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ڠ Biochemistry and Molecular Biology 教 授 水口 裕之 Professor Hiroyuki MIZUGUCHI 06-6879-8185 [email protected] 准教授 櫻井 文教 Associate Professor Fuminori SAKURAI 06-6879-8188 [email protected] 助 教 高山 和雄 Assistant Professor Kazuo TAKAYAMA 06-6879-8187 [email protected] Fax 06-6879-8187 受恒 kj 堕怖窪y木匠台蒙協y癖保背遭猷z‒騒凛さ 妃蒙v銀断染utっ格R芸Xdふびデよy銀断ぃ塚叢ぃ 保群系視utっ霊ずPvb‒Zずvふびデよっ慨拍匠粧 兩yjげyサまゎそsbq偕侈dぜ潔澄y休保v磁采b qIぜ⦆慨拍匠粧兩侈サまゎそy休保犀原っ虹bq保陪 bqRjふびデよサまゎそz‒従鷹溶Q遇宥企ZそjX sこGせ‒慨拍匠y系赴蟻蛸uty台零揮協犀原っ爾K 禅r幌測y契芳潔澄sunqIぜ⦆汎犀原剰rz‒Xy すKu斯I灰倫ry台零揮協犀原v幌測y槽軽慨拍匠悲 瀕ぃ保埼戴散潔澄y休保っ爾I‒慨拍匠粧兩さ儒台概兩‒ ニまゐハ班y章岱典ガびべ概歪迄休保yjげy契芳潔澄 休保っ爾Kssこv‒休保bj潔澄っ江叙bj簸訟y掘 博Pずy木匠台蒙協犀原っ陪休bqIぜ⦆ 凩Mぁ‒トォョ 秋耀さ ⦆ョ 秋耀‒窪佩狛金秋耀っ偕侈b j儒台概兩rz‒Xそず厘木企u金秋耀っ婁背y木企秋 耀v司傳冂T木企ZfぜXsQ幌測rGぜQ‒酔倔y乾 胎拡匠kVっ侈Ij様溶z司傳y博r牢添っ擁MqI ぜ⦆汎犀原剰rz‒簸訟v休保bj慨拍匠悲瀕狛っ侈I q金秋耀Pず婁背秋耀ぉy木企司傳っ膨脇背v鴫げぜ潔 澄休保っ爾Kssこv‒金秋耀y木企戴散v隈dぜ木匠 台蒙協背蟻蛸っ爾nqIぜ⦆Zずv‒ギイ トォョ 秋耀Pず 木企秋耀っ司傳冂T喋せ裾b‒歪蒙よまテそェハみ膜器 狛へ樋胎さ丿司胎y膜器狛ほさふびデよ銀断膜器狛y視 陶っ婁嘗bj犀原こ陪休bqIぜ⦆ くj‒慨拍匠悲瀕サまゎそrGぜぱィオふびデよサま ゎそっ台諦v蛤从dぜs‒訟秩裂侃さ魚肥裂侃Q弍悲Z そぜjげ‒Xそっ偕侈bjニまゐハ肝侈Q渓鼎ZそqI ぜ⦆hXr‒Xy裂侃肝畔ソぺェらゼy蟻霊っ遭げ‒司 旗背uニまゐハ侈サまゎそ休保っ爾nqIぜ⦆Zずvぱ ィオふびデよさトべふびデよっ契芳sbj神籵佇蟻胎ふ びデよy休保さ系赴蟻蛸こ爾nqIぜ⦆ 骸様‒恒怖‒ゎハキま常っもそゥbuI ノハノgセハソトノツ ュゥ{ rGぜズびまド ュゥ{へネトュゥ{ほQ保台ぃ木企班 y輝波v庭天u株醐っ肩きdXsQ傭疾Zそ峠婁Zそq Iぜ⦆汎犀原剰rz‒系赴未霊y ネトュゥ{ y系赴蟻霊 っ爾Kssこv‒秋耀木企さ群企v隈剱dぜ ネトュゥ{ っよまテそェハみb‒hy従侈ソぺェらゼy蟻霊っ虹b q秋耀y止楚胎貝祥yjげy槽bI戴散系視y蟻蛸っ 爾nqIぜ⦆XyすKu犀原z‒儒台概兩yjげy司傳 y冂I木企戴散溶y休保さ‒慨拍匠粧兩yjげy槽軽粧 兩侈慨拍匠Oすい漁庶概歪y休澱v頃QぜこyrGぜ⦆ 怪禅yすKv略木肋rz‒受淡投y台零揮協犀原さ厘倔 概兩っ奨Mぜ契芳潔澄休保っ虹bq‒斯方u冑蓋ぉy犀 原陪休っ爾nqOせ‒略木肋っ淡悲rRぜ騒衆y街腿っ 爾nqIぜ⦆ 1)ヒト iPS 細胞から肝臓細胞、小腸上皮細胞等への分化制御に 関する分子生物学的解析と創薬研究や再生医療研究への応用 2)新規遺伝子導入・発現制御技術の開発と遺伝子治療、再生 医療、ワクチン等への応用 3)ノンコーディング RNA(マイクロ RNA 等)の機能解析と 生命科学研究への応用 4)ゲノム編集技術の開発と遺伝子治療、幹細胞研究への応用 犀原記添 受恒y新侑匯紋 1. Wakabayashi K. et al., A microRNA derived from adenovirus virus-associated RNAII promotes virus infection via post-transcriptional gene silencing, J. Virol., 93, e01265-18 (2019) 2. Deguchi S. et al., Modeling of hepatic drug metabolism and responses in CYP2C19 poor metabolizer using genetically manipulated human iPS cells. Drug. Metab. Dispos., 47, 632-638 (2019) 3. Toba Y. et al., FGF signal is not required for hepatoblast differentiation of human iPS cells, Sci. Rep., 9:3713 (2019) 4. Negoro R. et al., Efficient generation of small intestinal epithelial-like cells from human iPS cells for drug absorption and metabolism studies. Stem Cell Rep., 11, 1539-1550 (2018) 5. Takayama K. et al., Enrichment of high-functioning human iPS cell-derived hepatocyte-like cells for pharmaceutical research. Biomaterials, 161, 24-32 (2018) 6. Katayama K. et al., Proteolytic disassembly of viral outer capsid proteins is crucial for reovirus-mediated type-I interferon induction in both reovirus-susceptible and reovirus-refractory tumor cells. J. Immunol., 200, 2987-2999 (2018) 7. Machitani M. , et al., MicroRNA miR-27 inhibits adenovirus infection by suppressing the expression of SNAP25 and TXN2. J. Virol., 91, e00159-17 (2017) 8. Takayama K. , et al., Highly efficient biallelic genome editing of human ES/iPS cells Using a CRISPR/Cas9 or TALEN system. Nuc. Acid Res., 45, 5198-5207 (2017) 9. Nagamoto Y. et al., Enhancement of survival rate by human iPSC-derived hepatocyte sheet transplantation in acute liver failure mice. J. Hepatol., 64, 1068-1075 (2016) 10. Takayama K. et al., Prediction of inter-individual differences in hepatic functions and drug sensitivity by using human iPS-derived hepatocytes. Proc. Natl. Acad. Sci. USA., 111, 16772-16777 (2014) 11. Blumberg R. et al., Protective mucosal immunity mediated by epithelial CD1d and IL-10, Nature, 509, 497-502 (2014) 教 授 水口 裕之 14

Transcript of æ F ä æ ä Biochemistry and Molecular Biologyæ F ä æ äBiochemistry and Molecular Biology 教...

Page 1: æ F ä æ ä Biochemistry and Molecular Biologyæ F ä æ äBiochemistry and Molecular Biology 教 授 水口 裕之 Professor Hiroyuki MIZUGUCHI 06-6879-8185 mizuguch@phs.osaka-u.ac.jp准教授

Biochemistry and Molecular Biology

教 授 水口 裕之 Professor Hiroyuki MIZUGUCHI 06-6879-8185 [email protected]准教授 櫻井 文教 Associate Professor Fuminori SAKURAI 06-6879-8188 [email protected]助 教 高山 和雄 Assistant Professor Kazuo TAKAYAMA 06-6879-8187 [email protected] Fax 06-6879-8187

1)ヒト iPS 細胞から肝臓細胞、小腸上皮細胞等への分化制御に関する分子生物学的解析と創薬研究や再生医療研究への応用

2)新規遺伝子導入・発現制御技術の開発と遺伝子治療、再生医療、ワクチン等への応用

3)ノンコーディング RNA(マイクロ RNA 等)の機能解析と生命科学研究への応用

4)ゲノム編集技術の開発と遺伝子治療、幹細胞研究への応用

1. Wakabayashi K. et al., A microRNA derived from adenovirus virus-associated RNAII promotes virus infection via post-transcriptional gene silencing, J. Virol., 93, e01265-18 (2019)

2. Deguchi S. et al., Modeling of hepatic drug metabolism and responses in CYP2C19 poor metabolizer using genetically manipulated human iPS cells. Drug. Metab. Dispos., 47, 632-638 (2019)

3. Toba Y. et al., FGF signal is not required for hepatoblast differentiation of human iPS cells, Sci. Rep., 9:3713 (2019)4. Negoro R. et al., Efficient generation of small intestinal epithelial-like cells from human iPS cells for drug absorption and metabolism studies. Stem

Cell Rep., 11, 1539-1550 (2018)5. Takayama K. et al., Enrichment of high-functioning human iPS cell-derived hepatocyte-like cells for pharmaceutical research. Biomaterials, 161,

24-32 (2018)6. Katayama K. et al., Proteolytic disassembly of viral outer capsid proteins is crucial for reovirus-mediated type-I interferon induction in both

reovirus-susceptible and reovirus-refractory tumor cells. J. Immunol., 200, 2987-2999 (2018)7. Machitani M. , et al., MicroRNA miR-27 inhibits adenovirus infection by suppressing the expression of SNAP25 and TXN2. J. Virol., 91,

e00159-17 (2017)8. Takayama K. , et al., Highly efficient biallelic genome editing of human ES/iPS cells Using a CRISPR/Cas9 or TALEN system. Nuc. Acid Res.,

45, 5198-5207 (2017)9. Nagamoto Y. et al., Enhancement of survival rate by human iPSC-derived hepatocyte sheet transplantation in acute liver failure mice. J. Hepatol.,

64, 1068-1075 (2016)10. Takayama K. et al., Prediction of inter-individual differences in hepatic functions and drug sensitivity by using human iPS-derived hepatocytes.

Proc. Natl. Acad. Sci. USA., 111, 16772-16777 (2014)11. Blumberg R. et al., Protective mucosal immunity mediated by epithelial CD1d and IL-10, Nature, 509, 497-502 (2014)

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