4.5 Article

Rapid separation of cyanidin-3-glucoside and cyanidin-3-rutinoside from crude mulberry extract using high-performance countercurrent chromatography and establishment of a volumetric scale-up process

Journal

JOURNAL OF SEPARATION SCIENCE
Volume 38, Issue 11, Pages 1828-1836

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/jssc.201500076

Keywords

Cyanidin-3-glucoside; Cyanidin-3-rutinoside; High-performance countercurrent chromatography; Mulberry; Volumetric scale-up

Funding

  1. Cooperative Research Program for Agriculture Science & Technology Development program, Rural Development Administration, Republic of Korea [PJ009830]
  2. Basic Science Research Program through National Foundation of Korea (NRF) - Ministry of Education, Science and Technology [2011-0011899]
  3. Catholic University of Korea
  4. National Research Foundation of Korea [2011-0011899] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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This study describes the rapid separation of mulberry anthocyanins; namely, cyanidin-3-glucoside and cyanidin-3-rutinoside, using high-performance countercurrent chromatography, and the establishment of a volumetric scale-up process from semi-preparative to preparative-scale. To optimize the separation parameters, biphasic solvent systems composed of tert-butyl methyl ether/n-butanol/acetonitrile/0.01% trifluoroacetic acid, flow rate, sample amount and rotational speed were evaluated for the semi-preparative-scale high-performance countercurrent chromatography. The optimized semi-preparative-scale high-performance countercurrent chromatography parameters (tert-butyl methyl ether/n-butanol/acetonitrile/0.01% trifluoroacetic acid, 1: 3: 1: 5, v/v; flow rate, 4.0 mL/min; sample amount, 200-1000 mg; rotational speed, 1600 rpm) were transferred directly to a preparative-scale (tert-butyl methyl ether/n-butanol/acetonitrile/0.01% trifluoroacetic acid, 1: 3: 1: 5, v/v; flow rate, 28 mL/min; sample amount, 5.0-10.0 g; rotational speed, 1400 rpm) to achieve separation results identical to cyanidin-3-glucoside and cyanidin-3-rutinoside. The separation of mulberry anthocyanins using semi-preparative high-performance countercurrent chromatography and its volumetric scale-up to preparative-scale was addressed for the first time in this report.

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