Bayer AG, Applied Physics, Engineering & Technology, Leverkusen, Germany.
R&D Pest Control, Bayer AG, Crop Science Division, Monheim, Germany.
Pestic Biochem Physiol. 2023 Feb;190:105317. doi: 10.1016/j.pestbp.2022.105317. Epub 2022 Dec 17.
Cell penetrating peptides (CPPs) are small peptides defined by their ability to deliver molecular cargo into cells. While the subject of frequent investigation for pharmaceutical drug delivery, little consideration has been given to the possibility of CPPs for use as insecticides or insecticide enhancers. Here, we characterize the entry of four fluorescently tagged CPPs into two insect cell lines and dissected midgut tissues in terms of both total quantity and mode of penetration. Fluorescent microscopy showed that substantial amounts of CPPs penetrate the plasma membrane via endosomal uptake in ovarian (Sf9) and midgut derived (AW1) lepidopteran cells and that this process was sensitive to selected endocytosis inhibitors. Differences in the quantity of uptake was observed between CPPs, and further differences were found in the ability CPP-1838 to efficiently penetrate membranes through passive diffusion. These findings were extended to primary midgut derived cells and dissected tissues suggesting that CPPs show a preference for goblet cells and that CPP-1838 shows far higher rates of penetration. CPP-1838 thus shows extraordinary abilities to penetrate cells efficiency in both a diffusional and endocytotic manner. From these results more sophisticated delivery methods based on the utilization of CPPs can be developed.
细胞穿透肽(CPPs)是一类能够将分子货物递送到细胞内的小肽,其特点是能够穿透细胞膜。CPPs 常用于药物传递系统的研究,然而,将 CPPs 作为杀虫剂或杀虫剂增强剂的可能性尚未得到充分考虑。在这里,我们描述了四种荧光标记的 CPP 进入两种昆虫细胞系和中肠组织的情况,包括总数量和穿透模式。荧光显微镜观察表明,大量 CPP 通过内吞作用穿过质膜进入卵巢(Sf9)和中肠衍生(AW1)鳞翅目细胞,并且该过程对选定的内吞作用抑制剂敏感。CPP 之间的摄取量存在差异,并且 CPP-1838 有效穿透质膜的能力通过被动扩散进一步表现出差异。这些发现扩展到原代中肠衍生细胞和解剖组织,表明 CPP 优先穿透杯状细胞,并且 CPP-1838 具有更高的穿透率。CPP-1838 因此表现出非凡的效率,能够以扩散和内吞的方式高效穿透细胞。从这些结果中,可以开发出更复杂的基于 CPP 利用的递送方法。