Gittens Rolando A, Olivares-Navarrete Rene, Rettew Robert, Butera Robert J, Alamgir Faisal M, Boyan Barbara D, Schwartz Zvi
Center for Drug Discovery and Biodiversity, Institute for Advanced Scientific Research and High Technology Services (INDICASAT), Panama City, Republic of Panama.
Bioelectromagnetics. 2013 Dec;34(8):599-612. doi: 10.1002/bem.21810. Epub 2013 Aug 29.
Electrical stimulation has been used clinically to promote bone regeneration in cases of fractures with delayed union or nonunion, with several in vitro and in vivo reports suggesting its beneficial effects on bone formation. However, the use of electrical stimulation of titanium (Ti) implants to enhance osseointegration is less understood, in part because of the few in vitro models that attempt to represent the in vivo environment. In this article, the design of a new in vitro system that allows direct electrical stimulation of osteoblasts through their Ti substrates without the flow of exogenous currents through the media is presented, and the effect of applied electrical polarization on osteoblast differentiation and local factor production was evaluated. A custom-made polycarbonate tissue culture plate was designed to allow electrical connections directly underneath Ti disks placed inside the wells, which were supplied with electrical polarization ranging from 100 to 500 mV to stimulate MG63 osteoblasts. Our results show that electrical polarization applied directly through Ti substrates on which the cells are growing in the absence of applied electrical currents may increase osteoblast differentiation and local factor production in a voltage-dependent manner.
电刺激已在临床上用于促进延迟愈合或不愈合骨折病例中的骨再生,多项体外和体内研究报告表明其对骨形成具有有益作用。然而,关于使用钛(Ti)植入物的电刺激来增强骨整合的了解较少,部分原因是很少有体外模型试图模拟体内环境。在本文中,我们介绍了一种新的体外系统的设计,该系统允许通过成骨细胞的钛底物直接对其进行电刺激,而不会有外源电流通过培养基,并且评估了施加的电极化对成骨细胞分化和局部因子产生的影响。设计了一种定制的聚碳酸酯组织培养板,以便在置于孔内的钛盘正下方进行电连接,向其施加100至500 mV的电极化以刺激MG63成骨细胞。我们的结果表明,在无外加电流的情况下,直接通过细胞生长的钛底物施加电极化,可能会以电压依赖的方式增加成骨细胞分化和局部因子的产生。