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Antimicrobial Properties of Strontium Functionalized Titanium Surfaces for Oral Applications, A Systematic Review

机译:锶官能化钛表面对口服应用的抗菌性能,系统评价

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The aim of this systematic review was to assess the current scientific evidence of the antimicrobial potential of strontium (Sr) when used to functionalize titanium (Ti) for oral applications. Out of an initial list of 1081 potentially relevant publications identified in three electronic databases (MEDLINE via PubMed, Scopus, and Cochrane) up to 1 February 2021, nine publications based on in vitro studies met the inclusion criteria. The antimicrobial potential of Sr was investigated on different types of functionalized Ti substrates, employing different application methods. Nine studies reported on the early, i.e., 6–24 h, and two studies on the late, i.e., 7–28 days, antimicrobial effect of Sr, primarily against Staphylococcus aureus (S. aureus) and/or Escherichia coli (E. coli). Sr-modified samples demonstrated relevant early antimicrobial potential against S. aureus in three studies; only one of which presented statistical significance values, while the other two presented only the percentage of antimicrobial rate and biofilm inhibition. A relevant late biofilm inhibition potential against S. aureus of 40% and 10%—after 7 and 14 days, respectively—was reported in one study. Combining Sr with other metal ions, i.e., silver (Ag), zinc (Zn), and fluorine (F), demonstrated a significant antimicrobial effect and biofilm inhibition against both S. aureus and E. coli. Sr ion release within the first 24 h was generally low, i.e., below 50 μg/L and 0.6 ppm; however, sustained Sr ion release for up to 30 days, while maintaining up to 90% of its original content, was also demonstrated. Thus, in most studies included herein, Sr-functionalized Ti showed a limited immediate (i.e., 24 h) antimicrobial effect, likely due to a low Sr ion release; however, with an adequate Sr ion release, a relevant antimicrobial effect, as well as a biofilm inhibition potential against S. aureus—but not E. coli—was observed at both early and late timepoints. Future studies should assess the antimicrobial potential of Ti functionalized with Sr against multispecies biofilms associated with peri-implantitis.
机译:这种系统审查的目的是评估当前锶(SR)的抗微生物潜力的当前科学证据,用于对口服应用效果化钛(TI)。在2021年2月1日的三个电子数据库中确定的1081个潜在相关出版物的初始列表中,达到了基于体外研究的九个出版物达到了纳入标准。在不同类型的官能化Ti基材上研究了SR的抗微生物电位,采用不同的应用方法。九项研究报告于早期,即6-24小时,两项研究,即晚期,即7-28天,SR的抗菌效应,主要针对金黄色葡萄球菌(Aureus)和/或大肠杆菌(E. COLI)。 SR改性样品在三项研究中表现出对AUPES的相关早期抗微生物潜力;只有一个呈现统计显着性值,而另外两个仅呈现抗微生物率和生物膜抑制的百分比。在一项研究中据报道,在7和14天的40%和10%的金黄色葡萄球菌的相关晚期生物膜抑制潜力。将Sr与其他金属离子,即银(Ag),锌(Zn)和氟(F)组合,表明了对S. aureus和大肠杆菌的显着抗微生物效应和生物膜抑制。第一24小时内的Sr离子释放通常低,即低于50μg/ L和0.6ppm;然而,还证明了长达30天的持续SR离子释放,同时保持高达90%的原始内容。因此,在本文包括的大多数研究中,SR官能化Ti显示出有限的即时(即24小时)抗微生物效应,可能由于SR离子释放的低次数;然而,通过足够的SR离子释放,具有相关的抗微生物效果,以及对AUREUS的生物膜抑制潜力 - 但在早期和晚期时期观察到无氧化物。未来的研究应评估用SR官能化的Ti的抗微生物潜力对豚鼠炎相关的MultiSpecies生物膜。

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