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Articles

In vitro transfection of plasmid DNA by cationized gelatin prepared from different amine compounds

Pages 645-658 | Published online: 02 Apr 2012

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Kazuki Chujo, Jun-ichiro Jo & Yasuhiko Tabata. (2021) Intracellular controlled release prolongs the time period of siRNA-based gene suppression. Journal of Biomaterials Science, Polymer Edition 32:16, pages 2088-2102.
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K. Komatsu, T. Shibata, A. Shimada, H. Ideno, K. Nakashima, Y. Tabata & A. Nifuji. (2016) Cationized gelatin hydrogels mixed with plasmid DNA induce stronger and more sustained gene expression than atelocollagen at calvarial bone defects in vivo. Journal of Biomaterials Science, Polymer Edition 27:5, pages 419-430.
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Hidefumi Ishikawa, Jun-Ichiro Jo & Yasuhiko Tabata. (2012) Liver Anti-Fibrosis Therapy with Mesenchymal Stem Cells Secreting Hepatocyte Growth Factor. Journal of Biomaterials Science, Polymer Edition 23:18, pages 2259-2272.
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Jui-Yang Lai, David Hui-Kang Ma, Hsiao-Yun Cheng, Chi-Chin Sun, Shu-Jung Huang, Ya-Ting Li & Ging-Ho Hsiue. (2010) Ocular Biocompatibility of Carbodiimide Cross-Linked Hyaluronic Acid Hydrogels for Cell Sheet Delivery Carriers. Journal of Biomaterials Science, Polymer Edition 21:3, pages 359-376.
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Pei-Lin Lu, Jui-Yang Lai, David Hui-Kang Ma & Ging-Ho Hsiue. (2008) Carbodiimide cross-linked hyaluronic acid hydrogels as cell sheet delivery vehicles: characterization and interaction with corneal endothelial cells. Journal of Biomaterials Science, Polymer Edition 19:1, pages 1-18.
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Articles from other publishers (19)

Wenxuan Yang, Satoshi Abe & Yasuhiko Tabata. (2023) Association with cationized gelatin nanospheres enhances cell internalization of mitochondria efficiency. Regenerative Therapy 24, pages 190-200.
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Wenxuan Yang, Jun-ichiro Jo & Yasuhiko Tabata. (2023) A Reverse Transfection System with Cationized Gelatin Nanospheres Incorporating Molecular Beacon as a Tool to Visualize Cell Function. ACS Applied Bio Materials.
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Sho Takehana, Wenxuan Yang & Yasuhiko Tabata. (2022) Potential Method of Autophagy Imaging with Cationized Gelatin Nanospheres Incorporating Molecular Beacon. ACS Applied Bio Materials 5:6, pages 2965-2975.
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Ting Wang, Ruijin Ran, Yan Ma & Ming Zhang. (2021) Polymeric hydrogel as a vitreous substitute: current research, challenges, and future directions. Biomedical Materials 16:4, pages 042012.
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Yuki MurataJun-Ichiro JoYasuhiko Tabata. (2021) Molecular Beacon Imaging to Visualize Ki67 mRNA for Cell Proliferation Ability. Tissue Engineering Part A 27:9-10, pages 526-535.
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Sho Takehana, Yuki Murata, Jun-ichiro Jo & Yasuhiko Tabata. (2021) Complexation design of cationized gelatin and molecular beacon to visualize intracellular mRNA. PLOS ONE 16:1, pages e0245899.
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K. Sreedurgalakshmi, R. Srikar, K. Harikrishnan, Lakshmi Srinivasan & Reena Rajkumari. (2021) Cetuximab–siRNA Conjugate Linked Through Cationized Gelatin Knocks Down KRAS G12C Mutation in NSCLC Sensitizing the Cells Toward Gefitinib. Technology in Cancer Research & Treatment 20, pages 153303382110414.
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Yuki MurataJun-ichiro JoYasuhiko Tabata. (2019) Intracellular Controlled Release of Molecular Beacon Prolongs the Time Period of mRNA Visualization. Tissue Engineering Part A 25:21-22, pages 1527-1537.
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Osama Madkhali, George Mekhail & Shawn D. Wettig. (2019) Modified gelatin nanoparticles for gene delivery. International Journal of Pharmaceutics 554, pages 224-234.
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Vahid Heravi Shargh, Hubert Hondermarck & Mingtao Liang. (2017) Gelatin-albumin hybrid nanoparticles as matrix metalloproteinases-degradable delivery systems for breast cancer therapy. Nanomedicine 12:9, pages 977-989.
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Yoshitaka Ishihara, Satoshi Tsuno, Satoshi Kuwamoto, Taro Yamashita, Yusuke Endo, Keigo Miura, Yugo Miura, Takemasa Sato, Junichi Hasegawa & Norimasa Miura. (2016) Tumor-suppressive effects of atelocollagen-conjugated hsa-miR-520d-5p on un-differentiated cancer cells in a mouse xenograft model. BMC Cancer 16:1.
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George M Mekhail, Amany O Kamel, Gehanne AS Awad, Nahed D Mortada, Rowena L Rodrigo, Paul A Spagnuolo & Shawn D Wettig. (2016) Synthesis and evaluation of alendronate-modified gelatin biopolymer as a novel osteotropic nanocarrier for gene therapy. Nanomedicine 11:17, pages 2251-2273.
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Giovanni K. Zorzi, Begoña Seijo & Alejandro Sanchez. 2015. Handbook of Polymers for Pharmaceutical Technologies. Handbook of Polymers for Pharmaceutical Technologies 237 265 .
Jenny E. Parraga, Giovanni K. Zorzi, Yolanda Diebold, Begoña Seijo & Alejandro Sanchez. (2014) Nanoparticles based on naturally-occurring biopolymers as versatile delivery platforms for delicate bioactive molecules: An application for ocular gene silencing. International Journal of Pharmaceutics 477:1-2, pages 12-20.
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Miao Wang, Wenwen Deng, Min Fu, Xia Cao, Yan Yang, Weiyan Su, Jiangnan Yu & Ximing Xu. (2011) Efficient gene transfer into rat mesenchymal stem cells with cationized Lycium barbarum polysaccharides nanoparticles. Carbohydrate Polymers 86:4, pages 1509-1518.
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Sina Y. Rabbany, Joseph Pastore, Masaya Yamamoto, Tim Miller, Shahin Rafii, Rahul Aras & Marc Penn. (2010) Continuous Delivery of Stromal Cell-Derived Factor-1 from Alginate Scaffolds Accelerates Wound Healing. Cell Transplantation 19:4, pages 399-408.
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Fen Wan, Zhaohui Tang, Weidong He & Benjamin Chu. (2010) A chemistry/physics pathway with nanofibrous scaffolds for gene delivery. Physical Chemistry Chemical Physics 12:39, pages 12379.
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Marta López-Fraga, Tamara Martínez & Ana Jiménez. (2009) RNA Interference Technologies and Therapeutics. BioDrugs 23:5, pages 305-332.
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Sumio CHONO. (2007) Development of Drug Delivery Systems for Targeting to Macrophagesマクロファージを標的とするドラッグデリバリーシステムの構築. YAKUGAKU ZASSHI 127:9, pages 1419-1430.
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