植物的电化学分析

Mansi Gandhi, K. Amreen
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引用次数: 3

摘要

植物界的不同品种的分析或指纹是基于生物活性成分,这些成分被系统地分离出来进行详细分析。次生产物在确定不同植物物种的生态生理方面起着关键作用。在了解与植物有关的各种特征、特征和条件方面,分析领域起着至关重要的作用。可变技术的进步促进了用于非侵入性分子检测的高度特异性传感器的发展。此外,许多连字技术已经导致了高特异性集成系统的发展,允许多路检测,如高效液相色谱,气相色谱等,这是相当麻烦和不经济的。相比之下,电化学传感器是一种很有前途的替代方案,由于有效的信号转导,它能够对化合物进行精确识别。然而,由于在了解微量代谢物的原理和非氧化还原特性方面存在一些瓶颈,这一领域尚未得到探索。本文综述了植物的电化学基础,并与其他传统方法进行了比较,并对其进行了积极和消极的展望。合并领域的研究是有限的;因此,相关的非植物化学报告被包括在内,以便更好地比较报告,以扩大这项工作的范围。
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Electrochemical Profiling of Plants
The profiling, or fingerprinting, of distinct varieties of the Plantae kingdom is based on the bioactive ingredients, which are systematically segregated to perform their detailed analysis. The secondary products portray a pivotal role in defining the ecophysiology of distinct plant species. There is a crucial role of the profiling domain in understanding the various features, characteristics, and conditions related to plants. Advancements in variable technologies have contributed to the development of highly specific sensors for the non-invasive detection of molecules. Furthermore, many hyphenated techniques have led to the development of highly specific integrated systems that allow multiplexed detection, such as high-performance liquid chromatography, gas chromatography, etc., which are quite cumbersome and un-economical. In contrast, electrochemical sensors are a promising alternative which are capable of performing the precise recognition of compounds due to efficient signal transduction. However, due to a few bottlenecks in understanding the principles and non-redox features of minimal metabolites, the area has not been explored. This review article provides an insight to the electrochemical basis of plants in comparison with other traditional approaches and with necessary positive and negative outlooks. Studies consisting of the idea of merging the fields are limited; hence, relevant non-phytochemical reports are included for a better comparison of reports to broaden the scope of this work.
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CiteScore
6.30
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