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全氟大分子两亲物作为典型的分子载体。

Fluorinated macromolecular amphiphiles as prototypic molecular drones.

机构信息

State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, National Center for Magnetic Resonance in Wuhan, Wuhan Institute of Physics and Mathematics, Innovation Academy for Precision Measurement Science and Technology, Chinese Academy of Sciences, Wuhan 430071, China.

School of Pharmaceutical Sciences, Wuhan University, Wuhan 430071, China.

出版信息

Proc Natl Acad Sci U S A. 2024 Aug 27;121(35):e2405877121. doi: 10.1073/pnas.2405877121. Epub 2024 Aug 20.

Abstract

The advent of drones has revolutionized various aspects of our lives, and in the realm of biological systems, molecular drones hold immense promise as "magic bullets" for major diseases. Herein, we introduce a unique class of fluorinated macromolecular amphiphiles, designed in the shape of jellyfish, serving as exemplary molecular drones for fluorine-19 MRI (F MRI) and fluorescence imaging (FLI)-guided drug delivery, status reporting, and targeted cancer therapy. Functioning akin to their mechanical counterparts, these biocompatible molecular drones autonomously assemble with hydrophobic drugs to form uniform nanoparticles, facilitating efficient drug delivery into cells. The status of drug delivery can be tracked through aggregation-induced emission (AIE) of FLI and F MRI. Furthermore, when loaded with a heptamethine cyanine fluorescent dye IR-780, these molecular drones enable near-infrared (NIR) FL detection of tumors and precise delivery of the photosensitizer. Similarly, when loaded with doxorubicin (DOX), they enable targeted chemotherapy with fluorescence resonance energy transfer (FRET) FL for real-time status updates, resulting in enhanced therapeutic efficacy. Compared to conventional drug delivery systems, molecular drones stand out for their simplicity, precise structure, versatility, and ability to provide instantaneous status updates. This study presents prototype molecular drones capable of executing fundamental drone functions, laying the groundwork for the development of more sophisticated molecular machines with significant biomedical implications.

摘要

无人机的出现彻底改变了我们生活的方方面面,而在生物系统领域,分子无人机作为治疗重大疾病的“神奇子弹”,具有巨大的潜力。在这里,我们介绍了一类独特的氟化大分子两亲物,其设计形状为水母,作为氟-19 MRI(F MRI)和荧光成像(FLI)引导药物输送、状态报告和靶向癌症治疗的示范性分子无人机。这些生物相容性的分子无人机能够像它们的机械对应物一样自主地与疏水性药物组装形成均匀的纳米颗粒,从而有效地将药物输送到细胞中。通过荧光成像(FLI)和氟磁共振成像(F MRI)的聚集诱导发射(AIE)可以跟踪药物输送的状态。此外,当装载上一种七甲川花菁荧光染料 IR-780 时,这些分子无人机能够实现近红外(NIR)FL 检测肿瘤和光敏剂的精确输送。同样,当装载阿霉素(DOX)时,它们能够进行荧光共振能量转移(FRET)FL 的靶向化疗,实现实时状态更新,从而提高治疗效果。与传统的药物输送系统相比,分子无人机具有结构简单、精确、多功能和能够提供即时状态更新的特点。本研究提出了能够执行基本无人机功能的原型分子无人机,为开发具有重要生物医学意义的更复杂的分子机器奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f5f/11363298/5486a6c80787/pnas.2405877121fig01.jpg

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