| Literature DB >> 27371162 |
Yan Xiao1, Hong-Ying Chen2, Yuzhou Wang1, Bo Yin2, Chaochao Lv1, Xiaobing Mo2,3, He Yan1, Yajie Xuan1, Yuxin Huang1, Wenqiang Pang1, Xiangdong Li1, Y Adam Yuan4,5, Kegong Tian6,7.
Abstract
BACKGROUND: Foot-and-mouth disease (FMD) is an acute, highly contagious disease that infects cloven-hoofed animals. Vaccination is an effective means of preventing and controlling FMD. Compared to conventional inactivated FMDV vaccines, the format of FMDV virus-like particles (VLPs) as a non-replicating particulate vaccine candidate is a promising alternative.Entities:
Keywords: Fifty percent protection dose (PD50); Foot-and-mouth disease; Large scale production in E. coli; Serotype Asia 1; Virus-like particle vaccine
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Year: 2016 PMID: 27371162 PMCID: PMC4930597 DOI: 10.1186/s12896-016-0285-6
Source DB: PubMed Journal: BMC Biotechnol ISSN: 1472-6750 Impact factor: 2.563
Fig. 1SDS-PAGE and western-blot analysis of FMDV capsid proteins expressed in E. coli. a SDS-PAGE of FMDV capsid protein expression without purification. M, protein marker; lane 1, total protein without IPTG induction; lane 2, total protein after IPTG induction; lane 3, supernatant protein after IPTG induction; lane 4, pellet protein after IPTG induction; b Western-blot of FMDV capsid protein expression without purification. M, protein marker; lane 1, supernatant protein after IPTG induction; lane 2, pellet protein after IPTG induction; c M, protein marker; lane 1, purified protein complex (1ul load); lane 2, purified protein complex (10ul load); lane 3, purified protein complexes after Ulp 1 protease treatment (1ul load); lane 4, purified protein complexes after Ulp 1 protease treatment (10ul load)
Protein yield at different purification steps
| Steps | Procedure | Protein recovery (%) |
|---|---|---|
| 1 | Ni2+ affinity chromatography to capture SUMO-VP proteins | 70 %-80 % |
| 2 | Cleavage of SUMO tag using Ulp1 to release the un-tagged VP proteins | 60 %-70 % |
| 3 | Q Sepharose Fast Flow anion exchange chromatography to obtain the pure VP proteins | 50 %-60 % |
| Total yield: | 20 %-35 % |
Fig. 2Characterization of in vitro re-assembled FMDV VLPs. a DLS profile. The difference of DSL profile between two protein concentrations was determined by using t-test in GraphPad 5.0. Differences were considered statistically significant when P < 0.05. b Images of VLPs under electron microscope with 42000 × magnification. The scale bar indicates 100 nm
Fig. 3FMDV-specific immune responses in cattle measured by LPB-ELISA. Groups of cattle (n = 5) immunized with 200ug or 100ug of FMDV VLPs. Blood samples were collected at 21 days post-vaccination and 2, 3,4,5 and 6 months after vaccination for the LPB-ELISA detection. LPB-ELISA value ≥ 128 (log10 2.1) indicates above 99 % protection to the viral challenge according to the manufacture’s instruction
Fig. 4FMDV-specific immune responses in cattle measured by LPB-ELISA in PD50 test. Blood samples were collected at 0, 7, 14, 21, and 28 days post-vaccination for the LPB-ELISA detection. LPB-ELISA value ≥ 128 (log10 2.1) indicates above 99 % protection to the viral challenge according to the manufacture’s instruction. Each data points represents the mean ± standard error of measurements for five cattle from immunized groups and for 2 cattle from control group
Fig. 5FMDV-specific immune responses in cattle measured by virus neutralizing antibody test. Blood samples were collected at 0, 7, 14, 21, and 28 days post-vaccination for the virus neutralizing antibody test. The virus neutralizing antibody was expressed by the average titers of cattle in one whole group at different time points. Each data points represents the mean ± standard error of measurements for five cattle from immunized groups and for 2 cattle from control group
Results of PD50 test. PD50 test was performed as described by the OIE. The bovine PD50 content of the vaccine was calculated based on the Reed-Muench method from each animal protected in each group
| Groups | Animal No. | Antibody titer at 28 dpv | Protection | Days of onset of lesion | Rate of protection | PD50 | |
|---|---|---|---|---|---|---|---|
| LPBE | VN | Yes | - | 5/5 | |||
| LPBE | VN | Yes | - | 5/5 | 11.75 | ||
| 1 dose | 1558 | 360 | 64 | Yes | - | ||
| 1559 | 1440 | 64 | Yes | - | |||
| 1584 | 1440 | 724 | Yes | - | |||
| 1601 | 180 | 362 | Yes | - | |||
| 1602 | 720 | 512 | Yes | - | |||
| 1/3 dose | 1534 | 1440 | 724 | Yes | - | 3/4 | |
| 1548 | 1440 | 724 | No | D10 | |||
| 1562 | 90 | 724 | Deatha | - | |||
| 1567 | 720 | 431 | Yes | - | |||
| 1576 | 180 | 76 | Yes | - | |||
| 1/9 dose | 29 | 1440 | 724 | Yes | - | 4/5 | |
| 77 | 360 | 54 | Yes | - | |||
| 1136 | 2880 | 724 | Yes | - | |||
| 1139 | 180 | 4 | No | D6 | |||
| 1580 | 360 | 512 | Yes | - | |||
| Control | 1561 | 22 | 16 | No | D5 | 0/2 | |
| 1590 | 45 | 8 | No | D5 | |||
a One animal in this group died after challenge, but with no typical lesions of FMD