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在活性释放涂层中对首例三烷基诺司帕米-联苯抗生素进行体内分析,以降低植入物相关感染的风险。

In vivo analysis of a first-in-class tri-alkyl norspermidine-biaryl antibiotic in an active release coating to reduce the risk of implant-related infection.

机构信息

George E. Wahlen Department of Veterans Affairs, Salt Lake City, UT, United States; Department of Orthopaedics, University of Utah, Salt Lake City, UT, United States; Department of Pathology, University of Utah, Salt Lake City, UT, United States; Department of Bioengineering, University of Utah, Salt Lake City, UT, United States; Department of Physical Medicine and Rehabilitation, Uniformed Services University of the Health Sciences, Bethesda, MD, United States; Curza Global, LLC, Salt Lake City, UT, United States.

George E. Wahlen Department of Veterans Affairs, Salt Lake City, UT, United States; Department of Orthopaedics, University of Utah, Salt Lake City, UT, United States.

出版信息

Acta Biomater. 2019 Jul 15;93:36-49. doi: 10.1016/j.actbio.2019.01.055. Epub 2019 Jan 31.

Abstract

Prosthetic joint infection (PJI) is a well-known and persisting problem. Active release coatings have promise to provide early protection to an implant by eradicating small colony biofilm contaminants or planktonic bacteria that can form biofilm. Traditional antibiotics can be limited as active release agents in that they have limited effect against biofilms and develop resistance at sub-lethal concentrations. A unique first-in-class compound (CZ-01127) was assessed as the active release agent in a silicone (Si)-based coating to prevent PJI in a sheep model of joint space infection. Titanium (Ti) plugs contained a porous coated Ti (PCTi) region and polymer-coated region. Plugs were implanted into a femoral condyle of sheep to assess the effect of the Si polymer on cancellous bone ingrowth, the effect of CZ-01127 on bone ingrowth, and the ability of CZ-01127 to prevent PJI. Microbiological results showed that CZ-01127 was able to eradicate bacteria in the local region of the implanted plugs. Data further showed that Si did not adversely affect bone ingrowth. However, bacteria that reached the joint space (synovium) were not fully eradicated. Outcomes suggested that the CZ-01127 coating provided local protection to the implant system in a challenging model, the design of which could be beneficial for testing future antimicrobial therapies for PJI. STATEMENT OF SIGNIFICANCE: Periprosthetic joint infection (PJI) is now commonplace, and constitutes an underlying problem that patients and physicians face. Active release antibiotic coatings have potential to prevent these infections. Traditional antibiotics are limited in their ability to eradicate bacteria that reside in biofilms, and are more susceptible to resistance development. This study addressed these limitations by testing the efficacy of a unique antimicrobial compound in a coating that was tested in a challenging sheep model of PJI. The unique coating was able to eradicate bacteria and prevent infection in the environment adjacent to the implant. Bacteria that escaped into the joint space still caused infection, yet benchmark data can be used to optimize the coating and translate it toward clinical use.

摘要

人工关节感染(PJI)是一个众所周知且持续存在的问题。主动释放涂层有望通过消灭可能形成生物膜的小菌落生物膜污染物或浮游细菌,为植入物提供早期保护。传统抗生素作为主动释放剂可能受到限制,因为它们对生物膜的作用有限,并且在亚致死浓度下会产生耐药性。一种独特的首创化合物(CZ-01127)被评估为硅(Si)基涂层中的主动释放剂,以防止绵羊关节间隙感染模型中的 PJI。钛(Ti)塞包含多孔涂层 Ti(PCTi)区域和聚合物涂层区域。将塞子植入羊的股骨髁中,以评估 Si 聚合物对松质骨向内生长的影响、CZ-01127 对骨向内生长的影响以及 CZ-01127 预防 PJI 的能力。微生物学结果表明,CZ-01127 能够消灭植入塞子局部区域的细菌。数据进一步表明,Si 不会对骨向内生长产生不利影响。然而,到达关节腔(滑膜)的细菌并未完全被消灭。结果表明,CZ-01127 涂层在具有挑战性的模型中为植入物系统提供了局部保护,该设计可能有助于测试未来预防 PJI 的抗菌治疗方法。意义声明:人工关节周围感染(PJI)现在很常见,是患者和医生面临的一个潜在问题。主动释放抗生素涂层有可能预防这些感染。传统抗生素在消灭存在于生物膜中的细菌方面能力有限,并且更容易产生耐药性。本研究通过在 PJI 绵羊模型中测试一种独特的抗菌化合物的涂层来解决这些局限性。独特的涂层能够消灭细菌并防止植入物周围环境中的感染。逃入关节腔的细菌仍会引起感染,但可以使用基准数据来优化涂层并将其转化为临床应用。

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