生物正交化学
微气泡
核酸
化学
基因传递
磷脂
两亲性
生物化学
药物输送
结扎
纳米技术
细胞
纳米颗粒
声动力疗法
寡核苷酸
点击化学
输送系统
超声波
内体
生物结合
生物物理学
分子生物学
组合化学
遗传增强
细胞生物学
细胞培养
生物相容性材料
作者
Emilio Di Ianni,Jueun Jeon,Sedra Mohammadi,H. Hu,Jeremy M. Quintana,Chanseo Lee,Edwina Abou Haidar,Marie Goemans,Ayrton Zargani‐Piccardi,Mohammed Mahamdeh,Iván Coto Hernández,Victoria Rodriguez,Yirong Zhou,Aaron Aguirre,Shiaulou Yuan,Thomas S.C. Ng,Koen Breyne,Hakho Lee,X. O. Breakefield,Miles A. Miller
标识
DOI:10.1002/anie.202523437
摘要
Therapeutic nucleic acid delivery has many potential applications, but it remains challenging to target extrahepatic tissues in a flexible and image-guided manner. To address this issue, we report a bioorthogonal pre-targeting strategy that uses focused ultrasound (FUS) to promote the delivery of mRNA-loaded lipid nanoparticles (mRNA-LNP). We synthesized amphiphilic click reactive anchors (ACRAs) consisting of a phospholipid PEG-conjugate functionalized with trans-cyclooctene (TCO) or its companion reactive partner methyltetrazine (mTz), producing ACRA-TCO and ACRA-mTz. ACRA derivatives were screened for cellular activity, yielding functionalized DOPE-PEG (1,2-dioleoyl-sn-glycero-3-phosphoethanolamine-N-(polyethylene glycol)) derivatives outperforming those containing saturated lipid or branched PEG. Nanobubbles encapsulating ultrasound-responsive gas delivered ACRA-TCO to targeted cells and tissues using FUS. This pre-targeting promoted the subsequent delivery of mRNA-LNP functionalized with companion ACRA-mTz. Ultrasound pre-targeting enhanced the accumulation of mTz-functionalized nanoparticles in cell cultures and mice by 75% and up to 3.6-fold, respectively, and increased gene expression using mRNA-LNP in vivo. Microbubbles loaded with ACRA roughly doubled mRNA delivery to the heart, while ultrasound alone did not. Taken together, this report presents a modular, ultrasound-enabled strategy for enhancing nucleic acid delivery in targeted tissues.
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