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Preparation, characterization and application research of a sustained dexamethasone releasing electrode coating for cochlear implantation

机译:扶持地塞塞内酮释放电极涂层的制备,表征及应用研究

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摘要

Cochlear inflammatory response after cochlear implantation (CI) is an important mechanism for implantation trauma and hearing loss. The hearing loss was also caused by damage to auditory hair cells (HCs), whereas ion homeostasis within the cochlea can ensure survival of HCs. In our study, pure hyaluronic acid (HA) was crosslinked with 1, 4-butanediol diglycidyl ether (BDDE) and the successful preparation of the cross-linked hydrogel (CHA) was confirmed by rheological characteristics and FTIR spectra. Artificial perilymph (APL) was prepared to simulate the ion homeostasis microenvironment within scala tympani of human cochlear, and served as the major component of artificial perilymph soaked CHA (APL-CHA). The conductivity experiment indicated that APL-CHA is more suitable to the requirements of the electrical conductivity in scala tympani. The electrode coating process found that the extrusion coating method have advantages of controllable adhesive capacity of APL-CHA, uniform coating thickness and smooth surface as compared to common method. Due to CI surgery application requirement, optimization of coating process was selected as follows: extrusion coating method, degree of 3.6 vol%, pinhole diameter of 32G (110 gm), pressure of 200 +/- 15.81 Psi. Controlled dexamethasone 21-phosphate sodium salt (DSP) release of 20 days could be demonstrated using the hydrogel filled reservoir via a validated HPLC method. The morphological structure of CHA showed different sizes of porous structure among APL-CHA provided structural basis for drug delivery. L929 fibroblasts culture and Spiral Ganglion Neuron Explants culture results revealed that APL-CHA possesses fine biological compatibility. APL-CHA shows a promising application in CI surgery and has great potential in preventing hearing loss with well simulation of ion homeostasis within the cochlear, local DSP delivery for target anti-inflammatory, approximate conductivity within the scala tympani and optimization of electrod
机译:耳蜗植入后的耳蜗炎症反应(CI)是植入创伤和听力损失的重要机制。听力损失也是由于听觉毛细胞(HCS)损伤引起的,而耳蜗内的离子稳态可以确保HCS的存活。在我们的研究中,用1,4-丁二醇二缩水甘油醚(BDDE)交联纯透明质酸(HA),通过流变特性和FTIR光谱证实了交联水凝胶(CHA)的成功制备。制备人工露棕榈鱼(APL),以模拟人耳蜗的Scala Tympani内的离子稳态化微环境,并用作人工漂白浆液浸泡的主要成分(APL-CHA)。电导率实验表明,APL-CHA更适合于Scala Tympani中的电导率的要求。电极涂层工艺发现,与常用方法相比,挤出涂布方法具有APL-CHA的可控粘合剂容量,均匀的涂层厚度和光滑的表面。由于CI手术施用要求,选择涂布过程的优化如下:挤出涂布法,3.6体积%,针孔直径为32g(110克),压力为200 +/- 15.81 psi。通过通过验证的HPLC方法使用水凝胶填充的储存器可以证明,通过验证的HPLC方法对受控的地塞米松21-磷酸钠盐(DSP)释放20天。 CHA的形态学结构在APL-CHA中显示了不同尺寸的多孔结构,为药物递送提供了结构依据。 L929成纤维细胞培养和螺旋神经节神经元外植物培养蛋白培养培养结果表明,APL-CHA具有精细的生物相容性。 APL-CHA显示了CI手术中的有希望的应用,并且在耳蜗内的局部DSP递送的局部DSP递送中预防IONOSOSOSTASIS的良好模拟具有巨大潜力,用于靶向炎症,近似电导率和电极优化

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  • 作者单位

    Southern Med Univ Zhujiang Hosp Dept Otolaryngol Head &

    Neck Surg Guangzhou 510282 Guangdong Peoples R China;

    Jinan Univ Dept Biomed Engn Guangdong Higher Educ Inst Key Lab Biomat Guangzhou 510632 Guangdong Peoples R China;

    Southern Med Univ Zhujiang Hosp Dept Otolaryngol Head &

    Neck Surg Guangzhou 510282 Guangdong Peoples R China;

    Southern Med Univ Zhujiang Hosp Dept Otolaryngol Head &

    Neck Surg Guangzhou 510282 Guangdong Peoples R China;

    Southern Med Univ Zhujiang Hosp Operating Room Anesthesiol Dept Guangzhou 510282 Guangdong Peoples R China;

    Southern Med Univ Zhujiang Hosp Dept Otolaryngol Head &

    Neck Surg Guangzhou 510282 Guangdong Peoples R China;

    Southern Med Univ Sch Basic Med Sci Inst Mental Hlth Dept Physiol Guangzhou 510515 Guangdong Peoples R China;

    Southern Med Univ Zhujiang Hosp Dept Otolaryngol Head &

    Neck Surg Guangzhou 510282 Guangdong Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

    Cochlear implantation; Hydrogel; Electrode coating process; Drug delivery; Biocompatibility;

    机译:耳蜗植入;水凝胶;电极涂层工艺;药物递送;生物相容性;

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