Deng Yanyao, Hou Deren, Tian Mi, Li Wei, Feng Xialu
Department of Neurology, Third Xiangya Hospital, Central South University, Changsha 410013, China. E-mail:
Nan Fang Yi Ke Da Xue Xue Bao. 2014 Mar;34(3):323-8.
To investigate the presence of β-amyloid peptide (Aβ) deposition in the cerebellum and the expression of related miRNAs in the cerebellum of a mouse model of Alzheimer disease.
Twelve 12-month-old APPswe/PSδE9 double transgenic mice and 12 wild-type C57 mice were sacrificed and the brain tissues were taken for examination. The right hemisphere was stained with Congo red to observe the deposition of amyloid substances, and from the left hemisphere, the hippocampus and the cerebellum were dissected for detecting the expression of miRNA-135a-5p, miRNA-298-5p, miRNA-466b-3p and miR-669f-3p using real-time PCR.
Congo red staining revealed the presence of Aβ deposition in both the hippocampus and the cerebellum of the transgenic mice but not in the control mice. Real-time PCR showed a significantly lower expression of the 4 miRNAs in the hippocampus in the transgenic mice than in the control mice (P<0.05). The expression of miRNA-135a-5p, miRNA-298-5p, and miR-669f-3p in the cerebellum was significantly lower in the transgenic mice than in the control mice (P<0.05). The expression of miRNA-298-5p and miR-669f-3p in the hippocampus was significantly lower than that in the cerebellum of the transgenic mice (P<0.05).
β deposition also occurs in the cerebellum of APPswe/PSδE9 double transgenic mice, and its formation might be related to the down-regulation of miRNA-135a-5p, miRNA-298-5p, and miR-669f-3p.
研究阿尔茨海默病小鼠模型小脑内β淀粉样肽(Aβ)沉积情况以及相关微小RNA(miRNA)的表达。
处死12只12月龄的APPswe/PSδE9双转基因小鼠和12只野生型C57小鼠,取脑组织进行检测。右半球用刚果红染色观察淀粉样物质沉积,左半球分离出海马和小脑,采用实时荧光定量PCR检测miRNA-135a-5p、miRNA-298-5p、miRNA-466b-3p和miR-669f-3p的表达。
刚果红染色显示转基因小鼠海马和小脑均有Aβ沉积,而对照小鼠未出现。实时荧光定量PCR结果显示,转基因小鼠海马中这4种miRNA的表达明显低于对照小鼠(P<0.05)。转基因小鼠小脑中miRNA-135a-5p、miRNA-298-5p和miR-669f-3p的表达明显低于对照小鼠(P<0.05)。转基因小鼠海马中miRNA-298-5p和miR-669f-3p的表达明显低于小脑(P<0.05)。
APPswe/PSδE9双转基因小鼠小脑也存在β沉积,其形成可能与miRNA-135a-5p、miRNA-298-5p和miR-669f-3p的下调有关。