Induction of papillary carcinoma in Chinese tree shrews by lentivirus mediated PyMT overexpression i

来源 :第三届灵长类动物模型学术论坛 | 被引量 : 0次 | 上传用户:hhl20020922
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
  Tree shrew is an attractive experimental animal model for human breast cancer.It is important to establish a high-efficiency tree shrew breast cancer model for etiology research and drug development.Our previous studies suggest that 7,12-dimethylbenz(a)anthracene(DMBA)and medroxyprogesterone acetate(MPA)induce breast tumors in tree shrews with a low frequency(<50%)and long latency(~7-month).In this study,we tried to induce mammary tumors in tree shrew by specifically injection of lentivirus expressing the PyMT oncogene into mammary ducts.Most tree shrews developed mammary tumors with a latency of about three weeks.Papillary carcinoma is the predominant tumor type except one case of invasive ductual carcinoma.One case showed lymph node and lung metastasis.Interestingly,the expression levels of phosphorylated AKT,ERK and STAT3 are elevated only in a subset of PyMT-induced mammary tumors,but not all tumors.Finally,the growth of PyMT-induced tree shrew mammary tumors were significantly inhibited by cisplatin and epidoxorubicin,two routinely used chemotherapeutic drugs in clinic.Epidoxorubicin showed a better therapeutic effect and lower toxicity than ciaplatin in this model.Therefore,we conclude that PyMT-induced tree shrew mammary tumor model may be suitable for breast cancer research and drug development in the future due to its high efficiency and short latency.
其他文献
目前在许多非磁性半导体中观察到了反常磁阻效应,例如半金属铋,石墨烯,砷化镓,锑化铟,和硅[1].和传统的磁性材料相比,研究非磁性器件的磁阻效应有以下两个优点:一是在非磁性
会议
近年来,磁致应变效应由于其巨大的应用价值得到了广泛的关注.研究表明,磁弹性相变产生的磁致应变相比于磁结构相变通常具有较好的恢复性[1-3].然而,有些磁弹性相变仍然具有临
会议
半导体是目前电子领域的主体材料,因此对其电子输运行为的调控自然也是人们一直以来关注的热点[1].自旋电子学中通过在半导体中产生自旋流的方式,可以实现新的电子输运行为.
会议
  In vertebrate inner ears,sensory patches,which containing hair cells and supporting cells,are essential for hearing and balance functions.How the stereotypi
会议
近年来,因为在高密度磁记录上的潜在应用价值,垂直耦合软-硬磁纳米两相复合薄膜受到广泛关注[1].对磁记录而言,引入超短激光脉冲辅助写入,可进一步降低瞬态矫顽力并显著提高
会议
The magnetic multilayered thin films have drawn much attention in the past several decades owing to their applications in the field of magnetic storage and spin
会议
配位化合物的构筑和分子磁性的研究是目前配位化学研究的热点。叠氮阴离子fN,’)和二氰胺阴离子(N(CN))冈其多变的桥联配位方式、聚合结构和磁行为而受到广泛关注。我们采用一
该文针对由采油污水所生成的含油污泥难于处理的现状,以中原油田文一污污水站所产生的含油污泥为研究对象,用固化法对其进行固化。并对固化产物的强度及环境安全性能进行评价,对
如何实现皮秒、飞秒级的磁化翻转速度是现代技术磁学多年来的追求目标.然而传统的磁场或电流驱动磁化翻转一般需要纳秒量级的翻转时间,最优设计模式下的垂直磁场操控模式也需
会议
干旱和半干旱生态系统是一类非常重要的生态系统类型,它覆盖着世界陆地面积的1/3,储存着>30%的全球有机碳含量,但该生态系统较为脆弱,对气候变化和人类活动较为敏感,极易发生退