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首页> 外文期刊>Cell death & disease. >Cell necrosis, intrinsic apoptosis and senescence contribute to the progression of exencephaly to anencephaly in a mice model of congenital chranioschisis
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Cell necrosis, intrinsic apoptosis and senescence contribute to the progression of exencephaly to anencephaly in a mice model of congenital chranioschisis

机译:细胞坏死,内在的凋亡和衰老有助于在先天性嗜酸性的小鼠模型中对脑病的生效进展

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Exencephaly/anencephaly is one of the leading causes of neonatal mortality and the most extreme open neural tube defect with no current treatments and limited mechanistic understanding. We hypothesized that exencephaly leads to a local neurodegenerative process in the brain exposed to the amniotic fluid as well as diffuse degeneration in other encephalic areas and the spinal cord. To evaluate the consequences of in utero neural tissue exposure, brain and spinal cord samples from E17 exencephalic murine fetuses (maternal intraperitoneal administration of valproic acid at E8) were analyzed and compared to controls and saline-injected shams (n?=?11/group). Expression of apoptosis and senescence genes (p53, p21, p16, Rbl2, Casp3, Casp9) was determined by qRT-PCR and protein expression analyzed by western blot. Apoptosis was measured by TUNEL assay and PI/AV flow cytometry. Valproic acid at E8 induced exencephaly in 22% of fetuses. At E17 the fetuses exhibited the characteristic absence of cranial bones. The brain structures from exencephalic fetuses demonstrated a loss of layers in cortical regions and a complete loss of structural organization in the olfactory bulb, hippocampus, dental gyrus and septal cortex. E17 fetuses had reduced expression of NeuN, GFAP and Oligodendrocytes in the brain with primed microglia. Intrinsic apoptotic activation (p53, Caspase9 and 3) was upregulated and active Caspase3 localized to the layer of brain exposed to the amniotic fluid. Senescence via p21-Rbl2 was increased in the brain and in the spinal cord at the lamina I-II of the somatosensory dorsal horn. The current study characterizes CNS alterations in murine exencephaly and demonstrates that degeneration due to intrinsic apoptosis and senescence occurs in the directly exposed brain but also remotely in the spinal cord.
机译:Eutencephy / Ancentphyall是新生儿死亡率的主要原因之一,也是最极端的开放神经管缺陷,没有目前的治疗和机械理解有限。我们假设实际脑导致脑暴露于羊水的脑中的局部神经变性过程以及其他脑脊区域和脊髓中的漫反应。为了评估子宫神经组织暴露的后果,分析了来自E17肺鼠胎儿的脑和脊髓样品(在E8的丙甲酸的丙戊酸施用丙戊酸的丙甲酸)中,与对照和盐水注入的假(n?=α11/组)进行比较)。通过QRT-PCR和Western印迹分析的QRT-PCR和蛋白质表达测定凋亡和衰老基因的表达(P53,P21,P16,RBL2,CASP3,CASP9)。通过TUNEL测定和PI / AV流式细胞术测量细胞凋亡。 E8的丙戊酸在22%的胎儿中诱导实际肢体。在E17,胎儿表现出颅骨的特征缺失。来自脑卒中胎儿的脑结构证明了皮质区域中的层数,以及嗅灯泡,海马,牙科转血和隔膜皮层的结构组织完全丧失。 e17胎儿在脑血上的头脑中患有巨大,GFAP和少突胶质细胞的表达减少。将内在凋亡激活(P53,Caspase9和3)上调,并将活性胱天悬浮酶局部局部化为暴露于羊水液的脑层。通过P21-RBL2的衰老在大脑和脊髓中增加了患有躯体感应背角的椎间盘II的脊髓。目前的研究表征了鼠实心肢体中的CNS改变,并证明由于内在凋亡和衰老导致的变性发生在直接暴露的脑中,但在脊髓中偏心。

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