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Down Regulation of Survivin Gene and Up Regulation of p53 Gene expression by siRNA Induces Apoptosis in human Hepatocellular Carcinoma cell Line HepG2
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作者 yun-hua lu Cong Tang +1 位作者 Wei Wang Tao Xi 《Journal of Biomedical Science and Engineering》 2009年第1期57-62,共6页
Survivin gene may be a good target for cancer gene therapy because it is over expressed in a variety of human tumors including human hepatocellular carcinoma but not in differen- tiated adult tissues. To explore the e... Survivin gene may be a good target for cancer gene therapy because it is over expressed in a variety of human tumors including human hepatocellular carcinoma but not in differen- tiated adult tissues. To explore the effects of the siRNA of survivin gene inducing apoptosis in human hepatocellular cancer cells, three siRNAs cpusiRNA1, cpusiRNA2 and cpusiRNA3 were designed and transferred into human hepatocellular carcinoma cell line HepG2 (HepG2) by lipofection. MTT test showed that the growth of HepG2 decreased when it was transfected with 25nM, 50nM, 100nM, 150nM, 200nM, 400nM siRNA respectively after 48 hours. And the change of mRNA and protein of survivin gene and p53 gene had been detected by RT-PCR and Western blot. Cells presented an increase in apoptosis index was assayed by flow cytometry. Small interfering RNA can exert a knockdown of survivin gene expression and up regulation of p53 gene to induce apoptosis and to inhibit the growth of HepG2. 展开更多
关键词 RNAI SURVIVIN GENE p53 GENE APOPTOSIS HEPG2
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含四芳基咪唑结构的热重排气体分离膜的制备与性能研究 被引量:1
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作者 李品儒 肖国勇 +3 位作者 陈元林 鲁云华 李琳 王同华 《高分子学报》 SCIE CAS CSCD 北大核心 2024年第2期212-221,共10页
合成了一种新型含四芳基咪唑结构的二胺单体4,4’-(4,5-二苯基-(3-羟基-4-氨基苯氧基)苯基)咪唑(PMAPPP),然后分别与5种二酐单体聚合,经热酰亚胺化处理得到含羟基聚酰亚胺(HPI)薄膜.接着,对这些薄膜进行450℃热处理,得到相应的热重排(TR... 合成了一种新型含四芳基咪唑结构的二胺单体4,4’-(4,5-二苯基-(3-羟基-4-氨基苯氧基)苯基)咪唑(PMAPPP),然后分别与5种二酐单体聚合,经热酰亚胺化处理得到含羟基聚酰亚胺(HPI)薄膜.接着,对这些薄膜进行450℃热处理,得到相应的热重排(TR)膜材料,并对薄膜进行了结构与性能表征.结果表明,刚性大体积四芳基咪唑结构的引入使HPI膜表现出优异的热性能和力学性能,玻璃化转变温度在263~361℃,拉伸强度在98.4~118.3 MPa.热重排后,TR膜的气体分离性能得到了显著提高.其中,TR(PMAPPP-6FDA)的气体渗透性能最佳,即H_(2)(269.31 Barrer)、CO_(2)(284.25 Barrer)、O_(2)(62.75 Barrer)和N_(2)(10.67 Barrer),CO_(2)/N_(2)和O_(2)/N_(2)的理想选择性分别为25.24和5.88,且O_(2)/N_(2)的分离性能超过2008 Robeson上限.因此,将四芳基咪唑结构引入到HPI分子结构中,可以获得一类气体分离性能优异的TR膜材料. 展开更多
关键词 四芳基咪唑结构 聚酰亚胺 热重排 气体分离膜
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