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Nanoconjugation prolongs endosomal signaling of the epidermal growth factor receptor and enhances apoptosis

机译:Nanoconjugation延长endosomal信号表皮生长因子受体和增强细胞凋亡

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摘要

It is becoming increasingly clear that intracellular signaling can be subject to strict spatial control. As the covalent attachment of a signaling ligand to a nanoparticle (NP) impacts ligand-receptor binding, uptake, and trafficking, nanoconjugation provides new opportunities for manipulating intracellular signaling in a controlled fashion. To establish the effect of nanoconjugation on epidermal growth factor (EGF) mediated signaling, we investigate here the intracellular fate of nanoconjugated EGF (NP-EGF) and its bound receptor (EGFR) by quantitative correlated darkfield/fluorescence microscopy and density-based endosomal fractionation. We demonstrate that nanoconjugation prolongs the dwell time of phosphorylated receptors in the early endosomes and that the retention of activated EGFR in the early endosomes is accompanied by an EGF mediated apoptosis at effective concentrations that do not induce apoptosis in the case of free EGF. Overall, these findings indicate nanoconjugation as a rational strategy for modifying signaling that acts by modulating the temporo-spatial distribution of the activated EGF-EGFR ligand-receptor complex.
机译:越来越清楚的是,可以受到严格的细胞内信号空间控制。信号配体纳米颗粒(NP)的影响中的绑定、吸收和贩卖,nanoconjugation提供了新的机遇操纵细胞内信号受控制的方式。nanoconjugation表皮生长因子(EGF)介导的信号,我们在这里进行调查细胞内的命运nanoconjugated EGF (NP-EGF)及其受体(EGFR)定量暗视野/荧光显微法和相关density-based endosomal分馏。证明nanoconjugation延长住时间的受体磷酸化早期核内体和保留激活表皮生长因子受体在核内体伴随着一个表皮生长因子介导的细胞凋亡不诱导的有效浓度细胞凋亡的情况下自由EGF。结果显示nanoconjugation作为理性的修改战略行为的信号调制的temporo-spatial分布激活EGF-EGFR中的复杂。

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