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Design of hepadnavirus core protein-based chimeric virus-like particles carrying epitopes from respiratory syncytial virus.
Shao, Shuai; Zhang, Xue Feng; Hou, Jun Wei; Yang, Sen Sen; Han, Zi Bo; Wu, Hai Lan; Tang, Fang; Li, Xin Yu; Lei, Ze Hua; Zhao, Zi Xin; Li, Shu Xiang; Liu, Zhao Ming; Shan, Pu; Jin, Yu Qin; Su, Ji Guo; Liang, Yu; Zhang, Jing; Li, Qi Ming.
Affiliation
  • Shao S; The Sixth Laboratory, National Vaccine and Serum Institute (NVSI), Beijing, China.
  • Zhang XF; National Engineering Center for New Vaccine Research, Beijing, China.
  • Hou JW; The Sixth Laboratory, National Vaccine and Serum Institute (NVSI), Beijing, China.
  • Yang SS; National Engineering Center for New Vaccine Research, Beijing, China.
  • Han ZB; The Sixth Laboratory, National Vaccine and Serum Institute (NVSI), Beijing, China.
  • Wu HL; National Engineering Center for New Vaccine Research, Beijing, China.
  • Tang F; The Sixth Laboratory, National Vaccine and Serum Institute (NVSI), Beijing, China.
  • Li XY; National Engineering Center for New Vaccine Research, Beijing, China.
  • Lei ZH; The Sixth Laboratory, National Vaccine and Serum Institute (NVSI), Beijing, China.
  • Zhao ZX; National Engineering Center for New Vaccine Research, Beijing, China.
  • Li SX; The Sixth Laboratory, National Vaccine and Serum Institute (NVSI), Beijing, China.
  • Liu ZM; National Engineering Center for New Vaccine Research, Beijing, China.
  • Shan P; The Sixth Laboratory, National Vaccine and Serum Institute (NVSI), Beijing, China.
  • Jin YQ; National Engineering Center for New Vaccine Research, Beijing, China.
  • Su JG; The Sixth Laboratory, National Vaccine and Serum Institute (NVSI), Beijing, China.
  • Liang Y; National Engineering Center for New Vaccine Research, Beijing, China.
  • Zhang J; The Sixth Laboratory, National Vaccine and Serum Institute (NVSI), Beijing, China.
  • Li QM; National Engineering Center for New Vaccine Research, Beijing, China.
NPJ Vaccines ; 9(1): 62, 2024 Mar 19.
Article in En | MEDLINE | ID: mdl-38503757
ABSTRACT
Respiratory syncytial virus (RSV) is one of the most important pathogens causing respiratory tract infection in humans, especially in infants and the elderly. The identification and structural resolution of the potent neutralizing epitopes on RSV fusion (F) protein enable an "epitope-focused" vaccine design. However, the display of RSV F epitope II on the surface of the widely-used human hepatitis B virus core antigen (HBcAg) has failed to induce neutralizing antibody response in mice. Here, we used the hepadnavirus core protein (HcAg) from different mammalian hosts as scaffolds to construct chimeric virus-like particles (VLPs) presenting the RSV F epitope II. Mouse immunization showed that different HcAg-based chimeric VLPs elicited significantly different neutralizing antibody responses, among which the HcAg derived from roundleaf bat (RBHcAg) is the most immunogenic. Furthermore, RBHcAg was used as the scaffold platform to present multiple RSV F epitopes, and the immunogenicity was further improved in comparison to that displaying a single epitope II. The designed RBHcAg-based multiple-epitope-presenting VLP formulated with MF59-like adjuvant elicited a potent and balanced Th1/Th2 immune response, and offered substantial protection in mice against the challenge of live RSV A2 virus. The designed chimeric VLPs may serve as the potential starting point for developing epitope-focused vaccines against RSV. Our study also demonstrated that RBHcAg is an effective VLP carrier for presenting foreign epitopes, providing a promising platform for epitope-focused vaccine design.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: NPJ Vaccines Year: 2024 Type: Article Affiliation country: China

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: NPJ Vaccines Year: 2024 Type: Article Affiliation country: China