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The effects of fixed electrical charge on chondrocyte behavior.

机译:固定电荷对软骨细胞行为的影响。

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摘要

In this study we have compared the effects of negative and positive fixed charges on chondrocyte behavior in vitro. Electrical charges have been incorporated into oligo(poly(ethylene glycol) fumarate) (OPF) using small charged monomers such as sodium methacrylate (SMA) and (2-(methacryloyloxy) ethyl)-trimethyl ammonium chloride (MAETAC) to produce negatively and positively charged hydrogels, respectively. The physical and electrical properties of the hydrogels were characterized by measuring and calculating the swelling ratio and zeta potential, respectively. Our results revealed that the properties of these OPF modified hydrogels varied according to the concentration of charged monomers. Zeta potential measurements demonstrated that the electrical properties of the OPF hydrogel surfaces changed on incorporation of SMA and MAETAC and that these changes in electrical properties were dose-dependent. Attenuated total reflectance Fourier transform infrared spectroscopy was used to determine the hydrogel surface composition. To assess the effects of surface properties on chondrocyte behavior primary chondrocytes isolated from rabbit ears were seeded as a monolayer on top of the hydrogels. We demonstrated that the cells remained viable over 7 days and began to proliferate while seeded on top of the hydrogels. Collagen type II staining was positive in all samples, however, the staining intensity was higher on negatively charged hydrogels. Similarly, glycosaminoglycan production was significantly higher on negatively charged hydrogels compared with a neutral hydrogel. Reverse transcriptase polymerase chain reaction showed up-regulation of collagen type II and down-regulation of collagen type I on the negatively charged hydrogels. These findings indicate that charge plays an important role in establishing an appropriate environment for chondrocytes and, hence, in the engineering of cartilage. Thus, further investigations into charged hydrogels for cartilage tissue engineering is merited.
机译:在这项研究中,我们比较了负固定电荷和正固定电荷对体外软骨细胞行为的影响。使用小电荷单体,如甲基丙烯酸钠(SMA)和(2-(甲基丙烯酰氧基)乙基)-三甲基氯化铵(MAETAC),已将电荷掺入富马酸聚乙二醇酯(OPF)中,从而产生负电荷和正电荷带电的水凝胶。通过分别测量和计算溶胀率和ζ电势来表征水凝胶的物理和电学性质。我们的结果表明,这些OPF改性的水凝胶的性质随带电单体的浓度而变化。 Zeta电位测量结果表明,随着SMA和MAETAC的引入,OPF水凝胶表面的电学性质发生了变化,并且这些电学性质的变化与剂量有关。使用衰减全反射傅里叶变换红外光谱法确定水凝胶的表面成分。为了评估表面性质对软骨细胞行为的影响,将从兔耳分离的原代软骨细胞以单层的形式接种在水凝胶的顶部。我们证明了细胞在7天内仍保持活力,并在接种到水凝胶顶部时开始增殖。 II型胶原蛋白染色在所有样品中均为阳性,但带负电荷的水凝胶的染色强度更高。同样,与中性水凝胶相比,带负电荷的水凝胶的糖胺聚糖产量明显更高。逆转录酶聚合酶链反应在带负电荷的水凝胶上显示II型胶原蛋白的上调和I型胶原蛋白的下调。这些发现表明,电荷在为软骨细胞建立合适的环境以及因此在软骨工程中起着重要作用。因此,值得进一步研究用于软骨组织工程的带电水凝胶。

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