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基于 TiO2 纳米纤维的光动力学疗法联合雷公藤红素抑制 HepG2 体外增殖的新策略

New strategy of photodynamic treatment of TiO2 nanofibers combined with celastrol for HepG2 proliferation in vitro.

机构信息

State Key Lab of Bioelectronics (Chien-Shiung WU Laboratory), Southeast University, Nanjing, 210096, PR China.

出版信息

Nanoscale. 2011 Aug;3(8):3115-22. doi: 10.1039/c1nr10185d. Epub 2011 Jun 10.

Abstract

As one of the best biocompatible semiconductor nanomaterials, TiO(2) nanofibers can act as a good photosensitizer material and show potential application in the field of drug carriers and photodynamic therapy to cure diseases. Celastrol, one of the active components extracted from T. wilfordii Hook F., was widely used in traditional Chinese medicine for many diseases. In this study, the cytotoxicity of celastrol for HepG2 cancer cells was firstly explored. The results showed that celastrol could inhibit cancer cell proliferation in a time-dependent and dose-dependent manner, inducing apoptosis and cell cycle arrest at G2/M phase in HepG2 cells. After the TiO(2) nanofibers were introduced into the system of celastrol, the cooperation effect showed that the nanocomposites between TiO(2) nanofibers and celastrol could enhance the cytotoxicity of celastrol for HepG2 cells and cut down the drug consumption so as to reduce the side-effect of the related drug. Associated with the photodynamic effect, it is evident that TiO(2) nanofibers could readily facilitate the potential application of the active compounds from natural products like celastrol. Turning to the advantages of nanotechnology, the combination of nanomaterials with the related monomer active compounds of promising Chinese medicine could play an important role to explore the relevant mechanism of the drug cellular interaction and promote the potential application of TiO(2) nanofibers in the clinical treatment.

摘要

作为一种最佳的生物相容性半导体纳米材料,TiO(2)纳米纤维可以作为一种良好的光敏剂材料,在药物载体和光动力疗法领域具有治疗疾病的潜在应用。从雷公藤中提取的活性成分之一,雷公藤红素,在中医药治疗许多疾病中得到了广泛的应用。在本研究中,首先探讨了雷公藤红素对 HepG2 癌细胞的细胞毒性。结果表明,雷公藤红素能够以时间和剂量依赖的方式抑制癌细胞的增殖,诱导 HepG2 细胞凋亡和细胞周期停滞在 G2/M 期。将 TiO(2)纳米纤维引入到雷公藤红素体系中后,协同作用表明 TiO(2)纳米纤维与雷公藤红素的纳米复合材料能够增强雷公藤红素对 HepG2 细胞的细胞毒性,减少药物消耗,从而降低相关药物的副作用。与光动力效应相关,TiO(2)纳米纤维可以很容易地促进雷公藤红素等天然产物中活性化合物的潜在应用。鉴于纳米技术的优势,将纳米材料与有前途的中药相关单体活性化合物相结合,可以在探索药物细胞相互作用的相关机制方面发挥重要作用,并促进 TiO(2)纳米纤维在临床治疗中的潜在应用。

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