Dynamic Zanthoxylum pungency characteristics and their correlation with sanshool composition and chemical structure

[Display omitted] •HaSS had the greatest impact on Zanthoxylum pungency.•The higher the HγSS content, the longer the tingling duration.•The most influential factor on sanshool tingling was the cis-double bonds.•Tingling and numbing were not perceived by HβSS (200 μg/mL). Huajiao (Zanthoxylum) from d...

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Veröffentlicht in:Food chemistry 2023-05, Vol.407, p.135138-135138, Article 135138
Hauptverfasser: Feng, Xiya, Huang, Pimiao, Duan, Ping, Wang, Hongwei, Kan, Jianquan
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Sprache:eng
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Zusammenfassung:[Display omitted] •HaSS had the greatest impact on Zanthoxylum pungency.•The higher the HγSS content, the longer the tingling duration.•The most influential factor on sanshool tingling was the cis-double bonds.•Tingling and numbing were not perceived by HβSS (200 μg/mL). Huajiao (Zanthoxylum) from different regions varies in pungency features. The objective of this study was to explore the reasons for the differences. Temporal check-all-that-apply (TCATA) and time-intensity (TI)) were used to determine time-related pungency features of huajiao and sanshools. The compositions of sanshools in huajiao were measured by high-performance liquid chromatograph (HPLC). TI results revealed that hydroxy-γ-sanshool tingling and numbing duration (1332.00 ± 50.91 and 1020.00 ± 61.19 s, respectively) were about twice that of hydroxy-α-sanshool (720.00 ± 25.92 and 584.00 ± 22.63 s, respectively). Tingling and numbing were not perceived by hydroxy-β-sanshool and hydroxy-γ-isosanshool. HPLC results showed that HαSS was the main component of huajiao sanshools, representing 71.06 % to 92.90 %. TCATA results revealed the pungency sensations appearance sequence: tingling, salivating, cooling, and burning appeared first, followed by vibrating, and numbing was perceived last. These findings revealed the relationship between the compositions of sanshool and the pungency features of huajiao.
ISSN:0308-8146
1873-7072
DOI:10.1016/j.foodchem.2022.135138