Vancomycin‐Loaded Sol–Gel System for In Situ Coating of Artificial Bone to Prevent Surgical Site Infections

Author:

Cui Xin123,Wei Tian‐Ci123,Guo Lu‐Ming234,Xu Guo‐Yang2,Zhang Kuo2,Zhang Qing‐Shi2,Xu Xiong1,Wang Gui‐Yuan25,Li Litao13,Liang Hong‐Wen26,Wang Lei2ORCID,Cui Xu13

Affiliation:

1. Department of Graduate Hebei North University No.11 Diamond South Road, High‐tech Zone Zhangjiakou Hebei 075000 China

2. CAS Center for Excellence in Nanoscience CAS Key Laboratory for Biomedical Effects of Nanomaterials and Nanosafety National Center for Nanoscience and Technology (NCNST) No. 11 Beiyitiao, Zhongguancun Beijing 100190 China

3. Department of Orthopaedics The 4th Medical Center of Chinese PLA General Hospital Jia No.17 Heishanhu road Beijing 100091 China

4. College of Medicine Southwest Jiaotong University No. 111 Beiyiduan, Second Ring Road Chengdu Sichuan 610031 China

5. Department of Orthopedics Xingtai First Hospital No.376 Shunde Road, Qiaodong Xingtai Hebei 054000 China

6. College of Pharmacy Chongqing Medical University Chongqing 400016 China

Abstract

AbstractSurgical site infections (SSIs) related to implants have always been a major challenge for clinical doctors and patients. Clinically, doctors may directly apply antibiotics into the wound to prevent SSIs. However, this strategy is strongly associated with experience of doctors on the amount and the location of antibiotics. Herein, an in situ constructable sol–gel system is developed containing antibiotics during surgical process and validated the efficacy against SSIs in beagles. The system involves chitosan (CS), β‐glycerophosphate (β‐GP) and vancomycin (VAN), which can be adsorbed onto porous hydroxyapatite (HA) and form VAN‐CS/β‐GP@HA hydrogel in a short time. The VAN concentration from VAN‐CS/β‐GP@HA hydrogel is higher than minimum inhibitory concentration (MIC) against Staphylococcus aureus (S. aureus) at the 21st day in vitro. In an in vivo canine model for the prevention of SSIs in the femoral condyle, VAN‐CS/β‐GP@HA exhibits excellent biocompatibility, antimicrobial properties, and promotion of bone healing. In all, the CS/β‐GP instant sol–gel system is able to in situ encapsulate antibiotics and adhere on artificial bone implants during the surgery, effectively preventing SSIs related to implants.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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