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Examination of biofilm related material deterioration on 20 PROVOX2 voice prostheses by scanning electron microscopy

机译:通过扫描电子显微镜检查20个PROVOX2语音假体上与生物膜相关的材料变质

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BACKGROUND: Mechanical impairment of valve function by biofilms is considered to cause loss of function of voice prostheses in laryngectomized patients. Material deterioration and infiltrative growth of Candida associated biofilms have already been observed on Groningen Buttons. Goal of the study was the examination of biofilm formation and material damages on PROVOX2 voice prostheses. METHODS: 20 PROVOX2 voice prostheses were withdrawn from 17 laryngectomized patients due to aspiration (mean in-vivo time: 118 d, median 98 d). Microbial spectrum, colonization patterns and morphologies of prosthesis damage were assessed using standard microbiologic procedures and scanning electron microscopy. RESULTS: Biofilm with various growth patterns predominantly adhered to the esophageal parts of the prostheses. Microbiologic findings showed Candida species as main colonisers on esophageal surfaces. Different morphologies of surface alteration and material infiltration of the polymer material were identified on 8 prostheses with 35 d of in-vivo time minimum. CONCLUSION: Valve dysfunction of PROVOX2 voice prostheses can be attributed to biofilm formation on esophageal surfaces and edges of the valve flap and seating. The identified morphologies of material damage and invasive growth indicate towards lytic processes of the polymer material due to Candida associated biofilms.
机译:背景:生物膜对瓣膜功能的机械损伤被认为会导致喉切除患者的语音修复功能丧失。在格罗宁根纽扣上已经观察到念珠菌相关生物膜的物质降解和浸润生长。该研究的目的是检查PROVOX2语音假体的生物膜形成和材料损坏。方法:从17例因切除术而切除喉的患者中取出20个PROVOX2语音假体(平均体内时间:118 d,中位时间为98 d)。使用标准的微生物学程序和扫描电子显微镜对假体损伤的微生物光谱,定植模式和形态进行了评估。结果:具有各种生长模式的生物膜主要粘附在假体的食道部分。微生物学发现表明,念珠菌是食道表面上的主要定居者。在8个假体上,最少35 d的体内时间可识别出聚合物材料的表面变化和材料渗透的不同形态。结论:PROVOX2语音假体的瓣膜功能障碍可归因于食管表面,瓣膜瓣和阀座边缘的生物膜形成。由于假丝酵母相关的生物膜,所确定的材料破坏和侵袭性生长的形态表明聚合物材料的裂解过程。

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