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283 related items for PubMed ID: 18302417
21. Real-time polymerase chain reaction microRNA detection based on enzymatic stem-loop probes ligation. Li J, Yao B, Huang H, Wang Z, Sun C, Fan Y, Chang Q, Li S, Wang X, Xi J. Anal Chem; 2009 Jul 01; 81(13):5446-51. PubMed ID: 19469541 [Abstract] [Full Text] [Related]
22. Association of microRNA-34a overexpression with proliferation is cell type-dependent. Dutta KK, Zhong Y, Liu YT, Yamada T, Akatsuka S, Hu Q, Yoshihara M, Ohara H, Takehashi M, Shinohara T, Masutani H, Onuki J, Toyokuni S. Cancer Sci; 2007 Dec 01; 98(12):1845-52. PubMed ID: 17888029 [Abstract] [Full Text] [Related]
23. miR-145 inhibits breast cancer cell growth through RTKN. Wang S, Bian C, Yang Z, Bo Y, Li J, Zeng L, Zhou H, Zhao RC. Int J Oncol; 2009 May 01; 34(5):1461-6. PubMed ID: 19360360 [Abstract] [Full Text] [Related]
24. MicroRNA-18a prevents estrogen receptor-alpha expression, promoting proliferation of hepatocellular carcinoma cells. Liu WH, Yeh SH, Lu CC, Yu SL, Chen HY, Lin CY, Chen DS, Chen PJ. Gastroenterology; 2009 Feb 01; 136(2):683-93. PubMed ID: 19027010 [Abstract] [Full Text] [Related]
25. Diagnostic assay based on hsa-miR-205 expression distinguishes squamous from nonsquamous non-small-cell lung carcinoma. Lebanony D, Benjamin H, Gilad S, Ezagouri M, Dov A, Ashkenazi K, Gefen N, Izraeli S, Rechavi G, Pass H, Nonaka D, Li J, Spector Y, Rosenfeld N, Chajut A, Cohen D, Aharonov R, Mansukhani M. J Clin Oncol; 2009 Apr 20; 27(12):2030-7. PubMed ID: 19273703 [Abstract] [Full Text] [Related]
26. Bioluminescence DNA hybridization assay for Plasmodium falciparum based on the photoprotein aequorin. Doleman L, Davies L, Rowe L, Moschou EA, Deo S, Daunert S. Anal Chem; 2007 Jun 01; 79(11):4149-53. PubMed ID: 17477506 [Abstract] [Full Text] [Related]
27. Tumor-specific adenovirus-mediated PUMA gene transfer using the survivin promoter enhances radiosensitivity of breast cancer cells in vitro and in vivo. Wang R, Wang X, Li B, Lin F, Dong K, Gao P, Zhang HZ. Breast Cancer Res Treat; 2009 Sep 01; 117(1):45-54. PubMed ID: 18791823 [Abstract] [Full Text] [Related]
28. Genetic variations of microRNAs in human cancer and their effects on the expression of miRNAs. Wu M, Jolicoeur N, Li Z, Zhang L, Fortin Y, L'Abbe D, Yu Z, Shen SH. Carcinogenesis; 2008 Sep 01; 29(9):1710-6. PubMed ID: 18356149 [Abstract] [Full Text] [Related]
29. Detection of microRNAs in frozen tissue sections by fluorescence in situ hybridization using locked nucleic acid probes and tyramide signal amplification. Silahtaroglu AN, Nolting D, Dyrskjøt L, Berezikov E, Møller M, Tommerup N, Kauppinen S. Nat Protoc; 2007 Sep 01; 2(10):2520-8. PubMed ID: 17947994 [Abstract] [Full Text] [Related]
30. Carrier-resolved technology for homogeneous and multiplexed DNA assays in a 'one-pot reaction'. Li H, Lau C, Lu J. Analyst; 2008 Sep 01; 133(9):1229-36. PubMed ID: 18709199 [Abstract] [Full Text] [Related]
31. Highly sensitive determination of microRNA using target-primed and branched rolling-circle amplification. Cheng Y, Zhang X, Li Z, Jiao X, Wang Y, Zhang Y. Angew Chem Int Ed Engl; 2009 Sep 01; 48(18):3268-72. PubMed ID: 19219883 [Abstract] [Full Text] [Related]
32. Detection of a thousand copies of miRNA without enrichment or modification. Dodgson BJ, Mazouchi A, Wegman DW, Gradinaru CC, Krylov SN. Anal Chem; 2012 Jul 03; 84(13):5470-4. PubMed ID: 22697284 [Abstract] [Full Text] [Related]
33. MicroRNA profile analysis of human prostate cancers. Tong AW, Fulgham P, Jay C, Chen P, Khalil I, Liu S, Senzer N, Eklund AC, Han J, Nemunaitis J. Cancer Gene Ther; 2009 Mar 03; 16(3):206-16. PubMed ID: 18949015 [Abstract] [Full Text] [Related]
34. Sensitive detection of microRNAs with hairpin probe-based circular exponential amplification assay. Wang GL, Zhang CY. Anal Chem; 2012 Aug 21; 84(16):7037-42. PubMed ID: 22834952 [Abstract] [Full Text] [Related]
35. Detection of microRNAs using electrocatalytic nanoparticle tags. Gao Z, Yang Z. Anal Chem; 2006 Mar 01; 78(5):1470-7. PubMed ID: 16503596 [Abstract] [Full Text] [Related]
36. An investigation of microRNAs mapping to breast cancer related genomic gain and loss regions. Selcuklu SD, Yakicier MC, Erson AE. Cancer Genet Cytogenet; 2009 Feb 01; 189(1):15-23. PubMed ID: 19167607 [Abstract] [Full Text] [Related]
37. MicroRNA-196a targets annexin A1: a microRNA-mediated mechanism of annexin A1 downregulation in cancers. Luthra R, Singh RR, Luthra MG, Li YX, Hannah C, Romans AM, Barkoh BA, Chen SS, Ensor J, Maru DM, Broaddus RR, Rashid A, Albarracin CT. Oncogene; 2008 Nov 06; 27(52):6667-78. PubMed ID: 18663355 [Abstract] [Full Text] [Related]
38. High miR-21 expression in breast cancer associated with poor disease-free survival in early stage disease and high TGF-beta1. Qian B, Katsaros D, Lu L, Preti M, Durando A, Arisio R, Mu L, Yu H. Breast Cancer Res Treat; 2009 Sep 06; 117(1):131-40. PubMed ID: 18932017 [Abstract] [Full Text] [Related]
39. Tumor-specific RNAi targeting eIF4E suppresses tumor growth, induces apoptosis and enhances cisplatin cytotoxicity in human breast carcinoma cells. Dong K, Wang R, Wang X, Lin F, Shen JJ, Gao P, Zhang HZ. Breast Cancer Res Treat; 2009 Feb 06; 113(3):443-56. PubMed ID: 18327707 [Abstract] [Full Text] [Related]
40. Exponential amplification for chemiluminescence resonance energy transfer detection of microRNA in real samples based on a cross-catalyst strand-displacement network. Bi S, Zhang J, Hao S, Ding C, Zhang S. Anal Chem; 2011 May 15; 83(10):3696-702. PubMed ID: 21446757 [Abstract] [Full Text] [Related] Page: [Previous] [Next] [New Search]