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Dive into the research topics where Shojiro Miyazaki is active.

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Featured researches published by Shojiro Miyazaki.


ACS Medicinal Chemistry Letters | 2011

Discovery of CS-0777: A Potent, Selective, and Orally Active S1P1 Agonist.

Takahide Nishi; Shojiro Miyazaki; Toshiyasu Takemoto; Keisuke Suzuki; Yukiko Iio; Katsuyoshi Nakajima; Takashi Ohnuki; Yumi Kawase; Futoshi Nara; Shin-ichi Inaba; Takashi Izumi; Hiroshi Yuita; Keiko Oshima; Hiromi Doi; Ryotaku Inoue; Wataru Tomisato; Takashi Kagari; Takaichi Shimozato

CS-0777 (3) is phosphorylated in vivo, and the phosphate of CS-0777 (CS-0777-P) (4) acts as a selective S1P receptor-1 (S1P1) modulator. We report herein the synthesis of CS-0777 and CS-0777-P, pharmacological effects such as S1P1 and S1P3 agonist activity in vitro, peripheral blood lymphocyte lowering effects and the suppressive effect on experimental autoimmune encephalomyelitis (EAE), and also the pharmacokinetics in rats. CS-0777-P had ∼320-fold greater agonist activity for human S1P1 (EC50; 1.1 nM) relative to S1P3 (EC50; 350 nM). Following administration of single oral doses of 0.1 and 1 mg/kg of CS-0777 in rats, lymphocyte counts decreased significantly, with a nadir at 12 h postdose and recovery to vehicle control levels by 5 days postdose. In the EAE model compared to the vehicle-treated group, significant decreases in the cumulative EAE scores were observed for the 0.1 and 1 mg/kg CS-0777 groups in rats. CS-0777 is currently in clinical trials for the treatment of multiple sclerosis (MS).


European Journal of Pharmacology | 2009

Novel CC chemokine receptor 4 antagonist RS-1154 inhibits ovalbumin-induced ear swelling in mice

Yasuhiro Nakagami; Kayo Kawashima; Kazuki Yonekubo; Maki Etori; Takaaki Jojima; Shojiro Miyazaki; Ryoko Sawamura; Kazuki Hirahara; Futoshi Nara; Makoto Yamashita

CC chemokine ligand 17 (CCL17/thymus and activation-regulated chemokine: TARC) and CCL22 (macrophage-derived chemokine: MDC) selectively bind to CC chemokine receptor 4 (CCR4). The CCR4 system is considered to be responsible for the pathology of allergic diseases such as atopic dermatitis. To find and develop potential medicines against allergic diseases, we screened an in-house library to search for compounds having a profile as a CCR4 antagonist. From among the screening hits, we focused on 3-{2-[(2R)-2-phenyl-4-(4-pyridin-4-ylbenzyl)morpholin-2-yl]ethyl}quinazoline-2,4(1H,3H)-dione (named RS-1154), which had been newly synthesized in our laboratory. This compound inhibited the binding of [(125)I]CCL17 to human CCR4-expressing CHO cells with an IC(50) value of 27.7 nM and moreover inhibited CCL17-induced migration of DO11.10 mice-derived T helper 2 cells with an IC(50) value of 1.5 nM in vitro. We then examined the effect of RS-1154 in an ovalbumin-induced ear swelling assay. The ear thickness was decreased by intravenous administration of anti-CCL17 or anti-CCL22 antibodies, suggesting that the CCR4 system is involved in the ear swelling. Though partially, the oral administration of RS-1154 also significantly ameliorated the ear swelling at the doses of 30 and 100 mg/kg. Furthermore, the serum level of interleukin-4 decreased after the administration of RS-1154. In this study, we succeeded in obtaining a newly-synthesized compound, RS-1154, which has a potential to inhibit the chemotaxis of T helper 2 cells in vitro and to ameliorate ovalbumin-induced ear swelling in vivo. These results raise the possibility that RS-1154 or one of derivatives might become a therapeutic agent for atopic dermatitis patients.


Bioorganic & Medicinal Chemistry Letters | 2012

Design and optimization of novel (2S,4S,5S)-5-amino-6-(2,2-dimethyl-5-oxo-4-phenylpiperazin-1-yl)-4-hydroxy-2-isopropylhexanamides as renin inhibitors

Yuji Nakamura; Chie Sugita; Masaki Meguro; Shojiro Miyazaki; Kazuhiko Tamaki; Mizuki Takahashi; Yoko Nagai; Takahiro Nagayama; Mikio Kato; Hiroshi Suemune; Takahide Nishi

Introduction of the 2,2-dimethyl-4-phenylpiperazin-5-one scaffold into the P(3)-P(1) portion of the (2S,4S,5S)-5-amino-6-dialkylamino-4-hydroxy-2-isopropylhexanamide backbone dramatically increased the renin inhibitory activity without using the interaction to the S(3)(sp) pocket. Compound 31 exhibited >10,000-fold selectivity over other human proteases, and 18.5% oral bioavailability in monkey.


Bioorganic & Medicinal Chemistry | 2013

Lead optimization of 5-amino-6-(2,2-dimethyl-5-oxo-4-phenylpiperazin-1-yl)-4-hydroxyhexanamides to reduce a cardiac safety issue: discovery of DS-8108b, an orally active renin inhibitor.

Yuji Nakamura; Teppei Fujimoto; Yasuyuki Ogawa; Hidenori Namiki; Sayaka Suzuki; Masayoshi Asano; Chie Sugita; Akiyoshi Mochizuki; Shojiro Miyazaki; Kazuhiko Tamaki; Yoko Nagai; Shin-ichi Inoue; Takahiro Nagayama; Mikio Kato; Katsuyoshi Chiba; Kiyoshi Takasuna; Takahide Nishi

With the aim to address an undesired cardiac issue observed with our related compound in the recently disclosed novel series of renin inhibitors, further chemical modifications of this series were performed. Extensive structure-activity relationships studies as well as in vivo cardiac studies using the electrophysiology rat model led to the discovery of clinical candidate trans-adamantan-1-ol analogue 56 (DS-8108b) as a potent renin inhibitor with reduced potential cardiac risk. Oral administration of single doses of 3 and 10 mg/kg of 56 in cynomolgus monkeys pre-treated with furosemide led to significant reduction of mean arterial blood pressure for more than 12 h.


Bioorganic & Medicinal Chemistry Letters | 2012

Design and discovery of new (3S,5R)-5-[4-(2-chlorophenyl)-2,2-dimethyl-5-oxopiperazin-1-yl]piperidine-3-carboxamides as potent renin inhibitors

Yutaka Mori; Yasuyuki Ogawa; Akiyoshi Mochizuki; Yuji Nakamura; Chie Sugita; Shojiro Miyazaki; Kazuhiko Tamaki; Yumi Matsui; Mizuki Takahashi; Takahiro Nagayama; Yoko Nagai; Shin-ichi Inoue; Takahide Nishi

Utilizing X-ray crystal structure analysis, (3S,5R)-5-[4-(2-chlorophenyl)-2,2-dimethyl-5-oxopiperazin-1-yl]piperidine-3-carboxamides were designed and identified as renin inhibitors. The most potent compound 15 demonstrated favorable pharmacokinetic and pharmacodynamic profiles in rat.


ACS Medicinal Chemistry Letters | 2012

Discovery of DS-8108b, a Novel Orally Bioavailable Renin Inhibitor.

Yuji Nakamura; Teppei Fujimoto; Yasuyuki Ogawa; Chie Sugita; Shojiro Miyazaki; Kazuhiko Tamaki; Mizuki Takahashi; Yumi Matsui; Takahiro Nagayama; Kenichi Manabe; Makoto Mizuno; Noriko Masubuchi; Katsuyoshi Chiba; Takahide Nishi

A novel orally bioavailable renin inhibitor, DS-8108b (5), showing potent renin inhibitory activity and excellent in vivo efficacy is described. We report herein the synthesis and pharmacological effects of 5 including renin inhibitory activity in vitro, suppressive effects of ex vivo plasma renin activity (PRA) in cynomolgus monkey, pharmacokinetic data, and blood pressure-lowering effects in an animal model. Compound 5 demonstrated inhibitory activities toward human renin (IC50 = 0.9 nM) and human and monkey PRA (IC50 = 1.9 and 6.3 nM, respectively). Oral administration of single doses of 3 and 10 mg/kg of 5 in cynomolgus monkey on pretreatment with furosemide led to dose-dependent significant reductions in ex vivo PRA and sustained lowering of mean arterial blood pressure for more than 12 h.


Archive | 2005

Amino alcohol compound

Takahide Nishi; Toshiyasu Takemoto; Shojiro Miyazaki; Takaichi Shimozato; Futoshi Nara; Takashi Izumi


Archive | 2004

Amino alcohol derivatives or phosphonic acid derivatives and pharmaceutical compositions containing these

Takahide Nishi; Takaichi Shimozato; Futoshi Nara; Shojiro Miyazaki


Archive | 2003

Amino alcohol derivative or phosphonic acid derivative and medicinal composition containing these

Takahide Nishi; Takaichi Shimozato; Futoshi Nara; Shojiro Miyazaki


Tetrahedron-asymmetry | 2006

Asymmetric synthesis of α,α-disubstituted α-amino alcohol derivatives

Tsuyoshi Nakamura; Takashi Tsuji; Yukiko Iio; Shojiro Miyazaki; Toshiyasu Takemoto; Takahide Nishi

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