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Items: 1 to 20 of 83

1.

In their own words: interviews with Cell Cycle. The first knockout mouse model of retinoblastoma.

Dyer MA.

Cell Cycle. 2009 Jul 15;8(14):2145. Epub 2009 Jul 15. No abstract available.

PMID:
19574732
2.

The RB protein family in retinal development and retinoblastoma: new insights from new mouse models.

Bremner R, Chen D, Pacal M, Livne-Bar I, Agochiya M.

Dev Neurosci. 2004;26(5-6):417-34. Review.

PMID:
15855771
3.

Cooperation between Rb and Arf in suppressing mouse retinoblastoma.

Conkrite K, Sundby M, Mu D, Mukai S, MacPherson D.

J Clin Invest. 2012 May;122(5):1726-33. doi: 10.1172/JCI61403. Epub 2012 Apr 9.

4.

p107 is a suppressor of retinoblastoma development in pRb-deficient mice.

Robanus-Maandag E, Dekker M, van der Valk M, Carrozza ML, Jeanny JC, Dannenberg JH, Berns A, te Riele H.

Genes Dev. 1998 Jun 1;12(11):1599-609.

5.

Expression of p14ARF, MDM2, and MDM4 in human retinoblastoma.

Guo Y, Pajovic S, Gallie BL.

Biochem Biophys Res Commun. 2008 Oct 10;375(1):1-5. doi: 10.1016/j.bbrc.2008.07.055. Epub 2008 Jul 21.

6.

KIF14 as an oncogene in retinoblastoma: a target for novel therapeutics?

Basavarajappa HD, Corson TW.

Future Med Chem. 2012 Nov;4(17):2149-52. doi: 10.4155/fmc.12.158. No abstract available.

PMID:
23190103
7.

Bigh3 silencing increases retinoblastoma tumor growth in the murine SV40-TAg-Rb model.

Allaman-Pillet N, Oberson A, Schorderet DF.

Oncotarget. 2017 Feb 28;8(9):15490-15506. doi: 10.18632/oncotarget.14659.

8.

Compensation by tumor suppressor genes during retinal development in mice and humans.

Donovan SL, Schweers B, Martins R, Johnson D, Dyer MA.

BMC Biol. 2006 May 3;4:14.

9.

The first knockout mouse model of retinoblastoma.

Zhang J, Schweers B, Dyer MA.

Cell Cycle. 2004 Jul;3(7):952-9. Epub 2004 Jul 3.

PMID:
15190215
10.

[The genetic engineering animal models of retinoblastoma].

Yang ZW, Li YP.

Zhonghua Yan Ke Za Zhi. 2006 Jul;42(7):667-70. Review. Chinese.

PMID:
17081434
11.

Lessons from Retinoblastoma: Implications for Cancer, Development, Evolution, and Regenerative Medicine.

Dyer MA.

Trends Mol Med. 2016 Oct;22(10):863-876. doi: 10.1016/j.molmed.2016.07.010. Epub 2016 Aug 23. Review.

12.

Medulloblastoma and retinoblastoma: oncology recapitulates ontogeny.

Romer JT, Curran T.

Cell Cycle. 2004 Jul;3(7):917-9. Epub 2004 Jul 8. Review.

PMID:
15254429
13.

Expression analysis of 6p22 genomic gain in retinoblastoma.

Orlic M, Spencer CE, Wang L, Gallie BL.

Genes Chromosomes Cancer. 2006 Jan;45(1):72-82.

PMID:
16180235
14.

The molecular biology of retinoblastoma.

Brantley MA Jr, Harbour JW.

Ocul Immunol Inflamm. 2001 Mar;9(1):1-8. Review.

PMID:
11262663
15.

Monoallelic but not biallelic loss of Dicer1 promotes tumorigenesis in vivo.

Lambertz I, Nittner D, Mestdagh P, Denecker G, Vandesompele J, Dyer MA, Marine JC.

Cell Death Differ. 2010 Apr;17(4):633-41. doi: 10.1038/cdd.2009.202. Epub 2009 Dec 18.

16.

Loss of p75 neurotrophin receptor expression accompanies malignant progression to human and murine retinoblastoma.

Dimaras H, Coburn B, Pajovic S, Gallie BL.

Mol Carcinog. 2006 May;45(5):333-43.

PMID:
16555252
17.

Cell type-specific effects of Rb deletion in the murine retina.

MacPherson D, Sage J, Kim T, Ho D, McLaughlin ME, Jacks T.

Genes Dev. 2004 Jul 15;18(14):1681-94. Epub 2004 Jul 1.

18.

NK cell-associated antigen expression in retinoblastoma animal model.

Lee EK, Jo DH, Kim JH, Yu YS, Kim KW, Kim JH.

Cancer Invest. 2013 Jan;31(1):67-73. doi: 10.3109/07357907.2012.743554. Epub 2012 Nov 16.

PMID:
23157549
19.

Kif14 overexpression accelerates murine retinoblastoma development.

O'Hare M, Shadmand M, Sulaiman RS, Sishtla K, Sakisaka T, Corson TW.

Int J Cancer. 2016 Oct 15;139(8):1752-8. doi: 10.1002/ijc.30221. Epub 2016 Jun 24.

20.

[Compensatory gene mechanisms can take over in cancer].

Kahl U.

Lakartidningen. 2003 Dec 18;100(51-52):4266-7. Swedish. No abstract available.

PMID:
14756087

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