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miR-30a-5p/PHTF2 axis regulates the tumorigenesis and metastasis of lung adenocarcinoma
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作者 liJUAN ZHANG QINGYIN MENG +6 位作者 li ZHUANG QUAN GONG XIANDA HUANG XUEQIN li shijuan li GUOQIN WANG XICAI WANG 《BIOCELL》 SCIE 2024年第4期581-590,共10页
Background:Lung adenocarcinoma is a very pervasive histological form of lung cancers,and inhibiting metastasis is crucial for effective treatment.In this investigation,we explored the functional interaction of miR-30a... Background:Lung adenocarcinoma is a very pervasive histological form of lung cancers,and inhibiting metastasis is crucial for effective treatment.In this investigation,we explored the functional interaction of miR-30a-5p and the putative transcription factor 2 of the homeodomain(PHTF2)in dictating the aggressiveness and metastasis of lung adenocarcinoma.Method:We collected clinical samples to evaluate the expression patterns of miR-30a-5p and PHTF2 in lung adenocarcinoma along with normal tissues.Cellular experiments including cell count kit(CCK)-8 growth assay,apoptosis analysis,migration and invasion examinations were performed to assess the aggressiveness of lung adenocarcinoma cells.Furthermore,we examined tumorigenesis and metastasis in a nude mouse model.Results:MiR-30a-5p exhibited downregulation pattern in lung adenocarcinoma samples.Transfection of miR-30a-5p mimic in lung adenocarcinoma cells resulted in the suppression of malignant characteristics.Notably,the administration of miR-30a-5p mimic also curbed tumorigenesis and metastasis of lung adenocarcinoma cells in animal model.Moreover,PHTF2 was found to be a molecular target of miR-30a-5p.Upregulating PHTF2 counteracted the tumor-suppressive effect of the miR-30a-5p mimic.Conclusion:miR-30a-5p functions as a tumor-suppressive molecule while PHTF2 acts as an oncogenic factor in the development and metastasis of lung adenocarcinoma.Therefore,targeting miR-30a-5p and PHTF2 could be developed into a promising therapeutic approach for inhibiting metastasis in lung adenocarcinoma. 展开更多
关键词 Lung cancer Malignant phenotype Tumor formation Tumor suppressor ONCOGENE
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作物生长过程模拟模型与形态三维可视化关键技术研究 被引量:5
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作者 诸叶平 李世娟 李书钦 《智慧农业》 2019年第1期53-66,共14页
针对作物产量形成、品种适应性分析的数字化解析和可视化表达的需求,以提高作物模拟模型的时效性、协同性和真实感为目标,结合物联网技术与作物模拟模型,进行了田间数据实时采集;应用多智能体技术进行了作物协同模拟方法研究与框架设计... 针对作物产量形成、品种适应性分析的数字化解析和可视化表达的需求,以提高作物模拟模型的时效性、协同性和真实感为目标,结合物联网技术与作物模拟模型,进行了田间数据实时采集;应用多智能体技术进行了作物协同模拟方法研究与框架设计;开展了作物生长过程模拟模型及基于作物模型的形态三维可视化关键技术研究,以作物小麦为例,进行了田间试验,阐述了小麦三维形态模拟可视化系统的设计实现并进行了试验验证;构建了Logistic方程模拟小麦叶长、最大叶宽、叶片高度、株高等的生长变化,采用基于曲线、曲面的参数化建模方法和3D图形库OpenGL构造了小麦器官几何模型。结果表明小麦叶长、最大叶宽、叶片高度和株高模拟模型R2值在0.772~0.999之间,回归方程的F值在10.153~4359.236之间,且Sig.小于显著水平0.05,模型显著性较好,模型的拟合度较高。本研究将作物模拟模型结果和形态结构模型有效结合,实现了以小麦为代表的作物在不同管理措施条件下的生长过程三维形态可视化表达,为作物生产数字化系统应用提供了更有效的途径,该技术体系与方法同样适用于玉米、水稻等作物。 展开更多
关键词 作物模拟模型 生长过程数字化 形态可视化 AGENT技术 三维
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