Asaro Natalie J, Guevara Marcial A, Berendt Kimberley, Zijlstra Ruurd, Shoveller Anna K
Department of Animal Biosciences, University of Guelph, 50 Stone Road East, Guelph, ON N1G 2W1, Canada.
The Iams Company, MARS Pet Care, 6571 OH-503 North, Lewisburg, OH 45338, USA.
Vet Sci. 2017 Nov 8;4(4):54. doi: 10.3390/vetsci4040054.
Dietary starch is required for a dry, extruded kibble; the most common diet type for domesticated felines in North America. However, the amount and source of dietary starch may affect digestibility and metabolism of other macronutrients. The objectives of this study were to evaluate the effects of 3 commercial cat diets on in vivo and in vitro energy and macronutrient digestibility, and to analyze the accuracy of the modified Atwater equation. Dietary treatments differed in their perceived glycemic response (PGR) based on ingredient composition and carbohydrate content (34.1, 29.5, and 23.6% nitrogen-free extract for High, Medium, and LowPGR, respectively). A replicated 3 × 3 Latin square design was used, with 3 diets and 3 periods. In vivo apparent protein, fat, and organic matter digestibility differed among diets, while apparent dry matter digestibility did not. Cats were able to efficiently digest and absorb macronutrients from all diets. Furthermore, the modified Atwater equation underestimated measured metabolizable energy by approximately 12%. Thus, the modified Atwater equation does not accurately determine the metabolizable energy of high quality feline diets. Further research should focus on understanding carbohydrate metabolism in cats, and establishing an equation that accurately predicts the metabolizable energy of feline diets.
对于干燥的膨化猫粮来说,膳食淀粉是必需的;这是北美家养猫最常见的饮食类型。然而,膳食淀粉的含量和来源可能会影响其他宏量营养素的消化率和代谢。本研究的目的是评估三种商业猫粮对体内和体外能量及宏量营养素消化率的影响,并分析改良阿特沃特方程的准确性。基于成分组成和碳水化合物含量,膳食处理在其感知血糖反应(PGR)方面存在差异(高、中、低PGR组的无氮浸出物分别为34.1%、29.5%和23.6%)。采用重复的3×3拉丁方设计,有三种饮食和三个时期。不同饮食之间的体内表观蛋白质、脂肪和有机物消化率存在差异,而表观干物质消化率则无差异。猫能够有效地消化和吸收所有饮食中的宏量营养素。此外,改良阿特沃特方程低估了测得的可代谢能量约12%。因此,改良阿特沃特方程不能准确测定优质猫粮的可代谢能量。进一步的研究应集中在了解猫的碳水化合物代谢,并建立一个能准确预测猫粮可代谢能量的方程。