Poly(vinyl alcohol co-vinyl acetate) as a novel scaffold for mammalian cell culture and controlled drug release
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作者:
Francisca Villanueva-Flores
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机构:Universidad Nacional Autónoma de México,Instituto de Biotecnología
Francisca Villanueva-Flores
Margarita Miranda-Hernández
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机构:Universidad Nacional Autónoma de México,Instituto de Biotecnología
Margarita Miranda-Hernández
José O. Flores-Flores
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机构:Universidad Nacional Autónoma de México,Instituto de Biotecnología
José O. Flores-Flores
Alberto Porras-Sanjuanico
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机构:Universidad Nacional Autónoma de México,Instituto de Biotecnología
Alberto Porras-Sanjuanico
Hailin Hu
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机构:Universidad Nacional Autónoma de México,Instituto de Biotecnología
Hailin Hu
Leonor Pérez-Martínez
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机构:Universidad Nacional Autónoma de México,Instituto de Biotecnología
Leonor Pérez-Martínez
Octavio T. Ramírez
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机构:Universidad Nacional Autónoma de México,Instituto de Biotecnología
Octavio T. Ramírez
Laura A. Palomares
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机构:Universidad Nacional Autónoma de México,Instituto de Biotecnología
Laura A. Palomares
机构:
[1] Universidad Nacional Autónoma de México,Instituto de Biotecnología
[2] Universidad Nacional Autónoma de México,Instituto de Energías Renovables
[3] Universidad Nacional Autónoma de México,Instituto de Ciencias Aplicadas y Tecnología
来源:
Journal of Materials Science
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2019年
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54卷
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摘要:
Tissue engineering requires novel smart materials to sustain cell growth, tissue regeneration and in situ drug release in a controlled mode. Also, biocompatible synthesis methods are needed to immobilize biologically active compounds. Poly(vinyl alcohol co-vinyl acetate) (PAcVA) was synthesized at 37 °C using glutaraldehyde (GA) as a crosslinking agent. The mechanical characteristics of the polymer were manipulated by varying crosslinking degrees using different GA concentrations. Materials with Young’s modules similar to soft tissues, adequate for tissue engineering, were obtained. PAcVA was a pH-responsive material with maximum swelling at pH 5.8. When hydrated, PAcVA was electro-responsive. Fluorescein was used as a model molecule to characterize the releasing properties of the polymer. Effective diffusivities were a function of the crosslinking degree. Release rates were proportional to temperature and were faster at lower GA contents. According to a fit to the Korsmeyer–Peppas’ model, diffusion at 5 and 10% GA was Fickian, but at 20% GA, diffusion was abnormal. To promote cell attachment and neutralize free aldehyde groups, PAcVA hydrogels were covered with poly-l-lysine and laminin, which supported growth of lung carcinoma and mouse hypothalamic cells without signs of cytotoxicity or oxidative stress. An intelligent low-cost hydrogel with properties that can be easily modulated was synthesized and fully characterized. Its properties make it suitable for tissue engineering applications, as they mimic the mechanical properties of natural tissues.
机构:
Auckland Univ Technol, Fac Hlth & Environm Sci, Drug Delivery Res Grp, Auckland, New ZealandAuckland Univ Technol, Fac Hlth & Environm Sci, Drug Delivery Res Grp, Auckland, New Zealand
Long, Jingjunjiao
Nand, Ashveen V.
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Unitec Inst Technol, Hlth & Community & Anim & Environm Sci Network, Auckland, New ZealandAuckland Univ Technol, Fac Hlth & Environm Sci, Drug Delivery Res Grp, Auckland, New Zealand
Nand, Ashveen V.
Bunt, Craig
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机构:
Lincoln Univ, Fac Agr & Life Sci, Dept Agr Sci, Canterbury, New ZealandAuckland Univ Technol, Fac Hlth & Environm Sci, Drug Delivery Res Grp, Auckland, New Zealand