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叠氮基修饰的卟啉磷配合物用于靶向内质网的荧光生物成像和有效的癌症光动力治疗。

Azide-modified corrole phosphorus complexes for endoplasmic reticulum-targeted fluorescence bioimaging and effective cancer photodynamic therapy.

机构信息

School of Chemistry and Chemical Engineering, The Key Laboratory of Fuel Cell Technology of Guangdong Province, South China University of Technology, Guangzhou, 510641, China.

Department of Plastic Surgery and Burns, The Second Affiliated Hospital of Shantou University Medical College, Shantou, 515041, China.

出版信息

Eur J Med Chem. 2024 Feb 5;265:116102. doi: 10.1016/j.ejmech.2023.116102. Epub 2023 Dec 29.

Abstract

Study on corrole photosensitizers (PSs) for photodynamic therapy (PDT) has made remarkable progress. Targeted delivery of PSs is of great significance for enhancing therapeutic efficiency, decreasing the dosage, and reducing systemic toxicity during PDT. The development of PSs that can be specifically delivered to the subcellular organelle is still an attractive and challenging work. Herein, we synthesize a series of azide-modified corrole phosphorus and gallium complex PSs, in which phosphorus corrole 2-P could not only precisely target the endoplasmic reticulum (ER) with a Pearson correlation coefficient (PCC) up to 0.92 but also possesses the highest singlet oxygen quantum yields (Φ = 0.75). This renders it remarkable PDT activity at a very low dosage (IC = 23 nM) towards HepG2 tumor cell line while ablating solid tumors in vivo with excellent biosecurity. Furthermore, 2-P exhibits intense red fluorescence (Φ = 0.25), outstanding photostability, and a large Stokes shift (190 nm), making it a promising fluorescent probe for ER. This study provides a clinically potential photosensitizer for cancer photodynamic therapy and a promising ER fluorescent probe for bioimaging.

摘要

研究卟啉类光敏剂(PSs)用于光动力疗法(PDT)取得了显著进展。PSs 的靶向递送对于提高治疗效率、降低剂量和减少 PDT 期间的全身毒性具有重要意义。开发能够特异性递送至亚细胞器的 PSs 仍然是一项有吸引力和挑战性的工作。在这里,我们合成了一系列叠氮修饰的卟啉磷和镓配合物 PSs,其中磷卟啉 2-P 不仅可以与内质网(ER)精确靶向,皮尔逊相关系数(PCC)高达 0.92,而且具有最高的单线态氧量子产率(Φ=0.75)。这使得它在非常低的剂量(IC=23 nM)下对 HepG2 肿瘤细胞系具有显著的 PDT 活性,同时在体内消融实体瘤具有优异的生物安全性。此外,2-P 表现出强烈的红色荧光(Φ=0.25)、出色的光稳定性和大的斯托克斯位移(190nm),使其成为一种有前途的 ER 荧光探针。本研究为癌症光动力治疗提供了一种有临床潜力的光敏剂和一种有前途的用于生物成像的 ER 荧光探针。

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