CHARACTERIZATION, CHEMICAL PROFILE, AND ANTIDIABETIC POTENTIAL OF JASMINUM OFFICINALE NANOEMULSION

Code: 260722418
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Título

CHARACTERIZATION, CHEMICAL PROFILE, AND ANTIDIABETIC POTENTIAL OF JASMINUM OFFICINALE NANOEMULSION

Autores:
  • Gustavo Oliveira Everton

  • Paulo Roberto Barros Gomes

  • Djavania Azevêdo da Luz Silva

  • Michelle Mara de Oliveira Lima

  • Maria da Glória Almeida Bandeira

  • Maria Alves Fontenele

  • Adhila Freitas Sanches

  • Cauã Lucas Ramos dos Santos

  • Silvio Carvalho Marinho

  • Victor Elias Mouchrek Filho

DOI
  • DOI
  • 10.37885/260722418
    Publicado em

    31/08/2026

    Páginas

    150-165

    Capítulo

    10

    Resumo

    Objective: This study aimed to characterize the chemical composition of Jasminum officinale essential oil and evaluate the in vitro antidiabetic activity of its nanoemulsion. Methods: The essential oil was extracted by hydrodistillation and analyzed by GC-MS. Nanoemulsions were prepared by phase inversion method using Tween 20 as surfactant. Antidiabetic activity was assessed by α-amylase and α-glucosidase inhibition assays. Results: GC-MS analysis identified 29 compounds, with benzyl acetate (29.06%), benzyl benzoate (20.57%), isophytol (13.62%), benzyl alcohol (6.01%), and linalool (6.98%) as the major constituents. The nanoemulsion exhibited significant inhibitory activity against α-amylase (IC₅₀ = 62.36 mg/L) and α-glucosidase (IC₅₀ = 51.66 mg/L), enzymes involved in carbohydrate digestion. The observed antidiabetic effects are attributed to the presence of phenolic compounds and oxygenated monoterpenes, which act as enzyme inhibitors and antioxidants. Conclusion: J. officinale essential oil nanoemulsion presents a promising antidiabetic profile, particularly through the inhibition of carbohydrate-digesting enzymes. These findings position nanoemulsion as a potential candidate for the development of plant-based hypoglycemic agents, offering a natural alternative for the management of diabetes mellitus.

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    Palavras-chave

    Jasminum officinale; essential oil; nanoemulsion; antidiabetic activity; α-amylase

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