一石三鸟:用于磁共振成像引导的协同光动力-声动力治疗的“一体化”纳米级锰卟啉配位聚合物的设计与合成

One Stone, Three Birds: Design and Synthesis of "All-in-One" Nanoscale Mn-Porphyrin Coordination Polymers for Magnetic Resonance Imaging-Guided Synergistic Photodynamic-Sonodynamic Therapy.

作者信息

Geng Peng, Li Yan, Macharia Daniel K, Ren Xiaoling, Meng Ruru, Wang Wei, Lan Haichuang, Xiao Shuzhang

机构信息

College of Materials and Chemical Engineering, China Three Gorges University, Yichang 443002, China.

College of Materials Science and Engineering, Donghua University, Shanghai 201620, China.

出版信息

J Colloid Interface Sci. 2024 Apr 15;660:1021-1029. doi: 10.1016/j.jcis.2024.01.157. Epub 2024 Jan 24.

Abstract

Multifunctional nanomaterials with potential applications in both bioimaging and photodynamic-sonodynamic therapy have great advantages in cancer theranostic, but the design and preparation of "all-in-one" type of multifunctional nanomaterials with single component remains challenging. Herein the "all-in-one" type of Mn-PpIX (Protoporphyrin IX) coordination polymers (MnPPs) was reported as efficient nano-photo/sonosensitizers. The MnPPs had an average size of ∼ 110 nm. Upon light/US (ultrasound) irradiation for 5 min, 61.8 % (light) and 32.4 % (US) of DPBF (1.3-diphenyl isobenzofuran) was found to be oxidized by MnPPs, which showed effective ROS (reactive oxygen species) generation for photodynamic/sonodynamic therapy (PDT/SDT). In addition, MnPPs revealed excellent biosafety and could be engulfed by cells to produce intracellular ROS under light/US excitation for efficient killing tumor cells. When MnPPs was injected into mice, the tumor could be monitored via MRI (magnetic resonance imaging). In addition, tumor growth could be significantly inhibited by the synergistic PDT-SDT. Therefore, the present study not only represents MnPPs as an "all-in-one" type of multifunctional nanomaterials for MRI-guided PDT-SDT therapy, but also provides some insights for designing other PpIX-related molecules with the similar structure for bioapplication.

摘要

在生物成像和光动力-声动力治疗中具有潜在应用的多功能纳米材料在癌症诊疗方面具有巨大优势,但设计和制备单一组分的“一体化”多功能纳米材料仍然具有挑战性。在此,报道了“一体化”型的锰-原卟啉IX(Protoporphyrin IX)配位聚合物(MnPPs)作为高效的纳米光/声敏剂。MnPPs的平均尺寸约为110纳米。在光/超声(US)照射5分钟后,发现61.8%(光)和32.4%(超声)的1,3-二苯基异苯并呋喃(DPBF)被MnPPs氧化,这表明其在光动力/声动力治疗(PDT/SDT)中能有效产生活性氧(ROS)。此外,MnPPs显示出优异的生物安全性,并且在光/超声激发下可被细胞吞噬以产生细胞内ROS来有效杀伤肿瘤细胞。当将MnPPs注射到小鼠体内时,可通过磁共振成像(MRI)监测肿瘤。此外,协同的PDT-SDT可显著抑制肿瘤生长。因此,本研究不仅将MnPPs表征为用于MRI引导的PDT-SDT治疗的“一体化”多功能纳米材料,还为设计具有类似结构的其他用于生物应用的原卟啉IX相关分子提供了一些见解。

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