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Increasing the quantity of silver in zinc-based glass polyalkenoate cement: Is there an improvement in antibacterial efficacy?

机译:锌基玻璃链烯酸酯水泥中银的含量增加:抗菌功效是否得到改善?

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Bone cements should have the ability to chemically bond to both bone and surgical metals, exhibit no chemical or thermal necrosis, and have no significant shrinkage or exotherm upon setting. Taking these properties into consideration, glass polyalkenoate cements (GPCs) have potential as bone cements. GPCs are formed by the reaction between an ion-leachable glass and an aqueous solution of polyacrylic acid (PAA) [1] and have proven antibacterial and cariostatic properties [2], which are related to their ability to release beneficial amounts of ions over time [3, 4]. The GPCs can be formulated to release ions that can have a therapeutic benefit in a chosen application such as fluoride release in dental applications [5], which assists in the prevention of secondary caries [6]. Recently, GPCs have been formulated with zinc (Zn) replacing Al; a more biologically acceptable ion [7]. The authors have previously shown that GPCs based on a glass phase containing both Zn and silver (Ag) have the ability to release ions which are antibacterial against both Staphylococcus aureus (Oxford strain) [8] and Pseudomonas aeruginosa (a clinical isolate) [9, 10] in vitro and methicillin-resistant S. aureus (MRSA) both in vitro and in vivo [11]. The authors have also shown that their cements have the ability to inhibit proliferation of a biofilm of P. aeruginosa (PA01) [9]. The objective of the study reported herein is to build on the authors previous publications in order to determine if increases in Ag content of the glass phase of these cements will result in a concomitant increase in antibacterial efficacy of the resultant Ag-Zn GPCs formulated from them.
机译:骨水泥应具有与骨和外科金属化学结合的能力,无化学或热坏死现象,凝固后无明显收缩或放热现象。考虑到这些特性,玻璃聚链烯酸酯水泥(GPC)具有作为骨水泥的潜力。 GPC是由可离子渗透的玻璃与聚丙烯酸(PAA)水溶液之间的反应形成的[1],并已证明具有抗菌和抑癌特性[2],这与它们随时间释放有益量的离子的能力有关。 [3,4]。可以配制GPC来释放在选定的应用中具有治疗益处的离子,例如牙科应用中的氟化物释放[5],这有助于预防继发性龋齿[6]。最近,已经用锌(Zn)代替铝配制了GPC。更具生物可接受性的离子[7]。作者先前已经证明,基于含有锌和银(Ag)的玻璃相的GPC具有释放对金黄色葡萄球菌(Oxford菌株)[8]和铜绿假单胞菌(临床分离株)均具有抗菌作用的离子的能力[9]。 [10],体外和体内耐甲氧西林的金黄色葡萄球菌(MRSA)[11]。作者还表明,他们的水泥具有抑制铜绿假单胞菌(PA01)生物膜增殖的能力[9]。本文报道的研究目的是基于作者先前的出版物,以确定这些水泥的玻璃相中Ag含量的增加是否会导致由此制得的所得Ag-Zn GPC的抗菌功效随之增加。 。

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