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比较治疗性抗生素、益生菌和合成 CpG-ODN 对新生肉鸡的致死性感染的保护效力及其对免疫系统的影响。

Comparison of Therapeutic Antibiotics, Probiotics, and Synthetic CpG-ODNs for Protective Efficacy Against Lethal Infection and Impact on the Immune System in Neonatal Broiler Chickens.

机构信息

Department of Veterinary Pathology, Western College of Veterinary Medicine, University of Saskatchewan, Saskatoon, SK, S7N 5B4, Canada.

Department of Veterinary Pathology, Western College of Veterinary Medicine, University of Saskatchewan, Saskatoon, SK, S7N 5B4, Canada,

出版信息

Avian Dis. 2022 Jun;66(2):165-175. doi: 10.1637/aviandiseases-D-22-00011. Epub 2022 Jun 15.

Abstract

The poultry industry needs alternatives to antibiotics, as there are growing public concerns about the emergence of antimicrobial resistance owing to antimicrobial use in animal production. We have reported that the administration of neonatal chicks with synthetic DNA oligodeoxynucleotides containing unmethylated cytosine guanine dinucleotide (CpG) motifs (CpG-ODN) can protect against bacterial pathogens in chickens. The objective of this study was to compare the immunoprotective effects of CpG-ODN and probiotics against infection . commonly used therapeutic antibiotics. Day-old broiler chicks were divided into five groups ( = 35/group; 30 for the challenge experiment and 5 for the flow cytometry analysis). The chicks in Group 1 received a single dose of CpG-ODN by the intramuscular route on day 4 (D4) posthatch (PH), and Group 2 received drinking water (DW) with a probiotic product (D1-D15 PH, DW). The Group 3 chicks received tetracycline antibiotics during D9-D13 in DW; the Group 4 chicks got sodium sulfamethazine on D9, D10, and D15 PH in DW; and the Group 5 chicks were administered intramuscular (IM) saline D4 PH, DW. We challenged all the groups ( = 30/group) with (1 × 10 or 1 × 10 colony-forming units/bird) on D8 PH through the subcutaneous route. Our data demonstrated that the CpG-ODNs, but not the probiotics, could protect neonatal broiler chickens against lethal septicemia, as would the tetracycline or sodium sulfamethazine. The flow cytometry analysis ( = 5/group) revealed enrichment of immune cells in the CpG-ODN group and a marked decrease in macrophages and T-cell numbers in antibiotics-treated groups, indicating immunosuppressive effects. Our data showed that, like therapeutic antibiotics, CpG-ODNs reduced clinical signs, decreased bacterial loads, and induced protection in chicks against septicemia. Unlike therapeutic antibiotics-induced immunosuppressive effects, CpG-ODN caused immune enrichment by increasing chicken immune cells recruitment. Furthermore, this study highlights that, although therapeutic antibiotics can treat bacterial infections, the ensuing immunosuppressive effects may negatively impact the overall chicken health.

摘要

家禽业需要抗生素替代品,因为公众越来越关注由于动物生产中使用抗生素而出现的抗微生物药物耐药性。我们已经报告说,给新生小鸡施用含有未甲基化胞嘧啶鸟嘌呤二核苷酸(CpG)基序的合成 DNA 寡脱氧核苷酸(CpG-ODN)可以保护小鸡免受细菌病原体的侵害。本研究的目的是比较 CpG-ODN 和益生菌对 感染的免疫保护作用。通常使用的治疗性抗生素。1 日龄肉鸡小鸡被分为五组(每组 35 只;30 只为挑战实验,5 只为流式细胞术分析)。第 1 组小鸡在孵出后第 4 天(PH)通过肌肉内途径单次接受 CpG-ODN 剂量,第 2 组小鸡接受含益生菌产品的饮用水(D1-D15 PH,DW)。第 3 组小鸡在 DW 中接受四环素抗生素治疗 9-13 天;第 4 组小鸡在 DW 中于第 9、10 和 15 天 PH 时接受磺胺二甲嘧啶钠;第 5 组小鸡在 PH 第 4 天接受肌肉内(IM)生理盐水,DW。我们通过皮下途径用 (1×10 或 1×10 个菌落形成单位/只)对所有组(每组 30 只)进行挑战。我们的数据表明,CpG-ODNs 可以保护新生肉鸡小鸡免受致命的 败血症,就像四环素或磺胺二甲嘧啶一样。流式细胞术分析(每组 5 只)表明 CpG-ODN 组的免疫细胞丰富,抗生素处理组的巨噬细胞和 T 细胞数量明显减少,表明具有免疫抑制作用。我们的数据表明,与治疗性抗生素一样,CpG-ODN 减少了临床症状,降低了细菌负荷,并诱导小鸡对 败血症产生保护作用。与治疗性抗生素诱导的免疫抑制作用不同,CpG-ODN 通过增加鸡免疫细胞的募集来引起免疫富集。此外,本研究强调,尽管治疗性抗生素可以治疗细菌感染,但随之而来的免疫抑制作用可能会对鸡的整体健康产生负面影响。

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