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Unveiling the emerging role of curcumin to alleviate ochratoxin A-induced muscle toxicity in grass carp(Ctenopharyngodon idella):in vitro and in vivo studies

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摘要 Background Ochratoxin A(OTA),a globally abundant and extremely hazardous pollutant,is a significant source of contamination in aquafeeds and is responsible for severe food pollution.The developmental toxicity of OTA and the potential relieving strategy of natural products remain unclear.This study screened the substance curcumin(Cur),which had the best effect in alleviating OTA inhibition of myoblast proliferation,from 96 natural products and investigated its effect and mechanism in reducing OTA myotoxicity in vivo and in vitro.Methods A total of 720 healthy juvenile grass carp,with an initial average body weight of 11.06±0.05 g,were randomly assigned into 4 groups:the control group(without OTA and Cur),1.2 mg/kg OTA group,400 mg/kg Cur group,and 1.2 mg/kg OTA+400 mg/kg Cur group.Each treatment consisted of 3 replicates(180 fish)for 60 d.Results Firstly,we cultured,purified,and identified myoblasts using the tissue block culture method.Through preliminary screening and re-screening of 96 substances,we examined cell proliferation-related indicators such as cell viability and ultimately found that Cur had the best effect.Secondly,Cur could alleviate OTA-inhibited myoblast differentiation and myofibrillar development-related proteins(Myo G and MYHC)in vivo and in vitro and improve the growth performance of grass carp.Then,Cur could also promote the expression of OTA-inhibited protein synthesis-related proteins(S6K1 and TOR),which was related to the activation of the AKT/TOR signaling pathway.Finally,Cur could downregulate the expression of OTA-enhanced protein degradation-related genes(murf1,foxo3a,and ub),which was related to the inhibition of the Fox O3a signaling pathway.Conclusions In summary,our data demonstrated the effectiveness of Cur in alleviating OTA myotoxicity in vivo and in vitro.This study confirms the rapidity,feasibility,and effectiveness of establishing a natural product screening method targeting myoblasts to alleviate fungal toxin toxicity.
出处 《Journal of Animal Science and Biotechnology》 SCIE CAS CSCD 2024年第4期1638-1656,共19页 畜牧与生物技术杂志(英文版)
基金 financially supported by the earmarked fund for CARS(CARS-45) National Natural Science Foundation of China for Outstanding Youth Science Foundation(31922086) the Young Top-Notch Talent Support Program the 111 project(D17015)。
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  • 1Jin Wang,Hao Zhou.Mitochondrial quality control mechanisms as molecular targets in cardiac ischemia-reperfusion injury[J].Acta Pharmaceutica Sinica B,2020,10(10):1866-1879. 被引量:29
  • 2Ayres S L, Menezes M A, dos Santos Mermelstein C. 2001. Expression of muscle-specific myosin heavy chain and myosin light chain 1 in the electric tissue of Electrophorus electricus (L.) in comparison with other vertebrate species. J. Exp. Zool., 290: 227-233. 被引量:1
  • 3Bryson-Richardson R J, Dagger D F, Cortes F, Neyt C, Keenan D G, Currie P D. 2005. Myosin heavy chain expression in zebrafish and slow muscle composition. Dev. Dyn., 233:1 018-1 022. 被引量:1
  • 4Chang K C, Fernandes K, Dauncey M J. 1995. Molecular characterization of a developmentally regulated porcine skeletal myosin heavy chain gene and its 5' regulatory region. J. CellSci., 108 (Pt 4): 1 779-1 789. 被引量:1
  • 5Cole N J, Hall T E, Martin C I, Chapman M A, Kobiyama A, Nihei Y, Watabe S, Johnston I A. 2004. Temperature and the expression of myogenic regulatory factors (MRFs) and myosin heavy chain isoforms during embryogenesis in the common carp Cyprinus carpio L. J. Exp. Biol., 207 4 239-4 248. 被引量:1
  • 6Feghali R, Leinwand L A. 1989. Molecular genetic characterization of a developmentarly regulated human perinatal myosin heavy chain. J. Cell Biol., 108, 1 791-1 797. 被引量:1
  • 7Hirayama Y, Sutoh K, Watabe S, 2000. Structure-function relationships of the two surface loops of myosin heavy chain isoforms from thermally acclimated carp. Biochem. Biophys. Res. Commun., 269: 237-241. 被引量:1
  • 8Imai J, Hirayama Y, Kikuchi K, Kakinuma M, Watabe S. 1997 cDNA cloning of myosin heavy chain isoforms from carp fast skeletal muscle and their gene expression associated with temperature acclimation. J. Exp. Biol, 200: 27-34. 被引量:1
  • 9Iwami Y, Ojima T, lnoue A, Nishita K. 2002. Primary structure of myosin heavy chain from fast skeletal muscle of Chum salmon Oncorhynchus keta. Comp, Biochem. Physiol., 133: 256-267. 被引量:1
  • 10Jamali AA, Afshar P, Abrams R A, Lieber R L. 2000. Skeletal muscle response to tenotomy. Muscle Nerve, 23: 851-862. 被引量:1

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