Lazutkin Alexander A, Shuvaev Sergey A, Barykina Natalia V
P.K. Anokhin Institute of Normal Physiology, 8 Baltiyskaya Str., 125315, Moscow, Russia.
Brain Stem Cell Laboratory, Moscow Institute of Physics and Technology, 9 Institutskiy Lane, 141701, Dolgoprudny, Moscow Region, Russia.
MethodsX. 2019 Sep 12;6:1986-1991. doi: 10.1016/j.mex.2019.09.011. eCollection 2019.
Labeling of the replicating DNA with synthetic thymidine analogs is commonly used for marking the dividing cells. However, until now this method has only been applied to histological sections. A growing number of current approaches for three-dimensional visualization of large tissue samples requires detection of dividing cells within whole organs. Here we describe a method for labeling dividing cells with 5-ethynyl-2'-deoxyuridine (EdU) and their further detection in whole brain structures (for example, hippocampus) using the Cu (I) -catalyzed [3 + 2] cycloaddition reaction (so-called click-reaction). The presented method can be used for brain neurogenesis studies as well as for whole-mount staining of any preparations in which the terminal ethynyl group has been introduced. •New click histochemistry method based on Cu (I) -catalyzed [3 + 2] cycloaddition reaction allows whole-mount staining of brain structures and other tissues.•Our whole-mount click histochemistry method allows to visualize dividing cells in 3D and can be used in neurogenesis studies, i.e. for birthdating dividing early progenitors and further tracking of proliferation, survival, migration, differentiation, and fate of their progeny.•Our whole-mount click histochemistry staining demonstrates high staining specificity, high signal intensity, and low background levels in young and adult mouse brain tissue.
用合成胸苷类似物标记复制中的DNA通常用于标记分裂细胞。然而,到目前为止,这种方法仅应用于组织学切片。当前,越来越多用于大组织样本三维可视化的方法需要检测整个器官内的分裂细胞。在此,我们描述一种用5-乙炔基-2'-脱氧尿苷(EdU)标记分裂细胞,并使用铜(I)催化的[3+2]环加成反应(即所谓的点击反应)在全脑结构(如海马体)中进一步检测这些细胞的方法。所提出的方法可用于脑神经元发生研究以及对任何引入了末端乙炔基的制剂进行整装染色。•基于铜(I)催化的[3+2]环加成反应的新型点击组织化学方法可对脑结构和其他组织进行整装染色。•我们的整装点击组织化学方法能够以三维方式可视化分裂细胞,可用于神经元发生研究,即用于确定早期分裂祖细胞的出生日期,并进一步追踪其后代的增殖、存活、迁移、分化和命运。•我们的整装点击组织化学染色在幼龄和成年小鼠脑组织中显示出高染色特异性、高信号强度和低背景水平。