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10.1021
nature
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<citation-number>27.</citation-number> <author>Gebel, E.</author> <title>Research Profile: Spotlight on miRNA.</title> <container-title>Analytical Chemistry</container-title> <volume>80,</volume> <page>2284</page> <year>(2008).</year>
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<citation-number>30.</citation-number> <author>Karyn Meltz Steinberg and David T. Okou and and Michael E. Zwick.</author> <title>Applying Rapid Genome Sequencing Technologies To Characterize Pathogen Genomes.</title> <container-title>Analytical Chemistry</container-title> <volume>80,</volume> <page>520–528</page> <year>(2008).</year>
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<citation-number>35.</citation-number> <author>Paul Keim and Talima Pearson and and Richard Okinaka.</author> <title>Microbial Forensics: DNA Fingerprinting ofBacillus anthracis(Anthrax).</title> <container-title>Analytical Chemistry</container-title> <volume>80,</volume> <page>4791–4800</page> <year>(2008).</year>
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<citation-number>36.</citation-number> <author>Wang, J., Li, L., Huang, W. & Cheng, J.</author> <title>Development and Evaluation of a Rotary Cell for Capillary Electrophoresis-Chemiluminescence Detection.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>5380–5383</page> <year>(2010).</year>
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<citation-number>37.</citation-number> <author>Urban, J., Svec, F. & Frechet, J. M. J.</author> <title>Efficient Separation of Small Molecules Using a Large Surface Area Hypercrosslinked Monolithic Polymer Capillary Column.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>1621–1623</page> <year>(2010).</year>
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<citation-number>38.</citation-number> <author>N., M. R. G. & Caldarelli, S.</author> <title>Demixing of Severely Overlapping NMR Spectra through Multiple-Quantum NMR.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>3266–3269</page> <year>(2010).</year>
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<citation-number>1.</citation-number> <author>Han, Y. et al.</author> <title>Monolithic Superhydrophobic Polymer Layer with Photopatterned Virtual Channel for the Separation of Peptides Using Two-Dimensional Thin Layer Chromatography-Desorption Electrospray Ionization Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>2520–2528</page> <year>(2010).</year>
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<citation-number>2.</citation-number> <author>Liu, Y., Dong, Y., Jauw, J., Linman, M. J. & Cheng, Q.</author> <title>Highly Sensitive Detection of Protein Toxins by Surface Plasmon Resonance with Biotinylation-Based Inline Atom Transfer Radical Polymerization Amplification.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>3679–3685</page> <year>(2010).</year>
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<citation-number>3.</citation-number> <author>Duan, R., Zhou, X. & Xing, D.</author> <title>Electrochemiluminescence Biobarcode Method Based on Cysteamine-Gold Nanoparticle Conjugates.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>3099–3103</page> <year>(2010).</year>
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<citation-number>4.</citation-number> <author>Jiang, L. et al.</author> <title>Development of a Visible-Light-Sensitized Europium Complex for Time-Resolved Fluorometric Application.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>2529–2535</page> <year>(2010).</year>
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<citation-number>5.</citation-number> <author>Wiczling, P. & Kaliszan, R.</author> <title>pH Gradient as a Tool for the Separation of Ionizable Analytes in Reversed-Phase High-Performance Chromatography.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>3692–3698</page> <year>(2010).</year>
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<citation-number>6.</citation-number> <author>Yukihira, D., Miura, D., Saito, K., Takahashi, K. & Wariishi, H.</author> <title>MALDI-MS-Based High-Throughput Metabolite Analysis for Intracellular Metabolic Dynamics.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>4278–4282</page> <year>(2010).</year>
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<citation-number>7.</citation-number> <author>Rodthongkum, N., Chen, Y., Thayumanavan, S. & Vachet, R. W.</author> <title>Matrix-Assisted Laser Desorption Ionization-Mass Spectrometry Signal Enhancement of Peptides after Selective Extraction with Polymeric Reverse Micelles.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>3686–3691</page> <year>(2010).</year>
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<citation-number>8.</citation-number> <author>Li, Z., Chu, L.-Q., Sweedler, J. V. & Bohn, P. W.</author> <title>Spatial Correlation of Confocal Raman Scattering and Secondary Ion Mass Spectrometric Molecular Images of Lignocellulosic Materials.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>2608–2611</page> <year>(2010).</year>
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<citation-number>9.</citation-number> <title>Collegiality Among Chemists.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>763</page> <year>(2010).</year>
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<citation-number>10.</citation-number> <author>Wojcik, R., Vannatta, M. & Dovichi, N. J.</author> <title>Automated Enzyme-Based Diagonal Capillary Electrophoresis: Application to Phosphopeptide Characterization.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>1564–1567</page> <year>(2010).</year>
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<citation-number>11.</citation-number> <author>Campbell, K. et al.</author> <title>Single Laboratory Validation of a Surface Plasmon Resonance Biosensor Screening method for Paralytic Shellfish Poisoning Toxins.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>2977–2988</page> <year>(2010).</year>
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<citation-number>12.</citation-number> <author>Grigsby, C. C. et al.</author> <title>Metabolite Differentiation and Discovery Lab (MeDDL): A New Tool for Biomarker Discovery and Mass Spectral Visualization.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>4386–4395</page> <year>(2010).</year>
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<citation-number>13.</citation-number> <author>Bolduc, O. R., Pelletier, J. N. & Masson, J.-F.</author> <title>SPR Biosensing in Crude Serum Using Ultralow Fouling Binary Patterned Peptide SAM.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>3699–3706</page> <year>(2010).</year>
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<citation-number>14.</citation-number> <author>Du, D. et al.</author> <title>Sensitive Immunosensor for Cancer Biomarker Based on Dual Signal Amplification Strategy of Graphene Sheets and Multienzyme Functionalized Carbon Nanospheres.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>2989–2995</page> <year>(2010).</year>
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<citation-number>15.</citation-number> <author>Stone, N., Faulds, K., Graham, D. & Matousek, P.</author> <title>Prospects of Deep Raman Spectroscopy for Noninvasive Detection of Conjugated Surface Enhanced Resonance Raman Scattering Nanoparticles Buried within 25 mm of Mammalian Tissue.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>3969–3973</page> <year>(2010).</year>
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<citation-number>16.</citation-number> <author>Fercher, G., Haller, A., Smetana, W. & Vellekoop, M. J.</author> <title>End-to-End Differential Contactless Conductivity Sensor for Microchip Capillary Electrophoresis.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>3270–3275</page> <year>(2010).</year>
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<citation-number>17.</citation-number> <author>Billingsley, K. et al.</author> <title>Fluorescent Nano-Optodes for Glucose Detection.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>3707–3713</page> <year>(2010).</year>
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<citation-number>18.</citation-number> <author>Sigmon, I. et al.</author> <title>ChromEval: A Software Application for the Rapid Evaluation of HPLC System Performance in Proteomic Applications.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>5060–5068</page> <year>(2010).</year>
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<citation-number>19.</citation-number> <author>Pan, W., Chen, W. & Jiang, X.</author> <title>Microfluidic Western Blot.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>3974–3976</page> <year>(2010).</year>
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<citation-number>20.</citation-number> <author>Moon, B.-U. et al.</author> <title>An Enzymatic Microreactor Based on Chaotic Micromixing for Enhanced Amperometric Detection in a Continuous Glucose Monitoring Application.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>6756–6763</page> <year>(2010).</year>
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<citation-number>21.</citation-number> <author>Resemann, A. et al.</author> <title>Top-Downde NovoProtein Sequencing of a 13.6 kDa Camelid Single Heavy Chain Antibody by Matrix-Assisted Laser Desorption Ionization-Time-of-Flight/Time-of-Flight Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>3283–3292</page> <year>(2010).</year>
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<citation-number>22.</citation-number> <author>Miller, S.</author> <title>Naked-eye colorimetric analysis of heparin and its derivatives.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>1570</page> <year>(2010).</year>
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<citation-number>23.</citation-number> <author>i Solvas, X. C., Srisa-Art, M., deMello, A. J. & Edel, J. B.</author> <title>Mapping of Fluidic Mixing in Microdroplets with 1 $\upmu$s Time Resolution Using Fluorescence Lifetime Imaging.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>3950–3956</page> <year>(2010).</year>
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<citation-number>24.</citation-number> <author>Quinton, J. et al.</author> <title>Toward the Limits of Sandwich Immunoassay of Very Low Molecular Weight Molecules.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>2536–2540</page> <year>(2010).</year>
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<citation-number>25.</citation-number> <author>Zheng, C., Sturgeon, R. E., Brophy, C. S., He, S. & Hou, X.</author> <title>High-Yield UV-Photochemical Vapor Generation of Iron for Sample Introduction with Inductively Coupled Plasma Optical Emission Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>2996–3001</page> <year>(2010).</year>
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<citation-number>26.</citation-number> <author>Wilson, R., Bowden, S. A., Parnell, J. & Cooper, J. M.</author> <title>Signal Enhancement of Surface Enhanced Raman Scattering and Surface Enhanced Resonance Raman Scattering Using in Situ Colloidal Synthesis in Microfluidics.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>2119–2123</page> <year>(2010).</year>
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<citation-number>27.</citation-number> <author>Mieth, M. et al.</author> <title>Automated Needle Trap Heart-Cut GC/MS and Needle Trap Comprehensive Two-Dimensional GC/TOF-MS for Breath Gas Analysis in the Clinical Environment.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>2541–2551</page> <year>(2010).</year>
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<citation-number>28.</citation-number> <author>Malkin, D. S., Wei, B., Fogiel, A. J., Staats, S. L. & Wirth, M. J.</author> <title>Submicrometer Plate Heights for Capillaries Packed with Silica Colloidal Crystals.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>2175–2177</page> <year>(2010).</year>
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<citation-number>30.</citation-number> <author>Wang, B. et al.</author> <title>DISCO: Distance and Spectrum Correlation Optimization Alignment for Two-Dimensional Gas Chromatography Time-of-Flight Mass Spectrometry-Based Metabolomics.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>5069–5081</page> <year>(2010).</year>
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<citation-number>31.</citation-number> <author>Fang, X., Liu, Y., Kong, J. & Jiang, X.</author> <title>Loop-Mediated Isothermal Amplification Integrated on Microfluidic Chips for Point-of-Care Quantitative Detection of Pathogens.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>3002–3006</page> <year>(2010).</year>
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<citation-number>32.</citation-number> <author>Su, L.-C. et al.</author> <title>Detection of Prostate-Specific Antigen with a Paired Surface Plasma Wave Biosensor.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>3714–3718</page> <year>(2010).</year>
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<citation-number>34.</citation-number> <author>Bou-Assaf, G. M., Chamoun, J. E., Emmett, M. R., Fajer, P. G. & Marshall, A. G.</author> <title>Advantages of Isotopic Depletion of Proteins for Hydrogen/Deuterium Exchange Experiments Monitored by Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>3293–3299</page> <year>(2010).</year>
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<citation-number>35.</citation-number> <author>Cha, W., Tung, Y.-C., Meyerhoff, M. E. & Takayama, S.</author> <title>Patterned Electrode-Based Amperometric Gas Sensor for Direct Nitric Oxide Detection within Microfluidic Devices.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>3300–3305</page> <year>(2010).</year>
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<citation-number>36.</citation-number> <author>Kim, M. I. et al.</author> <title>Multiplexed Amino Acid Array Utilizing BioluminescentEscherichia coliAuxotrophs.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>4072–4077</page> <year>(2010).</year>
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<citation-number>37.</citation-number> <author>Pelossof, G., Tel-Vered, R., Elbaz, J. & Willner, I.</author> <title>Amplified Biosensing Using the Horseradish Peroxidase-Mimicking DNAzyme as an Electrocatalyst.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>4396–4402</page> <year>(2010).</year>
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<citation-number>38.</citation-number> <author>Szabo, Z., Guttman, A. & Karger, B. L.</author> <title>Rapid Release of N-Linked Glycans from Glycoproteins by Pressure-Cycling Technology.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>2588–2593</page> <year>(2010).</year>
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<citation-number>39.</citation-number> <author>Fries, K. H., Driskell, J. D., Samanta, S. & Locklin, J.</author> <title>Spectroscopic Analysis of Metal Ion Binding in Spiropyran Containing Copolymer Thin Films.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>3306–3314</page> <year>(2010).</year>
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<citation-number>40.</citation-number> <author>Buescher, J. M., Moco, S., Sauer, U. & Zamboni, N.</author> <title>Ultrahigh Performance Liquid Chromatography-Tandem Mass Spectrometry Method for Fast and Robust Quantification of Anionic and Aromatic Metabolites.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>4403–4412</page> <year>(2010).</year>
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<citation-number>41.</citation-number> <author>Barrow, M. P., Witt, M., Headley, J. V. & Peru, K. M.</author> <title>Athabasca Oil Sands Process Water: Characterization by Atmospheric Pressure Photoionization and Electrospray Ionization Fourier Transform Ion Cyclotron Resonance Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>3727–3735</page> <year>(2010).</year>
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<citation-number>42.</citation-number> <author>Misawa, N. et al.</author> <title>Rapid and High-Sensitivity Cell-Based Assays of Protein-Protein Interactions Using Split Click Beetle Luciferase Complementation: An Approach to the Study of G-Protein-Coupled Receptors.</title> <container-title>Analytical Chemistry</container-title> <volume>82,</volume> <page>2552–2560</page> <year>(2010).</year>
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