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Featured researches published by Tatsuo Hosoya.


Genetic Diseases of the Kidney | 2009

Primary Renal Uricosuria

Makoto Hosoyamada; Kimiyoshi Ichida; Tatsuo Hosoya; Hitoshi Endou

Publisher Summary This chapter focuses on primary renal uricosuria, or hereditary renal hypouricemia, which is a common inherited and heterogeneous disorder. Hereditary renal hypouricemia is a common overexcretion-type hypouricemia and heterogeneous disorder and the feature is a persistent marked hypouricemia due to high urinary urate excretion above about 25% of fractional excretion of urate (Feua) characterized by impaired tubular urate transport. Renal hypouricemia has been classified into five types by the response to the antiuricosuric drug pyrazinamide, and the uricosuric drug, probenecid. The types include a defect with an attenuated response to both pyrazinamide and probenecid, a defect with a response to pyrazinamide and no response to probenecid, a defect with a response to both drugs and probenecid inducing urate clearance over the GFR, a defect with an attenuated response to pyrazinamide and no or paradoxical antiuricosuric response to probenecid, and a defect without any response to either drug. Urate transporter 1 (URAT1), one of the organic anion transporter families, was discovered to be a transporter for urate reabsorption in exchange of lactate at apical membrane of a proximal tubular cell. Exercise-induced acute renal failure (ARF) in renal hypouricemic patients is characterized by patchy renal vasoconstriction observable by enhanced abdominal computed tomography scan. The prognosis for a single episode of exercise-induced ARF is generally favorable, though the long-term prognosis is unknown. Specific treatment for exercise-induced ARF has not been established. Restriction of exercise may be effective for prophylaxis; however, it is not entirely appropriate, because exercise-induced ARF does not always follow exercise and is believed to stem from other events or condition such as dehydration.


Kidney International | 2000

XDH gene mutation is the underlying cause of classical xanthinuria: a second report.

David Levartovsky; Ayala Lagziel; Oded Sperling; Uri Liberman; Michael Yaron; Tatsuo Hosoya; Kimiyoshi Ichida; Hava Peretz


Gout and Nucleic Acid Metabolism | 2000

Analysis of uric acid transport via hOAT3.

Hiroaki Kimura; Kimiyoshi Ichida; Makoto Hosoyamada; Iwao Oono; Hitoshi Endou; Tatsuo Hosoya


GOUT AND NUCLEIC ACID METABOLISM | 2016

Hyperuricemia as a risk factor for the development of hypertension and chronic kidney disease - An 8year follow-up study -

Sinichiro Nishio; Satoru Kuriyama; Tatsuo Hosoya; Takashi Yokoo


GOUT AND NUCLEIC ACID METABOLISM | 2018

高尿酸血症合併CKD患者の腎機能低下に対するフェブキソスタットの効果−プラセボ対照二重盲検試験FEATHER study −

Iwao Ohno; Yugo Shibagaki; Kenjiro Kimura; Tatsuo Hosoya


GOUT AND NUCLEIC ACID METABOLISM | 2018

尿酸トランスポーター遺伝子 ABCG2 のレアバリアントはコモンバリアントと同様に痛風のリスクを著しく上昇させる

Hirotaka Matsuo; Toshihide Higashino; Tappei Takada; Seiko Shimizu; Makoto Kawaguchi; Masayuki Sakiyama; Akiyoshi Nakayama; Yusuke Kawamura; Tatsuo Hosoya; Kimiyoshi Ichida; Hiroshi Ooyama; Hiroshi Suzuki; Nariyoshi Shinomiya


Gout and Nucleic Acid Metabolism | 2008

Significance of serum uric acid in toxemia and pregnancy-induced hypertension

Iwao Ohno; Yuichiro Yamaguchi; Hajime Saikawa; Daijiro Uetakeo; Miho Hikita; Hideaki Okabe; Hideho Gomi; Kimiyoshi Ichida; Tatsuo Hosoya


Gout and Nucleic Acid Metabolism | 2006

Mutational analysis of the uromodulin gene in three Japanese patients suggestive of FJHN

Shin Fujimori; Kimiyoshi Ichida; Hiroyuki Watanabe; Nobuyuki Ogata; Hiroshi Ooyama; Hitoshi Moromizato; Toshikazu Yamanouchi; Tatsuo Hosoya


Gout and Nucleic Acid Metabolism | 2004

The relationship between change in serum uric acid and other lifestyle-related disease factors from annual medical check records covering more than 10years

Hideho Gomi; Yuichirou Yamaguchi; Hajime Saikawa; Hiroaki Kimura; Daijirou Uetake; Miho Hikita; Hideaki Okabe; Kimiyoshi Ichida; Iwao Ohno; Tatsuo Hosoya


Gout and Nucleic Acid Metabolism | 2004

Hyperuricemia and gout in Down's syndrome

Hideakii Okabe; Masato Mizuguchi; Tatsuo Hosoya; Yuichiro Yamaguchi; Hajime Saikawa; Hiroaki Kimura; Daijiro Uetake; Miho Hikita; Hideho Gomi; Kimiyoshi Ichida; Iwao Ohno

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Kimiyoshi Ichida

Tel Aviv Sourasky Medical Center

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Hideho Gomi

Jikei University School of Medicine

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Iwao Ohno

Jikei University School of Medicine

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Miho Hikita

Jikei University School of Medicine

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Hideaki Okabe

Jikei University School of Medicine

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Hiroaki Kimura

Jikei University School of Medicine

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Daijiro Uetake

Jikei University School of Medicine

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Hajime Saikawa

Jikei University School of Medicine

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