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酵母细胞壁后生元混合物对受多种霉菌毒素(重点是脱氧雪腐镰刀菌烯醇)日粮挑战的断奶仔猪功效的研究。

Investigation of the Efficacy of a Postbiotic Yeast Cell Wall-Based Blend on Newly-Weaned Pigs under a Dietary Challenge of Multiple Mycotoxins with Emphasis on Deoxynivalenol.

机构信息

Department of Animal Science, North Carolina State University, Raleigh, NC 27695, USA.

Alltech Inc., Center for Animal Nutrigenomics and Applied Animal Nutrition, 3031 Catnip Hill Road, Nicholasville, KY 40356, USA.

出版信息

Toxins (Basel). 2020 Aug 6;12(8):504. doi: 10.3390/toxins12080504.

Abstract

Pigs are highly susceptible to mycotoxins. This study investigated the effects of a postbiotic yeast cell wall-based blend (PYCW; Nicholasville, KY, USA) on growth and health of newly-weaned pigs under dietary challenge of multiple mycotoxins. Forty-eight newly-weaned pigs (21 d old) were individually allotted to four dietary treatments, based on a three phase-feeding, in a randomized complete block design (sex; initial BW) with two factors for 36 d. Two factors were dietary mycotoxins (deoxynivalenol: 2000 μg/kg supplemented in three phases; and aflatoxin: 200 μg/kg supplemented only in phase 3) and PYCW (0.2%). Growth performance (weekly), blood serum (d 34), and jejunal mucosa immune and oxidative stress markers (d 36) data were analyzed using MIXED procedure of SAS. Mycotoxins reduced ( < 0.05) average daily feed intake (ADFI) and average daily gain (ADG) during the entire period whereas PYCW did not affect growth performance. Mycotoxins reduced ( < 0.05) serum protein, albumin, creatinine, and alanine aminotransferase whereas PYCW decreased ( < 0.05) serum creatine phosphokinase. Neither mycotoxins nor PYCW affected pro-inflammatory cytokines and oxidative damage markers in the jejunal mucosa. No interaction was observed indicating that PYCW improved hepatic enzymes regardless of mycotoxin challenge. In conclusion, deoxynivalenol (2000 μg/kg, for 7 to 25 kg body weight) and aflatoxin B1 (200 μg/kg, for 16 to 25 kg body weight) impaired growth performance and nutrient digestibility of newly-weaned pigs, whereas PYCW could partially improve health of pigs regardless of mycotoxin challenge.

摘要

猪对霉菌毒素高度敏感。本研究调查了后生元酵母细胞壁混合物(PYCW;美国肯塔基州尼古拉斯维尔)对日粮中多种霉菌毒素挑战下断奶仔猪生长和健康的影响。48 头刚断奶的仔猪(21 日龄)根据三阶段喂养,在随机完全区组设计(性别;初始 BW)中单独分配到四个日粮处理组,有两个因素,持续 36 天。两个因素是日粮霉菌毒素(脱氧雪腐镰刀菌烯醇:2000 μg/kg 分三期添加;黄曲霉毒素:仅在第三期添加 200 μg/kg)和 PYCW(0.2%)。使用 SAS 的 MIXED 过程分析生长性能(每周)、血清(第 34 天)和空肠黏膜免疫和氧化应激标志物(第 36 天)数据。霉菌毒素降低(<0.05)整个时期的平均日采食量(ADFI)和平均日增重(ADG),而 PYCW 对生长性能没有影响。霉菌毒素降低(<0.05)血清蛋白、白蛋白、肌酐和丙氨酸氨基转移酶,而 PYCW 降低(<0.05)血清肌酸磷酸激酶。霉菌毒素和 PYCW 都没有影响空肠黏膜中的促炎细胞因子和氧化损伤标志物。没有观察到相互作用,表明 PYCW 改善了肝脏酶,无论是否受到霉菌毒素的挑战。总之,脱氧雪腐镰刀菌烯醇(2000 μg/kg,体重 7-25kg)和黄曲霉毒素 B1(200 μg/kg,体重 16-25kg)降低了刚断奶仔猪的生长性能和养分消化率,而 PYCW 可以部分改善仔猪的健康状况,无论是否受到霉菌毒素的挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab34/7472238/547b573c21e5/toxins-12-00504-g001.jpg

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