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Kupffer Cell Release of Platelet Activating Factor Drives Dose Limiting Toxicities of Nucleic Acid Nanocarriers

biorxiv. 2020; 
Meredith A.?Jackson, ?Shrusti S.?Patel, ?Fang?Yu, ?Matthew A.?Cottam, ?Evan B.?Glass, ?Bryan R.?Dollinger, ?Ella N.?Hoogenboezem, ?Prarthana?Patil, ?Danielle D.?Liu, ?Isom B.?Kelly, ?Sean K.?Bedingfield, ?Allyson R.?King, ?Rachel E.?Miles, ?Alyssa M.?Hasty, ?Todd D.?Giorgio, ?Craig L.?Duvall
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Cellular Analysis Polymers were evaluated for endotoxin using a Chromogenic LAL Endotoxin Assay Kit (GenScript, Nanjing, China). Get A Quote

摘要

In vivo?nanocarrier-associated toxicity is a significant and poorly understood hurdle to clinical translation of siRNA nanomedicines. In this work, we demonstrate that platelet activating factor (PAF), an inflammatory lipid mediator, plays a key role in nanocarrier-associated toxicities, and that prophylactic inhibition of the PAF receptor (PAFR) completely prevents these toxicities. High-dose intravenous injection of siRNA-polymer nano-complexes (si-NPs) elicited acute, shock-like symptoms (vasodilation and vascular leak) in mice and caused a three-fold increase in blood PAF levels. PAFR inhibition completely prevented these toxicities, indicating PAF activity is a primary driver of systemic si-NP toxicity. P... More

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