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領(lǐng)導(dǎo)團(tuán)隊(duì) - 技術(shù)研發(fā)及設(shè)計(jì)團(tuán)隊(duì)

  • 日立制作所 首席科學(xué)家

    鈴木 朋子

    工學(xué)博士

個(gè)人履歷

1992年于東京農(nóng)工大學(xué)環(huán)境資源工程專業(yè)碩士畢業(yè),同年進(jìn)入日立制作所日立綜合研究所,從事高效垃圾發(fā)電系統(tǒng)、水蒸氣甲烷改質(zhì)系統(tǒng)、CO2捕集燃煤發(fā)電系統(tǒng)等,以有效資源利用和環(huán)境保護(hù)為目的的研究活動。

2005年至2006年間,在日立制作所新事業(yè)開發(fā)本部負(fù)責(zé)船舶壓載水凈化系統(tǒng)和油田采出水處理系統(tǒng)的開發(fā),并參與了和造船廠商的共同研發(fā)項(xiàng)目,及液化石油氣船的海上實(shí)驗(yàn),2008年獲得日立環(huán)境財(cái)團(tuán)頒發(fā)的環(huán)境獎(jiǎng),并為日本首次獲得國際海事組織的型式認(rèn)證做出了貢獻(xiàn)(2009年)。

2018年至2019年,分別在社會創(chuàng)新協(xié)創(chuàng)中心和商務(wù)工程中心擔(dān)任負(fù)責(zé)人,利用在研究活動中積累的系統(tǒng)工程知識和經(jīng)驗(yàn),推動通過顧客協(xié)創(chuàng)開拓新事業(yè)。

2008年于北海道大學(xué)工學(xué)研究科完成博士課程。 日本機(jī)械學(xué)會、化學(xué)學(xué)會會員。

Research interests

  • Regenerative medicine
  • Synthetic biology
  • Molecular biology

Professional activity

2918.06 - current
Member, Operations Committee, Kobe Biomedical Innovation Cluster
2018.06 - current
Officer, Kobe Port Island Drug Discovery Forum
2017.04 - current
Member of the Committee on Nanotechnology and Materials Science, Ministry of Education, Culture, Sports, Science and Technology, Japan
2015.09 - current
Member of Special Committee on Regenerative Medicine, Tokai University
2015.12 - 2017.12
Member of the Ethics Review Committee, Japan Biological Informatics Consortium (JBIC)

Graduate School Lectures

University of Tokyo, Hokkaido University, Tokyo University of Agriculture, Ritsumeikan University

Major publications

  1. A.Nishimura, R,Nakajima, R.Takagi, G.Zhou, D.Suzuki, M.Kiyama, T.Nozaki, T.Owaki, T.Takahara, S.Nagai, T.Nakamura, M.Sugaya, K.Terada, Y.Igarashi, H.Hanzawa, T.Okano, T.Shimizu, M.Yamato and S.Takeda: Fabrication of tissue-engineered cell sheets by automated cell culture equipment, J Tissue Eng Regen Med., 13(12): 2246-2255, Dec 2019.
  2. M.Okanojo, K.O.Okeyo, H.Hanzawa, O.Kurosawa, H.Oana, S.Takeda and M.Washizu: Nuclear transplantation between allogeneic cells through topological reconnection of plasma membrane in a microfluidic system, Biomicrofluidics, 13(3):034115, 10 June 2019.
  3. E.Matsumoto, N.Koide, H.Hanzawa, M.Kiyama, M.Ohta, J.Kuwabara, S.Takeda and M.Takahashi: Fabricating retinal pigment epithelial cell sheets derived from human induced pluripotent stem cells in an automated closed culture system for regenerative medicine, PLoS One., 14(3):e0212369, 13 Mar 2019.
  4. T.Kikuchi, M.Kino-Oka, M.Wada, T.Kobayashi, M.Kato, S.Takeda, H.Kubo, T.Ogawa, H.Sunayama, K.Tanimoto, M.Mizutani, T.Shimizu and T.Okano: A novel, flexible and automated manufacturing facility for cell-based health care products: Tissue Factory. Regen Ther., 9:89-99, 29 Sep 2018.
  5. R.Nakajima and S.Takeda: Efficient fabrication of epidermal cell sheets using γ-secretase inhibitor, J Dermatol Sci., 76(3):246-54, Dec 2014.
  6. R.Nakajima and S.Takeda: Fabrication of corneal epithelial cell sheets maintaining colony-forming cells without feeder cells by oxygen-controlled method, Exp Eye Res., 118:53-60, Jan 2014.
  7. Y.Oie, T.Nozaki, H.Takayanagi, S.Hara, R.Hayashi, S.Takeda, K.Mori, N.Moriya, T.Soma, M.Tsujikawa, K.Saito and K.Nishida, Development of a cell sheet transportation technique for regenerative medicine. Tissue Eng Part C Methods. 20(5):373-82, May 2014.
  8. R.Nakajima and S.Takeda: The efficient fabrication of corneal epithelial cell sheets by controlling oxygen concentration, Exp Eye Res., 116:434-8, Nov 2013.
  9. R.Nakajima, T.Kobayashi, T.Kikuchi, Y.Kitano, H.Watanabe, M.Mizutani, T.Nozaki, N.Senda, Saitoh R.Takagi, M.Yamato T.Okano, S.Takeda: Fabrication of transplantable corneal epithelial and oral mucosal epithelial cell sheets using a novel temperature-responsive closed culture device. J Tissue Eng Regen Med., 9(5):637-40, May 2015.
  10. R.Nakajima, T.Kobayashi, N.Moriya, M.Mizutani, K.Kan, T.Nozaki, K.Saitoh, M.Yamato, T.Okano and S.Takeda: A novel closed cell culture device for fabrication of corneal epithelial cell sheets, J Tissue Eng Regen Med., 9(11):1259-67, Nov. 2015.
  11. Y.Ishige, S.Takeda and M.Kamahori: Direct detection of enzyme-catalyzed products by FET sensor with ferrocene-modified electrode, Biosens Bioelectron., 26(4):1366-72. doi: 10.1016/j.bios.2010.07.053. E, published 21 Jul 2010.
  12. H.Suzuki et al., The transcriptional network that controls growth arrest and differentiation in a human myeloid leukemia cell line, FANTOM Consortium, Nat Genet., 41(5):553-62, May 2009.
  13. T.Urano, T.Usui, S.Takeda et al.: TRIM44 interacts with and stabilizes terf, a TRIM ubiquitin E3 ligase, Biochem Biophys Res Commun.;383(2):263-8, 29 May 2009.
  14. T.Miyasaka, M.Morita, K.Ito, T.Suzuki, H.Fukuda, S.Takeda, et al.: Interaction of antiproliferative protein Tob with the CCR4-NOT deadenylase complex, Cancer Sci., 99(4):755-61, April 2008.
  15. N.Sugaya, K.Ikeda, T.Tashiro, S.Takeda et al.: An integrative in silico approach for discovering candidates for drug-targetable protein-protein interactions in interactome data, BMC Pharmacol., 7:10, 20 August 2007.
  16. Y.Sano, T.Nakaya, S.Pedrini, S.Takeda, et al., Physiological mouse brain Abeta levels are not related to the phosphorylation state of threonine-668 of Alzheimer's APP, PLoS One., 1:e51, 20 Dec 2006.
  17. T.Suzuki, K.Ando, K.Iijima, S.Oguchi and S.Takeda: Phosphorylation of Amyloid Precursor Protein (APP) Family Proteins, Methods Mol Med.,32:271-82. doi: 10.1385/1-59259-195-7:271, 2000.
  18. K.Iijima, K.Ando, S.Takeda et al.: Neuron-specific phosphorylation of Alzheimer's beta-amyloid precursor protein by cyclin-dependent kinase, J Neurochem., 75(3):1085-91, Sept. 2000.
  19. K.Ando, M.Oishi, S.Takeda et al.: Role of phosphorylation of Alzheimer's amyloid precursor protein during neuronal differentiation, J Neurosci., 19(11):4421-7, 1 June 1999.
  20. S.Tomita, T.Ozaki, H.Taru, S.Oguchi, S.Takeda et al.: Interaction of a neuron-specific protein containing PDZ domains with Alzheimer's amyloid precursor protein, J Biol Chem., 274(4):2243-54, 22 Jan 1999.
  21. J.Desdouits-Magnen, F.Desdouits, S.Takeda et al.: Regulation of secretion of Alzheimer amyloid precursor protein by the mitogen-activated protein kinase cascade, J Neurochem., 70(2):524-30, Feb 1998.
  22. T.Okamoto, S.Takeda et al.: Intrinsic signaling function of APP as a novel target of three V642 mutations linked to familial Alzheimer's disease, EMBO J., 15(15):3769-77, 1 Aug 1996.
  23. T.Yamatsuji, T.Matsui, T.Okamoto, K.Komatsuzaki, S.Takeda et al.: G protein-mediated neuronal DNA fragmentation induced by familial Alzheimer's disease-associated mutants of APP, Science, 272(5266):1349-52, 31 May 1996.
  24. T.Yamatsuji, T.Okamoto, S.Takeda et al.: Expression of V642 APP mutant causes cellular apoptosis as Alzheimer trait-linked phenotype, EMBO J., 15(3):498-509, 1 Feb 1996.
  25. Y.Murayama, S.Takeda et al.: Cell surface receptor function of amyloid precursor protein that activates Ser/Thr kinases, Gerontology, 42 Suppl 1:2-11, 1996.
  26. T.Okamoto, S.Takeda et al.: Ligand-dependent G protein coupling function of amyloid transmembrane precursor, J Biol Chem., 270(9):4205-8, 2 March 1995.
  27. S.Takeda et al.: Purification of low-molecular-weight GTP-binding proteins structurally related to MTG33, a mitochondrial GTP-binding protein of Ehrlich ascites tumor cells, J Biochem., 118(4):791-5, Oct 1995.
  28. S.Takeda et al.: Purification of a GTP-binding protein localized in mitochondria, J Biochem., 114(5):684-90, Nov 1993.
  29. H.Hirai, S.Takeda et al.: Inhibition of SV40 DNA replication in vitro by chlorpromazine, Biol Pharm Bull., 16(6):565-7, June 1993.
  30. S.Takeda et al.: Nuclear GTP-binding proteins of Swiss 3T3 cells, FEBS Lett.,244(2):469-72, 27 Feb 1989.

Major awards

2018 60th Best 10 New Products Award

among others

Invited lectures (outside Japan)

2019
Trends for cell culture technology and automation in regenerative medicine,Chang Gung Memorial Hospital Conference 2019
2018
Hitachi R&D for Promotion of Regenerative Medicine, 2018 Healthcare Expo Taiwan
2010
Hitachi Group's Approach to Regenerative Medicine, 2010 International Society for Cellular Therapy 1st Asia-Pacific Regional Meeting 2010
日立的研究開發(fā)