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Dual Delivery of bFGF- and NGF-Binding Coacervate Confers Neuroprotection by Promoting Neuronal Proliferation

机译:bFGF和NGF结合凝聚层的双重传递通过促进神经元增殖赋予神经保护作用。

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Background/Aims Basic fibroblast growth factor (bFGF) and nerve growth factor (NGF) are essential for proper development, survival, growth, and maintenance of neurons in the central and peripheral nervous systems. However, because bFGF and NGF have short half-life and rapid diffusion rate, they have limited clinical efficacy. Thus, there is an urgent need to develop an effective delivery system to protect bFGF and NGF from proteolysis while maintaining their normal bioactivities. Methods To more efficiently deliver bFGF and NGF, we used a coacervate (synthesized with heparin and a biodegradable polycation at mass ratio of 500 100). The maximal package loads of GFs in coacervate were determined by Western Blotting; release efficiency of bFGF and NGF was measured by ELISA. Additionally, we evaluated the effect of bFGF and NGF on the viability, survival, and proliferation of neurons by MTT assay, BrdU cell proliferation, and calcein staining. Results Our coacervate incorporated bFGF and NGF and continuously released them for at least three weeks. This enhanced the growth and proliferation of PC12 cells and SH-SY5Y cells. Moreover, co-delivery of bFGF and NGF using coacervate was more neuroprotective than free application of both factors or coacervate delivery of each GF separately. Conclusions Dual delivery of bFGF and NGF binding coacervate was neuroprotective via stimulating the growth and proliferation of neurons.
机译:背景/目的碱性成纤维细胞生长因子(bFGF)和神经生长因子(NGF)对于中枢神经系统和周围神经系统中神经元的正常发育,存活,生长和维持至关重要。但是,由于bFGF和NGF的半衰期短且扩散速度快,因此其临床疗效有限。因此,迫切需要开发一种有效的递送系统以保护bFGF和NGF免受蛋白水解,同时保持其正常的生物活性。方法为了更有效地递送bFGF和NGF,我们使用了凝聚层(由肝素和质量比为500 100的可生物降解的聚阳离子合成)。通过Western Blotting确定凝聚层中GFs的最大包装量。通过ELISA测定bFGF和NGF的释放效率。此外,我们通过MTT分析,BrdU细胞增殖和钙黄绿素染色评估了bFGF和NGF对神经元活力,存活率和增殖的影响。结果我们的凝聚层掺入了bFGF和NGF,并持续释放至少三周。这增强了PC12细胞和SH-SY5Y细胞的生长和增殖。此外,与自由应用两种因子或每种GF分别进行凝聚相比,使用凝聚层共递送bFGF和NGF具有更好的神经保护作用。结论bFGF和NGF结合凝聚层的双重递送通过刺激神经元的生长和增殖具有神经保护作用。

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