Ki Primo Research Laboratory, KI for Information Technology Convergence, Division of Electrical Engineering, Korea Advanced Institute of Science and Technology, Daejeon, Republic of Korea.
Micron. 2013 Jan;44:468-74. doi: 10.1016/j.micron.2012.10.005. Epub 2012 Oct 22.
With a combination of cultivation and phase-contrast and fluorescence microscopic observation, we first found that fusion of extracellular vesicles with or without membranes occurred in fertilized chicken eggs. In order to find solid evidence for fusion, we collected many fusion data from various tissues; primo vessels and pancreases of mice and pancreases and omentums of rats. Especially, by using acridine orange vital staining to demonstrate DNA and phase-contrast and fluorescence microscopy for long real-time observation, we found that many of the extracellular vesicles involved in the fusion process contained DNAs. The fusions fall into two main patterns: pattern A characterizes a fusion of less agitated extracellular vesicles without membranes. Pattern B is a fusion of vigorously vibrating extracellular vesicles in a certain membrane. Considering all data, tables, pictures and movies, we were able to show fusions of DNA extracellular vesicles without or with membranes in several tissues of three species. Interestingly, some of the fused structures share the same morphology as normal cell's in terms of overall shape, size and DNA signals in the center. Thus, in this article we first report the evidence for the fusion of extracellular vesicles with/without DNA toward a specific structure and discuss our findings by comparing with those of other pioneer's works in search for a mitosis-free alternative pathway for generating new cells.
通过培养和相差及荧光显微镜观察相结合,我们首次发现鸡胚中发生了带有或不带膜的细胞外囊泡融合。为了找到融合的确凿证据,我们从多种组织中收集了许多融合数据;包括小鼠的原血管和胰腺以及大鼠的胰腺和网膜。特别是,通过使用吖啶橙活体染色来显示 DNA 以及相差和荧光显微镜进行长时间实时观察,我们发现许多参与融合过程的细胞外囊泡中含有 DNA。融合分为两种主要模式:模式 A 特征是融合了较少振动的无膜细胞外囊泡。模式 B 是在特定膜内剧烈振动的细胞外囊泡的融合。考虑到所有的数据、表格、图片和电影,我们能够展示三种物种的几种组织中带有/不带 DNA 的细胞外囊泡的融合。有趣的是,一些融合结构在整体形状、大小和中心的 DNA 信号方面与正常细胞具有相同的形态。因此,在本文中,我们首次报道了细胞外囊泡与特定结构融合的证据,并通过与其他先驱工作的比较,探讨了我们的发现,以寻找一种无有丝分裂的替代途径来产生新细胞。