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An Effective Translation: The Development of Hyaluronan-Based Medical Products From the Physicochemical and Preclinical Aspects

机译:有效的翻译:从物理化学和临床前方面开发基于透明质酸的医疗产品

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摘要

This review shows the steps toward material selection focalized on the design and development of medical devices based on hyaluronan (HA). The selection is based on chemical and mechanical properties, biocompatibility, sterilization, safety, and scale-up costs. These facts play a vital role in the industrialization process. Approved medical devices containing-HA are illustrated to identify key parameters. The first part of this work involves the steps toward a complete characterization of chemical and mechanical aspects, reproducibility of the processes and scale up. In a second stage, we aimed to describe the preclinical in vitro and in vivo assays and selected examples of clinical trials. Furthermore, it is important to keep in mind the regulatory affairs during the research and development (R&D) using standardization (ISO standards) to achieve the main goal, which is the functionality and safety of the final device. To keep reproducible experimental data to prepare an efficient master file for the device, based on quality and recorded manufacturing data, and a rigorous R&D process may help toward clinical translation. A strong debate is still going on because the denominated basic research in HA field does not pay attention to the purity and quality of the raw materials used during the development. So that, to achieve the next generation of devices is needed to overcome the limitations of state of art in terms of efficacy, biodegradability, and non-toxicity.
机译:这篇评论显示了针对材料选择的步骤,这些步骤集中在基于透明质酸(HA)的医疗设备的设计和开发上。该选择基于化学和机械性能,生物相容性,灭菌,安全性和放大成本。这些事实在工业化过程中起着至关重要的作用。说明了批准的包含HA的医疗设备,以识别关键参数。这项工作的第一部分涉及到对化学和机械方面进行全面表征,过程的可重复性以及扩大规模的步骤。在第二阶段,我们旨在描述临床前的体外和体内测定以及临床试验的选定实例。此外,重要的是要在研发(R&D)过程中牢记使用标准化(ISO标准)以实现主要目标(即最终设备的功能性和安全性)的法规事务。为了保留可重现的实验数据,以根据质量和记录的制造数据为设备准备有效的主文件,严格的研发过程可能有助于临床翻译。由于医管局领域的基础研究并未关注开发过程中使用的原材料的纯度和质量,因此仍在进行激烈的辩论。因此,需要实现下一代设备,以克服现有技术在功效,生物降解性和无毒性方面的局限性。

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