Abstract

As an alternative to Dendrobium candidum, protocorm-like bodies (PLBs) of Dendrobium candidum are of great value due to their high yield and low cost. In this work, three glycoside compounds, β-D-glucopyranose 1-[(E)-3-(4-hydroxyphenyl)-2-propenoat] (I), β-D-glucopyranose 1-[(E)-3-(3, 4-dihydroxyphenyl)-2-propenoat] (II), and 1-O-sinapoyl glucopyranoside (III), were extracted and isolated by ultrahigh pressure extraction (UPE) coupled with high-speed counter-current chromatography (HSCCC) from PLBs of D. officinale. First, the target compounds were optimized and prepared with 50% ethanol solution at a 1:30 (g/mL) solid/liquid ratio in 2 min under 300 MPa by UPE. Then, the crude extract was chromatographed with a silica gel column, and primary separation products were obtained. In addition, the products (150 mg) were separated by HSCCC under the solvent system of MTBE-n-butyl alcohol-acetonitrile-water (5:1:2:6, v/v/v/v), yielding 31.43 mg of compound I, 10.21 mg of compound II, and 24.75 mg of compound III. Their structures were further identified by ESI-MS, 1H NMR, and 13C NMR. The antioxidant results showed that the three compounds expressed moderate effects on the DPPH· scavenging effect. Compound II had the best antioxidant capacity and its IC50 value was 0.0497 mg/mL.

Highlights

  • A culture of protocorm-like bodies (PLBs) of Dendrobium candidum has been obtained by using a tissue culture to induce the regeneration of D. officinale [1], which has the advantages of easy planting, short growth cycle, and low cost [2]

  • A significantly efficient method for the extraction and purification of β-D-glucopyranose 1-[(E)-3-(4-hydroxyphenyl)-2-propenoat], β-D-glucopyranose1-[(E)3-(3, 4-dihydroxyphenyl)-2-propenoat], and 1-O-sinapoyl glucopyranoside from PLBs of D. officinale was achieved by ultrahigh pressure extraction (UPE) coupled with high-speed countercurrent chromatography (HSCCC)

  • The crude extraction of UPE was chromatographed over a silica gel column and eluted with a solvent system composed of petroleum:ether-ethyl acetate (1:1, v/v)

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Summary

Introduction

A culture of protocorm-like bodies (PLBs) of Dendrobium candidum has been obtained by using a tissue culture to induce the regeneration of D. officinale [1], which has the advantages of easy planting, short growth cycle, and low cost [2]. PLBs of D. officinale have the activities of treating skin problems and strengthening the immune system, and they have antioxidant, anti-tumor, anti-cancer, and anti-inflammatory activities [7,8,9]. Glycoside compounds are derivatives of polysaccharides and play an important role in the treatment of liver diseases [16] and diabetes [17], and they have anti-tumor [18]. Glycoside compounds are derivatives of polysaccharides and play an important role in the treatment of liver diseases [16] and diabetes [17], and they have anti-tumor [18] and aahcasanbltspfchaonlnneioeerwgarcrgddloeuioelhtvratendirfmyalesvnyfoyuopnpae-eesapsclcrtphutmevatrotboyoiprnoineodevgaolotsndea[nujreepiol2tnratclcre1irioauppttovtc,ianfiypth2ovtoeoide-g2roymlefnsplocr]lnueey,[teibrao2,enictofcwjvli1nffaooseopoee,ihndmgrfs2tnecriiidll2etrpid,cvyyset]fihraeenyc,flna[ooenow.1pdhpcncbwsdM9ortahlpali,ysoedms2itlroycmpuoo0e[aosihp1wer]eaptbc.a9orlcihopovdtnHl,uhy2ayfmrimn.s0oiooanfted]Mopuhnwaeoal.rsddocesdbteouhiHuviiidrvsacsnerintiofeinoaofsnsodfrtolelwudaiaha,rpscfmsdtliteieiaitshievdscnvhfnernoehfiatigaeedsrlcentcrtisaaaihyr,gimicteoddteai.litspisnynvniihngeTtsacacaptiegethhroorynrlsaaaau.nysgstcrtsdseiasaliahTdruyop,gilmteethecncieiaiswomtshouosareonasiinafsasisanfrit,syurahdosilttcuiolcyarhmet[hhhnynw2sseibis3sbsgamPfraeou,eerseh2ueyLfiocas4nthcnBaimetat[]oniihsu2s.abwgmmul3ersIlhyPoenici,seept2tfLhebth-aof4otiDcBeombh]cfbuoce.sr.loitoenneesnhoImotcl-sdnhufrefcawfufosepoiemuitDmrgricnohhstlihan.hsauteipanrshuiorsntagcdcogfeimrhldfiohoa,feeelrcllnslpag-atuwoyiishntnasrhmmcaigaperaoaranedyileonanelsefrde-s,---iqsureirqeudi.red.

OCH3 OCH3
The Effect of Ethanol Concentration
Comparison of UPE and Hot Reflux Extraction
The Effect of Extraction Time
The Effect of Solid-Liquid Ratio
Selection of the Optimized Two-Phase Solvent System
Purification of Three Compounds by HSCCC
Apparatus
UPE Conditions
Silica Gel Column Chromatography Separation
Selection of Two-Phase Solvent System and Preparation of Sample for HSCCC
HSCCC Separation Procedures
HPLC Analysis and Identification of HSCCC Fractions
DPPH Radical Scavenging Effect
Findings
Conclusions
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