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Takashi Katsumata

Publications and source records attributed to Takashi Katsumata.

3 recordsLinked to original sources

Wnt11 facilitates embryonic stem cell differentiation to Nkx2.5-positive cardiomyocytes.

Wnt signaling plays a crucial role in the control of morphogenesis in several tissues. Herein, we describe the role of Wnt11 during cardiac differentiation of embryonic stem cells. First, we examined the expression profile of Wnt11 during the course of differentiation in embryoid bodies, and then compared its expression in retinoic acid-treated embryoid bodies with that in untreated. In differentiating embryoid bodies, Wnt11 expression rose along with that of Nkx2.5 expression and continued to increase. When the embryoid bodies were treated with retinoic acid, Wnt11 expression decreased in parallel with the decreased expression of cardiac genes. Further, treatment of embryoid bodies with medium containing Wnt11 increased the expression of cardiac marker genes. Based on these results, we propose that Wnt11 plays an important role for cardiac development by embryoid bodies, and may be a key regulator of cardiac muscle cell proliferation and differentiation during heart development.

Animals↗

[Inhibitory effects of bisphosphonate on vascular calcification].

Recently, it has been hypothesized that vascular calcification is an actively regulated process in which vascular smooth muscle cells (VSMCs) acquire osteoblast-like functions. Bisphosphonates prevent in vitro calcification of VSMCs and probably inhibit phosphate transport by sodium dependent phosphate transporter which plays a key role in VSMCs calcification. The effects of bisphosphonate on VSMCs have important implications for the future management of patients with vascular calcification.

English Abstract↗

[Arterial calcification:animal models].

The clinical significance of arterial calcification will continue to grow as the population ages. There is no appropriate animal model required to develop drugs to prevent vascular calcification. Several murine knockout models of some genes have led to new insights into the pathogenesis of arterial calcification. Good animal models can contribute to research progress in this area.

English Abstract↗