School of Chemistry and Life Science, Changchun University of Technology, Changchun, , 130012, Jilin, China.
National Engineering Laboratory for AIDS Vaccine, School of Life Sciences, Jilin University, Changchun, 130012, Jilin, China.
J Nanobiotechnology. 2022 Jan 10;20(1):32. doi: 10.1186/s12951-021-01229-0.
Canine distemper virus (CDV), which is highly infectious, has caused outbreaks of varying scales in domestic and wild animals worldwide, so the development of a high-efficiency vaccine has broad application prospects. Currently, the commercial vaccine of CDV is an attenuated vaccine, which has the disadvantages of a complex preparation process, high cost and safety risk. It is necessary to develop a safe and effective CDV vaccine that is easy to produce on a large scale. In this study, sequences of CDV haemagglutinin (HA) from the Yanaka strain were aligned, and three potential linear sequences, termed YaH, YaH, and YaH, were collected. To increase the immunogenicity of the epitopes, ferritin was employed as a self-assembling nanoparticle element. The ferritin-coupled forms were termed YaHF, YaHF, and YaHF, respectively. A full-length HA sequence coupled with ferritin was also constructed as a DNA vaccine to compare the immunogenicity of nanoparticles in prokaryotic expression.
The self-assembly morphology of the proteins from prokaryotic expression was verified by transmission electron microscopy. All the proteins self-assembled into nanoparticles. The expression of the DNA vaccine YaHF in HEK-293T cells was also confirmed in vitro. After subcutaneous injection of epitope nanoparticles or intramuscular injection of DNA YaHF, all vaccines induced strong serum titres, and long-term potency of antibodies in serum could be detected after 84 days. Strong anti-CDV neutralizing activities were observed in both the YaHF group and YaHF group. According to antibody typing and cytokine detection, YaHF can induce both Th1 and Th2 immune responses. The results of flow cytometry detection indicated that compared with the control group, all the immunogens elicited an increase in CD3. Simultaneously, the serum antibodies induced by YaHF and YaHF could significantly enhance the ADCC effect compared with the control group, indicating that the antibodies in the serum effectively recognized the antigens on the cell surface and induced NK cells to kill infected cells directly.
YaHF self-assembling nanoparticle obtained by prokaryotic expression has no less of an immune effect than YaHF, and H has great potential to become a key target for the easy and rapid preparation of epitope vaccines.
犬瘟热病毒(CDV)具有高度传染性,已在全球范围内导致家养和野生动物的不同规模爆发,因此开发高效疫苗具有广阔的应用前景。目前,CDV 的商业疫苗是一种减毒疫苗,其制备过程复杂、成本高且存在安全风险。有必要开发一种安全有效的 CDV 疫苗,易于大规模生产。在本研究中,对 Yanaka 株 CDV 血凝素(HA)序列进行了比对,并收集了三个潜在的线性序列,分别命名为 YaH、YaH 和 YaH。为了提高表位的免疫原性,铁蛋白被用作自组装纳米颗粒元件。铁蛋白偶联形式分别命名为 YaHF、YaHF 和 YaHF。还构建了全长 HA 序列与铁蛋白偶联的 DNA 疫苗,以比较纳米颗粒在原核表达中的免疫原性。
通过透射电子显微镜验证了原核表达蛋白的自组装形态。所有蛋白质均自组装成纳米颗粒。体外还证实了 HEK-293T 细胞中 DNA 疫苗 YaHF 的表达。接种表位纳米颗粒或肌内注射 DNA YaHF 后,所有疫苗均诱导强烈的血清滴度,并可在 84 天后检测到血清中抗体的长期效力。YaHF 组和 YaHF 组均观察到强烈的抗 CDV 中和活性。根据抗体分型和细胞因子检测,YaHF 可诱导 Th1 和 Th2 免疫反应。流式细胞术检测结果表明,与对照组相比,所有免疫原均引起 CD3 的增加。同时,YaHF 和 YaHF 诱导的血清抗体与对照组相比可显著增强 ADCC 效应,表明血清中的抗体可有效识别细胞表面的抗原,并诱导 NK 细胞直接杀伤感染细胞。
通过原核表达获得的 YaHF 自组装纳米颗粒的免疫效果不亚于 YaHF,H 具有成为快速简便制备表位疫苗的关键靶标的巨大潜力。