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Impact of defibrillation technique on the rheological, thermo-mechanical, and nutritional properties of nanosuspensions produced from multiple fractions of pinhão seed (Araucaria angustifolia (Bertol.) Kuntze)

  • Fernando Castro Leal
  • , Karina Mayumi Ueda
  • , Matheus Samponi Tucunduva Arantes
  • , Tielidy Angelina de Morais de Lima
  • , Fabrício Augusto Hansel
  • , Washington Luiz Esteves Magalhães
  • , Cristiane Vieira Helm
  • , Rilton Alves de Freitas
  • , Fabiane Oliveira Farias
  • , Marcos R. Mafra
  • , Luciana Igarashi-Mafra
  • Universidade Federal do Paraná
  • Embrapa Florestas

Research output: Contribution to journalArticlepeer-review

8 Citations (Scopus)

Abstract

This work aimed to evaluate the influence of the mechanical defibrillation technique on the pinhão nanosuspensions production obtained from the whole pinhão, its coat, and almond. The nanosuspensions were characterized concerning their composition, morphology, thermal stability, rheological behavior, compound profiling, and cytotoxicity. The results revealed a significant fiber content in pinhão coat nanosuspension (63.12 ± 0.52 %) and non-fiber carbohydrates in whole pinhão (59.00 ± 0.13 %) and almond (74.39 ± 0.23 %) nanosuspensions. The defibrillation process led to micro/nano-sized fibers in pinhão coat nanosuspensions and small-size starch granules in almond nanosuspensions. The nanosuspensions containing pinhão coat exhibited a gel-like behavior, while almond nanosuspensions displayed liquid-like characteristics. Pinhão coat nanosuspensions presented a significant content of flavonoids and phytosterols, whereas almond-based nanosuspensions contained substantial sugar amounts. No cytotoxicity was observed at the concentrations evaluated. These findings demonstrated that the defibrillation technique impacted the properties of pinhão constituents, allowing their application in new product development.

Original languageEnglish
Article number138195
JournalFood Chemistry
Volume440
DOIs
Publication statusPublished - 15 May 2024

Keywords

  • Almond sourced bioactives
  • Defibrillation process operation
  • Pinhão-based nanosuspension
  • Pinhão-seed fractions

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