Tardelli Juliana Dias Corpa, Bagnato Vanderlei Salvador, Reis Andréa Cândido Dos
Department of Dental Materials and Prosthesis, School of Dentistry of Ribeirão Preto, University of São Paulo (USP), Ribeirão Preto 14040-904, Brazil.
Department of Physics and Materials Science, São Carlos Institute of Physics, University of São Paulo (USP), São Carlos 13566-970, Brazil.
Antibiotics (Basel). 2023 Jun 1;12(6):994. doi: 10.3390/antibiotics12060994.
Few studies have been able to elucidate the correlation of factors determining the strength of interaction between bacterial cells and substrate at the molecular level. The aim was to answer the following question: What biophysical factors should be considered when analyzing the bacterial adhesion strength on titanium surfaces and its alloys for implants quantified by atomic force microscopy? This review followed PRISMA. The search strategy was applied in four databases. The selection process was carried out in two stages. The risk of bias was analyzed. One thousand four hundred sixty-three articles were found. After removing the duplicates, 1126 were screened by title and abstract, of which 57 were selected for full reading and 5 were included; 3 had a low risk of bias and 2 moderated risks of bias. (1) The current literature shows the preference of bacteria to adhere to surfaces of the same hydrophilicity. However, this fact was contradicted by this systematic review, which demonstrated that hydrophobic bacteria developed hydrogen bonds and adhered to hydrophilic surfaces; (2) the application of surface treatments that induce the reduction of areas favorable for bacterial adhesion interfere more in the formation of biofilm than surface roughness; and (3) bacterial colonization should be evaluated in time-dependent studies as they develop adaptation mechanisms, related to time, which are obscure in this review.
很少有研究能够在分子水平上阐明决定细菌细胞与底物之间相互作用强度的因素之间的相关性。目的是回答以下问题:在分析通过原子力显微镜量化的植入物用钛表面及其合金上的细菌粘附强度时,应考虑哪些生物物理因素?本综述遵循PRISMA。检索策略应用于四个数据库。选择过程分两个阶段进行。分析了偏倚风险。共找到1463篇文章。去除重复项后,通过标题和摘要筛选出1126篇,其中57篇被选作全文阅读,5篇被纳入;3篇偏倚风险低,2篇偏倚风险中等。(1)当前文献表明细菌倾向于粘附在具有相同亲水性的表面上。然而,本系统综述反驳了这一事实,该综述表明疏水性细菌形成氢键并粘附在亲水性表面上;(2)诱导有利于细菌粘附的面积减少的表面处理的应用对生物膜形成的干扰比表面粗糙度更大;(3)由于细菌会形成与时间相关的适应机制,而这些机制在本综述中尚不清楚,因此应在时间依赖性研究中评估细菌定植情况。