A New High-Performance Liquid Chromatographic Method for the Determination and Distribution of Linalool in Michelia alba

A new high-performance liquid chromatographic method with photodiode array detection was established for the determination of linalool in the plant Michelia alba. Linalool was extracted from the plant sample with the aid of ultrasound, and was analyzed on a Waters RP C18 column (4.6 × 150 mm, 5 μm)...

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Main Authors: Hua-Bin Li, Xiang-Rong Xu, Ya-Jun Guo, Yang Song, Xu-Xia Ai, En-Qin Xia
Format: Article
Language:English
Published: MDPI AG 2010-07-01
Series:Molecules
Subjects:
Online Access:http://www.mdpi.com/1420-3049/15/7/4890/
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spelling doaj-5fd815d525874dad8ad04307128bea202020-11-24T21:03:49ZengMDPI AGMolecules1420-30492010-07-011574890489710.3390/molecules15074890A New High-Performance Liquid Chromatographic Method for the Determination and Distribution of Linalool in Michelia albaHua-Bin LiXiang-Rong XuYa-Jun GuoYang SongXu-Xia AiEn-Qin XiaA new high-performance liquid chromatographic method with photodiode array detection was established for the determination of linalool in the plant Michelia alba. Linalool was extracted from the plant sample with the aid of ultrasound, and was analyzed on a Waters RP C18 column (4.6 × 150 mm, 5 μm) using an acetonitrile and water (55:45, v/v) mobile phase at a flow rate of 1.0 mL/min. The column temperature was set at 25 ºC, and the detection wavelength was 210 nm. The linear range of the method was 5–200 μg/mL with a correlation coefficient of 0.9975. The recovery was 92–112%, and the relative standard deviation was 1.85% (n = 9). The present method has been used to study the distribution of linalool in the plant Michelia alba. The plant samples include flowers, leaves and tender twigs. Furthermore, leaves included samples in their tender, grown-up and fallen phases, and flowers included samples in their juvenile, middle and whitening phases. The concentrations of linalool in different parts of the plant were 0.21–0.65%, 1.63–4.89% and 0.43% for leaves, flowers and tender twigs, respectively. The results showed that all the plant materials contained relative high concentration of linalool, and juvenile phase flowers contained the highest concentration of linalool. Notably, the fallen leaves also contained high concentrations of linalool, which could be a potential resource of this compound. The results obtained are very helpful for the potential full utilization of this plant. http://www.mdpi.com/1420-3049/15/7/4890/linalooldistributionhigh-performance liquid chromatographyMichelia alba
collection DOAJ
language English
format Article
sources DOAJ
author Hua-Bin Li
Xiang-Rong Xu
Ya-Jun Guo
Yang Song
Xu-Xia Ai
En-Qin Xia
spellingShingle Hua-Bin Li
Xiang-Rong Xu
Ya-Jun Guo
Yang Song
Xu-Xia Ai
En-Qin Xia
A New High-Performance Liquid Chromatographic Method for the Determination and Distribution of Linalool in Michelia alba
Molecules
linalool
distribution
high-performance liquid chromatography
Michelia alba
author_facet Hua-Bin Li
Xiang-Rong Xu
Ya-Jun Guo
Yang Song
Xu-Xia Ai
En-Qin Xia
author_sort Hua-Bin Li
title A New High-Performance Liquid Chromatographic Method for the Determination and Distribution of Linalool in Michelia alba
title_short A New High-Performance Liquid Chromatographic Method for the Determination and Distribution of Linalool in Michelia alba
title_full A New High-Performance Liquid Chromatographic Method for the Determination and Distribution of Linalool in Michelia alba
title_fullStr A New High-Performance Liquid Chromatographic Method for the Determination and Distribution of Linalool in Michelia alba
title_full_unstemmed A New High-Performance Liquid Chromatographic Method for the Determination and Distribution of Linalool in Michelia alba
title_sort new high-performance liquid chromatographic method for the determination and distribution of linalool in michelia alba
publisher MDPI AG
series Molecules
issn 1420-3049
publishDate 2010-07-01
description A new high-performance liquid chromatographic method with photodiode array detection was established for the determination of linalool in the plant Michelia alba. Linalool was extracted from the plant sample with the aid of ultrasound, and was analyzed on a Waters RP C18 column (4.6 × 150 mm, 5 μm) using an acetonitrile and water (55:45, v/v) mobile phase at a flow rate of 1.0 mL/min. The column temperature was set at 25 ºC, and the detection wavelength was 210 nm. The linear range of the method was 5–200 μg/mL with a correlation coefficient of 0.9975. The recovery was 92–112%, and the relative standard deviation was 1.85% (n = 9). The present method has been used to study the distribution of linalool in the plant Michelia alba. The plant samples include flowers, leaves and tender twigs. Furthermore, leaves included samples in their tender, grown-up and fallen phases, and flowers included samples in their juvenile, middle and whitening phases. The concentrations of linalool in different parts of the plant were 0.21–0.65%, 1.63–4.89% and 0.43% for leaves, flowers and tender twigs, respectively. The results showed that all the plant materials contained relative high concentration of linalool, and juvenile phase flowers contained the highest concentration of linalool. Notably, the fallen leaves also contained high concentrations of linalool, which could be a potential resource of this compound. The results obtained are very helpful for the potential full utilization of this plant.
topic linalool
distribution
high-performance liquid chromatography
Michelia alba
url http://www.mdpi.com/1420-3049/15/7/4890/
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