Watkins A N, Ingersoll C M, Baker G A, Bright F V
Department of Chemistry, Natural Sciences Complex, State University of New York at Buffalo 14260-3000, USA.
Anal Chem. 1998 Aug 15;70(16):3384-96. doi: 10.1021/ac9803481.
We report on the performance of a new, multiharmonic frequency-domain instrument that uses the high harmonic content of a passively mode-locked, pulse-picked femto-second Ti-sapphire laser as the excitation source for the determination of one-, two-, or three-photon excited time-resolved fluorescence anisotropy and intensity decay kinetics. In operation, the new instrument can provide a complete frequency-domain data set at 100 modulation frequencies in less than 1 min. The new instrument exhibits 5-10-ps measurement precision and it can rapidly and accurately recover complex excited-state fluorescence anisotropy and intensity decay kinetics under one-, two-, or three-photon excitation for dilute or optically dense samples that exhibit single or multiexponential decay kinetics. This latter aspect of the instrument is demonstrated by successfully determining the excited-state intensity decay kinetics for a dilute aqueous solution of rhodamine 6G dissolved in a high concentration of bromocresol green. This approach is extended by determining the excited-state fluorescence intensity decay kinetics of dilute fluorescein directly in undiluted, whole blood as a function of pH under two-photon excitation conditions. The high-speed capabilities of the new instrument are exploited by performing two-photon excited fluorescence anisotropy decay experiments on the fly for site-selectively labeled bovine serum albumin as it undergoes enzymatic digestion by trypsin.
我们报道了一种新型多谐波频域仪器的性能,该仪器使用被动锁模、脉冲选通的飞秒钛宝石激光器的高谐波含量作为激发源,用于测定单光子、双光子或三光子激发的时间分辨荧光各向异性和强度衰减动力学。在运行过程中,新仪器能够在不到1分钟的时间内以100个调制频率提供完整的频域数据集。新仪器具有5 - 10皮秒的测量精度,能够快速准确地恢复稀溶液或光学密集样品在单光子、双光子或三光子激发下的复杂激发态荧光各向异性和强度衰减动力学,这些样品表现出单指数或多指数衰减动力学。通过成功测定溶解在高浓度溴甲酚绿中的罗丹明6G稀水溶液的激发态强度衰减动力学,证明了该仪器的后一个方面。通过在双光子激发条件下,直接测定未稀释全血中稀荧光素的激发态荧光强度衰减动力学随pH的变化,扩展了这种方法。通过对位点选择性标记的牛血清白蛋白进行胰蛋白酶酶解时实时进行双光子激发荧光各向异性衰减实验,利用了新仪器的高速性能。