Yin Bao-Sheng, Li Ming, Liu Bo-Ming, Wang Shou-Yu, Zhang Wei-Guo
Department of Orthopedics, The First Affiliated Hospital of Dalian Medical University, Dalian, Liaoning 116011, P.R. China.
Exp Ther Med. 2015 Jan;9(1):154-158. doi: 10.3892/etm.2014.2082. Epub 2014 Nov 19.
The effectiveness of tacrolimus (FK506) for the promotion of nerve regeneration is known. However, at present, due to the fact that systemic application may lead to opportunistic infections and tumors, and that the treatment of peripheral nerve injury with systemic immunosuppression is not generally accepted, FK506 has not been widely used for the treatment of simple or peripheral nerve injury. In this study, a pyramid-shaped microfluidic device was designed and fabricated that was able to analyze the effective concentration of locally applied FK506. After testing the effectiveness of the microfluidic device by measuring the fluorescence intensity of fluorescein isothiocyanate-dextran, rat Schwann cells (SCs) were loaded into the device and cultured for 9 days in the presence of different concentrations of FK506. SC proliferation in the presence of FK506 was concentration-dependent between 0 and 2.5±0.003 ng/ml. The proliferation rate reached a maximum at 1.786±0.014 ng/ml, which was statistically significantly different from the proliferation rate at lower FK506 concentrations. There was no statistically significant difference in the proliferation rate between the 1.786 ng/ml group and groups of higher FK506 concentrations. Furthermore, the SCs in the microfluidic device and a 96-well plate continued to proliferate as the culture time increased. No statistically significant differences were identified between the microfluidic device and a 96-well plate with regard to the proliferation rates in each corresponding group. The results obtained in this study demonstrated that the microfluidic device can be used as an excellent platform for the study of drug concentration at the cellular level, and the effective FK506 concentration for local application is 1.786±0.014 ng/ml.
他克莫司(FK506)促进神经再生的有效性是已知的。然而,目前由于全身应用可能导致机会性感染和肿瘤,并且全身免疫抑制治疗周围神经损伤尚未被普遍接受,FK506尚未广泛用于治疗单纯性或周围神经损伤。在本研究中,设计并制造了一种金字塔形微流控装置,该装置能够分析局部应用FK506的有效浓度。通过测量异硫氰酸荧光素 - 葡聚糖的荧光强度测试微流控装置的有效性后,将大鼠雪旺细胞(SCs)加载到该装置中,并在不同浓度的FK506存在下培养9天。在0至2.5±0.003 ng/ml之间,FK506存在时SCs的增殖呈浓度依赖性。增殖率在1.786±0.014 ng/ml时达到最大值,与较低FK506浓度下的增殖率相比有统计学显著差异。1.786 ng/ml组与较高FK506浓度组之间的增殖率没有统计学显著差异。此外,随着培养时间的增加,微流控装置和96孔板中的SCs继续增殖。在每个相应组的增殖率方面,微流控装置和96孔板之间未发现统计学显著差异。本研究获得的结果表明,微流控装置可作为细胞水平药物浓度研究的优良平台,局部应用FK506的有效浓度为1.786±0.014 ng/ml。