| Literature DB >> 24899873 |
Krystyna Skalicka-Woźniak1, Ian Garrard2.
Abstract
Natural products extracts are commonly highly complex mixtures of active compounds and consequently their purification becomes a particularly challenging task. The development of a purification protocol to extract a single active component from the many hundreds that are often present in the mixture is something that can take months or even years to achieve, thus it is important for the natural product chemist to have, at their disposal, a broad range of diverse purification techniques. Counter-current chromatography (CCC) is one such separation technique utilising two immiscible phases, one as the stationary phase (retained in a spinning coil by centrifugal forces) and the second as the mobile phase. The method benefits from a number of advantages when compared with the more traditional liquid-solid separation methods, such as no irreversible adsorption, total recovery of the injected sample, minimal tailing of peaks, low risk of sample denaturation, the ability to accept particulates, and a low solvent consumption. The selection of an appropriate two-phase solvent system is critical to the running of CCC since this is both the mobile and the stationary phase of the system. However, this is also by far the most time consuming aspect of the technique and the one that most inhibits its general take-up. In recent years, numerous natural product purifications have been published using CCC from almost every country across the globe. Many of these papers are devoted to terpenoids-one of the most diverse groups. Naturally occurring terpenoids provide opportunities to discover new drugs but many of them are available at very low levels in nature and a huge number of them still remain unexplored. The collective knowledge on performing successful CCC separations of terpenoids has been gathered and reviewed by the authors, in order to create a comprehensive document that will be of great assistance in performing future purifications.Entities:
Keywords: Counter-current chromatography; Natural products; Purification; Separation; Terpenes; Terpenoids
Year: 2014 PMID: 24899873 PMCID: PMC4032468 DOI: 10.1007/s11101-014-9348-2
Source DB: PubMed Journal: Phytochem Rev ISSN: 1568-7767 Impact factor: 5.374
Fig. 1Biosynthetic pathways of terpenes (Wang et al. 2005)
Fig. 2Motion of the bobbin in the CCC centrifuge (Sutherland et al. 1998)
Fig. 3Type-J planetary motion of a multilayer coil separation column presenting that the column holder rotates about its own axis and revolves around the centrifuge axis at the same angular velocity (ω) in the same direction (Ito 2005)
Table for selecting a suitable moderately polar two-phase solvent system, graded from polar (No1) to nonpolar (No28)
| No | Heptane | EtOAc | MeOH | Butanol | Water |
|---|---|---|---|---|---|
|
|
|
|
|
|
|
| 2 | 0 | 0.4 | 0 | 1.6 | 2 |
| 3 | 0 | 0.8 | 0 | 1.2 | 2 |
| 4 | 0 | 1.2 | 0 | 0.8 | 2 |
| 5 | 0 | 1.6 | 0 | 0.4 | 2 |
|
|
|
|
|
|
|
| 7 | 0.1 | 1.9 | 0.1 | 0 | 1.9 |
| 8 | 0.2 | 1.8 | 0.2 | 0 | 1.8 |
| 9 | 0.29 | 1.71 | 0.29 | 0 | 1.71 |
| 10 | 0.33 | 1.67 | 0.33 | 0 | 1.67 |
| 11 | 0.4 | 1.6 | 0.4 | 0 | 1.6 |
|
|
|
|
|
|
|
| 13 | 0.57 | 1.43 | 0.57 | 0 | 1.43 |
| 14 | 0.67 | 1.33 | 0.67 | 0 | 1.33 |
| 15 | 0.8 | 1.2 | 0.8 | 0 | 1.2 |
| 16 | 0.91 | 1.09 | 0.91 | 0 | 1.09 |
|
|
|
|
|
|
|
| 18 | 1.09 | 0.91 | 1.09 | 0 | 0.91 |
| 19 | 1.2 | 0.8 | 1.2 | 0 | 0.8 |
| 20 | 1.33 | 0.67 | 1.33 | 0 | 0.67 |
| 21 | 1.43 | 0.57 | 1.43 | 0 | 0.57 |
|
|
|
|
|
|
|
| 23 | 1.6 | 0.4 | 1.6 | 0 | 0.4 |
| 24 | 1.67 | 0.33 | 1.67 | 0 | 0.33 |
| 25 | 1.71 | 0.29 | 1.71 | 0 | 0.29 |
| 26 | 1.8 | 0.2 | 1.8 | 0 | 0.2 |
| 27 | 1.9 | 0.1 | 1.9 | 0 | 0.1 |
|
|
|
|
|
|
|
Quantities (in ml) required to make 4 ml of system using a liquid-handling robot. EtOAc = ethyl acetate, MeOH = methanol. Hexane may be used instead of heptane (Garrard 2005)
Solvent systems in CCC for terpenoids separations
| Classes of compounds | Purified compounds | References | Type of apparatus/solvent system |
|---|---|---|---|
| Monoterpenoids | Paeoniflorin Albiflorin | Huang et al. ( | CCC/ethyl acetate– |
Rosiridin Geranyl 1- | Mudge et al. ( | CCC/ethyl acetate–butanol–water (3:2:5) | |
| ( | Knapp et al. ( | CCC/chloroform–methanol–water (7:13:8) | |
Thymol Carvacrol | Puertas Mejia et al. ( | CCC/ | |
| Eugenol | Geng et al. ( | CCC/n-hexane–ethyl acetate–methanol–water (1:0.5:1:0.5) | |
Chavibetol Methyleugenol | dos Santos et al. ( | CCC/ | |
| α-Cyperone | Shi et al. ( | CCC/ | |
| 1,8-Cineole | Dang et al. ( | CPC/petroleum ether–acetonitrile–acetone (4:3:1) | |
| Paeoniflorin | Chen et al. ( | CCC/n-butanol–ethyl acetate–water (1:4:5) | |
Cuminaldehyde
| Chen et al. ( | CCC/n-hexane–methanol–water (5:4:1) | |
Linalol Terpinen-4-ol α-Terpineol | Skalicka-Woźniak et al. ( | CCC/heptane–ethyl acetate–methanol–water (5:2:5:2) | |
Anethole Foeniculin | Skalicka-Woźniak et al. ( | CCC/heptane–methanol (1:1) | |
| Sesquiterpenoids | Parthenolide 11,13-Dihydroparthenolide Anhydroverlotorin 3β-Hydroxycostunolide Costunolide diepoxide 3-Hydroxyparthenolide Artemorin Santamarine Reynosin Artecanin Tanaparthin-β-peroxide | Fischedick et al. ( | CPC/heptane-ethyl acetate–methanol–water (1:1:1:1) |
| Artemisinin | Acton et al. ( | CCC/ | |
Costunolide Dehydrocostuslactone | Li et al. ( | CCC/light petroleum–methanol–water (5:6.5:3.5) | |
| Lactucopicrin | Wu et al. ( | CCC/ | |
11β,13-Dihydrolactucin Lactucin | Wu et al. ( | CCC/ethyl acetate–methanol–water (20:1:20) | |
Peroxyferolide Lipiferolide | Graziose et al. ( | CPC/ | |
14-(3-Methylpentanoyl)-6-deoxybritannilactone 14-(3-Methylbutanoyl)-6-deoxybritannilactone 14-(2-Methylpropanoyl)-6-deoxybritannilactone 1,3-Epi-granilin 11,13-Dihydro-inuchinenolide B Pulchellin C 6-Deacetylbritanin 4H-Tomentosin Gaillardin Britannin | Fischedick et al. ( | CPC/heptane–ethyl acetate–methanol–water (4:6:4:6) | |
3β-Hydroxy-8β-[4′-hydroxytigloyloxy]-costunolide Eupalinolide A Eupalinolide B | Yan et al. ( | CCC/ | |
Xanthathin 4-Epi-xanthanol 4-Epi-isoxanthanol | Pinel et al. ( | CPC/ | |
| β-Caryophyllene | Xie et al. ( | CCC/ | |
| Rupestonic acid | Ma et al. ( | CCC/ | |
| Rupestonic acid | Yang et al. ( | CCC/ | |
Germacrone Curdione | Yan et al. ( | CCC/light petroleum ether–ethanol–diethyl ether–water (5:4:0.5:1) | |
Atractylon Atractylenolide III | Zhao and He ( | CCC/light petroleum–ethyl acetate–ethanol–water (4:1:4:1) | |
| Nootkatone | Xie et al. ( | CCC/ | |
Caryophyllene oxide β-Farnesene Caryophyllene | Wei et al. ( | CCC/ | |
| ( | Yang et al. ( | CCC/ | |
Curdione Curcumol Germacrone Curzerene β-Elemene | Dang et al. ( | CPC/light petroleum ether–acetonitrile–acetone (4:3:1) | |
| Patchoulol | Li et al. ( | CPC/light petroleum ether–acetonitrile (1:1) | |
Tussilagone 14-Acetoxy-7β-(3′-ethyl 7aβ-(3′-Ethyl | Wang et al. ( | CCC/ | |
| Blumenol C | Roscher and Winterhalter ( | CCC/chloroform–methanol–water (7:13:8) | |
| Solanesol | Hu et al. ( | CCC/ | |
| Solanesol | Du et al. ( | CCC/light petroleum ether‐ethanol‐methanol (200:1:100) | |
| Kudtdiol | Rodrigues et al. ( | CCC/ethyl acetate–methanol–water (2:1.75:1) | |
8ß-Hydroxyeremophil-3,7(11)-dien-12,8α 15,6α-Diolide and 8β-methoxyeremophil-3,7(11)-dien-12,8α;15,6α-diolide | Shi et al. ( | CCC/light petroleum–ethyl acetate–methanol–water (9:1:8:2) | |
| Diterpenoids | Ptaerobliquol | Agostinho et al. ( | CPC/heptane–ethyl acetate–methanol–water) (6:5:6:5) |
Coniferin Coniferaldehyde glucoside | Slacanin et al. ( | CPC/chloroform–methanol–water (7:13:8) | |
| Salvinorin A | Shirota et al. ( | CPC/ | |
Andrographolide Neoandrographolide | Du et al. ( | CCC/ | |
| Phytol | Xiao et al. ( | CCC/ | |
| Carnosol | Fischer et al. ( | CCC/ | |
15,16-Epoxy-12-hydroxy-8(17),13(16),14-labdatrien-19-oic acid Imbricatolic acid Isocupressic acid Sandaracopimaric acid Isopimaric acid | Martin et al. ( | CPC/chloroform–methanol–isopropanol–water (5:6:1:4) | |
Kaurenoic acids Polyalthic acid | De Souza et al. ( | CCC/ | |
Pseudolaric acid B Pseudolaric acid C Deacetylpseudolaric acid A Pseudolaric acid A Pseudolaric acid B Pseudolaric acid B methyl ester Pseudolaric acid A Pseudolaric acid H | He et al. ( | CCC/stepwise gradient: | |
| Oridonin | Lu et al. ( | CCC/ | |
| Oridonin | He et al. ( | CCC/ | |
Oridonin Ponicidin | Lu et al. ( | 2D-CCC/ | |
Isoneotriptophenolide Hypolide Triptonide Triptophenolide Triptonoterpene methyl ether VI | Peng et al. ( | CCC/ | |
Pseudolaric acids A and B And their glucosides ( | Han et al. ( | CCC/ | |
6β-Angeloyloxykolavenic acid 6β-Tigloyloxykolavenic acid | Wu et al. ( | CCC/ | |
| Pseudolaric acid B | Han et al. ( | CCC/ | |
| lolitrem B | Grancher et al. ( | CPC/heptane–ethyl acetate–methanol–water (33:33:24:10) | |
Carnosic acid Carnosol Carnosaldehyde Epirosmanol Rosmanol 12-Methoxy-carnosic acid Sageone | Fischedick et al. ( | CPC/heptane–acetone–water (3:5:2) | |
Stevioside Rebaudioside A Rebaudioside C | Huang et al. ( | CCC/ | |
Ginkgolides A Ginkgolides B Ginkgolides C Bilobalide | Liu et al. ( | CCC/stepwise gradient: | |
Cryptotanshinone Tanshinone I Tanshinone IIA | Gu et al. ( | CCC/stepwise gradient: | |
Cryptotanshinone Tanshinone I 1,2-Dihydrotanshinquinone Tanshinone IIA | Liang et al. ( | CCC/ | |
Tanshinone I Tanshinone IIA | Wu et al. ( | CCC/ | |
Cryptotanshinone Tanshinone I Tanshinone IIA | Tian et al. ( | CCC/ | |
Dihydrotanshinone Cryptotanshinone Methylenetanshiquinone Tanshinone I Tanshinone II Danshenxinkun B | Li and Chen ( | CCC/stepwise gradient: | |
Tanshinone I Tanshinone IIA Dihydrotanshinone I Cryptotanshinone | Tian et al. ( | CCC/light petroleum–ethyl acetate–methanol–water (2:3:2.5:1.7) | |
| Przewaquinone A | Han et al. ( | CCC/carbon tetrachloride–methanol–water– | |
| Triptolide | Ye et al. ( | CCC/ | |
Dihydrotanshinone I 1,2,15,16-Tetrahydrotanshiquinone cryptotanshinone Tanshinone I Tanshinone IIA Neo-przewaquinone A Miltirone | Sun et al. ( | CCC/light petroleum–ethyl acetate–methanol–water (6:4:6.5:3.5) | |
| Triterpenoids | 2β,3β,4β-Trihydroxypregnan-16-one | Rodrigues et al. ( | CCC/ |
| Squalene | Lu et al. ( | CCC/ | |
Pristimerin Netzahualcoyene | Gutiérrez et al. ( | CPC/heptane–ethyl acetate–methanol–water (8:1:6:1) | |
| Guyanin | Severino et al. ( | CCC/ | |
Barbinervic acid Rotungenic acid 24-Hydroxy ursolic acid Ursolic acid | Fan and He ( | CCC/ | |
| Betulinic acid | Frighetto et al. ( | CCC/ | |
| Ursolic acid | Frighetto et al. ( | CCC/ | |
Bellericagenin B Bellericaside B Arjunglucoside I 28-Nor-17, 22-seco-2α, 3β, 19, 22, 23-pentahydroxy-Δ 12-Oleanane | Nasser et al. ( | CCC/chloroform–methanol–water (43:37:20) | |
2α,3α,19β,23β-Tetrahydroxyurs-12-en-28-oic acid 2α,3α,23β-Trihydroxyurs-12-en-28-oic acid | Liu et al. ( | CCC/ | |
Oleanolic acid Ursolic acid | Du et al. ( | CCC/ | |
| Shionone | Wang et al. ( | CCC/ | |
Taraxasterol acetate Lupeol acetate β-Amyrin acetate | Abbott et al. ( | CCC/ | |
Cycloartenyl ferulate 24-Methylene cycloartanyl ferulate | Liu et al. ( | CCC/ | |
| Abrusoside A, B, C, D | Fullas et al. ( | CCC/chloroform–methanol–water (7:13:8) | |
| No compound names given | Marston et al. ( | CCC/chloroform–methanol–water (7:13:8) | |
Inotodiol Trametenolic acid | Du et al. ( | CCC/ | |
Ursolic acid Ursolic acid lactone | Maurya and Srivastava ( | CPC/ | |
Asiaticoside Madecassoside | Diallo et al. ( | CCC/chloroform– | |
| Taraxeryl acetate | Yang et al. ( | CCC/chloroform–methanol–water (2:2:1) | |
Triterpenoic acid Acetyl-triterpenoic acid | Ito et al. ( | CCC/ | |
| Celastrol | Wu et al. ( | CCC/light petroleum–ethyl acetate–tetrachloromethane–methanol–water (1:1:8:6:1) | |
Asiatic acid Madecassic acid Asciaticoside Madecassoside | Du et al. ( | CCC/ | |
Euscaphic acid Tormentic acid 2α-Acetyl tormentic acid 3β-Acetyl tormentic acid | Rocha et al. ( | CCC/gradient: | |
Alisol B Alisol B 23-acetate | Yoon et al. ( | CPC/ | |
Ganoderic acids A, B, C6, D, E, F, G Ganoderenic acid D | Cheng et al. ( | CCC/stepwise gradient: light petroleum ether–ethyl acetate–methanol–water (3:5:3:5) and (4:5:4:5) chloroform–methanol–water (13:7:4) + ammonia (22 mM) in aqueous phase and TFA (11 mM) in organic phase for further purification | |
Dehydrosulphurenic acid 3-Ketodehydrosulphurenic | Zhang et al. ( | CCC/ | |
| 24-Methylene cycloartanol | Yao et al. ( | CCC/ | |
| Lupenone | Yao et al. ( | CCC/ | |
| Triterpenoid saponins (ginsenosides) | Rc, Rb1 and Re | Wang et al. ( | CPC/ethyl acetate– |
| Rg3, Rk1, Rg5 and F4 | Ha et al. ( | CCC/methylene chloride–methanol–water–isopropanol (6:6:4:1) | |
| Rf, Rd, Re and Rb1 | Qi et al. ( | CCC/methylene chloride–methanol–5 mM aqueous ammonium acetate–isopropanol (6:2:4:3) | |
| Re | Engelberth et al. ( | CPC/heptane–n-butanol–water (3:4:7) | |
| Rg1, Re, Rf, Rh1, Rb1, Rc, Rb2 and Rd | Shehzad et al. ( | CCC/chloroform–methanol–water–isopropanol (4:3:2:1) | |
| Re,Rb1, Rc and Rb2 | Cheng et al. ( | CCC/methylene chloride–methanol–water–isopropanol (6:2:4:3, v/v) further purification of Rb1, Rc and Rb2 in | |
| Rb1, Rb2, Rc, Rd, Re, Rg1, Rf and Rh 1 | Shehzad et al. ( | CCC/stepwise gradient: | |
| Re and Rg1 | Chen et al. ( | CCC/ethyl acetate– | |
| Rh1, Rf, Rd, Rg1, Re, Rc, Rb2 and Rb1 | Shehzad et al. ( | CCC/methylene chloride–methanol–water–isopropanol (1:1:2:1) | |
| Rg6, Rg5, Rk1,F4, Rg3, Rg2, Rf, Rd, Rg1, Re, Rc, Rb2, Rb1 | Shehzad et al. ( | CCC/stepwise gradient: methylene chloride–methanol–water–isopropanol (5:4:1:3) and (2:2:1:2) | |
| Rb1 and Rb2 | Wang et al. ( | CPC/ethyl acetate– | |
Rg, Rd, Re and Rb Notoginsenoside R | Cao et al. ( | CCC/chloroform– | |
Rg, Rd, Re and Rb Notoginsenoside R | Cao et al. ( | CCC/ethyl acetate– | |
Rg, Re and Rb Notoginsenoside R | Du et al. ( | CCC/ | |
| Ro | Cheng et al. ( | CCC/ethyl acetate–isopropanol–0.1 % formic acid (3:1:5) | |
Rg1, Re and Rb1 Notoginsenoside R1 | Wang et al. ( | CPC/ethyl acetate– | |
| Triterpenoid saponins | Lucyoside Q Lucyoside H | Du and Gao ( | CCC/chloroform‐methanol‐water (13:7:8) |
Astragaloside I Astragaloside II | Han et al. ( | CCC/stepwise gradient: ethyl acetate– | |
Lancemaside A Foetidissimoside A Astersaponin Hb | Shirota et al. ( | CPC/ | |
Saikosaponins-A Saikosaponins-C | Yoon and Kim ( | CPC/ethyl acetate– | |
Platycoside E Deapio-platycoside E | Han et al. ( | CCC/ | |
Platycodin D3 Deapio-platycodin D3 Platycodin D Deapio-platycodin D | Han et al. ( | CCC/ | |
2″- 3″- 2″- 3″- Polygalacin D | Ha et al. ( | CCC/chloroform–methanol–isopropanol–water (3:2:2:3) | |
| No compound names given | Shi et al. ( | CCC/ethyl acetate– | |
Astragaloside IV Astragaloside II Astragaloside I Acetylastragaloside I | Peng et al. ( | CCC/stepwise gradient: | |
Gypsogenin derivatives Dianoside C | Yao et al. ( | CCC/ | |
Hederagenin 3- | Xin et al. ( | CCC/ | |
23- Cimiracemoside D 25- Cimigenol | Cicek et al. ( | CCC/ | |
| Esculentosides A, B, C, and D | Ma et al. ( | CCC/chloroform–methanol–water (4:4:2) | |
| Hederagenin | CCC/heptane–acetone–methanol (5:1:4) | ||
| Hederagenin | He et al. ( | CPC/ | |
| Elatoside F | Lee et al. ( | CCC/chloroform–methanol–water–isopropanol (4:3:3:1) | |
| Tormentic acid | Wang et al. ( | CCC/ | |
Arganine A, C, D Tieghemelin | Gosse et al. ( | CCC/ | |
| Triacetyl soyasaponin Ab, Aa, Ab, Ae, Ba, Af, Bb, Be and conjugated groups, αg, βg and γg | Zhao et al. ( | CCC/ | |
Licorice-saponin A3 Glycyrrhizic acid, 3- | Xu et al. ( | CCC/ethyl acetate– Stationary phase and 10 mM ammonia in the lower aqueous mobile phase | |
| Glycyrrhizin | Jiang et al. ( | CCC/ethyl acetate–methanol–water (5:2:5) | |
Goyaglycoside-E Momordicoside L Goyaglycoside-a Momordicoside K | Du and Yuan ( | CCC/ | |
| Tetranortriterpenoids | Azadirachtin A Azadirachtin B Azadirachtin H Desacetylnimbin Desacetylsalannin Nimbin Salannin | Silva et al. ( | CCC/ |
Methyl angolensate 7-Descetoxy-7-oxogedunin Deacetylgedunin 6α-Acetoxygedunin Gedunin Andirobin | da Silva et al. ( | CCC/stepwise gradient: | |
| Tetraterpenoids (Carotenoids) | Cochloxanthin Dihydrocochloxanthin | Diallo and Vanhaelen ( | CCC/tetrachloromethane–methanol–water (5:4:1) |
| Zeaxanthin | Chen et al. ( | CCC/ | |
| Crocin | Jiang et al. ( | CCC/ | |
| Fucoxanthin | Kim et al. ( | CPC/ | |
| Lutein | Wei et al. ( | CCC/ | |
Zeaxanthin Lutein | Aman et al. ( | CCC/ | |
| Lutein | Tsao and Yang ( | CCC/ | |
| Canthaxanthin | Li et al. ( | CCC/ | |
| 9′- | Baldermann et al. ( | CCC/ | |
| Lycopene | Baldermann et al. ( | CCC/ | |
Crocins 1, 2, 5 Picrocrocin | Lechtenberg et al. ( | CPC/ | |
| Fucoxanthin | Xiao et al. ( | CCC/ | |
| Lutein | Li et al. ( | CCC/ | |
| Lycopene | Wei et al. ( | CCC/ | |
| Astaxanthin | Li and Chen ( | CCC/ | |
Tephrosin Deguelin 6a,12a-Dehydrodeguelin | Ye et al. ( | CCC/ |
CCC counter-current chromatography, CPC centrifugal partition chromatography