| Literature DB >> 28116217 |
Mafalda Jesus1, Ana P J Martins1, Eugenia Gallardo2, Samuel Silvestre3.
Abstract
Diosgenin, a steroidal sapogenin, occurs abundantly in plants such as Dioscorea alata, Smilax China, and Trigonella foenum graecum. This bioactive phytochemical not only is used as an important starting material for the preparation of several steroidal drugs in the pharmaceutical industry, but has revealed also high potential and interest in the treatment of various types of disorders such as cancer, hypercholesterolemia, inflammation, and several types of infections. Due to its pharmacological and industrial importance, several extraction and analytical procedures have been developed and applied over the years to isolate, detect, and quantify diosgenin, not only in its natural sources and pharmaceutical compositions, but also in animal matrices for pharmacodynamic, pharmacokinetic, and toxicological studies. Within these, HPLC technique coupled to different detectors is the most commonly analytical procedure described for this compound. However, other alternative methods were also published. Thus, the present review aims to provide collective information on the most recent pharmacological data on diosgenin and on the most relevant analytical techniques used to isolate, detect, and quantify this compound as well.Entities:
Year: 2016 PMID: 28116217 PMCID: PMC5225340 DOI: 10.1155/2016/4156293
Source DB: PubMed Journal: J Anal Methods Chem ISSN: 2090-8873 Impact factor: 2.193
Figure 1Chemical structures of diosgenin and dioscin.
Analytical methodologies in different specimens for diosgenin determinations by means of HPLC and UHPLC.
| Matrix | Sample amount | Extraction process | Chromatographic conditions | Instrumental analysis | Linear range | LOD/LOQ | References |
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| 0.5 g | 15 mL of methanol at room temperature for 0.5 h | Mobile phase: 0.1% formic acid in water (A) and 0.1% formic acid in acetonitrile (B) using an isocratic elution of 82% (B) in 0–10 min. Flow rate at 0.3 mL/min Column temperature: 40°C | HPLC-DAD at 203 nm | 1–500 | 0.3/0.8 ng mL−1 | [ |
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| Root extracts and polyherbal formulations containing | 10 g | SPE (Soxhlet apparatus with petroleum ether, chloroform, and methanol) | HPTLC | HPTLC and HPLC with densitometry: 425 nm | 2.0–10 | 0.7/2 | [ |
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| Berries extracts and formulations containing | 20 g | LLE with 20% of H2SO4 in 70% IPA and hexane for 8 h | Mobile phase: acetonitrile : water 92 : 08 (% v/v). Flow rate at 1.0 mL/min Column temperature: 25°C | HPLC-DAD at 203 nm | 1.0–60 | 0.33/1.0 | [ |
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| Cultured cells of | 0.1 g | 20 mL of 95% ethanol, for 2 h. Hydrolysis with 20 mL H2SO4 1 M at 121°C for 2 h. LLE with petroleum ether. The combined petroleum and NaOH 1 M. | Mobile phase: acetonitrile : water 90 : 10 (% v/v) Flow rate at 1.0 mL/min Column temperature: 30°C | HPLC-DAD at 203 and 410 nm | 0.0625–1.000 | 0.0372/0.1127 | [ |
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| Cosmeceutical formulations | 2.5 g | LLE with 10 mL of methanol mixed with 50% of tetrahydrofuran | Mobile phase: water : acetonitrile 15 : 85 (% v/v) | HPLC-DAD at 210 nm | 50–1000 | 10/30 | [ |
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| Seed extract of | 1 g | SPE (Soxhlet with water and ethanol mixture (1 : 1) for 72 h at 70°C). 80 mL of HCl 3 N for 1 h at 100°C. LLE with diethyl ether | Mobile phase: acetonitrile : water (10 : 90 v/v) gradient mode. Flow rate at 1.0 mL/min. Column temperature: 30°C | HPTLC and HPLC-DAD at 205 nm | — | — | [ |
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| Pharmaceutical forms containing | 0.01 g | 25 mL of methanol for 15 min | Mobile phase: acetonitrile : water 90 : 10 (% v/v). Flow rate of 1.0 mL/min | HPLC-UV at 203 nm | 2.0–10.0 | 0.520/1.577 | [ |
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| Polyherbal formulation containing | 1 g | 90 mL HCl 3 N | Mobile phase: methanol : water 15 : 85 (% v/v), gradient mode. Flow rate at 1.0 mL/min Column temperature: 30°C | HPLC-DAD at 205 nm | 25.0–75.0 | — | [ |
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| Rhizomes or tubers of various | 0.5 g for solids and 1 mL for liquids | 9 to 25 mL of methanol | Mobile phase: acetonitrile : water 75 : 25 (v/v%) containing 0.05% formic acid. Flow rate at 0.27 mL/min. | UHPLC-ELSD and DAD | 15.0–550 | 5.0–12/10-25 | [ |