Azmi Farhana, Xu Xiaoxue, Duong Hien, Ye Ping, Chen Titi, Li Hongxi, Chen Jianwei, Ardekani Sara Madadi, Dehghani Alireza, Zheng Guoping, Harris David, Lu Hongxu, Wang Yiping, Cao Qi
Centre for Transplantation and Renal Research, Westmead Institute for Medical Research, The University of Sydney NSW Australia
Faculty of Medicine and Health, The University of Sydney NSW Australia.
Nanoscale Adv. 2025 Mar 28;7(9):2751-2760. doi: 10.1039/d4na01082e. eCollection 2025 Apr 29.
Renal Cell Carcinoma (RCC) poses challenges for conventional treatment methods, but recent advancements indicate the potential of nanoparticles (NPs) in enhancing chemotherapy efficacy. This study focuses on developing non-toxic NPs from sucrose and l-serine hydrothermal synthesis to produce Sucrose Carbon Dots (Suc CDs), designed for renal clearance to deliver hydrophilic drugs for the treatment of RCC. Suc CDs with a size of 4 nm exhibit high fluorescence with a fluorescence quantum yield of 58% and high drug loading capacity without toxicity to normal cell lines (renal tubular cells). Under conditions, Suc CDs alone are non-toxic, while Suc CDs with DOX display improved anticancer effects on Renca cells (cancer cell line). Under conditions, Suc CDs loaded with DOX outperform DOX alone with reduced toxicity to normal cells. Biodistribution study of Suc CDs revealed prolonged tumour site accumulation. This research demonstrates that renal clearable Suc CDs loaded with DOX exhibit superior anti-cancer activity, and are free of side effects, suggesting promising therapeutic potential for human RCC.
肾细胞癌(RCC)对传统治疗方法构成挑战,但最近的进展表明纳米颗粒(NPs)在提高化疗疗效方面具有潜力。本研究重点在于通过蔗糖和L-丝氨酸水热合成开发无毒的纳米颗粒以制备蔗糖碳点(Suc CDs),其设计用于肾脏清除以递送亲水性药物来治疗RCC。尺寸为4 nm的Suc CDs表现出高荧光,荧光量子产率为58%,且具有高载药能力,对正常细胞系(肾小管细胞)无毒。在特定条件下,单独的Suc CDs无毒,而载有阿霉素(DOX)的Suc CDs对Renca细胞(癌细胞系)显示出增强的抗癌效果。在特定条件下,载有DOX的Suc CDs优于单独的DOX,对正常细胞的毒性降低。Suc CDs的生物分布研究表明其在肿瘤部位的蓄积时间延长。本研究表明,载有DOX的可经肾脏清除的Suc CDs具有卓越的抗癌活性且无副作用,提示其在人类RCC治疗中具有广阔的治疗潜力。