A Nakagawara
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Explore the profile of A Nakagawara including associated specialties, affiliations and a list of published articles.
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Articles
203
Citations
3236
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Recent Articles
1.
Tatsumi Y, Takano R, Islam M, Yokochi T, Itami M, Nakamura Y, et al.
Cell Death Dis
. 2015 Jan;
6:e1607.
PMID: 25611382
BNIP2 and Cdc42GAP homology (BCH) motif-containing molecule at the carboxyl-terminal region 1 (BMCC1) gene is highly expressed in patients with favorable neuroblastoma (NB). It encodes a 340-kDa protein with a...
2.
Shimozato O, Waraya M, Nakashima K, Souda H, Takiguchi N, Yamamoto H, et al.
Oncogene
. 2014 Jun;
34(15):1949-60.
PMID: 24882578
Although CD133 has been considered to be a molecular marker for cancer stem cells, its functional roles in tumorigenesis remain unclear. We here examined the molecular basis behind CD133-mediated signaling....
3.
Itakura M, Terashima Y, Shingyoji M, Yokoi S, Ohira M, Kageyama H, et al.
Br J Cancer
. 2013 Aug;
109(5):1100-8.
PMID: 23922113
Background: Chemokines and chemokine receptors not only have significant roles in cancer metastasis and tumorigenesis but also act as antitumour agents. The interaction between the Crk-like adaptor protein (CrkL), which...
4.
Yu F, Gao W, Yokochi T, Suenaga Y, Ando K, Ohira M, et al.
Oncogene
. 2013 Jul;
33(20):2601-9.
PMID: 23851507
RUNX3, a runt-related transcription factor, has a crucial role in dorsal root ganglion neurogenesis. Recent studies have suggested that RUNX3 acts as a tumor suppressor in stomach, colon and breast...
5.
Ozaki T, Wu D, Sugimoto H, Nagase H, Nakagawara A
Cell Death Dis
. 2013 Apr;
4:e610.
PMID: 23618908
Runt-related transcription factor 2 (RUNX2) is the best known as an essential protein for osteoblast differentiation. In this study, we have found for the first time that RUNX2 acts as...
6.
Shum C, Lau S, Tsoi L, Chan L, Yam J, Ohira M, et al.
Oncogene
. 2012 Oct;
32(35):4086-99.
PMID: 23045286
Neuroblastoma (NB) is an embryonal tumor and possesses a unique propensity to exhibit either a spontaneous regression or an unrestrained growth. However, the underlying mechanism for this paradoxical clinical outcome...
7.
Schleiermacher G, Mosseri V, London W, Maris J, Brodeur G, Attiyeh E, et al.
Br J Cancer
. 2012 Sep;
107(8):1418-22.
PMID: 22976801
Background: In the INRG dataset, the hypothesis that any segmental chromosomal alteration might be of prognostic impact in neuroblastoma without MYCN amplification (MNA) was tested. Methods: The presence of any...
8.
Kimura M, Tagawa M, Takenaga K, Nakagawara A, Horitsu K, Yamaguchi T, et al.
Int J Oncol
. 2011 May;
10(4):775-8.
PMID: 21533444
Human pancreatic cancer cells (AsPC-1) expressing the herpes simplex virus-thymidine kinase (HSV-TK) gene were inoculated into nude mice and ganciclovir (GCV) was administrated for the treatment. At the initial course...
9.
Takenobu H, Shimozato O, Nakamura T, Ochiai H, Yamaguchi Y, Ohira M, et al.
Oncogene
. 2010 Sep;
30(1):97-105.
PMID: 20818439
CD133 (prominin-1) is a transmembrane glycoprotein expressed on the surface of normal and cancer stem cells (tumor-initiating cells), progenitor cells, rod photoreceptor cells and a variety of epithelial cells. Although...
10.
Ochiai H, Takenobu H, Nakagawa A, Yamaguchi Y, Kimura M, Ohira M, et al.
Oncogene
. 2010 Mar;
29(18):2681-90.
PMID: 20190806
Recent advances in neuroblastoma (NB) research addressed that epigenetic alterations such as hypermethylation of promoter sequences, with consequent silencing of tumor-suppressor genes, can have significant roles in the tumorigenesis of...