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载双自由基多肽纳米颗粒用于双光子近红外光热治疗。

Diradicaloid-Loaded Polypeptide Nanoparticles for Two-Photon NIR Phototheranostics.

机构信息

Department of Hepatobiliary Surgery, The First Affiliated Hospital of USTC, Division of Life Sciences and Medicine, University of Science and Technology of China, Jinzai Road 96, 230026 Hefei, Anhui, P. R. China.

Key Laboratory of Precision and Intelligent Chemistry, and Department of Chemical Physics, University of Science and Technology of China, Jinzai Road 96, 230026 Hefei, Anhui, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2024 Nov 6;16(44):59907-59920. doi: 10.1021/acsami.4c13338. Epub 2024 Oct 23.

Abstract

Stable organic radicals, with unique electronic transitions from the ground state (D) to the doublet excited state (D), show promise as high-fluorescence quantum yield dyes. While organic small-molecule photosensitizers (PSs) have advanced for tumor photodynamic therapy (PDT), opportunities exist to enhance their performance and functionality. Herein, we synthesized Thiele's fluorocarbon derivative diradicaloid TFC-I with nearly 100% PLQY and integrated it into amphiphilic polypeptide nanoparticles, P-TI, using a precursor-doping approach. P-TI demonstrated notable features including high photostability, aggregation-induced emission, bright near-infrared fluorescence, substantial quantum yield (37% PLQY), robust near-infrared two-photon absorption (∼400 GM cross section), and superior ROS generation compared to commercial PSs. and experiments confirmed that P-TI performed well in mitochondria-targeted PDT, two-photon fluorescence imaging, and biosafety. This work highlights the use of organic stable radicals with precursor-doping for efficient PDT and deep tumor tissue imaging.

摘要

稳定的有机自由基具有独特的电子跃迁,从基态(D)到双重激发态(D),有望成为高荧光量子产率染料。虽然有机小分子光敏剂(PSs)在肿瘤光动力治疗(PDT)方面取得了进展,但仍有机会提高其性能和功能。在此,我们合成了具有近 100%PLQY 的 Thiele 氟碳衍生物双自由基 TFC-I,并通过前体掺杂的方法将其整合到两亲性多肽纳米粒子 P-TI 中。P-TI 表现出显著的特点,包括高光稳定性、聚集诱导发射、明亮的近红外荧光、高量子产率(37%PLQY)、强近红外双光子吸收(约 400 GM 截面)和优于商业 PSs 的 ROS 生成。 和 实验证实,P-TI 在靶向线粒体的 PDT、双光子荧光成像和生物安全性方面表现良好。这项工作强调了使用具有前体掺杂的有机稳定自由基进行高效 PDT 和深层肿瘤组织成像的应用。

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