Janus USPION modular platform (JUMP) for theranostic ultrasound-mediated targeted intratumoral microvascular imaging and DNA/miRNA delivery

Janus USPION 模块化平台 (JUMP) 用于超声治疗介导的肿瘤内微血管靶向成像和 DNA/miRNA 递送

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作者:Ragnhild D Whitaker, Julius L Decano, Catherine Gormley, Carl A Beigie, Cari Meisel, Glaiza A Tan, Ann-Marie Moran, Nicholas J Giordano, Yoonjee Park, Peng Huang, Sean Andersson, Donald Gantz, Aaron K Grant, Nelson Ruiz-Opazo, Victoria L M Herrera, Joyce Y Wong

Conclusion

Altogether, data advance the asymmetric jNP-design as a potential theranostic Janus-USPION Modular Platform - a JUMP forward.

Methods

Here, we report a Janus-nanoparticle (jNP)-system with modular targeting, payload-delivery, and targeted-imaging capabilities. Our jNP-system consists of 10 nm ultrasmall superparamagnetic iron oxide nanoparticles (USPION) with opposing antibody-targeting and DNA/RNA payload-protecting faces, directionally self-assembled with commercially available zwitterionic microbubbles (MBs) and DNA/RNA payloads.

Results

Sonoporation of targeted jNP-payload-MBs delivers functional reporter-DNA imparting tumor-fluorescence, and micro-RNA126 reducing non-druggable KRAS in PDAC-Panc1 and TNBC-MB231 xenografted tumors. The targeting jNP-system enhances ultrasound-imaging of intra-tumoral microvasculature using less MBs/body weight (BW). The jNP-design enhances USPION's T2*-magnetic resonance (MR) and MR-imaging of PDAC-peritoneal metastases using less Fe/BW.

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