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Myeloid cell‐specific topoisomerase 1 inhibition using DNA origami mitigates neuroinflammation
Author(s) -
Zhu Keying,
Wang Yang,
Sarlus Heela,
Geng Keyi,
Nutma Erik,
Sun Jingxian,
Kung ShinYu,
Bay Cindy,
Han Jinming,
Min JinHong,
BenitoCuesta Irene,
Lund Harald,
Amor Sandra,
Wang Jun,
Zhang XingMei,
Kutter Claudia,
GuerreiroCacais André Ortlieb,
Högberg Björn,
Harris Robert A
Publication year - 2022
Publication title -
embo reports
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 4.584
H-Index - 184
eISSN - 1469-3178
pISSN - 1469-221X
DOI - 10.15252/embr.202154499
Subject(s) - microglia , neuroinflammation , myeloid , cancer research , inflammation , pharmacology , biology , chemistry , immunology
Targeting myeloid cells, especially microglia, for the treatment of neuroinflammatory diseases such as multiple sclerosis (MS), is underappreciated. Our in silico drug screening reveals topoisomerase 1 (TOP1) inhibitors as promising drug candidates for microglial modulation. We show that TOP1 is highly expressed in neuroinflammatory conditions, and TOP1 inhibition using camptothecin (CPT) and its FDA‐approved analog topotecan (TPT) reduces inflammatory responses in microglia/macrophages and ameliorates neuroinflammation in vivo . Transcriptomic analyses of sorted microglia from LPS‐challenged mice reveal an altered transcriptional phenotype following TPT treatment. To target myeloid cells, we design a nanosystem using β‐glucan‐coated DNA origami (MyloGami) loaded with TPT (TopoGami). MyloGami shows enhanced specificity to myeloid cells while preventing the degradation of the DNA origami scaffold. Myeloid‐specific TOP1 inhibition using TopoGami significantly suppresses the inflammatory response in microglia and mitigates MS‐like disease progression. Our findings suggest that TOP1 inhibition in myeloid cells represents a therapeutic strategy for neuroinflammatory diseases and that the myeloid‐specific nanosystems we designed may also benefit the treatment of other diseases with dysfunctional myeloid cells.

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