抗炎症性を有する新たなバイオマテリアル開発

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Published inJinko Zoki Vol. 48; no. 3; pp. 210 - 213
Main Authors 荏原, 充宏, 中川, 泰宏
Format Journal Article
LanguageJapanese
Published 一般社団法人 日本人工臓器学会 15.12.2019
JAPANESE SOCIETY FOR ARTIFICIAL ORGANS
Online AccessGet full text
ISSN0300-0818
1883-6097
DOI10.11392/jsao.48.210

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Author 荏原, 充宏
中川, 泰宏
Author_FL 荏原 充宏
中川 泰宏
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  organization: Department of Bioengineering, University of Washington
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  fullname: 中川, 泰宏
  organization: 川崎市産業振興財団ナノ医療イノベーションセンター
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References 8) Voll RE, Herrmann M, Roth EA, et al: Immunosuppressive effects of apoptotic cells. Nature 390: 350-1, 1997
5) Phillips B, Nylander K, Harnaha J, et al: A microsphere-based vaccine prevents and reverses new-onset autoimmune diabetes. Diabetes 57: 1544-55, 2008
13) Nakagawa Y, Saitou A, Aoyagi T, et al: Apoptotic Cell Membrane-Inspired Polymer for Immunosuppression. ACS Macro Lett 6: 1020-4, 2017
2) Ishihara K, Aragaki R, Ueda T, et al: Reduced thrombogenicity of polymers having phospholipid polar groups. J Biomed Mater Res 24: 1069-77, 1990
12) Wu Z, Ma HM, Kukita T, et al: Phosphatidylserine-containing liposomes inhibit the differentiation of osteoclasts and trabecular bone loss. J Immunol 184: 3191-201, 2010
4) Harris JM: Introduction to Biotechnical and Biomedical Applications of Poly (Ethylene Glycol). Poly (Ethylene Glycol) Chemistry. Springer-US, New York, 1992, 1-14
3) Osterberg E, Bergström K, Holmberg K, et al: Protein-rejecting ability of surface-bound dextran in end-on and side-on configurations: comparison to PEG. J Biomed Mater Res 29: 741-7, 1995
11) Hashioka S, Han YH, Fujii S, et al: Phosphatidylserine and phosphatidylcholine-containing liposomes inhibit amyloid beta and interferon-gamma-induced microglial activation. Free Radic Biol Med 42: 945-54, 2007
9) Birge RB, Boeltz S, Kumar S, et al: Phosphatidylserine is a global immunosuppressive signal in efferocytosis, infectious disease, and cancer. Cell Death Differ 23: 962-78, 2016
1) Hench LL: Biomaterials. Science 208: 826-31, 1980
6) Lewis JS, Zaveri TD, Crooks CP 2nd, et al: Microparticle surface modifications targeting dendritic cells for non-activating applications. Biomaterials 33: 7221-32, 2012
7) Yoshitomi T, Miyamoto D, Nagasaki Y: Design of core--shell-type nanoparticles carrying stable radicals in the core. Biomacromolecules 10: 596-601, 2009
10) Nian M, Lee P, Khaper N, et al: Inflammatory cytokines and postmyocardial infarction remodeling. Circ Res 94: 1543-53, 2004
References_xml – reference: 11) Hashioka S, Han YH, Fujii S, et al: Phosphatidylserine and phosphatidylcholine-containing liposomes inhibit amyloid beta and interferon-gamma-induced microglial activation. Free Radic Biol Med 42: 945-54, 2007
– reference: 10) Nian M, Lee P, Khaper N, et al: Inflammatory cytokines and postmyocardial infarction remodeling. Circ Res 94: 1543-53, 2004
– reference: 3) Osterberg E, Bergström K, Holmberg K, et al: Protein-rejecting ability of surface-bound dextran in end-on and side-on configurations: comparison to PEG. J Biomed Mater Res 29: 741-7, 1995
– reference: 12) Wu Z, Ma HM, Kukita T, et al: Phosphatidylserine-containing liposomes inhibit the differentiation of osteoclasts and trabecular bone loss. J Immunol 184: 3191-201, 2010
– reference: 8) Voll RE, Herrmann M, Roth EA, et al: Immunosuppressive effects of apoptotic cells. Nature 390: 350-1, 1997
– reference: 13) Nakagawa Y, Saitou A, Aoyagi T, et al: Apoptotic Cell Membrane-Inspired Polymer for Immunosuppression. ACS Macro Lett 6: 1020-4, 2017
– reference: 9) Birge RB, Boeltz S, Kumar S, et al: Phosphatidylserine is a global immunosuppressive signal in efferocytosis, infectious disease, and cancer. Cell Death Differ 23: 962-78, 2016
– reference: 7) Yoshitomi T, Miyamoto D, Nagasaki Y: Design of core--shell-type nanoparticles carrying stable radicals in the core. Biomacromolecules 10: 596-601, 2009
– reference: 4) Harris JM: Introduction to Biotechnical and Biomedical Applications of Poly (Ethylene Glycol). Poly (Ethylene Glycol) Chemistry. Springer-US, New York, 1992, 1-14
– reference: 5) Phillips B, Nylander K, Harnaha J, et al: A microsphere-based vaccine prevents and reverses new-onset autoimmune diabetes. Diabetes 57: 1544-55, 2008
– reference: 2) Ishihara K, Aragaki R, Ueda T, et al: Reduced thrombogenicity of polymers having phospholipid polar groups. J Biomed Mater Res 24: 1069-77, 1990
– reference: 1) Hench LL: Biomaterials. Science 208: 826-31, 1980
– reference: 6) Lewis JS, Zaveri TD, Crooks CP 2nd, et al: Microparticle surface modifications targeting dendritic cells for non-activating applications. Biomaterials 33: 7221-32, 2012
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StartPage 210
Title 抗炎症性を有する新たなバイオマテリアル開発
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https://cir.nii.ac.jp/crid/1390565134835350400
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