Mellatyar Hassan, Talaei Sona, Nejati-Koshki Kazem, Akbarzadeh Abolfazl
Department of Medical Biotechnology, Faculty of Advance Medical Sciences, Tabriz University of Medical Sciences, Tabriz, Iran E-mail :
Asian Pac J Cancer Prev. 2016;17(5):2453-7.
Dysregulation of HSP90 gene expression is known to take place in breast cancer. Here we used D,L-lactic-co-glycolic acid-polyethylene glycol-17-dimethylaminoethylamino-17-demethoxy geldanamycin (PLGA-PEG-17DMAG) complexes and free 17-DMAG to inhibit the expression of HSP90 gene in the T47D breast cancer cell line. The purpose was to determine whether nanoencapsulating 17DMAG improves the anti-cancer effects as compared to free 17DMAG.
The T47D breast cancer cell line was grown in RPMI 1640 supplemented with 10% FBS. Encapsulation of 17DMAG was conducted through a double emulsion method and properties of copolymers were characterized by Fourier transform infrared spectroscopy and H nuclear magnetic resonance spectroscopy. Assessment of drug cytotoxicity was by MTT assay. After treatment of T47D cells with a given amount of drug, RNA was extracted and cDNA was synthesized. In order to assess HSP90 gene expression, real-time PCR was performed.
Taking into account drug load, IC50 was significant decreased in nanocapsulated 17DMAG in comparison with free 17DMAG. This finding was associated with decrease of HSP90 gene expression.
PLGA-PEG-17DMAG complexes can be more effective than free 17DMAG in down-regulating of HSP90 expression, at the saesm time exerting more potent cytotoxic effects. Therefore, PLGA-PEG could be a superior carrier for this type of hydrophobic agent.
已知HSP90基因表达失调在乳腺癌中会发生。在此,我们使用D,L-乳酸-乙醇酸-聚乙二醇-17-二甲基氨基乙氨基-17-去甲氧基格尔德霉素(PLGA-PEG-17DMAG)复合物和游离的17-DMAG来抑制T47D乳腺癌细胞系中HSP90基因的表达。目的是确定与游离的17-DMAG相比,纳米包裹的17DMAG是否能提高抗癌效果。
T47D乳腺癌细胞系在补充有10%胎牛血清的RPMI 1640培养基中培养。通过双乳化法进行17DMAG的包封,并用傅里叶变换红外光谱和氢核磁共振光谱对共聚物的性质进行表征。通过MTT法评估药物细胞毒性。用一定量的药物处理T47D细胞后,提取RNA并合成cDNA。为了评估HSP90基因的表达,进行实时PCR。
考虑到载药量,纳米包裹的17DMAG的IC50与游离的17DMAG相比显著降低。这一发现与HSP90基因表达的降低有关。
PLGA-PEG-17DMAG复合物在下调HSP90表达方面比游离的17DMAG更有效,同时发挥更强的细胞毒性作用。因此,PLGA-PEG可能是这类疏水性药物的优良载体。