Wavelength Modulated Back-Scatter Interferometry for Universal, On-Column Refractive Index Detection in Picoliter Volumes

被引:11
作者
Dunn, Robert C. [1 ]
机构
[1] Univ Kansas, Ralph N Adams Inst Bioanalyt Chem, 2030 Becker Dr, Lawrence, KS 66047 USA
关键词
CAPILLARY-ZONE-ELECTROPHORESIS; ONLINE SERS DETECTION; ELECTROCHEMICAL DETECTION; BEAM INTERFERENCE; MICRO; QUANTIFICATION; SEPARATIONS; SENSITIVITY; RESONATOR; SYSTEMS;
D O I
10.1021/acs.analchem.8b00771
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Wavelength-modulated back scatter interferometry (M-BSI) is shown to improve the detection metrics for refractive index (RI) sensing in microseparations. In M-BSI, the output of a tunable diode laser is focused into the detection zone of a separation channel as the excitation wavelength is rapidly modulated. This spatially modulates the observed interference pattern, which is measured in the backscattered direction. Phase sensitive detection using a split photodiode detector aligned on one fringe of the interference pattern is used to monitor RI changes as analytes are separated. Using sucrose standards, we report a detection limit of 700 mu g/L in a 75 mu m i.d. capillary at the 3 sigma level, corresponding to a detection volume of 90 pL. To validate the approach for electrophoretic separations, Na+ and Li+ were separated and detected with M-BSI and indirect-UV absorbance on the same capillary. A 4 mg/L NaCl and LiCl mixture leads to comparable separation efficiencies in the two detection schemes, with better signal-to-noise in the M-BSI detection, but less baseline stability. The latter arises in part from Joule heating, which influences RI measurements through the thermo-optic properties of the run buffer. To reduce this effect, a 2S mu m i.d. capillary combined with active temperature control was used to detect the separation of sucrose, glucose, and lactose with M-BSI. The lack of suitable UV chromophores makes these analytes challenging to detect directly in ultrasmall volumes. Using a 55 mM NaOH run buffer, M-BSI is shown to detect the separation of a mixture of 174 mg/L sucrose, 97 mg/L glucose, and 172 mg/L lactose in a 15 pL detection volume. The universal on-column detection in ultrasmall volumes adds new capabilities for microanalysis platforms, while potentially reducing the footprint and costs of these systems.
引用
收藏
页码:6789 / 6795
页数:7
相关论文
共 49 条
[1]   An experimental check of backscattering interferometry [J].
Baksh, Michael M. ;
Finn, M. G. .
SENSORS AND ACTUATORS B-CHEMICAL, 2017, 243 :977-981
[2]   Label-free quantification of membrane-ligand interactions using backscattering interferometry [J].
Baksh, Michael M. ;
Kussrow, Amanda K. ;
Mileni, Mauro ;
Finn, M. G. ;
Bornhop, Darryl J. .
NATURE BIOTECHNOLOGY, 2011, 29 (04) :357-U173
[3]   Free-solution, label-free molecular interactions studied by back-scattering interferometry [J].
Bornhop, Darryl J. ;
Latham, Joey C. ;
Kussrow, Amanda ;
Markov, Dmitry A. ;
Jones, Richard D. ;
Sorensen, Henrik S. .
SCIENCE, 2007, 317 (5845) :1732-1736
[4]   MICROVOLUME INDEX OF REFRACTION DETERMINATIONS BY INTERFEROMETRIC BACKSCATTER [J].
BORNHOP, DJ .
APPLIED OPTICS, 1995, 34 (18) :3234-3239
[5]   ON-COLUMN LASER-BASED REFRACTIVE-INDEX DETECTOR FOR CAPILLARY ELECTROPHORESIS [J].
BRUNO, AE ;
KRATTIGER, B ;
MAYSTRE, F ;
WIDMER, HM .
ANALYTICAL CHEMISTRY, 1991, 63 (23) :2689-2697
[6]   DETERMINATION OF CARBOHYDRATES BY CAPILLARY ZONE ELECTROPHORESIS WITH AMPEROMETRIC DETECTION AT A COPPER MICROELECTRODE [J].
COLON, LA ;
DADOO, R ;
ZARE, RN .
ANALYTICAL CHEMISTRY, 1993, 65 (04) :476-481
[7]   Measurement of the refractive index of distilled water from the near-infrared region to the ultraviolet region [J].
Daimon, Masahiko ;
Masumura, Akira .
APPLIED OPTICS, 2007, 46 (18) :3811-3820
[8]  
de Oliveira MAL, 2016, ANAL METHODS-UK, V8, P3649, DOI [10.1039/c5ay02736e, 10.1039/C5AY02736E]
[9]   On-column refractive-index detection based on retroreflected beam interference for capillary electrophoresis [J].
Deng, YZ ;
Li, BC .
APPLIED OPTICS, 1998, 37 (06) :998-1005
[10]   Electrochemical detection techniques in micro- and nanofluidic devices [J].
Gencoglu, Aytug ;
Minerick, Adrienne R. .
MICROFLUIDICS AND NANOFLUIDICS, 2014, 17 (05) :781-807