» Authors » Kazue Tsuji-Takayama

Kazue Tsuji-Takayama

Explore the profile of Kazue Tsuji-Takayama including associated specialties, affiliations and a list of published articles. Areas
Snapshot
Articles 15
Citations 170
Followers 0
Related Specialties
Top 10 Co-Authors
Published In
Affiliations
Soon will be listed here.
Recent Articles
11.
Nakamura S, Suzuki M, Sugimoto A, Tsuji-Takayama K, Yamamoto M, Otani T, et al.
Exp Hematol . 2007 Jan; 35(2):287-96. PMID: 17258077
Objective: Since the existence of mouse naturally occurring CD4(+)CD25(+) T regulatory (Treg) cells was demonstrated, a variety of human Treg subsets have been identified as distinct T cell populations. Here...
12.
Tsuji-Takayama K, Otani T, Inoue T, Nakamura S, Motoda R, Kibata M, et al.
Exp Hematol . 2006 Sep; 34(10):1323-32. PMID: 16982325
Objective: During embryonic development murine erythropoiesis occurs in two waves by producing first primitive erythroid cells (EryPs) and then definitive erythroid cells (EryDs). Erythropoietin (EPO) signaling is compared between EryPs...
13.
Otani T, Inoue T, Tsuji-Takayama K, Ijiri Y, Nakamura S, Motoda R, et al.
Exp Hematol . 2005 May; 33(6):632-40. PMID: 15911087
Objective: A variety of hematopoietic lineage cells have been produced from embryonic stem (ES) cells, but their differentiation processes have not been elucidated well, especially from the point of view...
14.
Tsuji-Takayama K, Inoue T, Ijiri Y, Otani T, Motoda R, Nakamura S, et al.
Biochem Biophys Res Commun . 2004 Sep; 323(1):86-90. PMID: 15351705
The de novo methylation activity is essential for embryonic development as well as embryonic stem (ES) cell differentiation, where the intensive and extensive DNA methylation was detected. In this study,...
15.
Otani T, Nakamura S, Inoue T, Ijiri Y, Tsuji-Takayama K, Motoda R, et al.
Exp Hematol . 2004 Jul; 32(7):607-13. PMID: 15246156
Objective: In this study, we analyzed murine primitive erythropoiesis by coculturing Flk-1+ ES-derived cells with OP9 to find efficient culture conditions for erythroid cell induction. We utilized a nonserum culture...