通过功能化金纳米粒子在多细胞结直肠癌球体内进行主动靶向光动力治疗。

IF 4.5 3区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Nokuphila Winifred Nompumelelo Simelane, Heidi Abrahamse
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引用次数: 0

摘要

光动力疗法(PDT)在克服常见结直肠癌(CRC)治疗方法的局限性方面具有巨大潜力。使用带有靶向分子的纳米颗粒(NPs)的靶向光敏剂(PS)给药系统正在不断被设计出来,其目的是提高 PS 在 CRC 光动力疗法中的疗效。然而,大多数体外 PDT 研究都是在二维(2D)单层细胞培养物上对 PS 靶向递送系统进行优化的。在本研究中,我们为体外培养的人结肠直肠三维多细胞球体(3D MCTS)开发了一种纳米 PS 给药系统。我们制备了 PEG 化金纳米颗粒(PEG-AuNPs),并将其附着在 ZnPcS4PS 上,进一步用特异性 CRC 靶向抗鸟苷酸环化酶单克隆抗体(mAb)进行功能化。我们成功合成了 ZnPcS4-AuNP-Anti-GCC Ab(BNC)纳米共轭物,并在激光照射下研究了它们的光动力效应,结果表明它们在以三维 MCTS 球形培养的 Caco-2 细胞中具有增强的抗癌效果。我们的研究结果表明,靶向 BNC 纳米共轭物可提高光动力疗法的疗效,并凸显了三维 MCTS 肿瘤模型在评估靶向光动力疗法方面的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Actively targeted photodynamic therapy in multicellular colorectal cancer spheroids via functionalised gold nanoparticles.

Photodynamic therapy (PDT) holds great potential to overcome limitations associated with common colorectal cancer (CRC) treatment approaches. Targeted photosensitiser (PS) delivery systems using nanoparticles (NPs) with targeting moieties are continually being designed, which are aimed at enhancing PS efficacy in CRC PDT. However, the optimisation of targeted PS delivery systems in most, in vitro PDT studies has been conducted on two dimensional (2D) monolayers cell cultures. In our present study, we developed a nano PS delivery system for in vitro cultured human colorectal three-dimensional multicellular spheroids (3D MCTS). PEGylated gold nanoparticles (PEG-AuNPs) were prepared and attached to ZnPcS4PS and further functionalised with specific CRC targeting anti-Guanylate Cyclase monoclonal antibodies(mAb). The ZnPcS4-AuNP-Anti-GCC Ab (BNC) nanoconjugates were successfully synthesised and their photodynamic effect investigated following exposure to laser irradiation and demonstrated enhanced anticancer effects in Caco-2 cells cultivated as 3D MCTS spheroids. Our findings suggest that targeted BNC nanoconjugates can improve the efficacy of PDT and highlight the potential of 3D MCTS tumour model for evaluating of targeted PDT.

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来源期刊
Artificial Cells, Nanomedicine, and Biotechnology
Artificial Cells, Nanomedicine, and Biotechnology BIOTECHNOLOGY & APPLIED MICROBIOLOGY-ENGINEERING, BIOMEDICAL
CiteScore
10.90
自引率
0.00%
发文量
48
审稿时长
20 weeks
期刊介绍: Artificial Cells, Nanomedicine and Biotechnology covers the frontiers of interdisciplinary research and application, combining artificial cells, nanotechnology, nanobiotechnology, biotechnology, molecular biology, bioencapsulation, novel carriers, stem cells and tissue engineering. Emphasis is on basic research, applied research, and clinical and industrial applications of the following topics:artificial cellsblood substitutes and oxygen therapeuticsnanotechnology, nanobiotecnology, nanomedicinetissue engineeringstem cellsbioencapsulationmicroencapsulation and nanoencapsulationmicroparticles and nanoparticlesliposomescell therapy and gene therapyenzyme therapydrug delivery systemsbiodegradable and biocompatible polymers for scaffolds and carriersbiosensorsimmobilized enzymes and their usesother biotechnological and nanobiotechnological approachesRapid progress in modern research cannot be carried out in isolation and is based on the combined use of the different novel approaches. The interdisciplinary research involving novel approaches, as discussed above, has revolutionized this field resulting in rapid developments. This journal serves to bring these different, modern and futuristic approaches together for the academic, clinical and industrial communities to allow for even greater developments of this highly interdisciplinary area.
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