Extracellular vesicles incorporating retrovirus-like capsids for the enhanced packaging and systemic delivery of mRNA into neurons

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作者
Wenchao Gu
Sijin Luozhong
Simian Cai
Ketaki Londhe
Nadine Elkasri
Robert Hawkins
Zhefan Yuan
Kai Su-Greene
Yujie Yin
Margaret Cruz
Yu-Wei Chang
Patrick McMullen
Chunyan Wu
Changwoo Seo
Akash Guru
Wenting Gao
Tara Sarmiento
Chris Schaffer
Nozomi Nishimura
Richard Cerione
Qiuming Yu
Melissa Warden
Robert Langer
Shaoyi Jiang
机构
[1] Cornell University,Meinig School of Biomedical Engineering
[2] Cornell University,Department of Molecular Biology and Genetics
[3] Cornell University,Department of Molecular Medicine
[4] Cornell University,Department of Chemistry and Chemical Biology
[5] Cornell University,Robert Frederick Smith School of Chemical and Biomolecular Engineering
[6] Cornell University,Department of Biomedical Sciences
[7] Cornell University,Department of Neurobiology and Behavior
[8] Cornell University,Department of Microbiology and Immunology
[9] Massachusetts Institute of Technology,Department of Chemical Engineering
[10] Massachusetts Institute of Technology,David H. Koch Institute for Integrative Cancer Research
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The blood–brain barrier (BBB) restricts the systemic delivery of messenger RNAs (mRNAs) into diseased neurons. Although leucocyte-derived extracellular vesicles (EVs) can cross the BBB at inflammatory sites, it is difficult to efficiently load long mRNAs into the EVs and to enhance their neuronal uptake. Here we show that the packaging of mRNA into leucocyte-derived EVs and the endocytosis of the EVs by neurons can be enhanced by engineering leucocytes to produce EVs that incorporate retrovirus-like mRNA-packaging capsids. We transfected immortalized and primary bone-marrow-derived leucocytes with DNA or RNA encoding the capsid-forming activity-regulated cytoskeleton-associated (Arc) protein as well as capsid-stabilizing Arc 5’-untranslated-region RNA elements. These engineered EVs inherit endothelial adhesion molecules from donor leukocytes, recruit endogenous enveloping proteins to their surface, cross the BBB, and enter the neurons in neuro-inflammatory sites. Produced from self-derived donor leukocytes, the EVs are immunologically inert, and enhanced the neuronal uptake of the packaged mRNA in a mouse model of low-grade chronic neuro-inflammation.
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页码:415 / 426
页数:11
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