Physicochemical characterization and cytotoxicity assessment of sodium dodecyl sulfate (SDS) modified chitosan (SDSCS) before and after removal of aflatoxins (AFs) as a potential mycotoxin Binder.

Q1 Environmental Science Toxicology Reports Pub Date : 2024-11-26 eCollection Date: 2024-12-01 DOI:10.1016/j.toxrep.2024.101836
Afsaneh Moghaddam Jafari, Asma Golmakani, Amir Moghaddam Jafari
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Abstract

Aflatoxins in food and feed with prominent toxic effects have jeopardized public health for decades. This investigation intends to explore synthesized SDS-modified chitosan as new generation of binder for removal of aflatoxin using a straightforward ionic cross-linking approach. The primary objective of this technique was to enhance affinity and adsorption capability of SDSCS towards aflatoxins. In this context, physicochemical properties of SDSCS characterized with advanced analytical techniques such as scanning electron microscope (SEM) coupled with energy dispersive X-ray spectroscopy (EDS) and Fourier transform infrared spectroscopy (FT-IR) before and after removal of aflatoxin. In this study, effect of the pH on the adsorption of aflatoxins (6ppb) indicated that the increase in SDSCS concentration from low (0.5) to high (2 %) resulted in an increase of about 80 %, 78 % and 81 % in the adsorption percentage of AFB1, AFG1, and AFB2 & AFG2, respectively. FT-IR analysis showed the intramolecular interactions of the amine groups of chitosan and sulfate group of SDS formed a stable complex in the removal of aflatoxin that verified with appearance of three new additional peaks at 1323.50, 984.34 and 603.42 cm-1. Notably, SEM images revealed that the porous SDSCS network was filled with aflatoxin molecules supported with EDS findings. Also, in vitro cytotoxicity assessments demonstrated that SDSCS protected HepG2 cells against cytotoxic effect caused by aflatoxin (5 µM) in a concentration-dependent manner compared to the control (p<0.01). Collectively, the adsorption mechanism may involve attraction of anionic aflatoxin molecule into the interconnected pores of SDSCS complex with numerous cationic active site via hydrogen bond and van der waals force.

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十二烷基硫酸钠(SDS)改性壳聚糖(SDSCS)作为一种潜在的霉菌毒素粘合剂,在去除黄曲霉毒素(AFs)前后的理化特性和细胞毒性评估。
食品和饲料中的黄曲霉毒素具有显著的毒性作用,几十年来一直危害着公众健康。本研究旨在探索合成sds修饰壳聚糖作为新一代去除黄曲霉毒素的离子交联剂。该技术的主要目的是提高SDSCS对黄曲霉毒素的亲和力和吸附能力。在此背景下,利用扫描电镜(SEM)、能量色散x射线能谱(EDS)和傅里叶变换红外光谱(FT-IR)等先进分析技术对SDSCS去除黄曲霉毒素前后的理化性质进行了表征。在本研究中,pH对黄曲霉毒素(6ppb)吸附的影响表明,SDSCS浓度由低(0.5)增加到高(2 %),导致AFB1、AFG1、AFB2和AFG2的吸附百分比分别增加约80 %、78 %和81 %。FT-IR分析表明,壳聚糖的胺基与SDS的硫酸盐基在分子内相互作用形成稳定的配合物,在1323.50、984.34和603.42 cm-1处出现了三个新的附加峰。值得注意的是,SEM图像显示多孔SDSCS网络中充满了黄曲霉毒素分子,这与EDS结果一致。此外,体外细胞毒性评估表明,与对照组相比,SDSCS以浓度依赖的方式保护HepG2细胞免受黄曲霉毒素(5 µM)引起的细胞毒性作用
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Toxicology Reports
Toxicology Reports Environmental Science-Health, Toxicology and Mutagenesis
CiteScore
7.60
自引率
0.00%
发文量
228
审稿时长
11 weeks
期刊最新文献
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