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胎盘生长因子缺乏对小鼠行为、神经解剖和脑血管的影响。

Effects of placental growth factor deficiency on behavior, neuroanatomy, and cerebrovasculature of mice.

机构信息

Department of Biomedical and Molecular Sciences, Queen's University , Kingston, Ontario , Canada.

Mouse Imaging Centre, Hospital for Sick Children , Toronto, Ontario , Canada.

出版信息

Physiol Genomics. 2018 Oct 1;50(10):862-875. doi: 10.1152/physiolgenomics.00076.2018. Epub 2018 Aug 17.

Abstract

Preeclampsia, a hypertensive syndrome occurring in 3-5% of human pregnancies, has lifelong health consequences for fetuses. Cognitive ability throughout life is altered, and adult stroke risk is increased. One potential etiological factor for altered brain development is low concentrations of proangiogenic placental growth factor (PGF). Impaired PGF production may promote an antiangiogenic fetal environment during neural and cerebrovascular development. We previously reported delayed vascularization of the hindbrain, altered retinal vascular organization, and less connectivity in the circle of Willis in Pgf mice. We hypothesized Pgf mice would have impaired cognition and altered brain neuroanatomy in addition to compromised cerebrovasculature. Cognitive behavior was assessed in adult Pgf and Pgf mice by four paradigms followed by postmortem high-resolution MRI of neuroanatomy. X-ray microcomputed tomography imaging investigated the three-dimensional cerebrovascular geometry in another cohort. Pgf mice exhibited poorer spatial memory, less depressive-like behavior, and superior recognition of novel objects. Significantly smaller volumes of 10 structures were detected in the Pgf compared with Pgf brain. Pgf brain had more total blood vessel segments in the small-diameter range. Lack of PGF altered cognitive functions, brain neuroanatomy, and cerebrovasculature in mice. Pgf mice may be a preclinical model for the offspring effects of low-PGF preeclampsia gestation.

摘要

先兆子痫是一种发生在 3-5%人类妊娠中的高血压综合征,对胎儿有终身的健康影响。认知能力会发生变化,成年中风的风险会增加。胎盘生长因子(PGF)浓度低可能是改变大脑发育的一个潜在病因。PGF 产生受损可能会在神经和脑血管发育过程中促进胎儿的抗血管生成环境。我们之前报道过 Pgf 小鼠的后脑血管发育延迟、视网膜血管组织改变以及大脑中脑动脉环的连通性降低。我们假设 Pgf 小鼠除了脑血管受损外,还会出现认知障碍和大脑神经解剖结构改变。通过四个范式评估成年 Pgf 和 Pgf 小鼠的认知行为,然后对神经解剖结构进行死后高分辨率 MRI 检查。另一组研究采用 X 射线微计算机断层扫描成像技术研究了三维脑血管几何结构。与 Pgf 相比,Pgf 小鼠表现出较差的空间记忆、较少的抑郁样行为和更好的新物体识别能力。与 Pgf 大脑相比,Pgf 大脑的 10 个结构体积明显较小。Pgf 大脑的小直径范围内的总血管段更多。缺乏 PGF 会改变小鼠的认知功能、大脑神经解剖结构和脑血管。Pgf 小鼠可能是低 PGF 先兆子痫妊娠对子代影响的临床前模型。

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