Allen Peter B, Doepker Byron R, Chiu Daniel T
University of Washington, Department of Chemistry, Box 351700, Seattle, Washington 98195, USA.
Anal Chem. 2009 May 15;81(10):3784-91. doi: 10.1021/ac900099y.
We present a technique for labeling the contents of acidic organelles and rapidly releasing, separating, and detecting their labeled contents with laser-induced fluorescence. We have performed solution-phase separation of the contents of single mitochondria and single 100 nm vesicles, which represents a demonstration of an analyzed volume of approximately 1 aL. Our strategy to label the acidic contents of the mitochondrion relies on the use of the membrane-permeable dye, Oregon Green diacetate succinimidyl ester, and a membrane-permeable base to raise intramitochondrial pH. In order to measure the contents, we utilized a glass microfluidic chip and high voltage gradient for millisecond capillary electrophoresis separation after single-mitochondrion photolysis. We observed heterogeneity among a population of mitochondria with respect to a constituent chemical component.
我们提出了一种标记酸性细胞器内容物的技术,并通过激光诱导荧光快速释放、分离和检测其标记内容物。我们已经对单个线粒体和单个100纳米囊泡的内容物进行了溶液相分离,这表明分析体积约为1飞升。我们标记线粒体酸性内容物的策略依赖于使用膜通透性染料俄勒冈绿二乙酸琥珀酰亚胺酯和一种膜通透性碱来提高线粒体内pH值。为了测量内容物,我们在单线粒体光解后利用玻璃微流控芯片和高电压梯度进行毫秒级毛细管电泳分离。我们观察到一群线粒体在组成化学成分方面存在异质性。