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首页> 外文期刊>Nanoscale >IGF signalling and endocytosis in the human villous placenta in early pregnancy as revealed by comparing quantum dot conjugates with a soluble ligand
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IGF signalling and endocytosis in the human villous placenta in early pregnancy as revealed by comparing quantum dot conjugates with a soluble ligand

机译:IGF信号和内吞作用的人在怀孕早期胎盘绒毛通过比较量子点与一个配合可溶性配体

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摘要

A complex combination of trafficking and signalling occurs at the surface of the placenta. The system delivers maternal nutrients to the fetus and facilitates gaseous exchange, whilst mediating signal transduction to support and stimulate the growth of the placenta itself. IGF-I is acknowledged as a maternally-derived ligand important in the regulation of placental growth. Here we show that quantum dots bearing IGF can stimulate IGF receptor (IGF1R) phosphorylation in the syncytio- (maternal-facing) and cyto- (fetal-facing) trophoblast bilayer that forms the outer boundary of the placenta, in a distribution similar to the one resulting from exposure to a soluble ligand. The conjugates are internalised by a clathrin-dependent pathway and delivered to a syncytioplasmic compartment that differs from conventional late endosomes and lysosomes. Two discrete downstream responses are evident in different cellular compartments: phosphorylation of P70S6K in the non-proliferative syncytiotrophoblast and of AKT in the cytotrophoblast. Co-conjugation of IGF-quantum dots with an RGD-containing ligand permits penetration beyond the syncytium, into the cytoplasm of the underlying cytotrophoblast. These data reveal the existence of a trans-syncytial pathway that allows maternal mitotic signals to penetrate to the inner progenitor cells, which must proliferate to support placental and consequently fetal growth.
机译:一个复杂的走私和组合信号发生在表面的胎盘。系统提供的孕产妇营养胎儿和促进气体交换,同时支持和调节信号转导刺激胎盘本身的发展。IGF-I被公认为母体配体的重要调节胎盘增长。IGF可以刺激IGF受体(IGF1R)磷酸化syncytio -(maternal-facing)和表示细胞(fetal-facing)滋养层双分子层,形成了外边界胎盘的分布相似一个接触所产生的可溶性配体。配合性的clathrin-dependent通路和交付不同于syncytioplasmic隔间传统的核内体和溶酶体。离散下游反应明显不同的细胞隔间:磷酸化non-proliferative P70S6K的合胞体滋养层和AKT的细胞滋养层。点RGD-containing配体许可证合胞体以外的渗透,进入细胞质的底层细胞滋养层。这些数据揭示的存在trans-syncytial通路,使产妇有丝分裂信号向内部渗透祖细胞,必须扩散支持胎儿胎盘,因此增长。

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