Dohr Dana, Wulf Katharina, Grabow Niels, Mlynski Robert, Schraven Sebastian P
Department of Otorhinolaryngology, Head and Neck Surgery "Otto Körner", Rostock University Medical Center, 18057 Rostock, Germany.
Institute for Biomedical Engineering, Rostock University Medical Center, 18119 Rostock, Germany.
Materials (Basel). 2022 Apr 22;15(9):3049. doi: 10.3390/ma15093049.
To prevent endocochlear insertion trauma, the development of drug delivery coatings in the field of CI electrodes has become an increasing focus of research. However, so far, the effect of a polymer coating of PLLA on the mechanical properties, such as the insertion pressure and friction of an electrode array, has not been investigated. In this study, the insertion pressure of a PLLA-coated, 31.5-mm long standard electrode array was examined during placement in a linear cochlear model. Additionally, the friction coefficients between a PLLA-coated electrode array and a tissue simulating the endocochlear lining were acquired. All data were obtained at different insertion speeds (0.1, 0.5, 1.0, 1.5, and 2.0 mm/s) and compared with those of an uncoated electrode array. It was shown that both the maximum insertion pressure generated in the linear model and the friction coefficient of the PLLA-coated electrode did not depend on the insertion speed. At higher insertion speeds above 1.0 mm/s, the insertion pressure (1.268 ± 0.032 mmHg) and the friction coefficient (0.40 ± 0.15) of the coated electrode array were similar to those of an uncoated array (1.252 ± 0.034 mmHg and 0.36 ± 0.15). The present study reveals that a PLLA coating on cochlear electrode arrays has a negligible effect on the electrode array insertion pressure and the friction when higher insertion speeds are used compared with an uncoated electrode array. Therefore, PLLA is a suitable material to be used as a coating for CI electrode arrays and can be considered for a potential drug delivery system.
为防止内耳插入创伤,人工耳蜗(CI)电极领域中药物递送涂层的研发已日益成为研究重点。然而,迄今为止,聚乳酸(PLLA)聚合物涂层对电极阵列机械性能(如插入压力和摩擦力)的影响尚未得到研究。在本研究中,对一个长度为31.5毫米、涂有PLLA的标准电极阵列在线性耳蜗模型中植入时的插入压力进行了检测。此外,还获取了涂有PLLA的电极阵列与模拟内耳衬里的组织之间的摩擦系数。所有数据均在不同的插入速度(0.1、0.5、1.0、1.5和2.0毫米/秒)下获得,并与未涂层电极阵列的数据进行了比较。结果表明,线性模型中产生的最大插入压力以及涂有PLLA的电极的摩擦系数均不取决于插入速度。在高于1.0毫米/秒的较高插入速度下,涂有PLLA的电极阵列的插入压力(1.268±0.032毫米汞柱)和摩擦系数(0.40±0.15)与未涂层电极阵列(1.252±0.034毫米汞柱和0.36±0.15)相似。本研究表明,与未涂层电极阵列相比,当使用较高插入速度时,耳蜗电极阵列上的PLLA涂层对电极阵列的插入压力和摩擦力的影响可忽略不计。因此,PLLA是一种适合用作CI电极阵列涂层的材料,可考虑用于潜在的药物递送系统。