Indium-Labeling of siRNA for Small Animal SPECT Imaging
Author:
Publisher
Springer New York
Link
http://link.springer.com/content/pdf/10.1007/978-1-4939-3148-4_6
Reference14 articles.
1. Dickerson EB, Blackburn WH, Smith MH, Kapa LB, Lyon LA, McDonald JF (2010) Chemosensitization of cancer cells by siRNA using targeted nanogel delivery. BMC Cancer 10:10
2. Huang YH, Bao Y, Peng W, Goldberg M, Love K, Bumcrot DA, Cole G, Langer R, Anderson DG, Sawicki JA (2009) Claudin-3 gene silencing with siRNA suppresses ovarian tumor growth and metastasis. Proc Natl Acad Sci U S A 106(9):3426–3430
3. Shahzad MM, Lu C, Lee JW, Stone RL, Mitra R, Mangala LS, Lu Y, Baggerly KA, Danes CG, Nick AM, Halder J, Kim HS, Vivas-Mejia P, Landen CN, Lopez-Berestein G, Coleman RL, Sood AK (2009) Dual targeting of EphA2 and FAK in ovarian carcinoma. Cancer Biol Ther 8(11):1027–1034
4. Goldberg MS, Xing D, Ren Y, Orsulic S, Bhatia SN, Sharp PA (2011) Nanoparticle-mediated delivery of siRNA targeting Parp1 extends survival of mice bearing tumors derived from Brca1-deficient ovarian cancer cells. Proc Natl Acad Sci U S A 108(2):745–750
5. Vlahov I, Leamon CP (2012) Engineering folate-drug conjugates to target cancer: from chemistry to clinic. Bioconjug Chem 23:1357–1369
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