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Dive into the research topics where Satsuki Sakaguchi is active.

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Featured researches published by Satsuki Sakaguchi.


Circulation | 2000

Inhibition of Rho-Associated Kinase Results in Suppression of Neointimal Formation of Balloon-Injured Arteries

Naoki Sawada; Hiroshi Itoh; Koji Ueyama; Jun Yamashita; Kentaro Doi; Tae Hwa Chun; Mayumi Inoue; Ken Masatsugu; Takatoshi Saito; Yasutomo Fukunaga; Satsuki Sakaguchi; Hiroshi Arai; Nobuhisa Ohno; Masashi Komeda; Kazuwa Nakao

BACKGROUND Rho-associated kinase (ROCK), an effector of small GTPase Rho, regulates vascular tone via a calcium sensitization mechanism and plays a key role in the pathogenesis of hypertension. However, its role in vascular growth remains unclear. METHODS AND RESULTS Y-27632, a specific ROCK inhibitor, and the overexpression of dominant-negative ROCK suppressed the mitogen-induced DNA synthesis of cultured vascular smooth muscle cells (VSMCs), which indicates the essential role of ROCK in the control of VSMC proliferation in vitro. Y-27632 also suppressed the chemotaxis of VSMCs. Male Wistar rats were systemically given Y-27632 (35 to 70 mg. kg(-1). day(-1)) through an intraperitoneal infusion. The neointimal formation of balloon-injured carotid arteries was significantly suppressed in Y-27632-treated rats (intima/media ratio, 0.22+/-0.02) compared with vehicle-treated rats (intima/media ratio, 0.92+/-0.21) or hydralazine-treated rats with a similar blood pressure decrease (intima/media ratio, 1.03+/-0.15). The phosphorylation of myosin phosphatase and myosin light chain was elevated in injured arteries in a Y-27632-sensitive manner, indicating the augmentation of ROCK activity in neointimal formation. The downregulation of the cyclin-dependent kinase inhibitor p27(kip1) in injured vessels was reversed by Y-27632 treatment, reflecting the antiproliferative effect of ROCK inhibition in vivo. CONCLUSIONS We conclude that ROCK plays a key role in the process of neointimal formation after balloon injury. Thus, the inhibition of ROCK may be a potential therapeutic strategy for treating vascular proliferative disorders and hypertension.


Arteriosclerosis, Thrombosis, and Vascular Biology | 2001

Oxidized LDL Regulates Vascular Endothelial Growth Factor Expression in Human Macrophages and Endothelial Cells Through Activation of Peroxisome Proliferator–Activated Receptor-γ

Mayumi Inoue; Hiroshi Itoh; Tokuji Tanaka; Tae Hwa Chun; Kentaro Doi; Yasutomo Fukunaga; Naoki Sawada; Jun Yamshita; Ken Masatsugu; Takatoshi Saito; Satsuki Sakaguchi; Masakatsu Sone; Ken Ichi Yamahara; Takami Yurugi; Kazuwa Nakao

Abstract— Vascular endothelial growth factor (VEGF) has been recognized as an angiogenic factor that induces endothelial proliferation and vascular permeability. Recent studies have also suggested that VEGF can promote macrophage migration, which is critical for atherosclerosis. We have reported that VEGF is remarkably expressed in activated macrophages, endothelial cells, and smooth muscle cells within human coronary atherosclerotic lesions, and we have proposed the significance of VEGF in the progression of atherosclerosis. To clarify the mechanism of VEGF expression in atherosclerotic lesions, we examined the regulation of VEGF expression by oxidized low density lipoprotein (Ox-LDL), which is abundant in atherosclerotic arterial walls. A recent report has revealed that peroxisome proliferator–activated receptor-&ggr; (PPAR&ggr;) is expressed not only in adipocytes but also in monocytes/macrophages and has suggested that PPAR&ggr; may have a role in the differentiation of monocytes/macrophages. Furthermore, 9- and 13-hydroxy-(S)-10,12-octadecadienoic acid (9- and 13-HODE, respectively), the components of Ox-LDL, may be PPAR&ggr; ligands. Therefore, we investigated the involvement of PPAR&ggr; in the regulation of VEGF by Ox-LDL. PPAR&ggr; expression was detected in human monocyte/macrophage cell lines, human acute monocytic leukemia (THP-1) cells, and human coronary artery endothelial cells (HCAECs). Ox-LDL (10 to 50 &mgr;g/mL) upregulated VEGF secretion from THP-1 dose-dependently. VEGF mRNA expression in HCAECs was also upregulated by Ox-LDL. The mRNA expression of VEGF in THP-1 cells and HCAECs was also augmented by PPAR&ggr; activators, troglitazone (TRO), and 15-deoxy-&Dgr;12,14-prostaglandin J2 (PGJ2). In contrast, VEGF expression in another monocyte/macrophage cell line, human histiocytic lymphoma cells (U937), which lacks PPAR&ggr; expression, was not augmented by TRO or PGJ2. We established the U937 cell line, which permanently expresses PPAR&ggr; (U937T). TRO and Ox-LDL augmented VEGF expression in U937T. In addition, VEGF production by THP-1 cells was significantly increased by exposure to 9-HODE and 13-HODE. In conclusion, Ox-LDL upregulates VEGF expression in macrophages and endothelial cells, at least in part, through the activation of PPAR&ggr;.


Circulation | 2002

Accelerated Reendothelialization With Suppressed Thrombogenic Property and Neointimal Hyperplasia of Rabbit Jugular Vein Grafts by Adenovirus-Mediated Gene Transfer of C-Type Natriuretic Peptide

Nobuhisa Ohno; Hiroshi Itoh; Tomoyuki Ikeda; Koji Ueyama; Ken Ichi Yamahara; Kazuhiko Doi; Jun Yamashita; Mayumi Inoue; Ken Masatsugu; Naoya Sawada; Yasutomo Fukunaga; Satsuki Sakaguchi; Masakatsu Sone; Takami Yurugi; Hyun Kook; Masashi Komeda; Kazuwa Nakao

Background—Vein graft disease limits the late results of coronary revascularization. C-type natriuretic peptide (CNP) inhibits the growth of vascular smooth muscle cells. Given the effects of CNP on cGMP cascade, we hypothesized that transfected CNP genes modulate endothelial repair and thrombogenicity in the vein graft. Methods and Results—Autologous rabbit jugular vein grafts were incubated ex vivo in a solution of adenovirus vectors containing CNP gene (Ad.CNP) or Escherichia coli lac Z gene (Ad.LacZ) and then interposed in the carotid artery. Reendothelialization, mural thrombi formation, and intima/media ratio were evaluated on the 14th and 28th postoperative days. More reendothelialization was seen in Ad.CNP-infected grafts than in Ad.LacZ-infected grafts both at 14 days (0.81±0.05 versus 0.30±0.14, P <0.01) and at 28 days (0.96±0.01 versus 0.45±0.08, P <0.001). The mural thrombus area was smaller in Ad.CNP-infected grafts than in Ad.LacZ-infected grafts. Neointimal thickening was significantly suppressed in the Ad.CNP group. The in vitro wound assay with human coronary artery endothelial cells revealed significant potentiation of the wound repair process by CNP and atrial natriuretic peptide administration. Conclusions—Infected Ad.CNP accelerated reendothelialization and suppressed thrombosis and neointimal hyperplasia. The method may potentially prevent vein graft disease in patients undergoing coronary artery revascularization.


Regulatory Peptides | 2003

Shear stress attenuates endothelin and endothelin-converting enzyme expression through oxidative stress.

Ken Masatsugu; Hiroshi Itoh; Tae Haw Chun; Takatoshi Saito; Jun Yamashita; Kentaro Doi; Mayumi Inoue; Naoki Sawada; Yasutomo Fukunaga; Satsuki Sakaguchi; Masakatsu Sone; Kenichi Yamahara; Takami Yurugi; Kazuwa Nakao

Shear stress is known to dilate blood vessels and exert an antiproliferative effect on vascular walls. These effects have partly been ascribed to shear stress-induced regulation of the secretion of endothelium-derived vasoactive substances. In this study, to elucidate the role of shear stress in endothelin production by endothelial cells, we examined the effect of physiological shear stress on the mRNA expression of endothelin-converting enzyme-1 (ECE-1) as well as endothelin-1 (ET-1) in cultured bovine carotid artery endothelial cells (BAECs) and human umbilical vein endothelial cells (HUVECs), using a parallel plate-type flow chamber. ECE-1 mRNA expression was significantly down-regulated by shear stress in an intensity- and time-dependent manner within the physiological range (1.5 to 15 dyn/cm(2)). ET-1 mRNA expression decreased together with ECE-1 mRNA expression. Shear stress at 15 dyn/cm(2) for 30 min induced a significant increase in the intracellular peroxide concentration, and the down-regulation of ECE-1 and ET-1 mRNA expression by shear stress was attenuated almost completely on treatment with N-acetyl cysteine (NAC), an antioxidant (20 mM). Furthermore, when H(2)O(2) (0.5 to 2 mM) was added to BAECs in static culture, the ECE-1 as well as ET-1 mRNA expression was attenuated in proportion to the concentration of H(2)O(2). It is suggested that endothelial cells sense shear stress as oxidative stress and transduce signal for the regulation of the gene expression of ECE as well as ET to attenuate vascular tone and inhibit the proliferation of vascular smooth muscle cells.


Regulatory Peptides | 2005

Angiotensin II suppresses growth arrest specific homeobox (Gax) expression via redox-sensitive mitogen-activated protein kinase (MAPK).

Takatoshi Saito; Hiroshi Itoh; Jun Yamashita; Kentaro Doi; Tae Hwa Chun; Tokuji Tanaka; Mayumi Inoue; Ken Masatsugu; Yasutomo Fukunaga; Naoki Sawada; Satsuki Sakaguchi; Hiroshi Arai; Katsuyoshi Tojo; Naoko Tajima; Tatsuo Hosoya; Kazuwa Nakao

Oxidative stress is known to be involved in growth control of vascular smooth muscle cells (VSMCs). We and others have demonstrated that angiotensin II (Ang II) has an important role in vascular remodeling. Several reports suggested that VSMC growth induced by Ang II was elicited by oxidative stress. Gax, growth arrest-specific homeobox is a homeobox gene expressed in the cardiovascular system. Over expression of Gax is demonstrated to inhibit VSMC growth. We previously reported that Ang II down-regulated Gax expression. To address the regulatory mechanism of Gax, we investigated the significance of oxidative stress in Ang II-induced suppression of Gax expression. We further examined the involvement of mitogen-activated protein kinases (MAPKs), which is crucial for cell growth and has shown to be activated by oxidative stress, on the regulation of Gax expression by Ang II. Ang II markedly augmented intracellular H2O2 production which was decreased by pretreatment with N-acetylcystein (NAC), an anti-oxidant. Ang II and H2O2 decreased Gax expression dose-dependently and these effects were blocked by administration of both NAC and pyrrolidine dithiocarbamate (PDTC), another anti-oxidant. Ang II and H2O2 induced marked activation of extracellular signal-responsive kinase1/2 (ERK1/2), which was blocked by NAC. Ang II and H2O2 also activated p38MAPK, and they were blocked by pre-treatment with NAC. However, the level of activated p38MAPK was quite low in comparison with ERK1/2. Ang II- or H2O2 -induced Gax down-regulation was significantly inhibited by PD98059, an ERK1/2 inhibitor but not SB203580, a p38MAPK inhibitor. The present results demonstrated the significance of regulation of Gax expression by redox-sensitive ERK1/2 activation.


Biochemical and Biophysical Research Communications | 2001

cGMP-dependent protein kinase phosphorylates and inactivates RhoA.

Naoki Sawada; Hiroshi Itoh; Jun Yamashita; Kentaro Doi; Mayumi Inoue; Ken Masatsugu; Yasutomo Fukunaga; Satsuki Sakaguchi; Masakatsu Sone; Kenichi Yamahara; Takami Yurugi; Kazuwa Nakao


European Journal of Pharmacology | 2005

Therapeutic potential of thiazolidinediones in activation of peroxisome proliferator-activated receptor γ for monocyte recruitment and endothelial regeneration

Tokuji Tanaka; Yasutomo Fukunaga; Hiroshi Itoh; Kentaro Doi; Jun Yamashita; Tae Hwa Chun; Mayumi Inoue; Ken Masatsugu; Takatoshi Saito; Naoki Sawada; Satsuki Sakaguchi; Hiroshi Arai; Kazuwa Nakao


American Journal of Physiology-heart and Circulatory Physiology | 2001

Coordinate regulation of endothelin and adrenomedullin secretion by oxidative stress in endothelial cells

Takatoshi Saito; Hiroshi Itoh; Tae Hwa Chun; Yasutomo Fukunaga; Jun Yamashita; Kentaro Doi; Tokuji Tanaka; Mayumi Inoue; Ken Masatsugu; Naoki Sawada; Satsuki Sakaguchi; Hiroshi Arai; Masashi Mukoyama; Katsuyoshi Tojo; Tatsuo Hosoya; Kazuwa Nakao


Hypertension Research | 2002

New Diagnostic Procedure for Primary Aldosteronism: Adrenal Venous Sampling under Adrenocorticotropic Hormone and Angiotensin II Receptor Blocker. Application to a Case of Bilateral Multiple Adrenal Microadenomas.

Kenichi Yamahara; Hiroshi Itoh; Akira Yamamoto; Hironobu Sasano; Ken Masatsugu; Naoki Sawada; Yasutomo Fukunaga; Satsuki Sakaguchi; Masakatsu Sone; Takami Yurugi; Kazuwa Nakao


Journal of Molecular and Cellular Cardiology | 2002

S6-3 Significance of PPAR γ (peroxisome proliferator-activated receptor γ) in atherosclerotic plaque formation

Hiroshi Itoh; Kentaro Doi; Tokuji Tanaka; Yasutomo Fukunaga; Mayumi Inoue; Naoki Sawada; Satsuki Sakaguchi; Masakatsu Sone; Takami Yurugi; Kenichi Yamahara; Kazutoshi Miyashita; Kazuwa Nakao

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