Spałek Jakub, Deptuła Piotr, Cieśluk Mateusz, Strzelecka Agnieszka, Łysik Dawid, Mystkowska Joanna, Daniluk Tamara, Król Grzegorz, Góźdź Stanisław, Bucki Robert, Durnaś Bonita, Okła Sławomir
Institute of Medical Science, Collegium Medicum, Jan Kochanowski University of Kielce, IX Wieków Kielc 19A, 25-317 Kielce, Poland.
Department of Otolaryngology, Head and Neck Surgery, Holy-Cross Cancer Center, Artwińskiego 3, 25-734 Kielce, Poland.
Pathogens. 2020 Sep 26;9(10):793. doi: 10.3390/pathogens9100793.
Voice prosthesis implantation with the creation of a tracheoesophageal fistula is the gold standard procedure for voice rehabilitation in patients after a total laryngectomy. All patients implanted with a voice prosthesis (VP) have biofilms of fungi and bacteria grow on their surface. Biofilm colonization is one of the main reasons for VP degradation that can lead to VP dysfunction, which increases the high risk of pneumonia. In a 20-month evaluation period, 129 cases of prostheses after replacement procedures were investigated. Microbiological examination of the biofilms revealed that there were four of the most common fungi species ( spp.) and a large variety of bacterial species present. We studied the relationship between the time of proper function of Provox VP, the microorganism composition of the biofilm present on it, and the degradation level of the silicone material. Evaluation of the surface of the removed VP using an atomic force microscope (AFM) has demonstrated that biofilm growth might drastically change the silicone's mechanical properties. Changes in silicone stiffness and thermal properties might contribute to the failure of VP function. Our data can serve in future studies for the development of methods to prevent or inhibit biofilm formation on the VP surface that would translate to an increase in their durability and safety.
通过建立气管食管瘘植入发音假体是全喉切除术后患者语音康复的金标准手术。所有植入发音假体(VP)的患者其表面都会生长真菌和细菌生物膜。生物膜定植是导致VP降解的主要原因之一,可导致VP功能障碍,进而增加肺炎的高风险。在20个月的评估期内,对129例更换手术后的假体进行了调查。对生物膜的微生物学检查发现存在四种最常见的真菌物种以及多种细菌物种。我们研究了Provox VP正常功能时间、其上存在的生物膜微生物组成以及硅酮材料降解水平之间的关系。使用原子力显微镜(AFM)对取出的VP表面进行评估表明,生物膜生长可能会极大地改变硅酮的机械性能。硅酮硬度和热性能的变化可能导致VP功能失效。我们的数据可用于未来研究,以开发预防或抑制VP表面生物膜形成的方法,这将有助于提高其耐用性和安全性。