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ARTICLES

Tubing modifications for countercurrent chromatography: Investigation of geometrical parameters

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References

  • Ito, Y. High-Speed Countercurrent Chromatography. Nature 1987, 326, 419–420.
  • Ito, Y.; Sandlin, J.; Bowers, W. G. High-Speed Preparative Counter-Current Chromatography with a Coil Planet Centrifuge. J. Chromatogr. 1982, 244, 247–258.
  • Edwards, N. A.; Fisher, G.; Harris, G. H.; Kellichan, N. A General Method for the Separation of Triphenylphosphine Oxide and Reaction Products Using High Performance Countercurrent Chromatography. J. Chromatogr. A 2014, 1323, 49–56.
  • Sutherland, I.; Thickitt, C.; Douillet, N.; Freebairn, K.; Johns, D.; Mountain, C.; Wood, P.; Edwards, N.; Rooke, D.; Harris, G. Scalable Technology for the Extraction of Pharmaceutics: Outcomes from a 3 Year Collaborative Industry/Academia Research Programme. J. Chromatogr. A 2013, 1282, 84–94.
  • DeAmicis, C.; Edwards, N. A.; Giles, M. B.; Harris, G. H.; Hewitson, P.; Janaway, L.; Ignatova, S. Comparison of Preparative Reversed Phase Liquid Chromatography and Countercurrent Chromatography for the Kilogram Scale Purification of Crude Spinetoram Insecticide. J. Chromatogr. A 2011, 1218, 6122–6127.
  • Kostanian, A. E.; Berthod, A.; Ignatova, S. N.; Maryutina, T. A.; Spivakov, B. Y.; Sutherland, I. A. Countercurrent Chromatographic Separation: A Hydrodynamic Approach Developed for Extraction Columns. J. Chromatogr. A 2004, 1040, 63–72.
  • Foucault, A.; Chevolot, L. Counter-Current Chromatography: Instrumentation, Solvent Selection and Some Recent Applications to Natural Product Purification. J. Chromatogr. A 1998, 808, 3–22.
  • Yang, L.; Friesen, J. B.; McAlpine J. B.; Pauli G. F. Solvent System Selection Strategies in Countercurrent Chromatography. Planta Med. 2015, 81, 1582–1591.
  • Wood, P. L. Improvements to Centrifuge Apparatus. Patent WO2013045943 A2, 2013.
  • Hawes, D. W.; Janaway, L.; Sutherland, I. A.; Wood, P. L. Patent WO 2006045993 A1, 2005.
  • Ito, Y. High Speed Preparative Countercurrent Chromatography with a Multiple Layer Coiled Column. US 4430216 A, 1984.
  • Ito, Y.; Oka, H.; Slemp, J. L. Improved High-Speed Counter-Current Chromatograph with Three Multilayer Coils Connected in Series: I. Design of the Apparatus and Performance of Semipreparative Columns in 2,4-Dinitrophenyl Amino Acid Separation. J. Chromatogr. 1989, 475, 219–227.
  • Shinomiya, K.; Sato, K.; Yoshida, K.; Tokura, K.; Maruyama, H.; Yanagidaira, K.; Ito, Y. Partition Efficiencies of Newly Fabricated Universal High-Speed Counter-Current Chromatograph for Separation of Two Different Types of Sugar Derivatives with Organic–Aqueous Two-Phase Solvent Systems. J. Chromatogr. A 2013, 1322, 74–80.
  • Shinomiya, K.; Yoshida, K.; Tokura, K.; Tsukidate, E.; Yanagidaira, K.; Ito, Y. Countercurrent Chromatographic Separation of Proteins Using an Eccentric Coiled Column with Synchronous and Nonsynchronous Type-J Planetary Motions. Anal. Sci. 2015, 31, 211–218.
  • Ito, Y.; Ma, Z.; Clary, R.; Powell, J.; Knight, M.; Finn, T. M. Vortex Counter-Current Chromatography. J. Chromatogr. A 2011, 1218, 6165–6172.
  • Ito, Y.; Clary, R.; Witten, J. J.; Zeng, Y. Vortex Counter-Current Chromatography: Performance of a New Preparative Column. Chromatographia 2012, 75, 1091–1097.
  • Ma, X.; Ito, Y. New Analytical Spiral Tube Assembly for Separation of Proteins by Counter-Current Chromatography. J. Chromatogr. A 2015, 1405, 193–196.
  • Du, Q.; Ito, Y. Slow Rotary Countercurrent Chromatography. J. Liq. Chromatogr. Rel. Technol. 2003, 26, 1827–1838.
  • Köhler, N.; Chou, E.; Ito, Y.; Winterhalter, P. Development of a New Preparative Spiral‐Coil Low‐Speed Rotary Countercurrent Chromatographic (Spiral‐Coil LSRCCC) Method. J. Liq. Chromatogr. Rel. Technol. 2004, 27, 2547–2560.
  • Degenhardt, A.; Schwarz, M.; Winterhalter, P.; Ito, Y. Evaluation of Different Tubing Geometries for High-Speed Counter-Current Chromatography. J. Chromatogr. A 2001, 922, 355–358.
  • Wade, K. L.; Ito, Y.; Ramarathnam, A.; Holtzclaw, W. D.; Fahey, J. W. Purification of Active Myrosinase from Plants by Aqueous Two‐Phase Counter‐Current Chromatography. Phytochem. Anal. 2015, 26, 47–53.
  • Yang, Y.; Aisa, H. A.; Ito, Y. Flat-Twisted Tubing: Novel Column Design for Spiral High-Speed Counter-Current Chromatography. J. Chromatogr. A 2009, 1216, 5265–5271.
  • Dasarathy, D.; Ito, Y. An Improved Design of Spiral Tube Assembly for Separation of Proteins by High-Speed Counter-Current Chromatography. J. Chromatogr. A 2015, 1418, 77–82.
  • Englert, M.; Vetter, W. Tubing Modifications for Countercurrent Chromatography (CCC): Stationary Phase Retention and Separation Efficiency. Anal. Chim. Acta 2015, 884, 114–123.
  • Sutherland, I. A.; Muytjens, J.; Prins, M.; Wood, P. L. A New Hypothesis on Phase Distribution in Countercurrent Chromatography. J. Liq. Chromatogr. Rel. Technol. 2000, 23, 2259–2276.
  • Kapp, T.; Vetter, W. Offline Coupling of High-Speed Counter-Current Chromatography and Gas Chromatography/Mass Spectrometry Generates a Two-Dimensional Plot of Toxaphene Components. J. Chromatogr. A 2009, 1216, 8391–8397.
  • Englert, M.; Vetter, W. Solvent Systems with n-Hexane and/or Cyclohexane in Countercurrent Chromatography-Physico-Chemical Parameters and their Impact on the Separation of Alkyl Hydroxybenzoates. J. Chromatogr. A 2014, 1342, 54–62.
  • Schröder, M.; Vetter, W. Detection of 430 Fatty Acid Methyl Esters from a Transesterified Butter Sample. J. Am. Oil Chem. Soc. 2013, 90, 771–790.
  • König, C.; Sutherland, I. A. Numerical Model for the Investigation of Dual-Flow in a Spiral Counter-Current Chromatography Column. J. Chromatogr. A 2007, 1151, 131–135.
  • Wood, P. L.; Sutherland, I. A. Mixing, Settling, and the Movement of the Interface Between the Mobile and Stationary Phases in CCC. J. Liq. Chromatogr. Rel. Technol. 2001, 24, 1699–1710.
  • Guan, Y. H.; van den Heuvel, R. N. A. M.; Zhuang, Y. Visualisation of J-Type Counter-Current Chromatography: A Route to Understand Hydrodynamic Phase Distribution and Retention. J. Chromatogr. A 2012, 1239, 10–21.
  • Friesen, J. B.; Pauli, G. F. G.U.E.S.S. - A Generally Useful Estimate of Solvent Systems for CCC. J. Liq. Chromatogr. Rel. Technol. 2005, 28, 2777–2806.

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