Multimodal imaging reveals surface degradation of voice prosthesis implants resulting from colonisation by polymicrobial biofilms
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Total laryngectomy is performed for advanced laryngeal and hypopharyngeal cancers. Following the surgery, the insertion of indwelling silicone-based voice prosthesis (VP) implants is considered the gold standard for speech rehabilitation. However, early VP failure due to biofilm formation and invasion of the VP surface can lead to routine use of nystatin and the need for frequent valve changes. Despite these burdens, the composition and impact of colonising pathogens on VP integrity are poorly understood. We have developed a rapid pipeline which permitted the transfer, fixation, staining, and imaging of explanted VPs from patients within 90 minutes of sample collection. Using this pipeline, we demonstrate a multimodal reflection contrast and fluorescence confocal laser scanning microscopy technique to simultaneously map the VP surface and visualise the biofilms in situ , providing new insights into the role of pathogens on VP failure. Our results reveal that complex fungal and bacterial biofilms form polymicrobial biofilms on the VP surface. We demonstrate that biofilms not only reside on the VP surface but can invade the device, releasing silicone particles that are visible within the volume of the biofilms and are separate from the VP surface. Our findings highlight the complexity of the biofilms that form on speech valves; complex polymicrobial biofilms require more advanced treatment than what is conventionally used. Work should focus both on the patient factors that may influence this and the material properties of the valve.