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Impairment of the immune response after transcuticular introduction of the insect gonadoinhibitory and hemocytotoxic peptide Neb-colloostatin: A nanotech approach for pest control

机译:昆虫吞咽抑制和血细胞毒性肽的特殊引入后免疫应答损害损伤Neb-colloostatin:一种害虫防治的纳米技术方法

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This article shows that nanodiamonds can transmigrate through the insect cuticle easily, and the doses used were not hemocytotoxic and did not cause inhibition of cellular and humoral immune responses in larvae, pupae and adults of Tenebrio molitor. The examination of the nanodiamond biodistribution in insect cells demonstrated the presence of nanodiamond aggregates mainly in hemocytes, where nanoparticles were efficiently collected as a result of phagocytosis. To a lesser extent, nanodiamond aggregates were also detected in fat body cells, while they were not observed in Malpighian tubule cells. We functionalized nanodiamonds with Neb-colloostatin, an insect hemocytotoxic and gonadoinhibitory peptide, and we showed that this conjugate passed through the insect cuticle into the hemolymph, where the peptide complexed with the nanodiamonds induced apoptosis of hemocytes, significantly decreased the number of hemocytes circulating in the hemolymph and inhibited cellular and humoral immune responses in all developmental stages of insects. The results indicate that it is possible to introduce a peptide that interferes with the immunity and reproduction of insects to the interior of the insect body by means of a nanocarrier. In the future, the results of these studies may contribute to the development of new pest control agents.
机译:本文展示纳米金刚石可以容易地通过昆虫角质层翻转,使用的剂量不是血细胞毒性,并且不会导致幼虫,蛹和成虫的细胞和体液免疫应答抑制。在昆虫细胞中纳米二胺生物分布的检查证明了主要在血细胞中存在纳米胺聚集体,其中由于吞噬作用而有效地收集纳米颗粒。在较小程度上,在脂肪体细胞中也检测到纳米二胺聚集体,而在Malpighian小管细胞中未观察到它们。我们用Neb-colloostatin,昆虫血细胞毒素和促性腺抑制肽的纳米金刚胺官能化,我们表明,这种缀合物通过昆虫角质层进入血淋巴,其中肽与纳米金刚胺诱导血细胞的凋亡,显着降低了血细胞的血统数量血淋巴并抑制昆虫所有发育阶段的细胞和体液免疫应答。结果表明,通过纳米载体,可以引入干扰昆虫的免疫和再现昆虫的肽的肽。未来,这些研究的结果可能有助于开发新的害虫控制剂。

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