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Postprandial insulin and nutrient concentrations in lipopolysaccharide-challenged growing pigs reared in thermoneutral and high ambient temperatures

机译:脂多糖挑战的生长猪的餐后胰岛素和营养浓度饲养在热和高环境温度下

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摘要

The aim of this study was to evaluate the associated effects of ambient temperature and inflammation caused by repeated administration of Escherichia coli lipopolysaccharide (LPS) on insulin, energy, and AA metabolism. Twenty-eight pigs were assigned to one of the two thermal conditions: thermoneutral (24 °C) or high ambient temperature (30 °C). The experimental period lasted 17 d, which was divided into a 7-d period without LPS (days −7 to −1), and a subsequent 10-d LPS period (days 1 to 10) in which pigs were administered 5 repeated injections of LPS at 2-d intervals. Postprandial profiles of plasma insulin and nutrients were evaluated through serial blood samples taken on days −4 (P0), 4 (P1), and 8 (P2). Before the LPS-challenge (P0), postprandial concentrations of glucose, lactate, Gln, Ile, Leu, Phe, Tyr, and Val were greater in pigs kept at 24 °C than at 30 °C (P < 0.05). In contrast, Arg, Asp, Gly, His, and Met postprandial concentrations at P0 were lower at 24 °C than at 30 °C (P < 0.05). At both 24 and 30 °C conditions, pigs had greater postprandial concentrations of insulin (P < 0.01) and lower concentrations of NEFA (P < 0.01) and α-amino nitrogen (P < 0.05) at P1 and P2 than at P0. Compared with P0, postprandial concentrations of glucose were greater (P < 0.05) at P1 in pigs kept at 24 °C, and at P1 and P2 in pigs kept at 30 °C. At both ambient temperatures, pigs had lower (P < 0.05) postprandial concentrations of Ala, Gly, His, Ile, Leu, Pro, Ser, Thr, Trp, and Val at P1 and P2 than at P0. Arginine postprandial concentration at P1 was lower than at P0 in pigs kept at 24 °C (P < 0.05), whereas no difference was observed in pigs at 30 °C. Relative to P0, Gln and Tyr concentrations were lower at P1 and P2 in pigs kept at 24 °C (P < 0.01), whereas lower Gln concentration was observed only at P2 (P < 0.01) and lower Tyr only at P1 (P < 0.01) in pigs kept at 30 °C. Our study shows a hyperglycemic and hyperinsulinemic state in LPS-challenged pigs and a greater magnitude of this response in pigs kept at 30 °C. Furthermore, LPS caused important changes in BCAA, His, Thr, and Trp profiles, suggesting the role these AA in supporting the inflammatory response. Finally, our results suggest that LPS-induced effects on postprandial profiles of specific AA (Arg, Gln, Phe, and Tyr) may be modulated by ambient temperature.
机译:本研究的目的是评估由胰岛素,能量和AA代谢对大肠杆菌脂多糖(LPS)反复施用的环境温度和炎症的相关影响。将28只猪分配给两个热条件中的一个:热源(24℃)或高环境温度(30°C)。实验期持续了17d,分为7-D型没有LPS(天-7至-1),随后的10-D LPS(天1至10),其中给药5重复注射LPS以2-D间隔。通过在第4天(P0),4(P1)和8(P2)上拍摄的连续血液样品评估血浆胰岛素和营养素的餐后谱。在LPS攻击(P0)之前,在24℃保持在24℃的猪中,葡萄糖,乳酸盐,GLN,ILE,Leu,PhE,Tyr和Val的后葡萄糖,乳酸,PhE,Tyr和Val(P <0.05)。相比之下,在P0处的Arg,Asp,Gly,His和Met后施加浓度低于24℃,而不是30℃(P <0.05)。在24和30℃的条件下,猪在P1和P2处具有更大的胰岛素(P <0.01)和较低浓度的NEFA(P <0.01)和α-氨基氮(P <0.05)的浓度。与P0相比,在24℃下保持的P1的P1在P1的P1中较大(P <0.05),并且在30℃下保持P1和P2的P1和P2。在环境温度的两个温度下,P1和P2的猪在P1和P2处具有较低(P <0.05)的Ala,Gly,His,ILe,Leu,Pro,Ser,Thr,TRP和Val。 P1的精氨酸后浓度低于在24℃下保持的猪的P0(P <0.05),而在30℃的猪中没有观察到差异。相对于P0,在24℃保持在猪的P1和P2的P1和P2的GLN和Tyr浓度(P <0.01),而仅在P2(P <0.01)中观察到下GLN浓度,并且仅在P1下降低TYR(P < 0.01)在30℃下保持猪。我们的研究表明,LPS攻击性猪中的高血糖和高胰岛素血症状态,在30℃的猪保持较大的猪中的这种反应更大。此外,LPS引起了BCAA,His,Thr和TRP型材的重要变化,表明这些AA在支持炎症反应方面的作用。最后,我们的结果表明,LPS引起的对特定AA(ARG,GLN,PHE和TYR)的后置曲线的影响可以通过环境温度调节。

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