评估针对含有志贺氏菌 IpaD、IpaB、StxB 和 VirG 蛋白的重组蛋白产生的蛋黄抗体(IgY)的预防效果。

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-07-24 DOI:10.1016/j.molimm.2024.07.002
Alireza Felegary , Shahram Nazarian , Mojtaba Zafarmand-Samarin , Davoud Sadeghi , Javad Fathi , Hossein Samiei-Abianeh
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引用次数: 0

摘要

导言:志贺氏菌病是一种胃肠道疾病,在全球范围内发病率和死亡率都很高,但目前还没有抗志贺氏菌的疫苗。使用抗生素治疗志贺氏杆菌病会加剧抗生素耐药性。抗体,尤其是蛋黄抗体(IgY),为应对这一挑战提供了一种前景广阔的方法。本研究旨在探讨针对重组嵌合蛋白(包含志贺菌的免疫原 IpaD、IpaB、StxB 和 VirG)产生的 IgY 的预防效果:方法:在大肠杆菌 BL21 中表达由 IpaD、IpaB、StxB 和 VirG 组成的嵌合蛋白,并用 Ni-NTA 柱纯化。鸡免疫后,使用 PEG-6000 方法从蛋黄中提取 IgY,并通过 SDS-PAGE 和 ELISA 技术进行分析。随后,用 10 LD50 的痢疾杆菌挑战小鼠,并在不同时间条件下注射不同浓度的 IgY(1.25、2.5、5 和 10 mg/kg),评估了 IgY 的预防效果:结果:纯化了重组蛋白,其分子量为 82 kDa。经测定,蛋黄中的 IgY 浓度为 9.5 mg/ml,提取的 IgY 纯度超过 90%。酶联免疫吸附试验的结果表明,至少有 19 纳克的纯抗体能识别重组蛋白并与其发生反应。用 IgY 和志贺氏杆菌进行的挑战试验表明,存活率与抗体浓度直接相关,抗体浓度越高,死亡率越低。用 10 毫克/千克的 IgY 治疗小鼠,可使小鼠对 10 LD50 志贺氏痢疾杆菌的存活率达到 80%:我们的研究结果表明,IgY 可为治疗志贺氏菌感染和抗生素耐药性提供治疗潜力。
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Evaluation of the prophylactic effect of egg yolk antibody (IgY) produced against the recombinant protein containing IpaD, IpaB, StxB, and VirG proteins from Shigella

Introduction

Shigellosis is a gastrointestinal disease causes high morbidity and mortality worldwide, however, there is no anti-Shigella vaccine. The use of antibiotics in shigellosis treatment exacerbates antibiotic resistance. Antibodies, particularly egg yolk antibody (IgY), offer a promising approach to address this challenge. This study aimed to investigate the prophylactic effect of IgY produced against a recombinant chimeric protein containing the immunogens IpaD, IpaB, StxB, and VirG from Shigella.

Methods

The chimeric protein, comprising IpaD, IpaB, StxB, and VirG, was expressed in E. coli BL21 and purified using the Ni-NTA column. Following immunization of chickens, IgY was extracted from egg yolk using the PEG-6000 method and analyzed through SDS-PAGE and ELISA techniques. Subsequently, the prophylactic efficacy of IgY was assessed by challenging of mice with 10 LD50 of S. dysenteriae and administering different concentrations of IgY (1.25, 2.5, 5, and 10 mg/kg) under various time conditions.

Results

The recombinant protein, weighing 82 kDa, was purified and confirmed by western blotting. The IgY concentration was determined as 9.5 mg/ml of egg yolk and the purity of the extracted IgY was over 90 %. The results of the ELISA showed that at least 19 ng of pure antibody identified recombinant protein and reacts with it. The challenge test employing IgY and Shigella demonstrated a direct correlation between the survival rate and antibody concentration, with increased concentrations leading to decreased mortality rates. Treatment of mice with 10 mg/kg IgY leads to 80 % survival of the mice against 10 LD50 S. dysenteriae.

Conclusion

Our findings suggest that IgY may offer therapeutic potential in treating Shigella infections and combating antibiotic resistance.

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4.30%
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567
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