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与两种不同的中等蛋白质、中等碳水化合物饮食相比,喂食高蛋白、低碳水化合物饮食的狗餐后血浆胰高血糖素和氨基酸浓度升高,且血糖浓度往往较低。

Dogs fed a high protein, low carbohydrate diet have elevated postprandial plasma glucagon and amino acid concentrations and tend to have lower glucose concentrations compared to two different moderate protein, moderate carbohydrate diets.

作者信息

Banton Sydney, Raheb Shari, Singh Pawanpreet, Cant John P, Shoveller Anna K

机构信息

Department of Animal Biosciences, University of Guelph, Guelph, ON N1G 2W1, Canada.

Department of Clinical Studies, University of Guelph, Guelph, ON N1G 2W1, Canada.

出版信息

Transl Anim Sci. 2025 Feb 11;9:txaf017. doi: 10.1093/tas/txaf017. eCollection 2025.

Abstract

As dog owners continue to seek to feed their dogs similarly to themselves, there is demand for high protein, low carbohydrate (HPLC) diets. The consumption of HPLC diets can improve glycemic control, similarly to high fiber diets. However, the effects of HPLC and high fiber diets on cardiac function have yet to be evaluated in healthy dogs. The objective of the present study was to investigate the glucose, insulin, glucagon and amino acid (AA) postprandial response and echocardiographic measurements in laboratory-housed, adult large breed dogs fed a commercially available HPLC, a moderate protein, moderate carbohydrate (MPMC), or a commercially available MPMC, high fiber, "metabolic" diet for 42 d. This study was conducted as a 3 × 3 Latin square where dogs received: 1) a commercial HPLC diet (48% of metabolizable energy (ME) from protein, 10% of ME from nitrogen-free extract; NFE), 2) a MPMC diet (28% of ME from protein, 39% of ME from NFE) formulated with the same ingredients as HPLC or 3) a MPMC, high fiber, "metabolic" (MET) diet (30% of ME from protein, 37% of ME from NFE) as a commercial control. An echocardiogram and a 12-h glucose, insulin and glucagon response and 6-h AA meal response were performed on day 42 of feeding. Data were analyzed using proc glimmix in SAS (version 9.4). All echocardiographic parameters remained within a healthy reference range for dogs of this size. Dogs fed HPLC had a larger net area under the curve (NetAUC) for plasma glucagon (P < 0.001) compared to dogs fed MPMC and MET, a smaller NetAUC for glucose: insulin (P = 0.039) compared to dogs fed MPMC but MET was similar to both. Glucose NetAUC tended to be different among treatments (P = 0.057), where dogs fed MPMC had a greater netAUC than dogs fed HPLC and dogs fed MET tended to have a greater netAUC than HPLC. Dogs fed HPLC had greater concentrations of Ile, Leu, Lys, Thr, Tyr and Val over time compared to dogs fed MPMC and MET, and dogs fed MET had greater concentrations of Gln and Met over time compared to dogs fed HPLC and MPMC (P < 0.05). Dogs fed a HPLC diet may have improved glucose uptake compared to dogs fed a MPMC diet. This research provides the first insight into the cardiometabolic health of dogs consuming three diets differing in their protein, carbohydrate and fiber content.

摘要

随着狗主人继续寻求像喂养自己一样喂养他们的狗,对高蛋白、低碳水化合物(HPLC)饮食的需求应运而生。与高纤维饮食类似,食用HPLC饮食可以改善血糖控制。然而,HPLC和高纤维饮食对健康犬心脏功能的影响尚未得到评估。本研究的目的是调查在实验室饲养的成年大型犬中,喂食市售HPLC饮食、中等蛋白质、中等碳水化合物(MPMC)饮食或市售MPMC高纤维“代谢”饮食42天后的葡萄糖、胰岛素、胰高血糖素和氨基酸(AA)餐后反应以及超声心动图测量结果。本研究采用3×3拉丁方设计,犬只接受:1)市售HPLC饮食(48%的可代谢能量(ME)来自蛋白质,10%的ME来自无氮提取物;NFE),2)与HPLC饮食成分相同的MPMC饮食(28%的ME来自蛋白质,39%的ME来自NFE),或3)作为商业对照的MPMC高纤维“代谢”(MET)饮食(30%的ME来自蛋白质,37%的ME来自NFE)。在喂食第42天进行超声心动图检查以及12小时葡萄糖、胰岛素和胰高血糖素反应和6小时AA餐反应。数据使用SAS(版本9.4)中的proc glimmix进行分析。所有超声心动图参数均保持在该体型犬的健康参考范围内。与喂食MPMC和MET饮食的犬相比,喂食HPLC饮食的犬血浆胰高血糖素的曲线下净面积(NetAUC)更大(P < 0.001),与喂食MPMC饮食的犬相比,葡萄糖:胰岛素的NetAUC更小(P = 0.039),但MET饮食的犬与两者相似。不同处理之间葡萄糖NetAUC有差异的趋势(P = 0.057),其中喂食MPMC饮食的犬的NetAUC大于喂食HPLC饮食的犬,喂食MET饮食的犬的NetAUC往往大于HPLC饮食的犬。与喂食MPMC和MET饮食的犬相比,喂食HPLC饮食的犬随着时间推移异亮氨酸、亮氨酸、赖氨酸、苏氨酸、酪氨酸和缬氨酸的浓度更高,与喂食HPLC和MPMC饮食的犬相比,喂食MET饮食的犬随着时间推移谷氨酰胺和蛋氨酸的浓度更高(P < 0.05)。与喂食MPMC饮食的犬相比,喂食HPLC饮食的犬可能具有更好的葡萄糖摄取。本研究首次深入了解了食用三种蛋白质、碳水化合物和纤维含量不同的饮食的犬的心脏代谢健康状况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9716/11884650/cb2d58c00548/txaf017_fig1.jpg

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