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PIK3CA基因在妇科肿瘤中的突变情况及其与患者中位生存时间的关系 被引量:1
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作者 郭苑莉 陶莹 +4 位作者 廖凤儿 吴敏敏 肖培洪 杜静 杨文生 《中国医药导报》 CAS 2023年第14期25-28,共4页
目的探讨PIK3CA在妇科肿瘤中的基因突变情况,并分析其与患者生存时间的关系。方法选取2017年1月至2021年1月广东药科大学附属第一医院妇科收治的110例妇科肿瘤患者的肿瘤组织样本,其中子宫内膜癌30例、宫颈癌40例、卵巢癌40例。检测110... 目的探讨PIK3CA在妇科肿瘤中的基因突变情况,并分析其与患者生存时间的关系。方法选取2017年1月至2021年1月广东药科大学附属第一医院妇科收治的110例妇科肿瘤患者的肿瘤组织样本,其中子宫内膜癌30例、宫颈癌40例、卵巢癌40例。检测110例妇科肿瘤患者PIK3CA基因突变,分析其与患者预后的关系。结果110例患者中PIK3CA基因突变61例(55.45%),最常见的碱基突变为:c.G1633A。宫颈癌和卵巢癌中PIk3CA突变率较高,分别为57.5%和67.5%。宫颈癌和卵巢癌患者癌组织与癌旁组织PIK3CA基因突变发生率比较,差异有统计学意义(P<0.05)。宫颈癌和卵巢癌PIK3CA突变型患者生存时间短于PIK3CA野生型,差异有高度统计学意义(P<0.01);子宫内膜癌PIK3CA突变型与野生型比较,差异无统计学意义(P>0.05)。结论在妇科肿瘤中存在PIk3CA基因突变,其中在卵巢癌和宫颈癌中尤为多见,并与患者生存时间有密切关系。 展开更多
关键词 PIK3CA基因 子宫内膜癌 宫颈癌 卵巢癌
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Recent Advances of AIEgens for Targeted Imaging of Subcellular Organelles
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作者 SONG Nan xiao peihong +5 位作者 MA Ke KANG Miaomiao ZHU Wei HUANG Jiachang WANG Dong TANG Ben Zhong 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2021年第1期52-65,共14页
Fluorescence imaging based on luminogens with aggregation-induced emission(AIE)effect has drawn great attention in recent two decades,due to their superior advantages to overcome the technical difficulties.Thus,the AI... Fluorescence imaging based on luminogens with aggregation-induced emission(AIE)effect has drawn great attention in recent two decades,due to their superior advantages to overcome the technical difficulties.Thus,the AIE-active bioprobes with targeted ability at the subcellular level have been widely investigated to visualize the subcellular structures and monitor the biological processes.Considering the very rapid developments and the significance of selective imaging of subcellular structures,we summarize the recent two-year achievements about the AIEgens for targeted imaging of subcellular organelles including nuclei,membranes,lipid droplets(LDs),endoplasmic reticulum(ER),lysosomes,mitochondria and cytoplasm.The designed protocols and advantages of AIEgens,their mechanisms for targeted staining at organelles and the imaging performance are discussed.These AIE bioprobes exhibit great potentials for early diagnosis and therapeutics of diseases that related to subcellular organelles.Finally,the perspectives about AIEgens for these applications are also discussed. 展开更多
关键词 Aggregation-induced emission Monitoring bioprocess Subcellular organelles Targeted ability THERANOSTICS
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