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用于钩端螺旋体病疫苗的嵌合脂蛋白:免疫原性和保护潜力。

Chimeric lipoproteins for leptospirosis vaccine: immunogenicity and protective potential.

机构信息

Biotechnology Center, Technological Development Center, Federal University of Pelotas, Pelotas, RS, Brazil.

Department of Microbiology and Parasitology, Institute of Biology, Federal University of Pelotas, Pelotas, RS, Brazil.

出版信息

Appl Microbiol Biotechnol. 2024 Jul 22;108(1):424. doi: 10.1007/s00253-024-13196-1.

Abstract

Leptospirosis, a neglected zoonotic disease, is caused by pathogenic spirochetes belonging to the genus Leptospira and has one of the highest morbidity and mortality rates worldwide. Vaccination stands out as one of the most effective preventive measures for susceptible populations. Within the outer membrane of Leptospira spp., we find the LIC12287, LIC11711, and LIC13259 lipoproteins. These are of interest due to their surface location and potential immunogenicity. Thorough examination revealed the conservation of these proteins among pathogenic Leptospira spp.; we mapped the distribution of T- and B-cell epitopes along their sequences and assessed the 3D structures of each protein. This information aided in selecting immunodominant regions for the development of a chimeric protein. Through gene synthesis, we successfully constructed a chimeric protein, which was subsequently expressed, purified, and characterized. Hamsters were immunized with the chimeric lipoprotein, formulated with adjuvants aluminum hydroxide, EMULSIGEN®-D, Sigma Adjuvant System®, and Montanide™ ISA206VG. Another group was vaccinated with an inactivated Escherichia coli bacterin expressing the chimeric protein. Following vaccination, hamsters were challenged with a virulent L. interrogans strain. Our evaluation of the humoral immune response revealed the production of IgG antibodies, detectable 28 days after the second dose, in contrast to pre-immune samples and control groups. This demonstrates the potential of the chimeric protein to elicit a robust humoral immune response; however, no protection against challenge was achieved. While this study provides valuable insights into the subject, further research is warranted to identify protective antigens that could be utilized in the development of a leptospirosis vaccine. KEY POINTS: • Several T- and B-cell epitopes were identified in all the three proteins. • Four different adjuvants were used in vaccine formulations. • Immunization stimulated significant levels of IgG2/3 in vaccinated animals.

摘要

钩端螺旋体病是一种被忽视的人畜共患疾病,由致病性螺旋体属钩端螺旋体引起,在全球范围内具有最高的发病率和死亡率之一。疫苗接种是预防易感人群的最有效措施之一。在钩端螺旋体属的外膜中,我们发现了 LIC12287、LIC11711 和 LIC13259 脂蛋白。这些蛋白因其表面位置和潜在的免疫原性而受到关注。彻底的检查揭示了这些蛋白在致病性钩端螺旋体属中的保守性;我们在它们的序列上绘制了 T 细胞和 B 细胞表位的分布,并评估了每种蛋白的 3D 结构。这些信息有助于选择用于开发嵌合蛋白的免疫优势区域。通过基因合成,我们成功构建了一种嵌合蛋白,随后进行了表达、纯化和表征。我们用佐剂氢氧化铝、EMULSIGEN®-D、Sigma 佐剂系统®和 Montanide™ ISA206VG 对仓鼠进行了嵌合脂蛋白免疫,另一个组用表达嵌合蛋白的灭活大肠杆菌菌体制成疫苗进行免疫。免疫后,仓鼠用一种强毒的问号钩端螺旋体菌株进行攻毒。我们对体液免疫应答的评估显示,在第二次给药后 28 天,产生了 IgG 抗体,与免疫前样本和对照组相比有所增加。这表明嵌合蛋白有潜力引发强烈的体液免疫应答;然而,并没有达到对攻毒的保护。虽然这项研究为这一课题提供了有价值的见解,但需要进一步研究以确定保护性抗原,这些抗原可用于开发钩端螺旋体病疫苗。 关键点: • 在所有三种蛋白中都鉴定出了几个 T 细胞和 B 细胞表位。 • 在疫苗配方中使用了四种不同的佐剂。 • 免疫刺激了接种动物 IgG2/3 的显著水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed78/11263434/0d0c1c1f8415/253_2024_13196_Fig1_HTML.jpg

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