PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 7, 20261 citations

Chemical Profiling and Biological Activity of Alpinia graminifolia Essential Oils: In Vitro and In Silico Studies.

View Full Paper
NTNguyen Hoang TuanLGLe Duc GiangHTHieu Tran-Trung

Key Points

  • To characterize the chemical composition and biological activities of essential oils from different parts of Alpinia graminifolia.
  • Collected samples from Bac Giang province, Vietnam.
  • Performed hydrodistillation for essential oil extraction.
  • Analyzed chemical profiles using gas chromatography-mass spectrometry (GC-MS).
  • Evaluated antioxidant activity through DPPH, ABTS assays, and reducing power tests.
  • Conducted molecular docking simulations for binding interactions at α-amylase active site.
  • Identified 67 compounds in rhizome EO, 72 in pseudo-stem EO, and 55 in leaf EO.
  • Leaf EO showed the strongest α-amylase inhibitory activity (IC<sub>50</sub> = 311.58 µg/mL).
  • Rhizome EO exhibited α-glucosidase inhibition (IC<sub>50</sub> = 1146.01 µg/mL).
  • Leaf EO had the highest antioxidant activity but was less active than ascorbic acid.
  • Molecular docking indicated that β-copaen-4α-ol and pogostole had stronger binding affinities to α-amylase than acarbose.

Abstract

This study aimed to characterize, for the first time, the chemical composition and bioactivities of essential oils (EOs) obtained from different parts of Alpinia graminifolia. Materials and Methods: Fresh samples collected in Bac Giang province, Vietnam, were subjected to hydrodistillation using a Clevenger-type apparatus. The chemical profiles of the resulting EOs were determined via gas chromatography-mass spectrometry (GC-MS). Antioxidant activity was assessed using DPPH and ABTS radical scavenging assays and a reducing power test. Additionally, α-amylase and α-glucosidase inhibitory activities were evaluated. Molecular docking simulations were performed to investigate the binding interactions between major EO constituents and the α-amylase active site. Results: GC-MS analysis identified 67 compounds in rhizome EO, 72 in pseudo-stem EO, and 55 in leaf EO. The leaf EO exhibited the strongest α-amylase inhibitory activity (IC50 = 311.58 ± 12.42 µg/mL), while α-glucosidase inhibition was observed only for the rhizome EO (IC50 = 1146.01 ± 17.40 µg/mL). The leaf EO also showed the highest antioxidant activity, although all samples were less active than ascorbic acid. Molecular docking revealed that β-copaen-4α-ol and pogostole displayed stronger binding affinities toward α-amylase than acarbose. The findings demonstrate organ-dependent variations in the chemical composition and bioactivities of A. graminifolia EOs.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Tuan et al. (2026) studied this question.

synapsesocial.com/papers/69abc1955af8044f7a4ea694https://doi.org/10.1002/cbdv.202503425
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Comparative Analysis of Chemical Composition and Bioactivities of Essential Oils From Different Parts of Wild‐Grown Alpinia siamensis K.Schum. in Vietnam2026
  2. 2The essential oil of Alpinia officinarum Hance: chemical compounds, antioxidant, antimicrobial, and anti-inflammatory activities2025
  3. 3Potential antioxidant, α-glucosidase, butyrylcholinesterase and acetylcholinesterase inhibitory activities of major constituents isolated from Alpinia officinarum hance rhizomes: computational studies and in vitro validation2024 · 7 citations
  4. 4Phytochemistry and In Vitro Bioactivities of Elaeagnus angustifolia L. Leaves: Influence of Solvent Polarity, Antioxidant Properties, and α-Amylase Inhibition2026 · 2 citations
  5. 5Chemical composition and enzymatic inhibitory activities related to diabetes of Hedychium malayanum rhizome and leaf essential oils essential oils2026