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References  225

                42. Soloshonok, V.A., Catt, H.T., and  51. Lopez Ruiz, B., Sanchez-Cabezudo,
                   Ono, T. (2009) Continuous-flow asym-  M., and Mottola, H.A. (1996) Enzymic
                   metric biomimetic transamination.  determinations with rotating bioreac-
                   J. Fluorine Chem., 130, 512–515. doi:  tors and continuous-f low-stopped-f
                   10.1016/j.jfluchem.2009.02.010   low processing. Determination
                43. Soloshonok, V.A., Catt, H.T., and  of choline esters in pharmaceuti-
                   Ono, T. (2010) Biomimetic reductive  cals. Analyst, 121, 1695–1698. doi:
                   amination under the continuous-  10.1039/AN9962101695
                   flow reaction conditions. J. Flu-  52. Raba, J. and Mottola, H.A. (1994)
                   orine Chem., 131, 261–265. doi:  Continuous-flow/stopped-flow system
                   10.1016/j.jfluchem.2009.10.013   incorporating two rotating bioreactors
                44. Seayad, A.M., Ramalingam, B., Chai,  in tandem: application to the determi-
                   C.L.L., Li, C., Garland, M.V., and  nation of alkaline phosphatase activity
                   Yoshinaga, K. (2012) Self-supported  in serum. Anal. Chem., 66, 1485–1489.
                   chiral titanium cluster (SCTC) as a  doi: 10.1021/ac00081a020
                   robust catalyst for the asymmetric  53. Takahashi, K., Taniguchi, S.,
                   cyanation of imines under batch and  Kuroishi, T., Yasuda, K., and Sano,
                   continuous flow at room temperature.  T. (1989) Automated micro stopped-
                   Chem. Eur. J., 18, 5693–5700. doi:  flow/continuous-flow apparatus for
                   10.1002/chem.201200528          serial measurement of enzyme reac-
                45. Mottola, H.A. (1983) Enzymatic prepa-  tions and its application as a real-time
                   rations in analytical continuous-flow  analyser for column chromatography.
                   systems. Anal. Chim. Acta, 145, 27–39.  Anal. Chim. Acta, 220, 13–21. doi:
                   doi: 10.1016/0003-2670(83)80045-2  10.1016/S0003-2670(00)80246-9
                46. Bradley, D.V. and Tappel, A.L. (1970)  54. Hsieh, Y.-S. and Crouch, S.R. (1995) A
                   Automated multiple enzyme analysis  stopped-flow/continuous-flow method
                   systems. Anal. Biochem., 33, 400–413.  for kinetic determinations. Anal. Chim.
                   doi: 10.1016/0003-2697(70)90311-8  Acta, 305, 277–282. doi: 10.1016/0003-
                47. Eisele, B. and Heinzel, G. (1978) An  2670(95)00069-C
                   automatic enzymatic determination of  55. Zhou, X., Medhekar, R., and Toney,
                   glycogen in a continuous-flow system  M.D. (2003) A continuous-flow system
                   without interference of free glucose.  for high-precision kinetics using small
                   Anal. Biochem., 84, 594–597. doi:  volumes. Anal. Chem., 75, 3681–3687.
                   10.1016/0003-2697(78)90081-7    doi: 10.1021/ac034068j
                48. MacAulay, M.A., Jacklyn, C.L.,  56. Ginman, R., Colliss, J.S., and Knox,
                   Mathers, J.M., and Storm, V.A. (1980)  J.M. (1983) The use of an immo-
                   Continuous-flow enzymatic determi-  bilized enzyme nylon tube reactor
                   nation of total serum cholesterol and  incorporating a four enzyme sys-
                   method standardization with CDC-  tem for creatinine analysis. Appl.
                   calibrated pooled sera. Clin. Chem., 26,  Biochem. Biotechnol., 8, 213–226. doi:
                   896–902.                        10.1007/BF02778259
                49. Hamberg, A., Lundgren, S., Wigstrand,  57. Switzar, L., Giera, M., and Niessen,
                   E., Moberg, C., and Hult, K. (2007)  W.M.A. (2013) Protein digestion:
                   High-throughput synthesis and   an overview of the available tech-
                   analysis of acylated cyanohydrins.  niques and recent developments. J.
                   Chem. Eur. J., 79, 681–686. doi:  Proteome Res., 10, 1293–1304. doi:
                   10.1002/chem.200601638          10.1021/pr301201x
                50. Lapierre, A.V., Olsina, R.A., and Raba,  58. Yamaguchi, H., Miyazaki, M.,
                   J. (1999) Continuous-flow/stopped-  Kawazumi, H., and Maeda, H.
                   flow system incorporating a rotating  (2010) Multidigestion in continuous
                   bioreactor for the determination of  flow tandem protease-immobilized
                   penicillins in pharmaceutical products.  microreactors for proteomic analy-
                   Anal. Chim. Acta, 396, 143–149. doi:  sis. Anal. Biochem., 407, 12–18. doi:
                   10.1016/S0003-2670(99)00445-6   10.1016/j.ab.2010.07.026
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