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Silicone Substrate with Collagen and Carbon Nanotubes Exposed to Pulsed Current for MSC Osteodifferentiation

机译:具有胶原和碳纳米管的硅氧烷基材暴露于MSC骨溶化的脉冲电流

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摘要

Autologous human adipose tissue-derived mesenchymal stem cells (MSCs) have the potential for clinical translation through their induction into osteoblasts for regeneration. Bone healing can be driven by biophysical stimulation using electricity for activating quiescent adult stem cells. It is hypothesized that application of electric current will enhance their osteogenic differentiation, and addition of conductive carbon nanotubes (CNTs) to the cell substrate will provide increased efficiency in current transmission. Cultured MSCs were seeded and grown onto fabricated silicone-based composites containing collagen and CNT fibers. Chemical inducers, namely, glycerol phosphate, dexamethasone, and vitamin C, were then added to the medium, and pulsatile submilliampere electrical currents (about half mA for 5 cycles at 4 mHz, twice a week) were applied for two weeks. Calcium deposition indicative of MSC differentiation and osteoblastic activity was quantified through Alizarin Red S and spectroscopy. It was found that pulsed current significantly increased osteodifferentiation on silicone-collagen films without CNTs. Under no external current, the presence of 10% (m/m) CNTs led to a significant and almost triple upregulation of calcium deposition. Both CNTs and current parameters did not appear to be synergistic. These conditions of enhanced osteoblastic activities may further be explored ultimately towards future therapeutic use of MSCs.
机译:自体的人脂肪组织衍生的间充质干细胞(MSCs)具有通过其诱导临床翻译的临床翻译,以进行再生成骨细胞。可以使用电力激活静态成年干细胞的生物物理刺激来驱动骨愈合。假设电流的施加将增强它们的骨质发生分化,并向电池基板的导电碳纳米管(CNT)的添加将提供增加的电流透射效率。将培养的MSCs接种并生长在含有胶原和CNT纤维的制造的硅氧烷基复合材料上。然后将化学诱导剂,即甘油磷酸盐,地塞米松和维生素C加入培养基中,并施加脉动亚麻比电流(每周两次,每周两次,每周两次,约半mA为5个循环)。通过茜素红S和光谱法量化了MSC分化和成骨细胞活性的钙沉积。发现脉冲电流显着增加了硅氧烷胶原膜的骨细胞膜,而没有CNT。在没有外部电流下,存在10%(m / m)Cnt的存在导致钙沉积的显着且几乎三倍上调。 CNT和当前参数均未似乎是协同的。这些增强的骨细胞活性的条件可能进一步探讨了未来的MSC治疗使用。

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