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Hydrogel Based on Chitosan/Gelatin/Poly(Vinyl Alcohol) for In Vitro Human Auricular Chondrocyte Culture
被引:6
|作者:
Ortega-Sanchez, Carmina
[1
]
Melgarejo-Ramirez, Yaaziel
[1
]
Rodriguez-Rodriguez, Rogelio
[2
]
Jimenez-Avalos, Jorge Armando
[2
]
Giraldo-Gomez, David M.
[3
]
Gutierrez-Gomez, Claudia
[4
]
Rodriguez-Campos, Jacobo
[5
]
Luna-Barcenas, Gabriel
[6
]
Velasquillo, Cristina
[7
]
Martinez-Lopez, Valentin
[7
]
Garcia-Carvajal, Zaira Y.
[3
]
机构:
[1] Unidad Gerociencias, Lab Biotecnol, Inst Nacl RehabilLuis Guillermo Ibarra Ibarra, Ciudad De Mexico 14389, Mexico
[2] Ctr Invest & Aistencia Tecnol & Diseno Estado Jali, Biotecnol Med & Farmaceut, Ave Normalistas 800, Guadalajara 44270, Jalisco, Mexico
[3] Univ Nacl Autonoma Mexico, Fac Med, Dept Biol Celular & Tisular, Unidad Microscopia, Ave Univ 3000,Edificio A Planta Baja,Ciudad Univ, Ciudad De Mexico 04510, Mexico
[4] Hosp Gen Dr Manuel Gea Gonzalez, Div Cirugia Plast & Reconstruct, Ciudad De Mexico 14080, Mexico
[5] Ctr Invest & Asistencia Tecnol & Diseno Estado Jal, Serv Analit & Metrol, Av Normalistas 800, Guadalajara 44270, Jalisco, Mexico
[6] Tecnol Monterrey, Inst Adv Mat Sustainable Mfg, Epigmenio Gonzalez 500, Santiago De Queretaro 76130, Qro, Mexico
[7] Inst Nacl Rehabil Luis Guillermo Ibarra Ibarra, Inst Nacl RehabilLuis Guillermo Ibarra Ibarra, Ciudad De Mexico 14389, Mexico
来源:
关键词:
composite hydrogel;
three-dimensional hydrogel;
chitosan;
gelatin;
tissue engineering;
auricular chondrocytes culture;
EXTRACELLULAR-MATRIX;
CARTILAGE;
GELATIN;
SCAFFOLDS;
COLLAGEN;
MORPHOGENESIS;
CAPACITY;
CHITIN;
D O I:
10.3390/polym16040479
中图分类号:
O63 [高分子化学(高聚物)];
学科分类号:
070305 ;
080501 ;
081704 ;
摘要:
Three-dimensional (3D) hydrogels provide tissue-like complexities and allow for the spatial orientation of cells, leading to more realistic cellular responses in pathophysiological environments. There is a growing interest in developing multifunctional hydrogels using ternary mixtures for biomedical applications. This study examined the biocompatibility and suitability of human auricular chondrocytes from microtia cultured onto steam-sterilized 3D Chitosan/Gelatin/Poly(Vinyl Alcohol) (CS/Gel/PVA) hydrogels as scaffolds for tissue engineering applications. Hydrogels were prepared in a polymer ratio (1:1:1) through freezing/thawing and freeze-drying and were sterilized by autoclaving. The macrostructure of the resulting hydrogels was investigated by scanning electron microscopy (SEM), showing a heterogeneous macroporous structure with a pore size between 50 and 500 mu m. Fourier-transform infrared (FTIR) spectra showed that the three polymers interacted through hydrogen bonding between the amino and hydroxyl moieties. The profile of amino acids present in the gelatin and the hydrogel was determined by ultra-performance liquid chromatography (UPLC), suggesting that the majority of amino acids interacted during the formation of the hydrogel. The cytocompatibility, viability, cell growth and formation of extracellular matrix (ECM) proteins were evaluated to demonstrate the suitability and functionality of the 3D hydrogels for the culture of auricular chondrocytes. The cytocompatibility of the 3D hydrogels was confirmed using a 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay, reaching 100% viability after 72 h. Chondrocyte viability showed a high affinity of chondrocytes for the hydrogel after 14 days, using the Live/Dead assay. The chondrocyte attachment onto the 3D hydrogels and the formation of an ECM were observed using SEM. Immunofluorescence confirmed the expression of elastin, aggrecan and type II collagen, three of the main components found in an elastic cartilage extracellular matrix. These results demonstrate the suitability and functionality of a CS/Gel/PVA hydrogel as a 3D support for the auricular chondrocytes culture, suggesting that these hydrogels are a potential biomaterial for cartilage tissue engineering applications, aimed at the regeneration of elastic cartilage.
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页数:19
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