Literature DB >> 28712376

Grape pomace improves performance, antioxidant status, fecal microbiota and meat quality of piglets.

I Kafantaris1, D Stagos1, B Kotsampasi1, A Hatzis1, A Kypriotakis1, K Gerasopoulos1, S Makri1, N Goutzourelas1, C Mitsagga2, I Giavasis2, K Petrotos3, S Kokkas3, P Goulas3, V Christodoulou4, D Kouretas1.   

Abstract

In the present study, grape pomace (GP) was used as feed additive in the diet of weaned piglets in order to develop innovative feedstuffs and to investigate their potential beneficial effects on welfare, productivity and meat quality. For examining the antioxidant capacity of the experimental feeds, 24 piglets of 20 days old were assigned to two experimental groups receiving standard or experimental diet for 30 days. Blood and tissues collections were performed at four different time-points, 2, 20, 35 and 50 days post birth. The collected tissues were brain, heart, kidney, liver, lung, quadriceps muscle, pancreas, spleen and stomach. The following oxidative stress markers were assessed: reduced glutathione (GSH), catalase activity, total antioxidant capacity (TAC), thiobarbituric acid reactive substances (TBARS), protein carbonyls (CARB) and H2O2 decomposition activity. The effect on bacterial growth was assessed by examining microbial populations in piglets' fecal microbiota. Furthermore, the average daily gain (ADG) was calculated and the fatty acid profile of quadriceps muscle was assessed. The results showed that piglets fed with the diet supplemented with GP, had significantly increased antioxidants mechanisms in almost all the tissues as shown by increases in GSH, H2O2 decomposition activity and TAC compared with control group. Piglets fed with the experimental diet exhibited decreased oxidative stress-induced damage to lipids and proteins as shown by decreases in TBARS and CARB in GP group compared with control. In addition, the experimental diet increased significantly ADG (by 23.65%) (P<0.05) and enhanced the growth of facultative probiotic bacteria (by up to 1.2 log colony forming units (CFU)/g) (P<0.05) and lactic acid bacteria (by up to 2.0 log CFU/g) (P<0.05) in GP group compared with the control group. GP supplementation inhibited the growth of pathogen populations such as Enterobacteriacae (by up to 1.8 log CFU/g) (P<0.05) and Campylobacter jejuni (by up to 1.0 log CFU/g) (P<0.05). Regarding fatty acid composition of meat, GP inclusion in piglets' diet increased significantly n-3 fatty acids (EPA; C20 : 5n-3, DHA; C22 : 6n-3, α-linolenic acid; C18 : 3n-3) and decreased significantly n-6/n-3 ratio compared with control (P<0.05). The results suggested that dietary GP supplementation may have a beneficial impact on piglets' welfare and may improve productivity as well as meat quality.

Entities:  

Keywords:  antioxidants; grape pomace; oxidative stress; pigs; probiotic bacteria

Mesh:

Substances:

Year:  2017        PMID: 28712376     DOI: 10.1017/S1751731117001604

Source DB:  PubMed          Journal:  Animal        ISSN: 1751-7311            Impact factor:   3.240


  18 in total

1.  Biofunctional Feed Supplemented With By-products of Olive Oil Production Improves Tissue Antioxidant Profile of Lambs.

Authors:  Sotiria Makri; Sofia Raftopoulou; Ioannis Kafantaris; Basiliki Kotsampasi; Vladimiros Christodoulou; Charitini Nepka; Aristidis S Veskoukis; Demetrios Kouretas
Journal:  In Vivo       Date:  2020 Jul-Aug       Impact factor: 2.155

2.  Nutritional habits and free grazing regimen of productive animals along with specific ingredients are influential factors for the antioxidant properties of milk: From farm to market.

Authors:  Aristidis S Veskoukis; Efthalia Kerasioti; Konstantinos Sidiropoulos; Ilektra Maragou; Zoi Skaperda; Demetrios Kouretas
Journal:  Biomed Rep       Date:  2020-04-28

Review 3.  Dietary phytonutrients and animal health: regulation of immune function during gastrointestinal infections.

Authors:  Andrew R Williams; Audrey I S Andersen-Civil; Ling Zhu; Alexandra Blanchard
Journal:  J Anim Sci       Date:  2020-04-01       Impact factor: 3.159

4.  Effects of Dietary Grape Pomace Supplementation on Performance, Carcass Traits and Meat Quality of Lambs.

Authors:  Ioannis Kafantaris; Basiliki Kotsampasi; Vladimiros Christodoulou; Sotiria Makri; Dimitrios Stagos; Konstantinos Gerasopoulos; Konstantinos Petrotos; Panagiotis Goulas; Demetrios Kouretas
Journal:  In Vivo       Date:  2018 Jul-Aug       Impact factor: 2.155

5.  Hepatoprotective effect of food preservatives (butylated hydroxyanisole, butylated hydroxytoluene) on carbon tetrachloride-induced hepatotoxicity in rat.

Authors:  Barsha Dassarma; Dilip K Nandi; Somnath Gangopadhyay; Saptadip Samanta
Journal:  Toxicol Rep       Date:  2017-11-12

6.  Application of a Natural Antioxidant from Grape Pomace Extract in the Development of Bioactive Jute Fibers for Food Packaging.

Authors:  Cristina Cejudo-Bastante; Paloma Arjona-Mudarra; María Teresa Fernández-Ponce; Lourdes Casas; Casimiro Mantell; Enrique J Martínez de la Ossa; Clara Pereyra
Journal:  Antioxidants (Basel)       Date:  2021-02-02

Review 7.  Phenolic compounds as natural feed additives in poultry and swine diets: a review.

Authors:  Shad Mahfuz; Qinghui Shang; Xiangshu Piao
Journal:  J Anim Sci Biotechnol       Date:  2021-04-07

8.  Effect of Dietary Grape Pomace on Fattening Rabbit Performance, Fatty Acid Composition, and Shelf Life of Meat.

Authors:  Mohamed D Bouzaida; Virginia C Resconi; David Gimeno; Jakeline V Romero; Juan B Calanche; Marta Barahona; José L Olleta; Gustavo A María
Journal:  Antioxidants (Basel)       Date:  2021-05-17

9.  RNA Sequencing-Based Whole-Transcriptome Analysis of Friesian Cattle Fed with Grape Pomace-Supplemented Diet.

Authors:  Marco Iannaccone; Ramy Elgendy; Mery Giantin; Camillo Martino; Daniele Giansante; Andrea Ianni; Mauro Dacasto; Giuseppe Martino
Journal:  Animals (Basel)       Date:  2018-10-23       Impact factor: 2.752

10.  The Effect of Encapsulated Powder of Goji Berry (Lycium barbarum) on Growth and Survival of Probiotic Bacteria.

Authors:  Prodromos Skenderidis; Chrysanthi Mitsagga; Dimitrios Lampakis; Konstantinos Petrotos; Ioannis Giavasis
Journal:  Microorganisms       Date:  2019-12-28
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