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国家自然科学基金(30670532)

作品数:2 被引量:4H指数:1
相关作者:张黎川王琪李恩成许志贇应力更多>>
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GRP78 upregulation-induced increase in cisplatin sensitivity of SPCA1 lung cancer cells被引量:3
2011年
Background Glucose regulated protein 78 (GRP78), an endoplasmic reticulum (ER) chaperone, plays a critical role in chemotherapy resistance in a variety of cancers. In this study, we investigated the up-regulation of GRP78 induced by A23187 and its association with the chemotherapeutical sensibility to cisplatin in human lung cancer cell line SPCAI. Methods SPCA1 cells were pretreated with A23187 at different concentrations. The expression of GRP78 at the mRNA level was analyzed by RT-PCR; the expression of GRP78 at the protein level was determined by Western blotting and immunofluorescence assay. Cell survival was determined by MTT assay. Cell apoptosis was analyzed by flow cytometry. Results The expression of GRP78 at both the mRNA and protein levels was obviously induced by A23187 in SPCA1 cells, with an elevation of GRP78 by 2.1-fold at the mRNA level and by 3.8-fold at the protein level compared to the control. There was a dose-dependent response. Survival curve analysis demonstrated that A23187 induction caused a significant reduction of survival for the cells subjected to cisplatin treatment (P 〈0.05). After treatment by cisplatin, the percentage of apoptotic cells in the A23187 pretreated group increased about three fold compared with the control group ((27.53!-4.32)% vs. (9.25+3.64)%, P 〈0.05). Conclusions A23187 treatment was fairly effective for the induction of GRP78 in SPCA1 cells at both the mRNA and protein levels. To a certain extent, GRP78 up-regulation by A23187 was associated with the enhancement of drug sensitivity to cisplatin in human luncl cancer cell line SPCAI.
ZHANG Li-chuanWANG Jia-ruiZHAO LongWANG TaoWU JingFAN Su-fangCHEN Li-xiaSHAO Shu-juanJoseph MolnarWANG Qi
关键词:GRP78CISPLATINCHEMOSENSITIVITY
基于微流控芯片技术的三维细胞培养模式的建立及研究被引量:1
2011年
目的建立适于进行三维联合细胞培养的微流控芯片平台。方法设计与制作一个多通道连接的高通量微流控芯片平台,通过向微通道内灌注含有细胞悬液胶质的方法构建三维立体培养体系,并通过注射泵连续供给细胞营养物质以模拟体内细胞生存的微环境,将肺癌细胞与人肺成纤维细胞置于体系中进行近似于人体生理条件下的三维联合细胞培养。结果成功建立了适于进行三维联合细胞培养的微流控芯片平台,实现了肺癌细胞与人肺成纤维细胞的联合三维培养。三维培养状态下的细胞生长状态良好,人肺癌细胞围绕肺成纤维细胞成串状生长,与二维单层培养模式的伸展状态明显不同。结论以基于微流控芯片技术的三维细胞培养模式为模型进行肿瘤生物学方面的研究,能够比较真实的反映肿瘤细胞的生物学特征,为微流控芯片技术在医学和生物学研究方面提供了一个新思路。
许志贇李恩成张黎川应力王琪
关键词:细胞培养微流控芯片肺癌人肺成纤维细胞
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