纳米包封物对肉鸡生产性能和肠道健康的前瞻性应用及其对定植的防治效果
Prospective Application of Nanoencapsulated on Broiler Chickens' Performance and Gut Health with Efficacy against Colonization.
作者信息
Ismail Hesham, Ibrahim Doaa, El Sayed Shorouk, Wahdan Ali, El-Tarabili Reham M, Rizk El-Ghareeb Waleed, Abdullah Alhawas Bassam, Alahmad Badr Abdul-Hakim Y, Abdel-Raheem Sherief M, El-Hamid Marwa I Abd
机构信息
Department of Public Health, College of Veterinary Medicine, King Faisal University, P.O. Box 400, Hofuf 31982, Al-Ahsa, Saudi Arabia.
Food Hygiene Department, Faculty of Veterinary Medicine, Assiut University, Assiut 71526, Egypt.
出版信息
Animals (Basel). 2023 Feb 21;13(5):775. doi: 10.3390/ani13050775.
Probiotics as novel antibiotics' substitutes are verified to provide barriers for hindering the colonization of enteric bacterial pathogens with nutritional benefits. For enhancement of the probiotics' effectiveness, their integration within nanomaterials is a paramount tool to support the progress of new compounds with functional features. Therefore, we addressed the impact of effective delivery of probiotics () loaded nanoparticles (BNPs) on performance and () shedding and colonization in poultry. Two hundred Ross broiler chickens were divided into four groups fed various BNP levels: BNPs I, BNPs II, BNPs III, and BNPs-free diets for 35 days. Nanoparticles delivery of probiotics within broiler diets improved growth performance as reflected by higher body weight gain and superior feed conversion ratio, especially in BNPs II- and BNPs III-fed groups. In parallel, the mRNA expression levels of digestive enzymes encoding genes (, , , and ) achieved their peaks in BNPs III-fed group (1.69, 1.49, 1.33, and 1.29-fold change, respectively) versus the control one. Notably, with increasing the levels of BNPs, the abundance of beneficial microbiota, such as and species, was favored over harmful ones, including species and . Birds fed higher levels of BNPs displayed significant improvement in the expression of barrier functions-linked genes including , , and alongside substantial reduction in cecal colonization and fecal shedding of . From the aforementioned positive effects of BNPs, we concluded their potential roles as growth promoters and effective preventive aids for infection in poultry.
益生菌作为新型抗生素替代品,已被证实可提供屏障,阻碍肠道细菌病原体的定植,并具有营养益处。为提高益生菌的有效性,将其与纳米材料整合是支持具有功能特性的新化合物研发的关键工具。因此,我们研究了负载益生菌的纳米颗粒(BNPs)有效递送对家禽生长性能以及沙门氏菌脱落和定植的影响。将200只罗斯肉鸡分为四组,分别饲喂不同水平的BNPs:BNPs I、BNPs II、BNPs III和不含BNPs的日粮,持续35天。肉鸡日粮中纳米颗粒递送益生菌改善了生长性能,表现为更高的体重增加和更好的饲料转化率,尤其是在饲喂BNPs II和BNPs III的组中。同时,消化酶编码基因(淀粉酶、胰蛋白酶、脂肪酶和麦芽糖酶)的mRNA表达水平在饲喂BNPs III的组中达到峰值(分别为对照的1.69、1.49、1.33和1.29倍变化)。值得注意的是,随着BNPs水平的增加,有益微生物群(如双歧杆菌和乳酸杆菌属)的丰度相对于有害微生物群(包括沙门氏菌属和大肠杆菌)更占优势。饲喂较高水平BNPs的鸡在与屏障功能相关基因(闭合蛋白、紧密连接蛋白和黏蛋白)的表达方面有显著改善,同时盲肠中沙门氏菌的定植和粪便中沙门氏菌的排出大幅减少。从BNPs的上述积极作用中,我们得出它们作为家禽生长促进剂和预防沙门氏菌感染有效辅助剂的潜在作用。