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Engineering adeno-associated viral vectors to evade innate immune and inflammatory responses

Sci Transl Med. 2021-02; 
Ying Kai Chan, Sean K Wang, Colin J Chu, David A Copland, Alexander J Letizia, Helena Costa Verdera, Jessica J Chiang, Meher Sethi, May K Wang, William J Neidermyer, Yingleong Chan, Elaine T Lim, Amanda R Graveline, Melinda Sanchez, Ryan F Boyd, Thomas S Vihtelic, Rolando Gian Carlo O Inciong, Jared M Slain, Priscilla J Alphonse, Yunlu Xue, Lindsey R Robinson-McCarthy, Jenny M Tam, Maha H Jabbar, Bhubanananda Sahu, Janelle F Adeniran, Manish Muhuri, Phillip W L Tai, Jun Xie, Tyler B Krause, Andyna Vernet, Matthew Pezone, Ru Xiao, Tina Liu, Wei Wang, Henry J Kaplan, Guangping Gao, Andrew D Dick, Federico Mingozzi, Maureen A McCall, Constance L Cepko, George M Church
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Mammalian Expression  Finally, the single-stranded AAV2.aflibercept vector was synthesized by Genscript and contains the CAG promoter, codon-optimized aflibercept with the human growth hormone signal peptide, and the rabbit β-globin polyA sequence. Get A Quote

摘要

Nucleic acids are used in many therapeutic modalities, including gene therapy, but their ability to trigger host immune responses in vivo can lead to decreased safety and efficacy. In the case of adeno-associated viral (AAV) vectors, studies have shown that the genome of the vector activates Toll-like receptor 9 (TLR9), a pattern recognition receptor that senses foreign DNA. Here, we engineered AAV vectors to be intrinsically less immunogenic by incorporating short DNA oligonucleotides that antagonize TLR9 activation directly into the vector genome. The engineered vectors elicited markedly reduced innate immune and T cell responses and enhanced gene expression in clinically relevant mouse and pig models across ... More

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