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Bioactive coating of titanium surfaces with recombinant human β-defensin-2 (rHuβD2) may prevent bacterial colonization in orthopaedic surgery

机译:重组人β-防御素2(rHuβD2)对钛表面的生物活性涂层可防止在整形外科手术中细菌定植

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摘要

Background: A promising strategy to prevent infections around orthopaedic titanium implants is to use naturally occurring cationic antimicrobial peptides (CAMPs) such as the human ߭defensin-2 as antibacterial coatings. Human antimicrobial peptides represent a part of the innate immune system and have a broad antimicrobial spectrum against bacteria, fungi, and viruses. Methods: In the present study, titanium surfaces were functionalized by four different self-assembled monolayers (SAMs) forming methoxy silanes: (1) hexadecyltrimethoxysilane, (2) dimethoxymethyloctylsilane, (3) allyltrimethylsilane, and (4) 3-aminopropyltrimethoxysilane. In addition, calf skin type-I collagen was cross-linked to the SAM surface 3-aminopropyltrimethoxysilane by means of two different treatments: (1) N-hydroxysuccinimide and (2) glutaraldehyde. The functionalized titanium surfaces were coated with recombinant human ߭defensin-2 (rHu߄2), an antimicrobial peptide, and were tested for antibacterial activity against Escherichia coli. The release of rHu߄2 was quantified by means of enzyme-linked immunosorbent assay (ELISA). Results: The coating of functionalized titanium surfaces with rHu߄2 was successful. Recombinant Hu߄2 was eluted from the titanium surfaces continuously, yielding antimicrobial activity up to several hours. Antimicrobial activity with a killing rate of 100% was observed for all functionalized titanium surfaces after two hours of incubation. The dimethoxymethyloctylsilane-functionalized titanium surface delivered 0.65 姠of rHu߄2 after six hours with a 60% bacterial killing rate. The silane-functionalized surfaces exhibited a faster release of antimicrobially active rHu߄2 compared with collagen modifications. Conclusions: Natural antibiotics such as rHu߄2 integrated into the metal surface of titanium implants may be a promising tool to prevent and control infections around orthopaedic implants.
机译:背景:预防骨科钛植入物周围感染的一种有前途的策略是使用天然存在的阳离子抗菌肽(CAMP)(例如人防御素2)作为抗菌涂层。人类抗菌肽代表先天免疫系统的一部分,并具有广泛的针对细菌,真菌和病毒的抗菌谱。方法:在本研究中,钛表面通过形成甲氧基硅烷的四个不同的自组装单层(SAM)功能化:(1)十六烷基三甲氧基硅烷,(2)二甲氧基甲基辛基硅烷,(3)烯丙基三甲基硅烷和(4)3-氨基丙基三甲氧基硅烷。另外,通过两种不同的处理方法将小腿皮肤I型胶原蛋白交联到SAM表面3-氨丙基三甲氧基硅烷:(1)N-羟基琥珀酰亚胺和(2)戊二醛。功能化的钛表面涂有重组人防御素2(rHuin2)(一种抗菌肽),并测试了其对大肠杆菌的抗菌活性。通过酶联免疫吸附测定(ELISA)定量rHu assay2的释放。结果:用rHu߄2成功涂覆了功能化钛表面。重组的Hu߄2从钛表面连续洗脱,产生长达数小时的抗菌活性。孵育两小时后,所有功能化钛表面均观察到抗菌活性,杀灭率为100%。六小时后,二甲氧基甲基辛基硅烷官能化的钛表面传递了0.65 r的rHu߄2,细菌杀灭率达60%。与胶原蛋白修饰相比,硅烷官能化的表面表现出更快的抗菌活性rHu߄2释放。结论:整合到钛植入物金属表面的天然抗生素如rHu߄2可能是预防和控制骨科植入物周围感染的有前途的工具。

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