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Publication
Featured researches published by Cui Wei.
Journal of Visualized Experiments | 2018
Huang Chunhui; Xu Dilin; Zhang Ke; Shentu Jieyi; Yan Sicheng; Wu Dapeng; Wang Qinwen; Cui Wei
β-amyloid (Aβ) is a hydrophobic peptide with an intrinsic tendency to self-assemble into aggregates. Among various aggregates, Aβ oligomer is widely accepted as the leading neurotoxin in the progress of Alzheimers disease (AD) and is considered to be the crucial event in the pathogenesis of AD. Therefore, Aβ oligomer inhibitors might prevent neurodegeneration and have the potential to be developed as disease-modifying treatments of AD. However, different formation protocols of Aβ oligomer might lead to oligomers with different characteristics. Moreover, there are not many methods to effectively screen Aβ1-42 oligomer inhibitors. An A11 antibody can react with a subset of toxic Aβ1-42 oligomer with anti-parallel β-sheet structures. In this protocol, we describe how to prepare an A11-positive Aβ1-42 oligomer-rich sample from a synthetic Aβ1-42 peptide in vitro and to evaluate relative amounts of A11-positive Aβ1-42 oligomer in samples by a dot blotting analysis using A11 and Aβ1-42-specific 6E10 antibodies. Using this protocol, inhibitors of A11-positive Aβ1-42 oligomer can also be screened from semi-quantitative experimental results.
Journal of Visualized Experiments | 2017
Lin Jiajia; Mak Shinghung; Zheng Jiacheng; Wang Jialing; Xu Dilin; Hu Shengquan; Zhang Zaijun; Wang Qinwen; Han Yifan; Cui Wei
Primary cultured Cerebellar Granule Neurons (CGNs) have been widely used as an in vitro model in neuroscience and neuropharmacology research. However, the co-existence of glial cells and neurons in CGN culture might lead to biases in the accurate assessment of neuronal viability. Fluorescein diacetate (FDA) and Propidium Iodide (PI) double staining has been used to measure cell viability by simultaneously evaluating the viable and dead cells. We used FDA-PI double staining to improve the sensitivities of the colorimetric assays and to evaluate neuronal viability in CGNs. Furthermore, we added blue fluorescent DNA stains (e.g., Hoechst) to improve the accuracy. This protocol describes how to improve the accuracy of assessment of neuronal viability by using these methods in CGN culture. Using this protocol, the number of glial cells can be excluded by using fluorescence microscopy. A similar strategy can be applied to distinguish the unwanted glial cells from neurons in various mixed cell cultures, such as primary cortical culture and hippocampal culture.
Archive | 2016
He Shan; Cui Wei; Zhang Jinrong; Yan Xiaojun; Wang Qinwen; Duan Haixia; Lin Jiajia; Yang Junze; Huang Ling
Archive | 2015
Yu Jie; Cui Wei; Wang Qinwen; Zheng Jiachen; Lin Jiajia
Archive | 2015
Lin Jiajia; Cui Wei; Wang Qinwen; Yu Jie; Zheng Jiachen
Archive | 2015
Zheng Jiachen; Cui Wei; Wang Qinwen; Lin Jiajia; Yu Jie
Archive | 2017
Shentu Jieyi; Cui Wei
Archive | 2017
Huang Chunhui; He Shan; Ding Lijian; Cui Wei; Shentu Jieyi; Zhao Jiaying; Wang Minjun; Slava S Epstein
Archive | 2017
He Shan; Ding Lijian; Cui Wei; Yan Xiaojun; Wang Qinwen; Fang Fang; Zhao Jiaying
Archive | 2017
Cui Wei; He Shan; Wang Qinwen; Chen Haimin; Zhang Jinrong; Yan Xiaojun; Wang Jialing