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PMID: 42562528 Published · ppublish English

Macauba (Acrocomia aculeata) kernel-derived protein hydrolysates modulate intestinal development, antioxidant responses and hepatic metabolic gene expression in an in ovo (Gallus gallus) model.

Silva CW, M Dugan E, Huang M, Guerra DJR, da Silva Gomes G, de Oliveira Mendes TA, de Barros FAR, Tako E

Abstract

Macauba kernel protein isolate (MKPI) is nutrient-rich and ideal for plant-based diets, with potential for generating bioactive peptides upon hydrolysis. This study evaluated the effects of MKPI-derived hydrolysates (HD) on intestinal development, antioxidant defenses, and hepatic glucose metabolism using an in ovo (Gallus gallus) model, combined with peptide characterization and in silico bioactive prediction. Fertile broiler eggs (n = 9/group) were assigned to four groups: (1) non-injected (NI), (2) H₂O, (3) MKPI (IS), and (4) hydrolysates (HD). Intra-amniotic administration was performed on day 17, and tissues were collected at hacth (day 21). HD sequencies were identified by nanoLC-ESI-MS/MS and analyzed using the BIOPEP-UWM database. Hydrolysis reduced protein sizes (<15 kDa) and increased antioxidant capacity for the fractions. Both IS and HD groups induced changes in intestinal morphology, including increased villus height, surface area, and crypt depth compared to NI; however, villus-related improvements were also observed in the H₂O group, indicating a contribution of the injection procedure. In contrast, IS and HD specifically increased crypt depth and goblet cell diameter. Antioxidant-related genes (SOD, GSH-Px, CAT) were upregulated in IS and HD groups. HD further modulated hepatic gene expression (PCK1, G6PD, GAPDH, GLUT2), as well as intestinal SGLT1 expression, while MUC2 and DPP4 were unchanged. A total of 45 peptides were identified in HD, with predicted antioxidant and metabolic regulatory activities. Overall, HD modulated intestinal morphology, enhanced antioxidant responses, and influenced hepatic gene expression in an in ovo model.

Keywords
Bioactive peptides Gene expression Gut health In ovo model Intestinal morphology Macauba kernel Plant protein hydrolysates
Article Info
Journal
Food research international (Ottawa, Ont.)
Abbr.
Food Res Int
ISSN
1873-7145
Published
2026-10-01
Language
English
Country/Region
Canada
NLM ID
9210143
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