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Bioengineered Polymer/Composites as Advanced 'Biological Detection Sorbitol: An Application in Healthcare Sector

机译:生物工程聚合物/复合材料作为先进的生物检测山梨糖醇:医疗部门的应用

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摘要

Bioengineered polymers and nanomaterials have emerged as promising and advanced materials for the fabrication and development of novel biosensors. Nanotechnology-enabled biosensor methods have high sensitivity, selectivity and more rapid detection of an analyte. Biosensor based methods are more rapid and simple with higher sensitivity and selectivity and can be developed for point-of-care diagnostic testing. Development of a simple, sensitive and rapid method for sorbitol detection is of considerable significance to efficient monitoring of diabetes-associated disorders like cataract, neuropathy, and nephropathy at initial stages. This issue encourages us to write a review that highlights recent advancements in the field of sorbitol detection as no such reports have been published till the date. The first section of this review will be dedicated to the conventional approaches or methods that had been playing a role in detection. The second part focused on the emerging field i.e. biosensors with optical, electrochemical, piezoelectric, etc. approaches for sorbitol detection and the importance of its detection in healthcare application. It is expected that this review will be very helpful for readers to know the different conventional and recent detection techniques for sorbitol at a glance.
机译:生物工程聚合物和纳米材料已成为新型生物传感器的制造和开发的有前途和先进的材料。支持纳米技术的生物传感器方法具有高灵敏度,选择性和更快速地检测分析物。基于生物传感器的方法更加迅速,简单,灵敏度和选择性更高,可以开发用于护理点诊断测试。山梨糖醇检测的简单,敏感和快速的方法的开发对于有效监测初始阶段的白内障,神经病变和肾病等糖尿病相关疾病的显着显着性。此问题鼓励我们编写审查,以突出山梨糖醇检测领域的最新进步,因为直到日期没有公布这样的报告。本综述的第一部分将致力于在检测中发挥作用的传统方法或方法。第二部分集中在新兴领域I.E.具有光学,电化学,压电等的生物传感器,用于山梨糖醇检测方法和其检测在医疗保健应用中的重要性。预计这项评论将对读者了解山梨糖醇的不同常规和最近检测技术非常有帮助。

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