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E-cadherin、Cyclin D1和Cyclin E在叶绿酸抗细胞恶变中表达研究 被引量:1
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作者 傅娟 蒋义国 +1 位作者 宾晓农 陈学敏 《卫生研究》 CAS CSCD 北大核心 2006年第6期678-681,共4页
目的研究叶绿酸干预反式-7,8-二羟-9,10-环氧苯并芘(反式-BPDE)恶性转化人支气管上皮细胞系16HBE中的细胞周期相关基因及蛋白的影响。方法应用半定量RT-PCR技术检测叶绿酸干预反式-BPDE恶性转化细胞中各组细胞E-cadherin基因mRNA表达差... 目的研究叶绿酸干预反式-7,8-二羟-9,10-环氧苯并芘(反式-BPDE)恶性转化人支气管上皮细胞系16HBE中的细胞周期相关基因及蛋白的影响。方法应用半定量RT-PCR技术检测叶绿酸干预反式-BPDE恶性转化细胞中各组细胞E-cadherin基因mRNA表达差异;荧光细胞免疫化学技术检测E-cadherin、Cyclin D1及Cyclin E蛋白水平。结果反式-BPDE诱导恶变细胞组出现E-cadherin基因在mRNA和蛋白水平表达缺失,而经叶绿酸抗转化组该基因表达正常。Cyclin D1、Cyclin E蛋白在正常对照组中表达阴性,而在反式-BPDE恶性转化组中上述两种蛋白呈现高表达,通过叶绿酸干预抗转化组中其表达明显下调。结论叶绿酸抗反式-BPDE致细胞恶变作用与其避免抑癌基因E-cadherin的表达缺失有关。叶绿酸在拮抗反式-BPDE致癌中具有影响细胞周期素CyclinD1和CyclinE表达作用。 展开更多
关键词 叶绿酸反式-7 8-二羟-9 10-环氧苯并芘 细胞周期素 抗恶变
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Preparation, characterization, and antifungal activity of hymexazol-linked chitosan derivatives
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作者 李俨 秦玉坤 +2 位作者 刘松 李鹏程 邢荣娥 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2017年第5期1079-1085,共7页
In this study, three hymexazol-linked chitosan derivatives (HML-CS) were synthesized and their structures confirmed by Fourier transform infrared and elemental analysis. Linkage ratios were measured by high performa... In this study, three hymexazol-linked chitosan derivatives (HML-CS) were synthesized and their structures confirmed by Fourier transform infrared and elemental analysis. Linkage ratios were measured by high performance liquid chromatography. The derivatives' antifungal activity against the plant pathogenic fimgi Rhizoctonia solani CGMCC 3.28 and Gibberella zeae CGMCC 3.42 were investigated at concentrations of 100, 200, and 400 mg/L. These HML-CS derivatives exhibited stronger antifungal activity than CS alone. HML-CS-1 showed the best antifizngal activity against G. zeae, whose antifimgal index was 65.9% at 400 mg/L, and also showed the best antifungal activity against R. solani, whose antifimgal index was 52.7% at 400 mg/L. This conjugation of CS and HML suggested the presence of synergistic effects between the moieties and indicated that these derivatives possessed great potential as novel fungicides and require further research for the development of applications in crop protection. 展开更多
关键词 antifungal activity CHITOSAN linked copolymer HYMEXAZOL
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