J Clin Periodontol, 2015, 42(Suppl 16):S158-S171. |
[4] |
Drawz SM, Bonomo RA. Three decades of beta-lactamase inhibitors[J]. Clin Microbiol Rev, 2010, 23(1):160-201.
doi: 10.1128/CMR.00037-09 pmid: 20065329 |
[5] | Desch A, Freifrauvon Maltzahn N, Stumpp N, et al. Biofilm formation on zirconia and titanium over time-An in vivo model study[J]. Clin Oral Implants Res, 2020, 31(9):865-880. |
[6] | Kensara A, Saito H, Mongodin EF, et al. Microbiological profile of peri-implantitis: Analyses of peri-implant microbiome[J]. J Prosthodont, 2023. |
[7] |
Banu Raza F, Vijayaragavalu S, Kandasamy R, et al. Microbiome and the inflammatory pathway in peri-implant health and disease with an updated review on treatment strategies[J]. J Oral Biol Craniofac Res, 2023, 13(2):84-91.
doi: 10.1016/j.jobcr.2022.11.005 pmid: 36504486 |
[8] |
Rajasekar A, Varghese SS. Bacterial profile associated with peri-implantitis: A systematic review[J]. J Long Term Eff Med Implants, 2023, 33(3):9-20.
doi: 10.1615/JLongTermEffMedImplants.2022044320 pmid: 37017685 |
[9] | Siddiqui DA, Fidai AB, Natarajan SG, et al. Succession of oral bacterial colonizers on dental implant materials: An in vitro biofilm model[J]. Dent Mater, 2022, 38(2):384-396. |
[10] |
Alves CH, Russi KL, Rocha NC, et al. Host-microbiome interactions regarding peri-implantitis and dental implant loss[J]. J Transl Med, 2022, 20(1):425.
doi: 10.1186/s12967-022-03636-9 pmid: 36138430 |
[11] | Passarelli PC, Netti A, Lopez MA, et al. Local/topical antibiotics for peri-implantitis treatment: A systematic review[J]. Antibiotics, 2021, 10(11):1298. |
[12] | Camps-Font O, Toledano-Serrabona J, Juiz-Camps A, et al. Effect of implantoplasty on roughness, fatigue and corrosion behavior of narrow diameter dental implants[J]. J Funct Biomater, 2023, 14(2):61. |
[13] |
Canty M, Luke-Marshall N, Campagnari A, et al. Cathodic voltage-controlled electrical stimulation of titanium for prevention of methicillin-resistant Staphylococcus aureus and Acinetobacter baumannii biofilm infections[J]. Acta Biomater, 2017, 48:451-460.
doi: S1742-7061(16)30652-3 pmid: 27890730 |
[14] |
Cieplik F, Jakubovics NS, Buchalla W, et al. Resistance toward chlorhexidine in oral bacteria-is there cause for concern?[J]. Front Microbiol, 2019, 10:587.
doi: 10.3389/fmicb.2019.00587 pmid: 30967854 |
[15] | 孔亚群, 黄晓峰. 应用激光治疗种植体周围炎的安全性研究进展[J]. 中华口腔医学杂志, 2019, 54(12):855-858. |
[16] | Schlee M, Wang HL, Stumpf T, et al. Treatment of periimplantitis with electrolytic cleaning versus mechanical and electrolytic cleaning: 18-month results from a randomized controlled clinical trial[J]. J Clin Med, 2021, 10(16):3475. |
[17] | Bernardi S, Qorri E, Botticelli G, et al. Use of electrical field for biofilm implant removal[J]. Eur Rev Med Pharmacol Sci, 2023, 27(3 Suppl):114-121. |
[18] | Göltz M, Koch M, Detsch R, et al. Influence of In-situelectrochemical oxidation on implant surface and colonizing microorganisms evaluated by scanning electron microscopy[J]. Materials (Basel), 2019, 12(23):3977. |
[19] | Koch M, Burkovski A, Zulla M, et al. Pilot study on the use of a laser-structured double diamond electrode (DDE) for biofilm removal from dental implant surfaces[J]. J Clin Med, 2020, 9(9):3036. |
[20] | Virto L, Odeh V, Garcia-Quismondo E, et al. Electrochemical decontamination of titanium dental implants. An in vitro biofilm model study[J]. Clin Oral Implants Res, 2023, 34(5):486-497. |
[21] |
Schneider S, Rudolph M, Bause V, et al. Electrochemical removal of biofilms from titanium dental implant surfaces[J]. Bioelectrochemistry, 2018, 121:84-94.
doi: S1567-5394(17)30472-3 pmid: 29413867 |
[22] | Kaiser F, Scharnweber D, Bierbaum S, et al. Success and side effects of different treatment options in the low current attack of bacterial biofilms on titanium implants[J]. Bioelectrochemistry, 2020, 133:107485. |
[23] | Long YJ, LiHN, Jin HM, et al. Interpretation of high perchlorate generated during electrochemical disinfection in presence of chloride at BDD anodes[J]. Chemosphere, 2021, 284:131418. |
[24] | Wang QY, de Oliveira EF, Alborzi S, et al. On mechanism behind UV-a light enhanced antibacterial activity of Gallic acid and propyl gallate against Escherichia coli O157: H7[J]. Sci Rep, 2017, 7(1):8325. |
[25] | Campelo SN, Huang PH, Buie CR, et al. Recent advancements in electroporation technologies: From bench to clinic[J]. Annu Rev Biomed Eng, 2023, 25:77-100. |
[26] | Vimbela GV, Ngo SM, Fraze C, et al. Antibacterial properties and toxicity from metallic nanomaterials[J]. Int J Nanomedicine, 2017, 12:3941-3965. |
[27] |
Stewart MP, Langer R, Jensen KF. Intracellular delivery by membrane disruption: Mechanisms, strategies, and concepts[J]. Chem Rev, 2018, 118(16):7409-7531.
doi: 10.1021/acs.chemrev.7b00678 pmid: 30052023 |
[28] | Padulles-Gaspar E, Padulles-Roig E, Cabanes G, et al. Effects of hypochlorous acid and hydrogen peroxide treatment on bacterial disinfection treatments in implantoplasty procedures[J]. Materials (Basel), 2023, 16(8):2953. |
[29] | Sultana ST, Babauta JT, Beyenal H. Electrochemical biofilm control: A review[J]. Biofouling, 2015, 31(9/10):745-758. |
[30] | Sen CK, Mathew-Steiner SS, Das A, et al. Electroceutical management of bacterial biofilms and surgical infection[J]. Antioxid Redox Signal, 2020, 33(10):713-724. |
[31] | Krishnamurthi VR, Rogers A, Peifer J, et al. Microampere electric current causes bacterial membrane damage and two-way leakage in a short period of time[J]. Appl Environ Microbiol, 2020, 86(16):e01015-e01020. |
[32] | Rauly D, Vindret M, Chamberod E, et al. Distribution of AC electric field-induced transmembrane voltage in Escherichia colicell wall layers[J]. Bioelectromagnetics, 2020, 41(4):279-288. |
[33] | Manna S, Ghanty C, Baindara P, et al. Electrochemical communication in biofilm of bacterial community[J]. J Basic Microbiol, 2020, 60(10):819-827. |
[34] | Schlee M, Rathe F, Brodbeck U, et al. Treatment of peri-implantitis-electrolytic cleaning versus mechanical and electrolytic cleaning-arandomized controlled clinical trial-six-month results[J]. J Clin Med, 2019, 8(11):1909. |
[35] | Heitz-Mayfield LJA, Salvi GE, Mombelli A, et al. Anti-infective surgical therapy of peri-implantitis. A 12-month prospective clinical study[J]. Clin Oral Implants Res, 2012, 23(2):205-210. |
[36] | Mohn D, Zehnder M, Stark WJ, et al. Electrochemical disinfection of dental implants: A proof of concept[J]. PLoS One, 2011, 6(1):e16157. |
[37] | Xavier JB, Picioreanu C, Rani SA, et al. Biofilm-control strategies based on enzymic disruption of the extracellular polymeric substance matrix: A modelling study[J]. Microbiology (Reading), 2005, 151(Pt 12):3817-3832. |
[38] | Koch M, Göltz M, Meng XJ, et al. Electrochemical disinfection of dental implants experimentally contaminated with microorganisms as a model for periimplantitis[J]. J Clin Med, 2020, 9(2):475. |
[39] | Sahrmann P, Zehnder M, Mohn D, et al. Effect of low direct current on anaerobic multispecies biofilm adhering to a titanium implant surface[J]. Clin Implant Dent Relat Res, 2014, 16(4):552-556. |
[40] | Ossowska A, Olive JM, Zieliński A, et al. Effect of double thermal and electrochemical oxidation on titanium alloys for medical applications[J]. Appl Surf Sci, 2021, 563:150340. |
[41] | Bosshardt DD, Brodbeck UR, Rathe F, et al. Evidence of re-osseointegration after electrolytic cleaning and regenerative therapy of peri-implantitis in humans: A case report with four implants[J]. Clin Oral Investig, 2022, 26(4):3735-3746. |
[42] | Schwarz F, Derks J, Monje A, et al. Peri-implantitis[J]. J Periodontol, 2018, 89(Suppl 1):S267-S290. |
[43] |
Schwarz F, Sahm N, Schwarz K, et al. Impact of defect configuration on the clinical outcome following surgical regenerative therapy of peri-implantitis[J]. J Clin Periodontol, 2010, 37(5):449-455.
doi: 10.1111/j.1600-051X.2010.01540.x pmid: 20374416 |
[44] | Carvalho EO, Fernandes MM, Padrao J, et al. Tailoring bacteria response by piezoelectric stimulation[J]. ACS Appl Mater Interfaces, 2019, 11(30):27297-27305. |
[45] |
Comerci CJ, Gillman AL, Galera-Laporta L, et al. Localized electrical stimulation triggers cell-type-specific proliferation in biofilms[J]. Cell Syst, 2022, 13(6):488-498.e4.
doi: 10.1016/j.cels.2022.04.001 pmid: 35512710 |
[46] |
Hong SH, Jeong J, Shim S, et al. Effect of electric currents on bacterial detachment and inactivation[J]. Biotechnol Bioeng, 2008, 100(2):379-386.
pmid: 18080346 |
[47] | Zheng S, Bawazir M, Dhall A, et al. Implication of surface properties, bacterial motility, and hydrodynamic conditions on bacterial surface sensing and their initial adhesion[J]. Front Bioeng Biotechnol, 2021, 9:643722. |
[48] | Zhao XH, Liu YY. Origin of selective production of hydrogen peroxide by electrochemical oxygen reduction[J]. J Am Chem Soc, 2021. |
[49] | Costa FO, Ferreira SD, Cortelli JR, et al. Microbiological profile associated with peri-implant diseases in individuals with and without preventive maintenance therapy: A 5-year follow-up[J]. Clin Oral Investig, 2019, 23(8):3161-3171. |
[50] | Yu XL, Chan Y, Zhuang LF, et al. Intra-oral single-site comparisons of periodontal and peri-implant microbiota in health and disease[J]. Clin Oral Implants Res, 2019, 30(8):760-776. |
[51] | Ali Al-Hashedi A, Laurenti M, Abdallah MN, et al. Electrochemical treatment of contaminated titanium surfaces in vitro: An approach for implant surface decontamination[J]. ACS Biomater Sci Eng, 2016, 2(9):1504-1518. |
[52] | Nodzo S, Tobias M, Hansen LS, et al. Cathodic electrical stimulation combined with vancomycin enhances treatment of methicillin-resistant Staphylococcus aureusimplant-associated infections[J]. Clin Orthop Relat Res, 2015, 473(9):2856-2864. |
[53] | Collin F. Chemical basis of reactive oxygen species reactivity and involvement in neurodegenerative diseases[J]. Int J Mol Sci, 2019, 20(10):2407. |
[54] | Suttasattakrit K, Khamkeaw A, Tangwongsan C, et al. Ionic silver and electrical treatment for susceptibility and disinfection of Escherichia colibiofilm-contaminated titanium surface[J]. Molecules, 2021, 27(1):180. |
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