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Compact, inexpensive refractive index detection in femtoliter volumes using commercial optical pickup technology

机译:使用商业光学拾波器技术以飞升体积进行紧凑,廉价的折射率检测

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Refractive index (RI) sensing in microfluidics has the advantage of universal detection, capable of sensing all species from simple monoatomic ions to complex proteins without external labels or additional contrast agents. Various forms of interferometry have been developed for RI sensing in microfluidics. In particular, backscatter interferometry (BSI) is easily implemented and well-suited for miniaturization. This is important for future applications in point-of-care or point-of-interest measurements, where the total analysis system needs to be easily deployed. The optical arrangement in BSI is similar to that used in optical pickup heads (OPHs), found in CD and DVD drives. This offers intriguing possibilities for repurposing OPHs for miniaturized RI detection in microfluidics. To explore the feasibility of this approach, commercially available OPHs are modified for RI detection in 75 μm i.d. (363 μm o.d.) fused silica capillaries. BSI interference patterns measured using a modified OPH positioned near the capillary are compared with simulations as a function of wavelength. Once characterized, the modified OPH is used to measure refractive index changes as sucrose solutions are injected through the 75 μm i.d. capillary. Signal level changes were recorded following the introduction of solutions ranging in concentration from 67 μM to 19.3 mM and the resulting calibration plot (67 μM to 4.8 mM) exhibited good linearity (R2 = 0.9993). Finally, a modified OPH was used to detect the electrophoretic separation of Na+ and Li+ using RI detection. While the measurements reported here used modified OPHs that bypassed the built-in photodiode detector, eventually all on-board components could be utilized for a completely self-contained, inexpensive, universal detector for field deployable microfluidic applications.
机译:微流体技术中的折射率(RI)感应具有通用检测的优势,能够感应所有物种,从简单的单原子离子到复杂的蛋白质,而无需外部标记或其他造影剂。已经开发出各种形式的干涉术用于微流体中的RI感测。特别是,后向散射干涉仪(BSI)易于实现,非常适合小型化。这对于将来在即时点或兴趣点测量中的应用很重要,在这些应用中,需要轻松部署整个分析系统。 BSI中的光学布置类似于CD和DVD驱动器中的光学头(OPH)中使用的布置。这为在微流控中重新使用OPH进行微型RI检测提供了有趣的可能性。为了探索这种方法的可行性,对市售的OPH进行了修改,以便在75μm内径中进行RI检测。 (363μm外径)熔融石英毛细管。使用位于毛细管附近的改进型OPH测量的BSI干涉图与模拟作为波长的函数进行比较。表征后,当蔗糖溶液通过75μmi.d注入时,改性的OPH可用于测量折射率变化。毛细管。引入浓度范围为67μM至19.3 mM的溶液后,记录了信号水平的变化,得到的校准图(67μM至4.8 mM)表现出良好的线性(R2 = 0.9993)。最后,使用修饰的OPH通过RI检测来检测Na +和Li +的电泳分离。尽管这里报告的测量结果使用绕过内置光电二极管检测器的改进型OPH,但最终所有板载组件都可用于现场可部署的微流体应用的完全独立,便宜的通用检测器。

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