Photothermal Antibacterial and Osteoinductive Polypyrrole@Cu Implants for Biological Tissue Replacement

Author:

Zhou Tianyou1,Zhou Zeyan2ORCID,Wang Yingbo3ORCID

Affiliation:

1. College of Control Engineering, Xinjiang Institute of Engineering, 1350 Aidinghu Road, Urumqi 830023, China

2. College of Materials Science and Engineering, Hunan University, 2 South Lushan Road, Changsha 410082, China

3. College of Chemical Engineering, Xinjiang Normal University, 102 Xinyi Road, Urumqi 830054, China

Abstract

The treatment of bone defects caused by disease or accidents through the use of implants presents significant clinical challenges. After clinical implantation, these materials attract and accumulate bacteria and hinder the integration of the implant with bone tissue due to the lack of osteoinductive properties, both of which can cause postoperative infection and even lead to the eventual failure of the operation. This work successfully prepared a novel biomaterial coating with multiple antibacterial mechanisms for potent and durable and osteoinductive biological tissue replacement by pulsed PED (electrochemical deposition). By effectively regulating PPy (polypyrrole), the uniform composite coating achieved sound physiological stability. Furthermore, the photothermal analysis showcased exceptional potent photothermal antibacterial activity. The antibacterial assessments revealed a bacterial eradication rate of 100% for the PPy@Cu/PD composite coating following a 24 h incubation. Upon the introduction of NIR (near-infrared) irradiation, the combined effects of multiple antibacterial mechanisms led to bacterial reduction rates of 99% for E. coli and 98% for S. aureus after a 6 h incubation. Additionally, the successful promotion of osteoblast proliferation was confirmed through the application of the osteoinductive drug PD (pamidronate disodium) on the composite coating’s surface. Therefore, the antimicrobial Ti-based coatings with osteoinductive properties and potent and durable antibacterial properties could serve as ideal bone implants.

Funder

National Natural Science Foundation of China

Outstanding Youth Natural Science Foundation Project of Xinjiang

Publisher

MDPI AG

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