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Cationic polystyrene nanosphere induces autophagy through inhibition of the Akt/mTOR and activation of the AMPK signaling pathways in macrophage and epithelial cells

机译:阳离子聚苯乙烯纳米球通过抑制Akt / mTOR和激活巨噬细胞和上皮细胞中的AMPK信号通路来诱导自噬

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Nanoparticles have been used to produce a wide range of products. Those include applications in imaging and drug delivery in medicine. However, the possible adverse biological effects in human being remain unclear. Autophagy is an important catabolic process responsible for degrading and recycling long-lived proteins, cellular aggregates and damaged organelles. In addition to the well-documented role of autophagy in cell survival, a function for autophagy in cell death has long been proposed. Polystyrene could be used as biosensor and drug delivery carrier. It has been reported that cationic polystyrene (NH_2-PS) could induce cell death in RAW 264.7 and BEAS-2B cells through apoptotic and necrotic cell death. Our current study further demonstrated that autophagic cell death could also be induced by NH_2-PS. We applied bafilomycin Al, an inhibitor of autophagosome-lysosome fusion, and 3-MA, an initiator of autophagy, to determine whether inhibition of autophagy alters NH_2-PS treatment-induced cytotoxicity. The results indicated a decreased autophagy flux by bafilomycin Aland an increased cell viability by 3-MA which confirm the autophagic cell death treated with NH_2-PS. In addition, ER stress and signaling pathways related to the process of autophagy induced by NH_2-PS in RAW 264.7 and BEAS-2B cells were examined. We found that NH_2-PS significantly increased the staining of ER-specific dye and IRE la protein expression. Meanwhile, the phosphorylation of Akt/mTOR decreased and the phosphorylation of AMPK increased. Taken together, our results indicate that NH_2-PS-induced autophagic cell death was mainly occurred through inhibition of the Akt/mTOR and activation of the AMPK signaling pathways. Specifically, NH_2-PS induced ER stress in RAW and BEAS-2B cells. Thus, autophagy can be considered as an additional mechanism providing intracellular selectivity for introduced NH_2-PS nanospheres.
机译:纳米颗粒已被用于生产各种各样的产品。这些包括在医学成像和药物输送中的应用。但是,对人类可能的不良生物学影响尚不清楚。自噬是重要的分解代谢过程,负责降解和回收长寿蛋白,细胞聚集体和受损细胞器。除了充分证明自噬在细胞存活中的作用外,长期以来还提出了自噬在细胞死亡中的功能。聚苯乙烯可用作生物传感器和药物输送载体。据报道,阳离子聚苯乙烯(NH_2-PS)可以通过凋亡和坏死性细胞死亡诱导RAW 264.7和BEAS-2B细胞死亡。我们目前的研究进一步表明,NH_2-PS也可以诱导自噬细胞死亡。我们应用了bafilomycin Al(自噬体-溶酶体融合的抑制剂)和3-MA(自噬的引发剂)来确定自噬的抑制是否会改变NH_2-PS治疗诱导的细胞毒性。结果表明,通过bafilomycin Aland降低了自噬通量,并且通过3-MA提高了细胞活力,这证实了用NH_2-PS处理的自噬细胞死亡。此外,还研究了与NH 26-PS和BEAS-2B细胞中NH_2-PS诱导的自噬过程相关的ER应激和信号通路。我们发现NH_2-PS显着增加了ER特异性染料和IRE 1a蛋白表达的染色。同时,Akt / mTOR的磷酸化降低而AMPK的磷酸化增加。两者合计,我们的结果表明,NH_2-PS诱导的自噬细胞死亡主要是通过抑制Akt / mTOR和激活AMPK信号通路而发生的。具体而言,NH_2-PS在RAW和BEAS-2B细胞中诱导了ER应激。因此,自噬可以被认为是为引入的NH_2-PS纳米球提供细胞内选择性的另一种机制。

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