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噬菌体展示的其他用途:噬菌体M13可在家禽肠道中存活而不造成损害。

Alternative use of phage display: phage M13 can remain viable in the intestines of poultry without causing damage.

作者信息

Santos Fabiana de Almeida Araújo, Valadares Junior Edson Campos, Goulart Luiz Ricardo, Nunes Pedro Lucas Figueiredo, Mendonça Eliane Pereira, Girão Lúcio Vilela Carneiro, da Hora Aline Santana, Ferreira Thatiana Bragine, Bastos Luciana Machado, Medeiros-Ronchi Alessandra Aparecida, Fonseca Belchiolina Beatriz

机构信息

Instituto de Biotecnologia da Universidade Federal de Uberlândia, Uberlândia, Brazil.

Faculdade de Medicina Veterinária Universidade Federal de Uberlândia, Uberlândia, Brazil.

出版信息

AMB Express. 2022 Jun 2;12(1):64. doi: 10.1186/s13568-022-01407-9.

Abstract

Phage display (PD) is a tool for developing new molecules to control pathogens. Peptides selected by PD are commonly synthesised and tested, but the use of phage M13 displaying the selected peptides as a direct biding in the intestinal tract has not yet been tested. This study evaluated whether phage M13 can remain viable in the chicken gastrointestinal tract and whether it causes injury or humoral immune response. We inoculated phage M13 or E. coli ER2738 (ECR) infected with M13 into birds at different ages. We found the virus in faeces at 5 or 13 days after inoculation, just when it infected the ECR. The presence of phage M13 or ECR did not result in gut injuries and had no impacts on weight gain and bird health. Furthermore, the levels of IgY were similar in all treatments, which indicates that the virus can be used in chicken until 42 days without being recognised by the immune system. This work provides a scientific basis for the use of PD as a tool in numerous applications to control different pathogens.

摘要

噬菌体展示(PD)是一种用于开发控制病原体新分子的工具。通过噬菌体展示筛选出的肽通常会被合成并进行测试,但将展示所选肽的噬菌体M13直接用于肠道结合的情况尚未得到测试。本研究评估了噬菌体M13在鸡胃肠道中是否能够存活,以及它是否会造成损伤或引发体液免疫反应。我们将噬菌体M13或感染了M13的大肠杆菌ER2738(ECR)接种到不同年龄的鸡体内。我们在接种后5天或13天在粪便中发现了病毒,此时它刚好感染了ECR。噬菌体M13或ECR的存在并未导致肠道损伤,也未对体重增加和鸡的健康产生影响。此外,所有处理组中IgY的水平相似,这表明该病毒在42天内可用于鸡,而不会被免疫系统识别。这项工作为将噬菌体展示作为控制不同病原体的众多应用中的一种工具提供了科学依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f14/9160166/46429b110177/13568_2022_1407_Fig1_HTML.jpg

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