Please use this identifier to cite or link to this item: http://www.alice.cnptia.embrapa.br/alice/handle/doc/1188910
Title: Dietary intervention with purple passion fruit peel in asthma: insights into Th2-mediated responses in an ovalbumin-induced murine model.
Authors: FONSECA, A. M. A.
NASCIMENTO, R. de P. do
BELLINAZZI, L.
VIEIRA, C.
ALMEIDA, A.
BORGUINI, R. G.
LOUREIRO, C. C.
JÚNIOR, M. R. M.
SILVESTRE, A. J. D.
ROCHA, S. M.
Affiliation: ALEXANDRE M. A. FONSECA, UNIVERSITY OF AVEIRO; ROBERTO DE PAULA DO NASCIMENTO, UNIVERSIDADE ESTADUAL DE CAMPINAS; LEVI BELLINAZZI, UNIVERSITY OF AVEIRO; CÁTIA VIEIRA, UNIVERSITY OF AVEIRO; ADELAIDE ALMEIDA, UNIVERSITY OF AVEIRO, AVEIRO; RENATA GALHARDO BORGUINI, CTAA; CLÁUDIA C. LOUREIRO, COIMBRA HOSPITAL AND UNIVERSITY CENTRE; MÁRIO R. MARÓSTICA JÚNIOR, UNIVERSIDADE ESTADUAL DE CAMPINAS; ARMANDO J. D. SILVESTRE, UNIVERSITY OF AVEIRO; SÍLVIA M. ROCHA, UNIVERSITY OF AVEIRO.
Date Issued: 2026
Citation: Food Research International, v. 239, n. 119503, 2026.
Description: Asthma is a chronic inflammatory airway disease in which Th2-driven immune responses and oxidative stress play key roles in its pathophysiology and are increasingly recognized as being modulated by diet. Purple passion fruit peel (PPFP), an agro-industrial by-product rich in dietary fiber and containing a diverse profile of bioactive compounds, including anthocyanins, represents a promising food-derived ingredient. However, most evidence on its effects in asthma relies on isolated extracts, and the mechanistic interplay of whole-food matrices remains poorly understood. In this study, female BALB/c mice were randomized into five groups: healthy control (CT), ovalbumin-induced asthma control (CA), positive control (dexamethasone), and asthma groups supplemented with 0.3% (PPFP-L) or 3.0% (PPFP-H) PPFP. Following intraperitoneal sensitization and intranasal OVA challenge, the effects of dietary supplementation on inflammatory mediators, oxidative stress markers, hepatic safety, and lung morphology were evaluated. Dietary inclusion of PPFP at 0.3% and 3.0% (non-cytotoxic in Aliivibrio fischeri) did not affect feeding behaviour, body weight, or hepatic toxicity markers. Supplementation at 3.0% significantly increased total reduced glutathione (41.7%) and the activities of catalase (19.8%) and superoxide dismutase (45.7%). Concurrently, systemic immunoglobulin E (15.9%) and pulmonary interleukin-4 (29.8%) and interleukin-5 (29.1%) levels were reduced, which was corroborated by decreased inflammatory cell infiltration in lung tissue. Conversely, lipid peroxidation and interleukin-13 production remained unaffected. These results indicate that PPFP mitigates oxidative stress primarily through the enhancement of antioxidant enzymatic homeostasis and modulation of Th2-driven systemic inflammation. Overall, PPFP emerges as a safe, minimally processed nutritional coadjuvant, supporting diet-based strategies to modulate chronic inflammation while promoting sustainable valorisation of food industry by-products.
Thesagro: Passiflora edulis
Maracujá
Antioxidante
Alimento
NAL Thesaurus: Asthma
Passion fruits
Toxicity
Fruit peels
Keywords: Dietary supplementation
OVA-induced asthma model
Peel
Purple passion fruit
Asma
Maracujá roxo
Nutracêutico
DOI: 10.1016/j.foodres.2026.119503
Type of Material: Artigo de periódico
Access: openAccess
Appears in Collections:Artigo em periódico indexado (CTAA)

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