北陸先端科学技術大学院大学 [JAIST] - 研究者総覧
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松村 和明 (マツムラ カズアキ) 准教授
マテリアルサイエンス系、物質化学領域

103件中1-20件目

  • 1. Surface-Selective Control of Cell Orientation on Cyanobacterial Liquid Crystalline Gels.,Sornkamnerd S, Okajima MK, Matsumura K, Kaneko T,ACS Omega,3,6554-6559,2018
  • 2. Zwitterionic Polymer Design that Inhibits Aggregation and Facilitates Insulin Refolding: Mechanistic Insights and Importance of Hydrophobicity,Rajan R, Suzuki Y, Matsumura K,Macromolecular Bioscience,18,1800016,2018
  • 3. Comparative analysis of the cellular entry of polystyrene and gold nanoparticles using the freeze concentration method.,Ahmed S, Okuma K, Matsumura K,Biomaterials Science,6,1791-1799,2018
  • 4. Hydrophobic polyampholytes and non-freezing cold temperature stimulate internalization of Au nanoparticles to zwitterionic liposomes.,Ahmed S, Matsumura K, Hamada T,Langmuir,in press
  • 5. pH-Responsive Polyion Complex Vesicle with Polyphosphobetaine Shells,Ohara Y, Nakai K, Ahmed S, Matsumura K, Ishihara K, Yusa S.I.,Langmuir,in press
  • 6. Enhanced Adsorption of a Protein鋒anocarrier Complex onto Cell Membranes through a High Freeze Concentration by a Polyampholyte Cryoprotectant.,Ahmed S, Miyawaki O Matsumura K,Langmuir,34,2352-2362,2018
  • 7. Role of cryoprotectants in freeze concentration technology for gene delivery process.,Ahmed S, Miyawaki O, Matsumura K,Cryoiol Cryotechnol,63,147-154,2017
  • 8. Tuneable dual-thermoresponsive core–shell nanogels exhibiting UCST and LCST behavior.,Rajan R, Matsumura K,Macromol. Rapid. Comm., in press.,2017
  • 9. Magnetic Separation of Autophagosomes from Mammalian Cells using Multifunctional Hybrid Nanobeads.,Takahashi M, Mohan P, Mukai K, Takeda Y, Matsumoto T, Matsumura K, Takakura M, Arai H, Taguchi T, Maenosno S,ACS Omega,2,8,4929-4937,2017
  • 10. StemCell KeepTM is effective for cryopreservation of human embryonic stem cells by vitrification.,Ota A, Matsumura K, Lee JJ, Sumi S, Hyon SH,Cell Transplantation,26,773-787,2017
  • 11. The beneficial effect of carboxylated poly-L-lysine on cryosurvival of vitrified early stage embryos,Tsuji Y, Iwasaki T, Ogata H, Matsumoto Y, Kokeguchi S, Matsumura K, Hyon S-H, Shiotani M,Cryoletters,38,1-6,2017
  • 12. Tunable phase‐separation behavior of thermoresponsive polyampholytes through molecular design,Das E, Matsumura K,J. Polym. Sci. A. Polym. Chem.,55,876-884,2017
  • 13. Inhibition of protein aggregation by zwitterionic polymer-based core-shell nanogels.,Rajan R, Matsumura K.,Sci. Rep.,7,45777,2017
  • 14. Facile preparation of transparent poly(vinyl alcohol) hydrogels with uniform microcrystalline structure by hot pressing without using organic solvents.,Sakaguchi T, Nagano S, Hara M, Hyon S.H., Patel M, Matsumura K,Polymer Journal,49,535-542,2017
  • 15. Vitrification with carboxylated ε-poly-L-lysine improves the in vitro and in vivo developmental ability of vitrified pronuclear-stage pig embryos.,Kamoshita M, Kato T, Fujiwara K, Namiki T, Matsumura K, Hyon SH, Ito J, Kashiwazaki N.,Plos One,12,e0176711,2017
  • 16. Switchable release nano-reservoirs for co-delivery of drugs via a facile micelle-hydrogel composite.,Patel M., Kaneko T., Matsumura K,J. Mater. Chem. B.,5,3488-3497,2017
  • 17. A Freeze-Concentration and Polyampholyte-Modified Liposome-Based Antigen Delivery System for Effective Immunotherapy.,Ahmed S, Fujita S, Matsumura K.,Adv. Healthc. Mater.,6,1700207,2017
  • 18. Freezing Assisted Gene Delivery Combined with Polyampholyte Nanocarriers.,Ahmed S, Nakaji-Hirabayashi T, Watanabe T, Hohsaka T, Matsumura K.,ACS Biomater. Sci. Eng.,3,1677-1689,2017
  • 19. Enhanced Protein Internalization and Efficient Endosomal Escape Using Polyampholyte-Modified Liposomes and Freeze Concentration.,Ahmed S, Fujita S, Matsumura K.,Nanoscale,8,15888-15901,2016
  • 20. Biodegradable shape memory polymers functionalized with anti-biofouling interpenetrating polymer networks.,Dureamae I, Nishida M, Nakaji-Hirabayashi T, Matsumura K, Kitano H.,J Mater Chem B, 4, 5394-5404, 2016

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