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壳聚糖聚合物作为平台在传感器制造和传感应用中的性能。

Performance of chitosan polymer as platform during sensors fabrication and sensing applications.

机构信息

Egyptian Petroleum Research Institute, Nasr City, Cairo, Egypt.

Basic Sciences Department, Imam Abdulrahman Bin Faisal University, Dammam, Saudi Arabia.

出版信息

Int J Biol Macromol. 2020 Dec 15;165(Pt A):402-435. doi: 10.1016/j.ijbiomac.2020.09.130. Epub 2020 Sep 29.

Abstract

Chitosan is an important polymer produced from deacetylation of several sea and insects crusts. Due to its environmental fate and biological biocompatibility, it can be used in several biological and environmental applications. Sensing of biological compounds in human bodies and also in serum, blood, and different body fluids has found an important application instead of direct determination of the body fluids using complicated tools. Sensing process of biological compounds during bio-analysis of the biological systems, especially human fluids lack of several parameters including: high sensitivity, repeatability, speed of analysis and biocompatibility of the used analytical methods, especially in-vivo analysis. That was due to the time between sample handling and sample determination can change various components and concentrations of the bio-compounds. The need for in-situ analysis was directed the researchers for biosensors to overcome the upgrading problems of bio-analysis. Biosensors were the future of this issue. Chitosan can reserve as great platform for fabrication of different sensors to determine the elements, compounds and body bioactive compounds. The presence of different terminal amino and hydroxyl groups within chitosan framework facilitates the immobilization of different biomarkers to be used as sensing elements for the determined compounds. The use of chitosan as sensors platform was enhanced by using chitosan in its nanoforms.

摘要

壳聚糖是一种从几种海洋和昆虫外壳中脱乙酰化得到的重要聚合物。由于其环境归宿和生物相容性,它可以用于多种生物和环境应用。在人体和血清、血液以及不同体液中生物化合物的检测已经找到了重要的应用,而不是使用复杂的工具直接测定体液。在生物系统的生物分析过程中,特别是在体内分析中,生物化合物的检测过程缺乏几个参数,包括:高灵敏度、重复性、分析速度和分析方法的生物相容性。这是因为在样本处理和样本测定之间的时间间隔内,生物化合物的各种成分和浓度可能会发生变化。对原位分析的需求促使研究人员开发生物传感器来克服生物分析的升级问题。生物传感器是解决这个问题的未来方向。壳聚糖可以作为制造不同传感器的平台,以确定元素、化合物和生物活性化合物。壳聚糖骨架中存在的不同末端氨基和羟基基团有利于固定不同的生物标志物,将其用作所测定化合物的传感元件。通过使用壳聚糖的纳米形式,壳聚糖作为传感器平台的使用得到了增强。

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