Cargando…

Plant-derived squalene supplementation improves growth performance and alleviates acute oxidative stress-induced growth retardation and intestinal damage in piglets

Piglets are particularly susceptible to oxidative stress, which causes inferior growth performance and intestinal damage. Squalene (SQ), a natural bioactive substance enriched in shark liver oil, shows excellent antioxidant properties and can currently be obtained at a low cost from deodorizer disti...

Descripción completa

Detalles Bibliográficos
Autores principales: Tian, Junquan, Jiang, Qian, Bao, Xuetai, Yang, Fan, Li, Yuying, Sun, Haihui, Yao, Kang, Yin, Yulong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10695848/
http://dx.doi.org/10.1016/j.aninu.2023.09.001
_version_ 1785154444645629952
author Tian, Junquan
Jiang, Qian
Bao, Xuetai
Yang, Fan
Li, Yuying
Sun, Haihui
Yao, Kang
Yin, Yulong
author_facet Tian, Junquan
Jiang, Qian
Bao, Xuetai
Yang, Fan
Li, Yuying
Sun, Haihui
Yao, Kang
Yin, Yulong
author_sort Tian, Junquan
collection PubMed
description Piglets are particularly susceptible to oxidative stress, which causes inferior growth performance and intestinal damage. Squalene (SQ), a natural bioactive substance enriched in shark liver oil, shows excellent antioxidant properties and can currently be obtained at a low cost from deodorizer distillate during the production of plant oil. This study aimed to evaluate the effects of plant-derived SQ supplementation on the growth performance of piglets and explore the beneficial roles of SQ against oxidative stress and intestinal injury in diquat-challenged piglets. Forty piglets were randomly divided into five groups and fed a basal diet supplemented with SQ at 0, 500, 1000, or 2000 mg/kg for 5 weeks. Acute oxidative stress was induced in the piglets with diquat (10 mg/kg BW) at the fourth week of the experiment, followed by a 7-d recovery period. Results showed that before the diquat challenge, SQ supplementation significantly improved growth performance (average daily gain and feed conversion ratio) and serum antioxidant status, and after the diquat challenge, SQ supplementation significantly mitigated diquat-induced growth arrest, intestinal villous atrophy, intestinal epithelial cell apoptosis, intestinal hyperpermeability, and deficiency of intestinal epithelial tight junction proteins (zonula occludens-1, occludin, and claudin-3). Under oxidative stress induced by diquat, SQ supplementation consistently improved the antioxidant status of the small intestine, liver, and muscle. In vitro, SQ was shown to alleviate hydrogen peroxide (H(2)O(2))-induced increase of the levels of intracellular reactive oxygen species and apoptosis of porcine intestinal epithelial cells. Taken together, SQ supplementation improves growth performance and effectively alleviates acute oxidative stress-induced growth retardation and intestinal injury via improving antioxidant capacity in piglets. Our findings may provide an efficient strategy for alleviating oxidative stress-induced inferior growth performance and intestinal damage in piglets.
format Online
Article
Text
id pubmed-10695848
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher KeAi Publishing
record_format MEDLINE/PubMed
spelling pubmed-106958482023-12-06 Plant-derived squalene supplementation improves growth performance and alleviates acute oxidative stress-induced growth retardation and intestinal damage in piglets Tian, Junquan Jiang, Qian Bao, Xuetai Yang, Fan Li, Yuying Sun, Haihui Yao, Kang Yin, Yulong Anim Nutr Original Research Article Piglets are particularly susceptible to oxidative stress, which causes inferior growth performance and intestinal damage. Squalene (SQ), a natural bioactive substance enriched in shark liver oil, shows excellent antioxidant properties and can currently be obtained at a low cost from deodorizer distillate during the production of plant oil. This study aimed to evaluate the effects of plant-derived SQ supplementation on the growth performance of piglets and explore the beneficial roles of SQ against oxidative stress and intestinal injury in diquat-challenged piglets. Forty piglets were randomly divided into five groups and fed a basal diet supplemented with SQ at 0, 500, 1000, or 2000 mg/kg for 5 weeks. Acute oxidative stress was induced in the piglets with diquat (10 mg/kg BW) at the fourth week of the experiment, followed by a 7-d recovery period. Results showed that before the diquat challenge, SQ supplementation significantly improved growth performance (average daily gain and feed conversion ratio) and serum antioxidant status, and after the diquat challenge, SQ supplementation significantly mitigated diquat-induced growth arrest, intestinal villous atrophy, intestinal epithelial cell apoptosis, intestinal hyperpermeability, and deficiency of intestinal epithelial tight junction proteins (zonula occludens-1, occludin, and claudin-3). Under oxidative stress induced by diquat, SQ supplementation consistently improved the antioxidant status of the small intestine, liver, and muscle. In vitro, SQ was shown to alleviate hydrogen peroxide (H(2)O(2))-induced increase of the levels of intracellular reactive oxygen species and apoptosis of porcine intestinal epithelial cells. Taken together, SQ supplementation improves growth performance and effectively alleviates acute oxidative stress-induced growth retardation and intestinal injury via improving antioxidant capacity in piglets. Our findings may provide an efficient strategy for alleviating oxidative stress-induced inferior growth performance and intestinal damage in piglets. KeAi Publishing 2023-09-30 /pmc/articles/PMC10695848/ http://dx.doi.org/10.1016/j.aninu.2023.09.001 Text en © 2023 The Authors. Publishing services by Elsevier B.V. on behalf of KeAi Communications Co. Ltd. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Research Article
Tian, Junquan
Jiang, Qian
Bao, Xuetai
Yang, Fan
Li, Yuying
Sun, Haihui
Yao, Kang
Yin, Yulong
Plant-derived squalene supplementation improves growth performance and alleviates acute oxidative stress-induced growth retardation and intestinal damage in piglets
title Plant-derived squalene supplementation improves growth performance and alleviates acute oxidative stress-induced growth retardation and intestinal damage in piglets
title_full Plant-derived squalene supplementation improves growth performance and alleviates acute oxidative stress-induced growth retardation and intestinal damage in piglets
title_fullStr Plant-derived squalene supplementation improves growth performance and alleviates acute oxidative stress-induced growth retardation and intestinal damage in piglets
title_full_unstemmed Plant-derived squalene supplementation improves growth performance and alleviates acute oxidative stress-induced growth retardation and intestinal damage in piglets
title_short Plant-derived squalene supplementation improves growth performance and alleviates acute oxidative stress-induced growth retardation and intestinal damage in piglets
title_sort plant-derived squalene supplementation improves growth performance and alleviates acute oxidative stress-induced growth retardation and intestinal damage in piglets
topic Original Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10695848/
http://dx.doi.org/10.1016/j.aninu.2023.09.001
work_keys_str_mv AT tianjunquan plantderivedsqualenesupplementationimprovesgrowthperformanceandalleviatesacuteoxidativestressinducedgrowthretardationandintestinaldamageinpiglets
AT jiangqian plantderivedsqualenesupplementationimprovesgrowthperformanceandalleviatesacuteoxidativestressinducedgrowthretardationandintestinaldamageinpiglets
AT baoxuetai plantderivedsqualenesupplementationimprovesgrowthperformanceandalleviatesacuteoxidativestressinducedgrowthretardationandintestinaldamageinpiglets
AT yangfan plantderivedsqualenesupplementationimprovesgrowthperformanceandalleviatesacuteoxidativestressinducedgrowthretardationandintestinaldamageinpiglets
AT liyuying plantderivedsqualenesupplementationimprovesgrowthperformanceandalleviatesacuteoxidativestressinducedgrowthretardationandintestinaldamageinpiglets
AT sunhaihui plantderivedsqualenesupplementationimprovesgrowthperformanceandalleviatesacuteoxidativestressinducedgrowthretardationandintestinaldamageinpiglets
AT yaokang plantderivedsqualenesupplementationimprovesgrowthperformanceandalleviatesacuteoxidativestressinducedgrowthretardationandintestinaldamageinpiglets
AT yinyulong plantderivedsqualenesupplementationimprovesgrowthperformanceandalleviatesacuteoxidativestressinducedgrowthretardationandintestinaldamageinpiglets