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Low-molecular-weight chitosan relieves enterotoxigenic Escherichia coli-induced growth retardation in weaned pigs

机译:低分子量壳聚糖可缓解断奶猪的肠毒素大肠杆菌诱导的生长迟缓

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摘要

The objective of the present study was to evaluate the effects of low-molecular-weight chitosan (LMWC) on the growth performance, immune responses and intestinal health of weaned pigs challenged by enterotoxigenic Escherichia colt (ETEC). A total of 32 weaned pigs were randomly allocated to four treatments: non-challenged (fed with basal diet), ETEC-challenged (fed with basal diet) and ETEC-challenged plus 50 or 100 mg/kg LMWC supplementation, respectively. After 11 days feeding, the non-challenged pigs were infused with sterilised Luria-Bertani culture, while the remaining pigs were infused with 2.6 x 10(11) colony-forming units of ETEC. At 3 days post-challenge, all pigs were administered D-xylose at 0.1 g/kg body weight. One hour later, blood samples were obtained, and the pigs then euthanised to collect intestinal samples. Data showed that only 100 mg/kg LMWC supplementation attenuated (P < 0.05) the average daily gain reduction caused by ETEC. Furthermore, besides the decreased (P < 0.05) serum tumour necrosis factor-alpha and immunoglobulin (Ig) G concentrations detected in ETEC-challenged pigs supplemented with LMWC at 50 or 100 mg/kg, the higher dose (100 mg/kg) also decreased (P < 0.05) the serum IgM concentration and increased (P < 0.05) the villus height and villus height-to-crypt depth ratio in both the jejunum and ileum, and the sucrase activity in the ileal mucosa. Moreover, LMWC supplementation (50 or 100 mg/kg) in ETEC-challenged pigs elevated (P < 0.05) the mRNA levels of jejunal mucosal peptide transporter 1 and ileal mucosal peptide transporter 1, divalent metal transporter 1 and zinc transporter 1, and decreased (P < 0.05) the ileal and caecal E. coli abundances, while 100 mg/kg LMWC additionally elevated (P < 0.05) the ileal Bacillus abundance, and caecal and colonic Bifidobacteriwn abundances. These results suggest that LMWC helps alleviate ETEC-induced growth retardation in weaned pigs, which could be associated with the inhibition of the immune responses and improved intestinal health.
机译:本研究的目的是评估低分子量壳聚糖(LMWC)对由Enterotoxigenic大肠杆菌(ETEC)攻击的断奶猪生长性能,免疫应答和肠道健康的影响。将32只断奶猪随机分配给四种治疗方法:非攻击(含基基饮食),ETEC挑战(喂食基础饮食)和ETEC挑战加50或100mg / kg LMWC补充剂。喂食11天后,将非攻击性猪注入灭菌的Luria-Bertani培养物,而剩余的猪注入Etec的2.6×10(11)个菌落形成单位。在挑战后3天,所有猪以0.1g / kg体重施用D-木糖。一小时后,获得血液样品,然后猪安乐死以收集肠样品。数据显示,只有100毫克/千克LMWC补充衰减(P <0.05)ETEC引起的平均每日增益减少。此外,除了降低(P <0.05)血清肿瘤坏死因子-α和免疫球蛋白(IG)G浓度,在补充有50或100mg / kg的ETEC攻击性猪中,还较高剂量(100mg / kg)减少(P <0.05)血清IgM浓度,增加(p <0.05)绒毛高度和绒毛高度到穴位在Jejunum和Hileum中的绒毛高度比,以及髂骨粘膜中的蔗糖酶活性。此外,LMWC补充(50或100mg / kg)在ETEC挑战猪中升高(P <0.05)Jejunal粘膜肽转运蛋白1和ILEAL粘膜肽转运蛋白1,二价金属转运蛋白1和锌转运蛋白1和降低(P <0.05)ILEAL和粘颈大肠杆菌丰富,而100mg / kg LMWC另外升高(P <0.05)髂骨芽孢杆菌和结肠双歧杆菌丰富。这些结果表明,LMWC有助于缓解断奶猪的ETEC诱导的生长迟缓,这可能与抑制免疫应答和改善的肠道健康有关。

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