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Copper-Chitosan Nanocomposite Hydrogels Against Aflatoxigenic

机译:铜 - 壳聚糖纳米复合水分对虾

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摘要

The integration of copper nanoparticles as antifungal agents in polymeric matrices to produce copper polymer nanocomposites has shown excellent results in preventing the growth of a wide variety of toxigenic fungi. Copper-chitosan nanocomposite-based chitosan hydrogels (Cu-Chit/NCs hydrogel) were prepared using a metal vapor synthesis (MVS) and the resulting samples were described by transmission electron microscopy (TEM), X-ray fluorescence analysis (XRF), and small-angle X-ray scattering (SAXS). Aflatoxin-producing medium and VICAM aflatoxins tests were applied to evaluate their ability to produce aflatoxins through various strains of Aspergillus flavus associated with peanut meal and cotton seeds. Aflatoxin production capacity in four fungal media outlets revealed that 13 tested isolates were capable of producing both aflatoxin B1 and B2. Only 2 A. flavus isolates (Af11 and Af 20) fluoresced under UV light in the A. flavus and parasiticus Agar (AFPA) medium. PCR was completed using two specific primers targeting aflP and aflA genes involved in the synthetic track of aflatoxin. Nevertheless, the existence of aflP and aflA genes indicated some correlation with the development of aflatoxin. A unique DNA fragment of the expected 236 bp and 412 bp bands for aflP and aflA genes in A. flavus isolates, although non-PCR fragments have been observed in many other Aspergillus species. This study shows the antifungal activity of Cu-Chit/NCs hydrogels against aflatoxigenic strains of A. flavus. Our results reveal that the antifungal activity of nanocomposites in vitro can be effective depending on the type of fungal strain and nanocomposite concentration. SDS-PAGE and native proteins explain the apparent response of cellular proteins in the presence of Cu-Chit/NCs hydrogels. A. flavus treated with a high concentration of Cu-Chit/NCs hydrogels that can decrease or produce certain types of proteins. Cu-Chit/NCs hydrogel decreases the effect of G6DP isozyme while not affecting the activity of peroxidase isozymes in tested isolates. Additionally, microscopic measurements of scanning electron microscopy (SEM) showed damage to the fungal cell membranes. Cu-Chit/NCS hydrogel is an innovative nano-biopesticide produced by MVS is employed in food and feed to induce plant defense against toxigenic fungi.
机译:铜纳米粒子作为聚合物基质中的抗真菌剂的整合,以生产铜聚合物纳米复合材料表明,良好的结果导致预防各种毒性真菌的生长。使用金属蒸汽合成(MV)制备铜 - 壳聚糖纳米复合材料的壳聚糖水凝胶(Cu-Chit / NCS水凝胶),并通过透射电子显微镜(TEM),X射线荧光分析(XRF)来描述所得的样品。小角度X射线散射(萨克斯)。制备生产培养基和viCAM黄曲霉毒素试验以评估它们通过与花生膳食和棉籽相关的各种曲霉菌株生产过曲霉毒素的能力。四种真菌媒体出口中的黄曲霉毒素生产能力显示,13个测试的分离物能够产生黄曲霉毒素B1和B2。在A.FlaVus和Parasiticus琼脂(AFPA)培养基中仅在UV光下荧光的2A.FlaVus分离物(AF11和AF 20)。使用靶向AFLP和AFLA基因的两种特异性引物完成PCR,涉及涉及过敏毒素的合成轨道的AFLA基因。然而,AFLP和AFLA基因的存在表明与黄曲霉毒素的发展有一些相关性。虽然在许多其他曲霉菌物种中已经观察到非PCR片段,但是在A.FlaVus分离物中的预期236bp和412bp条带的独特DNA片段。该研究表明了Cu-Chit / NCS水凝胶对A.FlaVus的黄萎毒性菌株的抗真菌活性。我们的研究结果表明,体外纳米复合材料的抗真菌活性可根据真菌菌株和纳米复合材料浓度的类型而有效。 SDS-PAGE和Native蛋白解释了Cu-Chit / NCS水凝胶存在中细胞蛋白的表观响应。 A.用高浓度的Cu-Chit / NCS水凝胶治疗的味道,可降低或产生某些类型的蛋白质。 Cu-Chit / NCS水凝胶降低G6DP同工酶的作用,同时不影响测试分离株中过氧化物酶同工酶的活性。另外,扫描电子显微镜(SEM)的微观测量显示对真菌细胞膜的损伤。 Cu-Chit / NCS Hydrogel是一种创新的纳米生物酶,由MVS生产用于食品和饲料以诱导植物防御毒性真菌。

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