Bioavailability and Bioactivity of Encapsulated Phenolics and Carotenoids Isolated from Red Pepper Waste

2019
Authors
Vulić, JelenaSeregelj, Vanja
Kalušević, Ana

Lević, Steva

Nedović, Viktor

Tumbas-Saponjac, Vesna
Canadanović-Brunet, Jasna
Cetković, Gordana
Article (Published version)
Metadata
Show full item recordAbstract
In order to deactivate the health properties of bioactive compounds, they need to withstand the effects of food processing, their potential release from the food matrix, and remain bio-accessible in the gastrointestinal tract. Bio-actives from different plants are prone to oxidative degradation, and encapsulation is an effective method in improving their stability. In the present study, red pepper waste (RPW), a by-product of vegetable processing industry, was encapsulated in whey protein using spray and freeze-drying techniques. The aim was to evaluate the effects of in vitro gastrointestinal digestion on the release and bioactivity of encapsulated bio-actives, after each digestion step. The results showed that the release of phenolics and carotenoids, as well as antioxidants, anti-hyperglycemic, and anti-inflammatory activities are influenced by pH and intestinal fluid, with pH 7.5 exhibited at higher levels. There was a rapid initial release of carotenoids from whey protein matrices..., while a more gradual increase of phenolics was observed, reaching around 50% for both encapsulates first at 6 h and 37 degrees C, and small intestine conditions. The encapsulation of RPW demonstrated a protective effect against pH changes and enzymatic activities along digestion, and contributed to the increase in bio-accessibility in the gut. Also, the results suggest that encapsulation is an efficient method for valorization of bio-actives from RPW, with improvements in nutrition, color, and bioactive properties.
Keywords:
red pepper waste / encapsulation / bioavailability / digestionSource:
Molecules, 2019, 24, 15Publisher:
- MDPI, BASEL
Funding / projects:
- The development of high valuable fruit and vegetable products and additives (RS-31044)
- COST Action EUROCAROTENEuropean Cooperation in Science and Technology (COST) [CA 15136]
DOI: 10.3390/molecules24152837
ISSN: 1420-3049
PubMed: 31387219
WoS: 000482441100160
Scopus: 2-s2.0-85070515440
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Poljoprivredni fakultetTY - JOUR AU - Vulić, Jelena AU - Seregelj, Vanja AU - Kalušević, Ana AU - Lević, Steva AU - Nedović, Viktor AU - Tumbas-Saponjac, Vesna AU - Canadanović-Brunet, Jasna AU - Cetković, Gordana PY - 2019 UR - http://aspace.agrif.bg.ac.rs/handle/123456789/4955 AB - In order to deactivate the health properties of bioactive compounds, they need to withstand the effects of food processing, their potential release from the food matrix, and remain bio-accessible in the gastrointestinal tract. Bio-actives from different plants are prone to oxidative degradation, and encapsulation is an effective method in improving their stability. In the present study, red pepper waste (RPW), a by-product of vegetable processing industry, was encapsulated in whey protein using spray and freeze-drying techniques. The aim was to evaluate the effects of in vitro gastrointestinal digestion on the release and bioactivity of encapsulated bio-actives, after each digestion step. The results showed that the release of phenolics and carotenoids, as well as antioxidants, anti-hyperglycemic, and anti-inflammatory activities are influenced by pH and intestinal fluid, with pH 7.5 exhibited at higher levels. There was a rapid initial release of carotenoids from whey protein matrices, while a more gradual increase of phenolics was observed, reaching around 50% for both encapsulates first at 6 h and 37 degrees C, and small intestine conditions. The encapsulation of RPW demonstrated a protective effect against pH changes and enzymatic activities along digestion, and contributed to the increase in bio-accessibility in the gut. Also, the results suggest that encapsulation is an efficient method for valorization of bio-actives from RPW, with improvements in nutrition, color, and bioactive properties. PB - MDPI, BASEL T2 - Molecules T1 - Bioavailability and Bioactivity of Encapsulated Phenolics and Carotenoids Isolated from Red Pepper Waste IS - 15 VL - 24 DO - 10.3390/molecules24152837 ER -
@article{ author = "Vulić, Jelena and Seregelj, Vanja and Kalušević, Ana and Lević, Steva and Nedović, Viktor and Tumbas-Saponjac, Vesna and Canadanović-Brunet, Jasna and Cetković, Gordana", year = "2019", abstract = "In order to deactivate the health properties of bioactive compounds, they need to withstand the effects of food processing, their potential release from the food matrix, and remain bio-accessible in the gastrointestinal tract. Bio-actives from different plants are prone to oxidative degradation, and encapsulation is an effective method in improving their stability. In the present study, red pepper waste (RPW), a by-product of vegetable processing industry, was encapsulated in whey protein using spray and freeze-drying techniques. The aim was to evaluate the effects of in vitro gastrointestinal digestion on the release and bioactivity of encapsulated bio-actives, after each digestion step. The results showed that the release of phenolics and carotenoids, as well as antioxidants, anti-hyperglycemic, and anti-inflammatory activities are influenced by pH and intestinal fluid, with pH 7.5 exhibited at higher levels. There was a rapid initial release of carotenoids from whey protein matrices, while a more gradual increase of phenolics was observed, reaching around 50% for both encapsulates first at 6 h and 37 degrees C, and small intestine conditions. The encapsulation of RPW demonstrated a protective effect against pH changes and enzymatic activities along digestion, and contributed to the increase in bio-accessibility in the gut. Also, the results suggest that encapsulation is an efficient method for valorization of bio-actives from RPW, with improvements in nutrition, color, and bioactive properties.", publisher = "MDPI, BASEL", journal = "Molecules", title = "Bioavailability and Bioactivity of Encapsulated Phenolics and Carotenoids Isolated from Red Pepper Waste", number = "15", volume = "24", doi = "10.3390/molecules24152837" }
Vulić, J., Seregelj, V., Kalušević, A., Lević, S., Nedović, V., Tumbas-Saponjac, V., Canadanović-Brunet, J.,& Cetković, G.. (2019). Bioavailability and Bioactivity of Encapsulated Phenolics and Carotenoids Isolated from Red Pepper Waste. in Molecules MDPI, BASEL., 24(15). https://doi.org/10.3390/molecules24152837
Vulić J, Seregelj V, Kalušević A, Lević S, Nedović V, Tumbas-Saponjac V, Canadanović-Brunet J, Cetković G. Bioavailability and Bioactivity of Encapsulated Phenolics and Carotenoids Isolated from Red Pepper Waste. in Molecules. 2019;24(15). doi:10.3390/molecules24152837 .
Vulić, Jelena, Seregelj, Vanja, Kalušević, Ana, Lević, Steva, Nedović, Viktor, Tumbas-Saponjac, Vesna, Canadanović-Brunet, Jasna, Cetković, Gordana, "Bioavailability and Bioactivity of Encapsulated Phenolics and Carotenoids Isolated from Red Pepper Waste" in Molecules, 24, no. 15 (2019), https://doi.org/10.3390/molecules24152837 . .