Tail length of triazine-based lipids influences blood clotting risk in vitro and in vivo
2026-08-26
SCID: 54.1/zx8jpexn
Abstract (AI)
Abstract Lung-targeted delivery of mRNA with lipid nanoparticles (LNPs) demonstrates high potential for therapeutic applications in pulmonary disorders. However, progress in pulmonary mRNA therapeutics is constrained by the challenges of engineering lipids that are both safe and highly effective at targeting the lungs. To meet these critical needs, we designed triazine-based (TZ) ionizable lipids with cyanuric chloride as the linker between the cationic head and the lipophilic tail, which allows for easy derivatization capable of systemic mRNA delivery. Three TZ-based lipids were synthesized using the same ionizable headgroups while differing in the carbon tail length and evaluated for their in vitro and in vivo protein expression. Notably, all three lipids result in pulmonary expression after intravenous administration, but the TZ lipid containing a C14 tail does so without any indication of thrombosis, both in vitro and in vivo as compared to other formulations. Our findings highlight the effect of minor chemical modifications driving altered in vivo activity, thus enabling new opportunities for safe pulmonary delivery of mRNA for lung-related diseases. Highlights Triazine-based ionizable lipids deliver mRNA to extrahepatic tissues Tail length of TZ lipid modulates thrombosis potential in the lung TZ lipid with C14 tail length exhibits minimal to no observed clotting in mice and human plasma GRAPHICAL ABSTRACT
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2026-08-26
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