The mechanisms of biofilm formation and current treatment strategies are outlined, with emphasis on their advantages and limitations, and advances in stimuli-responsive antibiofilm materials in orthopedics and related fields are summarized.
Abstract
As the global population ages, the prevalence of age-related conditions such as osteoporosis continues to increase, leading to greater use of orthopedic implants. However, implant-associated infections can cause severe complications, including loss of implant function, limb sequelae, and increased mortality. Biofilm formation is a major contributor to persistent implant-associated infection. Although biofilm formation and treatment strategies are increasingly understood, conventional approaches remain limited by delayed action, drug resistance, and off-target effects. Intelligent stimuli-responsive materials that react to pathological microenvironments or externally applied stimuli therefore have considerable potential for implant-related applications. This review first outlines the mechanisms of biofilm formation and current treatment strategies, with emphasis on their advantages and limitations. We then summarize advances in stimuli-responsive antibiofilm materials in orthopedics and related fields. Finally, we discuss the remaining obstacles that must be addressed before implantable stimuli-responsive systems can effectively target the biofilm microenvironment and progress toward clinical translation.
Periprosthetic joint infection (PJI) remains one of the most serious complications of arthroplasty, largely due to the formation of microbial biofilms on implant surfaces. Biofilm-associated infections exhibit increased tolerance to antimicrobial therapy and host immune responses, making eradication difficult and often...
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