人工耳蜗生物材料的两性离子光接枝涂层降低了摩擦力和插入力

ty10086 提交于 周三, 08/25/2021 - 15:34
文章英文标题
Zwitterionic Photografted Coatings of Cochlear Implant Biomaterials Reduce Friction and Insertion Forces
正文
将光接枝的两性离子涂层应用于人工耳蜗植入( CI )生物材料,将减少摩擦和插入力。\n电极阵列植入过程中尽量减少耳蜗内创伤的策略对于优化包括保留残馀听力在内的结局至关重要。为此,在相关生物材料上制备薄膜两性离子水凝胶涂层的进展,除此之外,这些材料还有可能降低耳蜗内异物反应。\n采用最近设计的一步法,将两性离子甲基丙烯酸甜菜碱磺酸盐( SBMA )制备的薄膜光聚合并接枝到聚二甲基硅氧烷( PDMS,silastic )样品表面和两个厂家的CI阵列上。荧光染色和能量色散X射线能谱扫描电子显微镜对涂层进行了验证和表征。采用摩擦法测量未涂层和涂层PDMS与合成组织和生物组织之间的摩擦系数。将未涂层( n  =   9 )和涂层( n  =   9 ) CI电极阵列插入人尸体耳蜗时,获得力传感器测量值。\n SBMA薄膜包复PDMS造成
文章内容(英文)
Application of photografted zwitterionic coatings to cochlear implant (CI) biomaterials will reduce friction and insertion forces.\n Strategies to minimize intracochlear trauma during implantation of an electrode array are critical to optimize outcomes including preservation of residual hearing. To this end, advances in thin-film zwitterionic hydrogel coatings on relevant biomaterials may show promise, in addition to the potential of these materials for decreasing the intracochlear foreign body response.\n Using a recently designed one-step process, thin-film coatings derived from zwitterionic sulfobetaine methacrylate (SBMA) were photopolymerized and photografted to the surface of polydimethylsiloxane (PDMS, silastic) samples and also to CI arrays from two manufacturers. Fluorescein staining and scanning electron microscopy with energy-dispersive X-ray spectroscopy verified and characterized the coatings. Tribometry was used to measure the coefficient of friction between uncoated and coated PDMS and synthetic and biological tissues. Force transducer measurements were obtained during insertion of uncoated (n = 9) and coated (n = 9) CI electrode arrays into human cadaveric cochleae.\n SBMA thin-film coating of PDMS resulted in \u0026gt;90% reduction in frictional coefficients with steel, ceramic, and dermal tissue from guinea pigs (p \u0026lt; 0.0001). We employed a novel method for applying covalently bonded, durable, and uniform coating in geographically selective areas at the electrode array portion of the implant. Image analysis confirmed uniform coating of PDMS systems and the CI electrode arrays with SBMA polymer films. During insertion of electrode arrays into human cadaveric cochleae, SBMA coatings reduced maximum force by ∼40% during insertion (p \u0026lt; 0.001), as well as decreasing force variability and the overall work of insertion.\n Thin-film SBMA photografted coatings on PDMS and electrode arrays significantly reduce frictional coefficients and insertional forces in cadaveric cochleae. These encouraging findings support that thin-film zwitterionic coating of CI electrode arrays may potentially reduce insertional trauma and thereby promote improved hearing and other long-term outcomes.
来源出处
Journal|[J]Otology & Neurotology2021.
谷歌学术影响力
[db:学术影响力]
DOI
https://doi.org/10.1097/MAO.0000000000003288

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品牌型号:道康宁SYLGARD184

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备注说明:

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