Zong Enyan, Yan Shanling, Wang Meiwei, Yin Lanmei, Wang Qiye, Yin Jia, Li Jianzhong, Li Yali, Ding Xueqin, Huang Pengfei, He Shanping, Yang Huansheng, Yin Yulong
Hunan International Joint laboratory of Animal Intestinal Ecology and Health, Laboratory of Animal Nutrition and Human Health, College of Life Sciences, Hunan Normal University, Changsha, Hunan, China.
Chinese Academy of Science, Institute of Subtropical Agriculture, Hunan Engineering and Research Center of Animal and Poultry Science and Key Laboratory for Agroecological Processes in Subtropical Region, Scientific Observation and Experimental Station of Animal Nutrition and Feed Science in South-Central, Ministry of Agriculture, Changsha City, Hunan, China.
J Anim Sci. 2019 Feb 11;97(4):1796-805. doi: 10.1093/jas/skz059.
Bile acid, a cholesterol metabolite, promotes gastrointestinal tract digestion and absorption of cholesterol, lipids, and fat-soluble vitamins. It is a signaling regulatory molecule that influences a variety of endocrinal and metabolic activities. This study investigated the effects hyodeoxycholic acid (HDCA) as a dietary supplement on endocrine cell differentiation and function and weaned piglet serum biochemical indices. Sixteen piglets (Duroc × [Landrace × Yorkshire]) were individually housed and weaned at 21 days of age (body weight of 6.14 ± 0.22 kg). Uniform weight animals were randomly assigned to one of two treatments (eight replicate pens per treatment and one piglet per pen). The treatments were 1) base diet (control); and 2) base diet supplemented with 2 g/kg of HDCA. Control and HDCA piglet numbers of CgA-positive cells per crypt did not differ. HDCA CgA-positive cells numbers decreased (P < 0.05) in the jejunal villi, showed a tendency to decrease (P < 0.10) in the ileal villi, and showed tendency toward an increase (P < 0.10) in the duodenal villi compared to the controls. The HDCA diet led to a decline in GLP-2 (P < 0.01) concentrations, but did not affect plasma GLP-1. HDCA supplementation increased (P < 0.05) the mRNA expression of jejunal Insm1, Sst, PG, and Gast, but decreased (P < 0.05) duodenal expression of Insm1, jejunal Pdx1, and ileal NeuroD1. HDCA elevated GLO and IgA (P < 0.05) serum concentrations and decreased the A/G ratio (P < 0.05). TP and IgG serum levels tended to increase compared to the control group. These results indicate that dietary HDCA at 2 g/kg may regulate enteroendocrine cell differentiation and play a role in increasing weaned piglet humoral immunity.
胆汁酸作为胆固醇的代谢产物,可促进胃肠道对胆固醇、脂质及脂溶性维生素的消化和吸收。它是一种信号调节分子,影响多种内分泌和代谢活动。本研究探讨了作为膳食补充剂的猪去氧胆酸(HDCA)对内分泌细胞分化和功能以及断奶仔猪血清生化指标的影响。16头仔猪(杜洛克×[长白×大白])个体饲养,21日龄断奶(体重6.14±0.22千克)。体重均匀的动物被随机分配到两种处理之一(每种处理8个重复栏,每栏1头仔猪)。处理方式为:1)基础日粮(对照组);2)基础日粮添加2克/千克HDCA。对照组和HDCA组每隐窝CgA阳性细胞数量无差异。与对照组相比,HDCA组空肠绒毛中CgA阳性细胞数量减少(P<0.05),回肠绒毛中呈减少趋势(P<0.10),十二指肠绒毛中呈增加趋势(P<0.10)。HDCA日粮导致GLP - 2浓度下降(P<0.01),但不影响血浆GLP - 1。添加HDCA可增加空肠Insm1、Sst、PG和Gast的mRNA表达(P<0.05),但降低十二指肠Insm1、空肠Pdx1和回肠NeuroD1的表达(P<0.05)。HDCA提高了GLO和IgA血清浓度(P<0.05),并降低了A/G比值(P<0.05)。与对照组相比,TP和IgG血清水平有增加趋势。这些结果表明,2克/千克的日粮HDCA可能调节肠内分泌细胞分化,并在提高断奶仔猪体液免疫方面发挥作用。