The self-assembled nanoparticle-based trimeric RBD mRNA vaccine elicits robust and durable protective immunity against SARS-CoV-2 in mice
мРНК-вакцина на основе самоорганизующихся наночастиц с тримерным RBD индуцирует выраженный и длительный защитный иммунитет против SARS-CoV-2 у мышей
2021-09-09
SCID: 54.1/unwwfgjk
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SARS-CoV-2broad-spectrum neutralizing antibodiesmRNA vaccineself-assembled nanoparticle vaccinetrimeric receptor-binding domain
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Abstract (AI)
As COVID-19 continues to spread rapidly worldwide and variants continue to emerge, the development and deployment of safe and effective vaccines are urgently needed. Here, we developed an mRNA vaccine based on the trimeric receptor-binding domain (RBD) of the SARS-CoV-2 spike (S) protein fused to ferritin-formed nanoparticles (TF-RBD). Compared to the trimeric form of the RBD mRNA vaccine (T-RBD), TF-RBD delivered intramuscularly elicited robust and durable humoral immunity as well as a Th1-biased cellular response. After further challenge with live SARS-CoV-2, immunization with a two-shot low-dose regimen of TF-RBD provided adequate protection in hACE2-transduced mice. In addition, the mRNA template of TF-RBD was easily and quickly engineered into a variant vaccine to address SARS-CoV-2 mutations. The TF-RBD multivalent vaccine produced broad-spectrum neutralizing antibodies against Alpha (B.1.1.7) and Beta (B.1.351) variants. This mRNA vaccine based on the encoded self-assembled nanoparticle-based trimer RBD provides a reference for the design of mRNA vaccines targeting SARS-CoV-2.
Key Findings
1
A ferritin-formed nanoparticle mRNA vaccine encoding trimeric SARS-CoV-2 RBD (TF-RBD) was developed.
2
A two-dose, low-dose TF-RBD regimen provided adequate protection against live SARS-CoV-2 challenge in hACE2-transduced mice.
3
Compared with trimeric RBD mRNA alone, intramuscular TF-RBD induced robust, durable humoral immunity and a Th1-biased cellular response in mice.
4
TF-RBD vaccination generated broad-spectrum neutralizing antibodies against the Alpha (B.1.1.7) and Beta (B.1.351) variants.
5
The TF-RBD mRNA template could be rapidly engineered into variant-specific vaccines to address emerging SARS-CoV-2 mutations.
Research Object
the self-assembled ferritin nanoparticle-based trimeric RBD mRNA vaccine (TF-RBD) administered intramuscularly in hACE2-transduced mice
Research Subject
the vaccine’s immunogenicity, durability, protective efficacy against live SARS-CoV-2, and breadth of neutralization against emerging variants
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2021-09-09
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