Solid-Phase Microextraction/Gas Chromatography–Time-of-Flight Mass Spectrometry Approach Combined with Network Pharmacology Analysis to Evaluate the Quality of Agarwood from Different Regions against Anxiety Disorder

Author:

Pang Yue12,Yu Wenjuan3,Liang Wenyi12,Gao Yu2,Yang Fan2,Zhu Yuanyuan2,Feng Lei2,Yin Hongmei4,Liu Yumin2

Affiliation:

1. School of Pharmacy, Shanghai Jiao Tong University, Shanghai 200240, China

2. Instrumental Analysis Center, Shanghai Jiao Tong University, Shanghai 200240, China

3. State Key Laboratory of Subtropical Silviculture, Zhejiang A&F University, Hangzhou 311300, China

4. Hangzhou Institute for Food and Drug Control, Hangzhou 310022, China

Abstract

Agarwood (Aquilaria malaccensis Lam.) is a resinous material from different geographical locations. The current evaluation of agarwood quality is usually based on its physical properties and chemical compounds, yet only a few studies have linked agarwood quality with its anxiolytic effect, as indicated by characteristic compounds. In this study, using solid-phase microextraction/gas chromatography–time-of-flight mass spectrometry (SPME/GC-TOFMS) and multivariate analysis, we found 116 significantly different compounds in agarwood samples from four locations in Southeast Asia with regard to their quality. Brunei and Nha Trang agarwood had abundant sesquiterpenoids, exhibiting notable pharmacological efficacy in relieving anxiety. Malaysian and Irian agarwood had abundant alcohols and aldehydes, qualifying them as high-quality spices. Compound–target–disease network and pathway enrichment analysis were further employed to predict 79 gene targets and 20 pathways associated with the anxiolytic effects based on the 62 sesquiterpenoids. The correlated relationships among the sesquiterpenoids and targets suggest that agarwood treats anxiety via multiple compounds acting on multiple targets. Varying levels of sesquiterpenes across agarwood groups might lead to differences in the anxiolytic effects via signaling pathways, such as neurotransmitter- and hormone-regulated pathways. Our study originally evaluates agarwood quality and its anxiolytic effect by linking the characteristic compounds to potential gene targets and pathways.

Funder

The Medicine and Engineering Cross Foundation of Shanghai Jiao Tong University

Publisher

MDPI AG

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