Hulspas R, Krijtenburg P J, Keij J F, Bauman J G
ITRI-TNO, Department of Molecular Pathology, Rijswijk, The Netherlands.
J Histochem Cytochem. 1993 Aug;41(8):1267-72. doi: 10.1177/41.8.7687265.
Detection of fluorescein-5-isothiocyanate (FITC)-labeled conjugates is suboptimal in two-color confocal scanning laser microscopy (CLSM). This limits the detection of small, dimly fluorescent targets. We explored the possible advantages of applying eosin-5-isothiocyanate (EITC) conjugated to avidin (Av-EITC) as an alternative for Av-FITC in CSLM. Despite the lower quantum efficiency of EITC, we found that the measured Av-EITC and Av-FITC emission intensities were similar as a result of the standard filter combinations used for simultaneous two-color detection in the Bio-Rad MRC 600 CSLM. The advantage of Av-EITC was that its fading characteristics compared very favorably to those of Av-FITC. An excitation intensity-dependent increase in Av-EITC fluorescence was observed, followed by an exponential decrease. This increase in fluorescence allows longer observation times, averaging of several scans without loss of brightness, and thus detection of dimly fluorescent targets by CSLM.
在双色共聚焦扫描激光显微镜(CLSM)中,异硫氰酸荧光素(FITC)标记的共轭物的检测效果欠佳。这限制了对小的、荧光微弱的目标物的检测。我们探索了将异硫氰酸曙红(EITC)与抗生物素蛋白(Av-EITC)结合作为CLSM中Av-FITC的替代物的潜在优势。尽管EITC的量子效率较低,但我们发现,由于在Bio-Rad MRC 600 CLSM中用于同时双色检测的标准滤光片组合,所测得的Av-EITC和Av-FITC发射强度相似。Av-EITC的优势在于其褪色特性与Av-FITC相比非常有利。观察到Av-EITC荧光随激发强度增加,随后呈指数下降。这种荧光增加允许更长的观察时间,对几次扫描进行平均而不会损失亮度,从而通过CLSM检测荧光微弱的目标物。