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局部和持续递送利福平从生物活性陶瓷载体治疗大鼠胫骨感染。

Local and Sustained Delivery of Rifampicin from a Bioactive Ceramic Carrier Treats Bone Infection in Rat Tibia.

机构信息

Department of Biological Sciences and Bioengineering, Indian Institute of Technology Kanpur, Kanpur-208016, Uttar Pradesh, India.

Department of Chemistry, Indian Institute of Technology Kanpur, Kanpur-208016, Uttar Pradesh, India.

出版信息

ACS Infect Dis. 2020 Nov 13;6(11):2938-2949. doi: 10.1021/acsinfecdis.0c00369. Epub 2020 Oct 5.

Abstract

Next-generation treatment strategies to treat osteomyelitis with complete eradication of pathogen at the bone nidus and prevention of emergence of drug resistance is a real challenge in orthopedics. Conventional treatment strategies including long-term adherence of patients to systemic antibiotic delivery, local delivery using nondegradable vehicles, and surgical debridement are not completely effective in achieving successful results. In this study, a broad-spectrum antibiotic, rifampicin (RFP), was incorporated into a biphasic nanohydroxyapatite (nHAP)/calcium sulfate ceramic carrier (NC) system. release and distribution of rifampicin was evaluated for a period of one month by implanting NC and NC + RFP in a subcutaneous pouch in a rat model. We detected the RFP in bone and implanted NC scaffolds even after day 28 and the concentration was still higher than the minimal inhibitory concentration of RFP when it was implanted with NC in an abdominal subcutaneous pouch. Moreover, we also observed the accumulation of RFP in bone and NC when administered orally, showing strong binding between RFP and nHAP. Additionally, we generated an osteomyelitis bone infection model in the rat tibia using as an infective agent to evaluate the antibacterial and osteogenic efficiency of RFP containing NC as a delivery system. s mediated implant infection is a major problem in orthopedics. The results suggested that NC loaded with RFP could eradicate the pathogen completely in the bone nidus. Further, defect healing and bone formation were also evaluated by micro-CT and histological analysis demonstrating proper trabecular-type bone formation at the debridement site and complete healing of the defect when NC + RFP was implanted. Our findings provide an insight into the use of an nHAP based ceramic matrix as a carrier of rifampicin to eradicate the bone infection and simultaneously promote bone healing at the bone nidus.

摘要

开发能够彻底清除病灶中病原体、预防耐药性产生的新一代治疗策略,是骨科领域面临的一项巨大挑战。目前,临床常用的治疗策略包括:让患者长期接受系统抗生素治疗、采用不可降解载体局部给药以及进行外科清创等,但这些策略并不能完全有效地实现治疗目标。在本研究中,我们将广谱抗生素利福平(Rifampicin,RFP)掺入双相纳米羟磷灰石(nHAP)/硫酸钙陶瓷载体(NC)系统中。通过将 NC 和 NC+RFP 植入大鼠皮下囊袋模型中,我们评估了 RFP 在一个月内的释放和分布情况。结果发现,即使在第 28 天,仍可在骨组织和植入的 NC 支架中检测到 RFP,且当 NC 植入大鼠腹部皮下囊袋时,其 RFP 浓度仍高于 RFP 的最小抑菌浓度。此外,我们还观察到口服 RFP 时,RFP 在骨组织和 NC 中的积累,表明 RFP 与 nHAP 之间具有较强的结合能力。此外,我们还使用金黄色葡萄球菌( )作为感染剂,在大鼠胫骨中建立了骨髓炎骨感染模型,以评估载 RFP 的 NC 作为递送系统的抗菌和促骨生成效率。金黄色葡萄球菌介导的植入物感染是骨科领域的一个主要问题。结果表明,载 RFP 的 NC 可彻底清除病灶中的病原体。此外,通过 micro-CT 和组织学分析进一步评估了缺损愈合和骨形成情况,结果显示,当植入 NC+RFP 时,清创部位有适当的小梁型骨形成,且缺损完全愈合。我们的研究结果为利用基于 nHAP 的陶瓷基质作为利福平载体提供了新的见解,可用于清除骨感染并同时促进病灶中骨愈合。

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