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首页> 外文期刊>Journal of Alzheimer's disease: JAD >Brain Amyloidosis and BDNF Deficiency Have Opposite Effects on Brain Volumes in A beta PP/PS1 Mice Both in vivo and ex vivo
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Brain Amyloidosis and BDNF Deficiency Have Opposite Effects on Brain Volumes in A beta PP/PS1 Mice Both in vivo and ex vivo

机译:脑淀粉样变性病和BDNF缺乏症对体内和离体ββPP / PS1小鼠的脑容量有相反的影响

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Magnetic resonance imaging (MRI) volumetry is widely used in Alzheimer's disease (AD) research and diagnostics alongside clinical assessment. Yet few MRI volumetry studies have been conducted in AD model mice with mixed results. We performed in vivo and ex vivo MRI and extensive postmortem histological analysis in transgenic mice derived from crossing amyloid plaque producing A beta PP/PS1 mice with brain-derived neurotrophic factor (BDNF)(+/-) mice. This allowed us to compare developmental volumetric changes due to BDNF deficiency with progressive changes due to amyloid accumulation. We found decreased whole brain volume at 3 months and decreased cortical volume at both 3 and 8 months in vivo in BDNF+/- Tg mice but increased whole brain and cortical volumes at 8 months in A beta PP/PS1 mice. Consistent with this, the postmortem histological analysis showed decreased brain parenchymal area inBDNF(+/-) mice but an increase in A beta PP/PS1 mice. BDNF gene deficiency did not affect brain amyloid load or astrogliosis, but led to decreased dentate gyrus length, whereas A beta PP/PS1 mice had significantly increased amyloid load, astrogliosis, and decreased neurogenesis. Distinct and layer-specific effects were found in the hippocampus of A beta PP/PS1 and BDNF+/- mice. In contrast to human AD patients, brain atrophy in amyloid producing mice appears to be masked by volume increase due to amyloid accumulation and especially accompanying astrogliosis. Our results indicate that cortical MRI volumetry can be used to some extent as a proxy to progressive brain amyloidosis in preclinical studies.
机译:磁共振成像(MRI)量表与临床评估一起广泛用于阿尔茨海默氏病(AD)的研究和诊断。在AD模型小鼠中进行的MRI容积研究很少,结果不一。我们在转基因小鼠中进行了体内和离体MRI以及广泛的死后组织学分析,该转基因小鼠是由产生淀粉样斑块的AβPP / PS1小鼠与脑源性神经营养因子(BDNF)(+/-)小鼠杂交而成。这使我们能够将由于BDNF缺乏引起的发育体积变化与由于淀粉样蛋白积累引起的进行性变化进行比较。我们发现在BDNF +/- Tg小鼠体内3个月时全脑体积减少,在3个月和8个月体内皮质体积减少,而在A beta PP / PS1小鼠中,在8个月时全脑体积和皮质体积增加。与此一致的是,尸体组织学分析显示,BDNF(+/-)小鼠的脑实质区域减少,但A beta PP / PS1小鼠的脑实质区域增加。 BDNF基因缺陷并不影响脑淀粉样蛋白负荷或星形胶质增生,但导致齿状回长度减少,而A beta PP / PS1小鼠具有明显增加的淀粉样蛋白负荷,星形胶质增生和神经发生减少。在A beta PP / PS1和BDNF +/-小鼠的海马中发现了明显的和层特异性的作用。与人类AD患者相反,淀粉样蛋白产生小鼠的大脑萎缩似乎被淀粉样蛋白积累引起的体积增加所掩盖,尤其是伴随星形胶质变。我们的结果表明,在临床前研究中,皮质MRI容积可以在某种程度上用作进行性脑淀粉样变性的替代指标。

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