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miR-145和miR-93对泌乳素腺瘤耐药的研究进展
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作者 李家琪 史信康 +2 位作者 周满鑫 唐涛 叶锋 《医药前沿》 2024年第4期39-41,共3页
泌乳素腺瘤是最常见的功能性垂体肿瘤,临床表现为高催乳素血症、肿瘤局部压迫症状、垂体卒中、多激素混合腺瘤.目前指南推荐,多巴胺激动剂(DA)是首选治疗药物,有效率为67%,但约20%的垂体泌乳素瘤会出现耐药现象.微小核糖核酸(miRNA)参... 泌乳素腺瘤是最常见的功能性垂体肿瘤,临床表现为高催乳素血症、肿瘤局部压迫症状、垂体卒中、多激素混合腺瘤.目前指南推荐,多巴胺激动剂(DA)是首选治疗药物,有效率为67%,但约20%的垂体泌乳素瘤会出现耐药现象.微小核糖核酸(miRNA)参与肿瘤的发生发展、侵袭以及药物抵抗等过程.近年来,miRNA在耐药溴隐亭催乳素瘤中的表达知之甚少.本文系统阐述miRNA的生物学特征、生物学功能以及CircOMA1-miR-145-5P-TPT_(1)轴和lncRNA H19-miR-93-ATG7轴在垂体腺瘤中耐药的调控网络,为基础研究及临床提供参考. 展开更多
关键词 垂体神经内分泌肿瘤 多巴胺受体激动剂 耐药性 miR-93 MIR-145
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Efficient Construction of Quinoxaline Derivatives by Cesium Hydroxide-Catalyzed Mild Aerobic Annulation Reaction
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作者 Huang Zhenru Jin Guoshun +5 位作者 Chen Tianyu Feng Bin shi xinkang Chen Minfang Hua Lusheng Xu Qing 《有机化学》 SCIE CAS CSCD 北大核心 2024年第9期2933-2942,共10页
Simple inorganic base cesium hydroxide is found to be the best catalyst for aerobic annulation reaction of o-phenylenediamine andα-hydroxy-2-phenylacetophenone in constructing the quinoxaline skeleton,i.e.,catalytic ... Simple inorganic base cesium hydroxide is found to be the best catalyst for aerobic annulation reaction of o-phenylenediamine andα-hydroxy-2-phenylacetophenone in constructing the quinoxaline skeleton,i.e.,catalytic amount of cesium hydroxide can catalyze the reaction efficiently under mild conditions of room temperature in air atmosphere.This method is extendable to a series of vicinal diamines andα-hydroxyl ketones,thus having a relatively broad substrate scope.As no transition metal catalyst is required and cesium hydroxide highly water-soluble,cesiume can be effectively removed by washing with water,the prodcuts can be obtained without cesium and transition metal residue contamination.This reaction requires no other stoichiometric oxidants but the readily available and convenient air as the oxidant,and the only byproduct is water,hence a transition metal-free,mild and efficient,green and practical approach for efficient construction of the quinoxaline derivatives is provided. 展开更多
关键词 transition metal-free cesium hydroxide catalysis quinoxaline skeleton air room temperature
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