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1.
Sci Rep ; 11(1): 1261, 2021 01 13.
Artículo en Inglés | MEDLINE | ID: mdl-33441976

RESUMEN

ß-Conglycinin (ß-CG), an anti-nutritional factor, is a major allergen in soybeans to induce intestinal dysfunction and diarrhea in neonatal animals, including piglets and human infants. This study with a piglet model determined the effects of N-acetylcysteine (NAC) on intestinal function and autophagy in response to ß-CG challenge. Twenty-four 12-day-old piglets (3.44 ± 0.28 kg), which had been weaned at 7 days of age and adapted for 5 days after weaning, were randomly allocated to the control, ß-CG, and ß-CG + NAC groups. Piglets in the control group were fed a liquid diet containing 10% casein, whereas those in the ß-CG and ß-CG + NAC groups were fed the basal liquid diets containing 9.5% casein and 0.5% ß-CG for 2 days. Thereafter, pigs in the ß-CG + NAC group were orally administrated with 50 mg (kg BW)-1 NAC for 3 days, while pigs in the other two groups were orally administrated with the same volume of sterile saline. NAC numerically reduced diarrhea incidence (- 46.2%) and the concentrations of hydrogen peroxide and malondialdehyde, but increased claudin-1 and intestinal fatty-acid binding protein (iFABP) protein abundances and activities of catalase and glutathione peroxidase in the jejunum of ß-CG-challenged piglets. Although ß-CG challenge decreased the villus height, villus height/crypt depth ratio, and mRNA levels of claudin-1 and occludin, no significant differences were observed in these indices between the control and ß-CG + NAC groups, suggesting the positive effects of NAC supplementation on intestinal mucosal barrier function. Moreover, NAC increased the concentrations of citrulline and D-xylose in the plasma, as well as the expression of genes for aquaporin (AQP) 3, AQP4, peptide transporter 1 (PepT1), sodium/glucose co-transporter-1 (SGLT-1), potassium inwardly-rectifying channel, subfamily J, member 13 (KCNJ13), and solute carrier family 1 member 1 (SLC1A1) in the jejunum, demonstrating that NAC augmented intestinal metabolic activity and absorptive function. Remarkably, NAC decreased Atg5 protein abundance and the LC3II/LC3I ratio (an indicator of autophagy) in the jejunum of ß-CG-challenged piglets. Taken together, NAC supplementation improved intestinal function and attenuated intestinal autophagy in ß-CG-challenged piglets.


Asunto(s)
Acetilcisteína/farmacología , Alérgenos/toxicidad , Antígenos de Plantas/toxicidad , Autofagia/efectos de los fármacos , Globulinas/toxicidad , Mucosa Intestinal/metabolismo , Proteínas de Almacenamiento de Semillas/toxicidad , Proteínas de Soja/toxicidad , Porcinos/metabolismo , Animales , Animales Recién Nacidos , Femenino , Mucosa Intestinal/patología
2.
Front Immunol ; 11: 615980, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-33537033

RESUMEN

Soy glycinin (11S) is involved in immune regulation. As an additive, sodium butyrate (SB) can relieve inflammation caused by 11S. To further delve into the mechanisms. A diet containing 50% fishmeal was the control group (FM group), and the experimental groups consisted of the FM group baseline plus 2% glycinin (GL group), 8% glycinin (GH group), and 8% glycinin + 0.13% sodium butyrate (GH-SB group). The specific growth ratio (SGR), feed utilization, and density of distal intestinal (DI) type II mucous cells were increased in the GL group. In the serum, IFN-γ was significantly upregulated in the GL group, and IgG and IL-1ß were upregulated in the GH group. IgG, IL-1ß, and TNF-α in the GH-SB group were significantly downregulated compared to those in the GH group. The mRNA levels of mTOR C1, mTOR C2, and Deptor were upregulated in the GL, GH, and GH-SB groups in the DI compared with those in the FM group, while the mRNA levels of mTOR C1 and Deptor in the GH group were higher than those in the GL and GH-SB groups. 4E-BP1, RICTOR, PRR5, MHC II, and CD4 were upregulated in the GH group. TSC1, mLST8, and NFY mRNA levels in the GL and GH-SB groups were upregulated compared with those in the FM and GH groups. Western blotting showed P-PI3KSer294/T-PI3K, P-AktSer473/T-Akt, and P-mTORSer2448/T-mTOR were upregulated in the GH group. Collectively, our results demonstrate that low-dose 11S could improve serum immune by secreting IFN-γ. The overexpression of IgG and IL-1ß is the reason that high-dose 11S reduces serum immune function, and supplementing SB can suppress this overexpression. Low-dose 11S can block the relationship between PI3K and mTOR C2. It can also inhibit the expression of 4E-BP1 through mTOR C1. High-dose 11S upregulates 4E-BP2 through mTOR C1, aggravating intestinal inflammation. SB could relieve inflammation by blocking PI3K/mTOR C2 and inhibiting 4E-BP2. Generally speaking, the hybrid grouper obtained different serum and DI immune responses under different doses of 11S, and these responses were ultimately manifested in growth performance. SB can effectively enhance serum immunity and relieve intestinal inflammation caused by high dose 11S.


Asunto(s)
Ácido Butírico/farmacología , Globulinas/toxicidad , Inmunidad Innata/efectos de los fármacos , Inflamación/inmunología , Alimentos Marinos , Proteínas de Soja/toxicidad , Alimentación Animal , Animales , Lubina/inmunología , Proteínas de Peces/metabolismo , Globulinas/inmunología , Antígenos de Histocompatibilidad Clase II/metabolismo , Intestinos/inmunología , Fosfatidilinositol 3-Quinasas/metabolismo , Proteínas Proto-Oncogénicas c-akt/metabolismo , Transducción de Señal/efectos de los fármacos , Transducción de Señal/fisiología , Proteínas de Soja/inmunología , Serina-Treonina Quinasas TOR/metabolismo
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