Pabit Suzette A, Hagen Stephen J
Department of Physics, University of Florida, Gainesville, FL 32611, USA.
Biophys J. 2002 Nov;83(5):2872-8. doi: 10.1016/S0006-3495(02)75296-X.
The ability to mix aqueous liquids on microsecond time scales, while consuming minimal amounts of sample and maintaining UV-visible optical access to the mixing region, is highly desirable for a range of biophysical studies of fast protein and nucleic acid interactions and folding. We have constructed a laminar coaxial jet mixer that allows the measurement of UV-excited fluorescence from nanoliter and microliter quantities of material, mixed at microsecond rates. The mixer injects a narrow cylindrical stream (radius a < 1 microm) of fluorescent sample into a larger flow of diluting buffer that moves through a capillary (100 microm i.d.) at a speed approximately 20 cm/s, under laminar flow conditions (Re approximately equal to 14). Construction from a fused silica capillary allows the laser excitation (at 266 nm) and detection (at 350 nm) of tryptophan fluorescence at reasonably low working concentrations, without interference from background fluorescence. Using this mixer we have measured sub-millisecond fluorescence quenching kinetics while consuming fluorescent sample at rates no greater than 6 nl/s. Consumption of the diluting buffer is also very modest (approximately 1-3 microl/s) in comparison with other rapid mixer designs.
在微秒时间尺度上混合水性液体,同时消耗极少量样品并保持对混合区域的紫外可见光学通路,这对于一系列关于快速蛋白质和核酸相互作用及折叠的生物物理研究来说是非常理想的。我们构建了一种层流同轴射流混合器,它能够测量以微秒速率混合的纳升和微升量物质的紫外激发荧光。该混合器将一股狭窄的圆柱形荧光样品流(半径a < 1微米)注入到更大的稀释缓冲液流中,稀释缓冲液在层流条件下(雷诺数Re约等于14)以约20厘米/秒的速度通过内径为100微米的毛细管。由熔融石英毛细管构建而成,使得在合理的低工作浓度下能够对色氨酸荧光进行激光激发(波长为266纳米)和检测(波长为350纳米),而不受背景荧光的干扰。使用这种混合器,我们测量了亚毫秒级的荧光猝灭动力学,同时消耗荧光样品的速率不超过6纳升/秒。与其他快速混合器设计相比,稀释缓冲液的消耗量也非常小(约1 - 3微升/秒)。