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减肥和高蛋白、高纤维饮食的摄入会影响成年犬的血液代谢物谱、身体成分、自愿体力活动、粪便微生物群和粪便代谢物。

Weight loss and high-protein, high-fiber diet consumption impact blood metabolite profiles, body composition, voluntary physical activity, fecal microbiota, and fecal metabolites of adult dogs.

机构信息

Department of Animal Sciences, University of Illinois at Urbana - Champaign, Urbana, IL 61801, USA.

Gastrointestinal Laboratory, Department of Small Animal Clinical Sciences, Texas A&M University, College Station, TX 77843, USA.

出版信息

J Anim Sci. 2022 Feb 1;100(2). doi: 10.1093/jas/skab379.

Abstract

Canine obesity is associated with reduced lifespan and metabolic dysfunction, but can be managed by dietary intervention. This study aimed to determine the effects of restricted feeding of a high-protein, high-fiber (HPHF) diet and weight loss on body composition, physical activity, blood metabolites, and fecal microbiota and metabolites of overweight dogs. Twelve spayed female dogs (age: 5.5 ± 1.1 yr; body weight [BW]: 14.8 ± 2.0 kg, body condition score [BCS]: 7.9 ± 0.8) were fed a HPHF diet during a 4-wk baseline phase to maintain BW. After baseline (week 0), dogs were first fed 80% of baseline intake and then adjusted to target 1.5% weekly weight loss for 24 wk. Body composition using dual-energy x-ray absorptiometry and blood samples (weeks 0, 6, 12, 18, and 24), voluntary physical activity (weeks 0, 7, 15, and 23), and fresh fecal samples for microbiota and metabolite analysis (weeks 0, 4, 8, 12, 16, 20, and 24) were measured over time. Microbiota data were analyzed using QIIME 2. All data were analyzed statistically over time using SAS 9.4. After 24 wk, dogs lost 31.2% of initial BW and had 1.43 ± 0.73% weight loss per week. BCS decreased (P < 0.0001) by 2.7 units, fat mass decreased (P < 0.0001) by 3.1 kg, and fat percentage decreased (P < 0.0001) by 11.7% with weight loss. Many serum metabolites and hormones were altered, with triglycerides, leptin, insulin, C-reactive protein, and interleukin-6 decreasing (P < 0.05) with weight loss. Relative abundances of fecal Bifidobacterium, Coriobacteriaceae UCG-002, undefined Muribaculaceae, Allobaculum, Eubacterium, Lachnospira, Negativivibacillus, Ruminococcus gauvreauii group, uncultured Erysipelotrichaceae, and Parasutterella increased (P < 0.05), whereas Prevotellaceae Ga6A1 group, Catenibacterium, Erysipelatoclostridium, Fusobacterium, Holdemanella, Lachnoclostridium, Lactobacillus, Megamonas, Peptoclostridium, Ruminococcus gnavus group, and Streptococcus decreased (P < 0.01) with weight loss. Despite the number of significant changes, a state of dysbiosis was not observed in overweight dogs. Fecal ammonia and secondary bile acids decreased, whereas fecal valerate increased with weight loss. Several correlations between gut microbial taxa and biological parameters were observed. Our results suggest that restricted feeding of a HPHF diet and weight loss promotes fat mass loss, minimizes lean mass loss, reduces inflammatory marker and triglyceride concentrations, and modulates fecal microbiota phylogeny and activity in overweight dogs.

摘要

犬肥胖与寿命缩短和代谢功能障碍有关,但可以通过饮食干预来管理。本研究旨在确定限制饲喂高蛋白、高纤维(HPHF)饮食和减肥对超重犬的身体成分、体力活动、血液代谢物和粪便微生物群和代谢物的影响。12 只去势雌性犬(年龄:5.5±1.1 岁;体重[BW]:14.8±2.0kg,体况评分[BCS]:7.9±0.8)在 4 周基线阶段接受 HPHF 饮食以维持 BW。基线后(第 0 周),首先以 80%的基线摄入量喂养狗,然后调整为目标以每周 1.5%的速度减轻体重 24 周。使用双能 X 射线吸收仪和血液样本(第 0、6、12、18 和 24 周)、自愿体力活动(第 0、7、15 和 23 周)以及新鲜粪便样本进行微生物群和代谢物分析(第 0、4、8、12、16、20 和 24 周)来测量随时间的变化。使用 QIIME 2 分析微生物组数据。使用 SAS 9.4 统计分析所有数据随时间的变化。24 周后,狗体重减轻了初始 BW 的 31.2%,每周减重 1.43±0.73%。BCS 下降(P<0.0001)2.7 个单位,脂肪量下降(P<0.0001)3.1kg,脂肪百分比下降(P<0.0001)11.7%,体重减轻。许多血清代谢物和激素发生变化,甘油三酯、瘦素、胰岛素、C 反应蛋白和白细胞介素 6 随着体重减轻而下降(P<0.05)。粪便双歧杆菌、柯里氏菌科 UCG-002、未定义的毛螺菌科、Allobaculum、真杆菌、lachnospira、Negativivibacillus、Ruminococcus gauvreauii 组、未培养的 Erysipelotrichaceae、和 Parasutterella 的相对丰度增加(P<0.05),而 Prevotellaceae Ga6A1 组、Catenibacterium、Erysipelatoclostridium、Fusobacterium、Holdemanella、Lachnoclostridium、Lactobacillus、Megamonas、Peptoclostridium、Ruminococcus gnavus 组和链球菌减少(P<0.01)随着体重减轻。尽管发生了许多显著变化,但超重犬并未出现菌群失调状态。粪便氨和次级胆汁酸减少,而粪便戊酸盐增加。体重减轻时,观察到肠道微生物群分类群和生物学参数之间的几种相关性。我们的研究结果表明,限制饲喂高蛋白、高纤维饮食和减肥可促进脂肪量减少,最大限度地减少瘦体重减少,降低炎症标志物和甘油三酯浓度,并调节超重犬的粪便微生物群系统发育和活性。

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