[1]位振清 刘世亮 综述 王任直 审校.垂体肿瘤和microRNAs[J].中国临床神经外科杂志,2015,(06):378-380.[doi:10.13798/j.issn.1009-153X.2015.06.023]
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垂体肿瘤和microRNAs()
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《中国临床神经外科杂志》[ISSN:1009-153X/CN:42-1603/TN]

卷:
期数:
2015年06期
页码:
378-380
栏目:
论著
出版日期:
2015-06-30

文章信息/Info

文章编号:
1009-153X(2015)06-0378-03
作者:
位振清 刘世亮 综述 王任直 审校
100730,北京协和医院神经外科[位振清(现大连医科大学附属一院工作)、王任直];116011 辽宁,大连医科大学附属一院放射科(刘世亮)
通讯作者:王任直,E-mail:wangrz@126.com
关键词:
垂体肿瘤微小RNA肿瘤标记物
分类号:
R 739.41
DOI:
10.13798/j.issn.1009-153X.2015.06.023
文献标志码:
B

参考文献/References:

[1] Lee RC,Feinbaum RL,Ambros V. The C. elegans hetero- chronic gene lin-4encodes small RNAs with antisense complementarity to lin-14 [J]. Cell, 1993, 75(5): 843-854.
[2] Zhang J, Guo H, Qian G, et al. miR-145, a new regulator of the DNA fragmentation factor-45 (DFF45)-mediated apop- totic network [J]. Mol Cancer, 2010, 9: 211.
[3] Zampetaki A, Willeit P, Drozdov I, et al. Profiling of circula- ting microRNAs: from single biomarkers to re-wired net- works [J]. Cardiovasc Res, 2012, 93(4): 555-562.
[4] Hergenreider E, Heydt S, Treguer K, et al. Atheroprotective communication between endothelial cells and smooth muscle cells through miRNAs [J]. Nat Cell Biol, 2012, 14 (3): 249-256.
[5] Polimeni A, De Rosa S, Indolfi C. Vascular miRNAs after balloon angioplasty [J]. Trends Cardiovasc Med, 2013, 23 (1): 9-14.
[6] Kuwabara Y, Ono K, Horie T, et al. Increased microRNA-1 and microRNA-133a levels in serum of patients with car- diovascular disease indicate the existence of myocardial damage [J]. Circ Cardiovasc Genet, 2011, 4(4): 446-454.
[7] Silva J, García V, Zaballos á, et al. Vesicle-related micro- RNAs in plasma of nonsmall cell lung cancer patients and correlation with survival [J]. Eur Respir J, 2011, 37(3): 617-623.
[8] Bottoni A, Zatelli MC, Ferracin M, et al. Identification of differentially expressed microRNAs by microarray: a poss- ible role for microRNA genes in pituitary adenomas [J]. J Cell Physiol, 2007, 210(2): 370-377.
[9] Stilling G, Sun Z, Zhang S, et al. MicroRNA expression in ACTH-producing pituitary tumors: up-regulation of micro- RNA-122 and -493 in pituitary carcinomas [J]. Endocrine, 2010, 38(1): 67-75.
[10] Qian ZR, Asa SL, Siomi H, et al. Overexpression of HMGA2 relates to reduction of the let-7 and its relationship to clini- copathological features in pituitary adenomas [J]. Mod Pa- thol, 2009, 22(3): 431-441.
[11] Palumbo T, Faucz FR, Azevedo M, et al. Functional screen analysis reveals miR-26b and miR-128 as central regula- tors of pituitary somatomammotmphic tumor growth through activation of the PTEN-AKT pathway [J]. Oncogene, 2013, 32(13): 1651-1659.
[12] Gentilin E, Tagliati F, Filieri C, et al. miR-26a plays an important role in cell cycle regulation in ACTH-secreting pituitary adenomas by modulating protein kinase Cδ [J]. Endocrinology, 2013, 154(5): 1690-1700.
[13] Trivellin G, Butz H, Delhove J. MicroRNA miR-107 is overexpressed in pituitary adenomas and inhibits the expression of aryl hydrocarbon receptor-interacting protein in vitro [J]. Am J Physiol Endocrinol Metab, 2012, 303(6): E708-E719.
[14] Chen PS, Su JL, Cha ST, et al. miR-107 promotes tumor progression by targeting the let-7 microRNA in mice and humans [J]. J Clin Invest, 2011, 121(9): 3442-3455.
[15] Butz H, Likó I, Czirják S, et al. MicroRNA profile indicates downregulation of the TGFβ pathway in sporadic non- functioning pituitary adenomas [J]. Pituitary, 2011, 14(2): 112-124.
[16] Mao ZG, He DS, Zhou J, et al. Differential expression of microRNAs in GH-secreting pituitary adenomas [J]. Diagn Pathol, 2010, 5: 79.
[17] D'Angelo D, Palmieri D, Mussnich P, et al. Altered micro- RNA expression profile in human pituitary GH adenomas: down-regulation of miRNA targeting HMGA1, HMGA2, and E2F1 [J]. J Clin Endocrinol Metab, 2012, 97(7): 1128- 1138.
[18] Hu X, Zhang P, Shang A, et al. A primary proteomic analy- sis of serum from patients with nonfunctioning pituitary adenoma [J]. J Int Med Res, 2012, 40(1): 95-104.
[19] Zhou KY, Jin HH, Bai ZQ, et al. Pituitary adenoma biomar- kers identified using proteomic fingerprint technology [J]. Asian Pac J Cancer Prev, 2012, 13(8): 4093-4095.
[20] Neidert MC, Sze L, Zwimpfer C, et al. Soluble a-klotho: a novel serum biomarker for the activity of GH-producing pituitary adenomas [J]. Eur J Endocrinol, 2013, 168(4): 575-583.

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更新日期/Last Update: 2015-06-30