Capella Virginia, Rivero Rebeca E, Liaudat Ana C, Ibarra Luis E, Roma Dardo A, Alustiza Fabrisio, Mañas Fernando, Barbero César A, Bosch Pablo, Rivarola Claudia R, Rodriguez Nancy
Department of Molecular Biology, National University of Río Cuarto-CONICET, National Route N° 36, 601 Km, Rio Cuarto, X5804ZAB, Argentina.
Department of Chemistry, National University of Río Cuarto-CONICET, National Route N° 36, 601 Km, Rio Cuarto, X5804ZAB, Argentina.
Heliyon. 2019 Apr 9;5(4):e01474. doi: 10.1016/j.heliyon.2019.e01474. eCollection 2019 Apr.
Several hydrogel surfaces present properties that simulate the mechanical and physicochemical features of extracellular matrix (ECM), providing a platform that mimic the native cellular milieus. Poly--isopropylacrylamide (PNIPAM) hydrogels are receiving attention in biomedical field due to their thermosensibility and soft texture. However, more extensive biocompatibility and cellular interactions studies with cell lines are needed. Therefore, the aim of this study is focus on evaluating the biocompatibility of PNIPAM through cytotoxicity, genotoxicity, and proliferation tests in murine preadipose cells (3T3-L1), human embryonic kidney cells (HEK293) and human carcinoma-derived cells (A549) in presence of hydrogel surfaces. Bioadhesive capacity above PNIPAM surfaces was also analyzed. MTT and neutral red uptake assays shown non-cytotoxic effect of PNIPAM in the studied cell lines. Genotoxicity was evaluated by the single-cell gel electrophoresis assay, where DNA damages were not detected. [H]-thymidine staining allowed to corroborate that cell proliferation had progressed correctly. Adopted morphologies for each cell line over PNIPAM were similar to cell growing observed on polystyrene, indicating that the surfaces favor the cell attachment during 5 days' culture. The good biocompatibility of PNIPAM surfaces make it an interesting scaffold with clinical potential in tissue regeneration engineering, and a possible adipose and kidney tissue-engineered construct.
几种水凝胶表面呈现出模拟细胞外基质(ECM)机械和物理化学特征的特性,提供了一个模拟天然细胞环境的平台。聚N-异丙基丙烯酰胺(PNIPAM)水凝胶因其热敏感性和柔软质地而在生物医学领域受到关注。然而,需要对细胞系进行更广泛的生物相容性和细胞相互作用研究。因此,本研究的目的是通过在水凝胶表面存在的情况下,对小鼠前脂肪细胞(3T3-L1)、人胚胎肾细胞(HEK293)和人癌衍生细胞(A549)进行细胞毒性、遗传毒性和增殖测试,来评估PNIPAM的生物相容性。还分析了PNIPAM表面的生物粘附能力。MTT和中性红摄取试验表明PNIPAM在所研究的细胞系中无细胞毒性作用。通过单细胞凝胶电泳试验评估遗传毒性,未检测到DNA损伤。[H]-胸腺嘧啶核苷染色证实细胞增殖进展正常。在PNIPAM上每种细胞系所采用的形态与在聚苯乙烯上观察到的细胞生长相似,表明在5天的培养过程中这些表面有利于细胞附着。PNIPAM表面良好的生物相容性使其成为组织再生工程中具有临床潜力的有趣支架,以及一种可能的脂肪和肾脏组织工程构建物。