Manthorpe M, Fagnani R, Skaper S D, Varon S
Brain Res. 1986 Mar;390(2):191-8. doi: 10.1016/s0006-8993(86)80227-x.
A microassay is described for determining the number of neurons surviving after 24 h in response to added neuronotrophic factors. Neuronal cultures in 96-well microtiter plates are supplied with a yellow tetrazolium derivative, MTT (3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide), which is taken up selectively by viable neurons and converted to a blue formazan product. The amount of blue color development can be rapidly quantified using an automatic microplate spectrophotometer. The resulting optical density is directly proportional to the number of viable neurons. The spectrophotometer has been interfaced with a computer allowing a print out of individual absorbance values and calculation of half-maximal (one trophic unit) neuronal survival. The assay has been used for the quantification of the trophic activities of nerve growth factor and ciliary neuronotrophic factor using, respectively, dorsal root and ciliary ganglionic neurons from 8-day chick embryos. Assay parameters were optimized so that about 2000 individual cultures of ganglionic neurons can be set up and analyzed each day, thus allowing the serial titration in duplicate of 80-120 separate samples. The determination of neuronal number and titer calculation steps now requires about 2 min per microplate (96 cultures), a 50-fold reduction in time over existing methods.
本文描述了一种微量测定法,用于确定添加神经营养因子24小时后存活的神经元数量。向96孔微量滴定板中的神经元培养物加入黄色四氮唑衍生物MTT(3-(4,5-二甲基噻唑-2-基)-2,5-二苯基溴化四氮唑),活神经元可选择性摄取该物质并将其转化为蓝色甲臜产物。使用自动酶标仪可快速定量蓝色显色量。所得光密度与活神经元数量成正比。该酶标仪已与计算机连接,可打印出各个吸光度值并计算半数最大(一个营养单位)神经元存活率。该测定法已分别用于定量来自8日龄鸡胚的背根神经节神经元和睫状神经节神经元对神经生长因子和睫状神经营养因子的营养活性。对测定参数进行了优化,以便每天可设置并分析约2000个神经节神经元的单独培养物,从而能够对80 - 120个单独样品进行一式两份的连续滴定。现在,每个微孔板(96个培养物)测定神经元数量和效价计算步骤约需2分钟,比现有方法节省50倍时间。