首页> 外文期刊>The Journal of Physiology >Disproportional effects of Igf2 knockout on placental morphology and diffusional exchange characteristics in the mouse.
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Disproportional effects of Igf2 knockout on placental morphology and diffusional exchange characteristics in the mouse.

机译:Igf2基因敲除对小鼠胎盘形态和扩散交换特性的不成比例作用。

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摘要

Both complete knockout of the Igf2 gene (Igf2null(+/-)) and knockout of its placental specific transcript alone (Igf2P0(+/-)) lead to fetal growth restriction in mice. However, in the Igf2null(+/-) this growth restriction occurs concurrently in gestation with placental growth restriction, whereas, placental growth restriction precedes fetal growth restriction in the Igf2P0(+/-) mouse. Previous studies have shown that the Igf2P0(+/-) placenta has proportionate reductions in its cellular compartments and its diffusional exchange characteristics. Yet, nothing is known about the structural development or diffusional exchange characteristics of the Igf2null(+/-) mouse. Hence, this study compares the structural properties (using stereology) and diffusional exchange characteristics (using measurement of permeability-surface area product, P.S, of three inert hydrophilic tracers) of the Igf2null(+/-) and the Igf2P0(+/-) placenta to identify the role of Igf2 in the development of the labyrinthine exchange membrane and its functional consequences. Our data show disproportionate effects of complete Igf2 ablation on the compartments of the placenta, not seen when the placental-specific transcript alone is deleted. Furthermore, although the theoretical diffusing capacity (calculated from the stereological data) of the Igf2null(+/-) placenta was reduced relative to control, there was no effect of the complete knockout on permeability surface area available for small hydrophilic tracers. This is in contrast to the Igf2P0(+/-) placenta, where theoretical diffusion capacity and P.S values were reduced similarly. Total ablation of the Igf2 gene from the fetoplacental unit in the mouse therefore results in a disproportionate growth of placental compartments whereas, deleting the placental specific transcript of Igf2 alone results in proportional placental growth restriction. Thus, placental phenotype depends on the degree of Igf2 gene ablation and the interplay between placental and fetal Igf2 in the mouse.
机译:完全敲除Igf2基因(Igf2null(+/-))和单独敲除其胎盘特异性转录本(Igf2P0(+/-))都会导致小鼠胎儿生长受限。但是,在Igf2null(+/-)中,这种生长限制在妊娠与胎盘生长限制同时发生,而在Igf2P0(+/-)小鼠中,胎盘生长限制先于胎儿生长限制。以前的研究表明,Igf2P0(+/-)胎盘在其细胞区室和其扩散交换特征中呈比例减少。但是,有关Igf2null(+/-)小鼠的结构发育或扩散交换特性一无所知。因此,本研究比较了Igf2null(+/-)和Igf2P0(+/-)的结构特性(使用立体学)和扩散交换特性(使用了三种惰性亲水示踪剂的渗透率-表面积积PS的测量)胎盘以鉴定Igf2在迷宫交换膜的发育中的作用及其功能后果。我们的数据显示,完全Igf2切除对胎盘区室的影响不成比例,仅删除胎盘特异性转录本时未见。此外,尽管相对于对照而言,Igf2null(+/-)胎盘的理论扩散能力(从立体数据计算得出)降低了,但完整的敲除对小型亲水性示踪剂的渗透率表面积没有影响。这与Igf2P0(+/-)胎盘相反,后者的理论扩散能力和P.S值均降低。因此,从小鼠的胎盘单元中完全切除Igf2基因会导致胎盘区室不成比例的生长,而仅删除Igf2的胎盘特异性转录本会导致成比例的胎盘生长受限。因此,胎盘表型取决于小鼠中Igf2基因消融的程度以及胎盘和胎儿Igf2之间的相互作用。

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