稳定植酸酶的米糠纳米纤维复合材料。

Q1 Chemistry
Upendra A Rathnayake, Tharindu Senapathi, Chanaka Sandaruwan, Sanja Gunawardene, Veranja Karunaratne, Nilwala Kottegoda
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引用次数: 7

摘要

植酸酶是一种热不稳定的生物活性酶,本研究探讨了米糠(农业废弃物)纳米包封植酸酶的潜在应用。采用静电纺丝法将米糠转化为直径20 ~ 50 nm的纳米纤维。优化pH、粘度、电压和静电纺丝电极间距后,包封植酸酶,用三聚磷酸钠交联纤维。用三聚磷酸钠包封交联后,植酸酶的热稳定性提高了90℃。在不同温度下监测植酸酶的活性。纯酶在80°C时失去活性,而包封在纳米纤维中的酶在170°C时仍具有活性。这项研究为纳米技术在许多废物中的增值以及通过可持续的方法改善一系列生物材料的性能开辟了许多机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Rice bran nanofiber composites for stabilization of phytase.

Rice bran nanofiber composites for stabilization of phytase.

Rice bran nanofiber composites for stabilization of phytase.

Rice bran nanofiber composites for stabilization of phytase.

This study explores the potential application of rice bran (agro waste) to nano-encapsulate phytase, which is a thermally unstable biologically active enzyme. Rice bran was converted to nanofibers (20-50 nm in diameter) using electrospinning. After optimizing the pH, viscosity, voltage and the distance between electrodes for electrospinning, phytase enzyme was encapsulated and the fibers were cross-linked using sodium tripolyphosphate. Thermal stability of phytase enzyme was improved by 90 °C when they are encapsulated and cross-linked with sodium tripolyphosphate. The activity of the phytase enzyme was monitored at different temperatures. The activity of the pure enzyme was lost at 80 °C while the enzyme encapsulated into nanofibers demonstrated the activity up to 170 °C. This study opens up many opportunities for nanotechnology value addition to many waste materials and also to improve the properties of a range of biomaterials through a sustainable approach.

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来源期刊
Chemistry Central Journal
Chemistry Central Journal 化学-化学综合
CiteScore
4.40
自引率
0.00%
发文量
0
审稿时长
3.5 months
期刊介绍: BMC Chemistry is an open access, peer reviewed journal that considers all articles in the broad field of chemistry, including research on fundamental concepts, new developments and the application of chemical sciences to broad range of research fields, industry, and other disciplines. It provides an inclusive platform for the dissemination and discussion of chemistry to aid the advancement of all areas of research. Sections: -Analytical Chemistry -Organic Chemistry -Environmental and Energy Chemistry -Agricultural and Food Chemistry -Inorganic Chemistry -Medicinal Chemistry -Physical Chemistry -Materials and Macromolecular Chemistry -Green and Sustainable Chemistry
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