Nikulin S V, Gerasimenko T N, Shilin S A, Gazizov I N, Kindeeva O V, Sakharov D A
BioClinicum Research Center, Moscow, Russia.
Far-Easter Federal University, Vladivostok, Russia.
Bull Exp Biol Med. 2019 Mar;166(5):626-630. doi: 10.1007/s10517-019-04406-2. Epub 2019 Mar 22.
Extracellular microRNA are one of the indicators of the functional state of cells. Culturing of Caco-2 cells under the conditions of microcirculation in a Homunculus microfluidic device allows better simulating natural environment of the body in comparison with static culturing. Impedance spectroscopy (BioClinicum Research Center) was used for non-invasive estimation of the monolayer quality and changes in the cell apical membrane due to the formation of microvilli. Under static conditions, Caco-2 cells release more microRNA from the apical membrane than under microcirculation conditions, while secretion of miR-320a, miR-24-3p, and miR-221-3p microRNA under static conditions can indicate stress of the cells and activation of inflammatory response. Under microcirculation conditions, the expression of laminin-α1 (LAMA1) was lower than under static conditions, which indicates deeper differentiation of cells.
细胞外微小RNA是细胞功能状态的指标之一。与静态培养相比,在微流控装置中于微循环条件下培养Caco-2细胞能更好地模拟机体的自然环境。采用阻抗谱(生物临床研究中心)对单层细胞质量以及由于微绒毛形成导致的细胞顶端膜变化进行无创评估。在静态条件下,Caco-2细胞从顶端膜释放的微小RNA比在微循环条件下更多,而在静态条件下miR-320a、miR-24-3p和miR-221-3p微小RNA的分泌可表明细胞应激和炎症反应的激活。在微循环条件下,层粘连蛋白-α1(LAMA1)的表达低于静态条件,这表明细胞分化更深。