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Acrylic resin-coated rhodamine-6G/isorhamnetin/nido-carborane fluorescent complexes: Photophysical properties, drug release, and tumor cell imaging studies

Jianpeng Hu · Bo Teng · Yuanye Wan · Zhipeng Xu · Guofan Jin
10.25259/jksus_322_2024 393 Views 0 Citations
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Abstract

Biocompatibility and solubility problems of the isorhamnetin-nido-carborane complex were resolved by creating four fluorescent complexes using a one-pot method: L100-55@rhodamine-6G/isorhamnetin/nido-carborane (RIC-1), EPO@rhodamine-6G/isorhamnetin/nido-carborane (RIC-2), RS@rhodamine-6G/isorhamnetin/nido-carborane (RIC-3), and RL@rhodamine-6G/isorhamnetin/nido-carborane (RIC-4). When it came to UV absorption stability, RIC-1 was unique among them. Transmission electron microscopy (TEM) analysis shows that RIC-1 forms a flocculent, network-like structure in the acrylic matrix with uniform dispersion, indicating a stable complex. Cytotoxicity and therapeutic potential were evaluated using CCK8 and cell uptake assays. With inhibition rates of 49-56% and 55-62%, respectively, RIC-1 showed low cytotoxicity and strong anti-tumor efficacy, specifically targeting PC3 and HeLa tumor cells. This study emphasizes the potential of this fluorescent complex, in particular RIC-1, for targeted cancer therapy as well as for better tumor imaging and therapeutic applications.

Cite this Article (APA)
Jianpeng, H., Bo, T., Yuanye, W., Zhipeng, X., Guofan, J. (2025). Acrylic resin-coated rhodamine-6G/isorhamnetin/nido-carborane fluorescent complexes: Photophysical properties, drug release, and tumor cell imaging studies. Journal of King Saud University – Science. https://doi.org/10.25259/jksus_322_2024
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Published in
ISSN 1018-3647
Quartile Q1
AMS Score 100
Field Natural Sciences
Publisher King Saud University
Country 🇸🇦 Saudi Arabia
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Authors
Publication Details
Year 2025
Language English
Added 14 Jul 2026