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Delivery of Circular mRNA via Degradable Lipid Nanoparticles against SARS-CoV-2 Delta Variant

Ke Huang, Na Li, Yingwen Li, Jiafeng Zhu, Qianyi Fan, Jiali Yang, Yinjia Gao, Yuping Liu, Qiangbo Hou, Shufeng Gao, Ke Wei, Chao Deng, View ORCID ProfileChijian Zuo, Zhenhua Sun
doi: https://doi.org/10.1101/2022.05.12.491597
Ke Huang
1Suzhou CureMed Biopharma Technology Co., Ltd., Suzhou, China
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Na Li
1Suzhou CureMed Biopharma Technology Co., Ltd., Suzhou, China
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Yingwen Li
1Suzhou CureMed Biopharma Technology Co., Ltd., Suzhou, China
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Jiafeng Zhu
1Suzhou CureMed Biopharma Technology Co., Ltd., Suzhou, China
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Qianyi Fan
1Suzhou CureMed Biopharma Technology Co., Ltd., Suzhou, China
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Jiali Yang
1Suzhou CureMed Biopharma Technology Co., Ltd., Suzhou, China
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Yinjia Gao
1Suzhou CureMed Biopharma Technology Co., Ltd., Suzhou, China
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Yuping Liu
1Suzhou CureMed Biopharma Technology Co., Ltd., Suzhou, China
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Qiangbo Hou
1Suzhou CureMed Biopharma Technology Co., Ltd., Suzhou, China
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Shufeng Gao
1Suzhou CureMed Biopharma Technology Co., Ltd., Suzhou, China
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Ke Wei
3Hunan University of Chinese Medicine, Changsha 410208, China
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Chao Deng
2Biomedical Polymers Laboratory, College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou 215123, China
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Chijian Zuo
1Suzhou CureMed Biopharma Technology Co., Ltd., Suzhou, China
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  • ORCID record for Chijian Zuo
  • For correspondence: zuocj@purecell.group sunzh@purecell.group
Zhenhua Sun
1Suzhou CureMed Biopharma Technology Co., Ltd., Suzhou, China
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  • For correspondence: zuocj@purecell.group sunzh@purecell.group
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ABSTRACT

mRNA vaccines have emerged as a most promising and potent platform in the fight against various diseases including the COVID-19 pandemic. However, the intrinsic instability, varying side effects associated with the delivery systems, and continuous emergence of virus variants highlight the urgent need for the development of stable, safe and efficacious mRNA vaccines. In this study, by screening a panel of proprietary biodegradable ionizable lipidoids, we reported on a novel mRNA vaccine (cmRNA-1130) formed from a biodegradable lipidoid with eight ester bonds in the branched tail (AX4) and synthetic circular mRNA (cmRNA) encoding the trimeric Delta receptor binding domain (RBD) of SARS-CoV-2 spike protein for the induction of robust immune activation. The AX4-based lipid nanoparticles (AX4-LNP) revealed much faster elimination rate from liver and spleen in comparison with commercialized MC3-based LNP (MC3-LNP) and afforded normal level of alanine transferase (ALT), aspartate aminotransferase (AST), and creatinine (CRE) in BALB/c mice. Following intramuscular (IM) administration in BALB/c mice, cmRNA-1130 elicited potent and sustained neutralizing antibodies, RBD-specific CD4+ and CD8+ T effector memory cells (Tem), and Th1-biased T cell activations. cmRNA-1130 vaccine showed excellent stability against 6-month storage at 4 °C and freezing-thawing cycles. In brief, our study highlights mRNA vaccines based on cmRNA and biodegradable AX4 lipids hold great potential as superb therapeutic platforms for the treatment of varying diseases.

Competing Interest Statement

The authors have declared no competing interest.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. All rights reserved. No reuse allowed without permission.
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Posted May 13, 2022.
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Delivery of Circular mRNA via Degradable Lipid Nanoparticles against SARS-CoV-2 Delta Variant
Ke Huang, Na Li, Yingwen Li, Jiafeng Zhu, Qianyi Fan, Jiali Yang, Yinjia Gao, Yuping Liu, Qiangbo Hou, Shufeng Gao, Ke Wei, Chao Deng, Chijian Zuo, Zhenhua Sun
bioRxiv 2022.05.12.491597; doi: https://doi.org/10.1101/2022.05.12.491597
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Delivery of Circular mRNA via Degradable Lipid Nanoparticles against SARS-CoV-2 Delta Variant
Ke Huang, Na Li, Yingwen Li, Jiafeng Zhu, Qianyi Fan, Jiali Yang, Yinjia Gao, Yuping Liu, Qiangbo Hou, Shufeng Gao, Ke Wei, Chao Deng, Chijian Zuo, Zhenhua Sun
bioRxiv 2022.05.12.491597; doi: https://doi.org/10.1101/2022.05.12.491597

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