Lopes Cátia Df, Oliveira Hugo, Estevão Inês, Pires Liliana Raquel, Pêgo Ana Paula
INEB - Instituto de Engenharia Biomédica, Universidade do Porto (UPorto), Porto, Portugal; i3S - Instituto de Investigação e Inovação em Saúde, NanoBiomaterials for Targeted Therapies Group, UPorto, Porto, Portugal; FMUP - Faculdade de Medicina da Universidade do Porto, Porto, Portugal.
INEB - Instituto de Engenharia Biomédica, Universidade do Porto (UPorto), Porto, Portugal.
Int J Nanomedicine. 2016 Jun 8;11:2675-83. doi: 10.2147/IJN.S104374. eCollection 2016.
A major challenge in neuronal gene therapy is to achieve safe, efficient, and minimally invasive transgene delivery to neurons. In this study, we report the use of a nonviral neurotropic poly(ethylene imine)-based nanoparticle that is capable of mediating neuron-specific transfection upon a subcutaneous injection. Nanoparticles were targeted to peripheral neurons by using the nontoxic carboxylic fragment of tetanus toxin (HC), which, besides being neurotropic, is capable of being retrogradely transported from neuron terminals to the cell bodies. Nontargeted particles and naked plasmid DNA were used as control. Five days after treatment by subcutaneous injection in the footpad of Wistar rats, it was observed that 56% and 64% of L4 and L5 dorsal root ganglia neurons, respectively, were expressing the reporter protein. The delivery mediated by HC-functionalized nanoparticles spatially limited the transgene expression, in comparison with the controls. Histological examination revealed no significant adverse effects in the use of the proposed delivery system. These findings demonstrate the feasibility and safety of the developed neurotropic nanoparticles for the minimally invasive delivery of genes to the peripheral nervous system, opening new avenues for the application of gene therapy strategies in the treatment of peripheral neuropathies.
神经元基因治疗中的一个主要挑战是如何安全、高效且微创地将转基因递送至神经元。在本研究中,我们报告了一种基于非病毒嗜神经聚(乙烯亚胺)的纳米颗粒的应用,该纳米颗粒在皮下注射后能够介导神经元特异性转染。通过使用破伤风毒素(HC)的无毒羧基片段将纳米颗粒靶向至外周神经元,该片段除具有嗜神经特性外,还能够从神经元末端逆向转运至细胞体。未靶向的颗粒和裸露的质粒DNA用作对照。在Wistar大鼠脚垫进行皮下注射治疗五天后,观察到L4和L5背根神经节神经元分别有56%和64%表达报告蛋白。与对照相比,由HC功能化纳米颗粒介导的递送在空间上限制了转基因表达。组织学检查显示,所提出的递送系统的使用没有明显的不良影响。这些发现证明了所开发的嗜神经纳米颗粒用于将基因微创递送至外周神经系统的可行性和安全性,为基因治疗策略在周围神经病变治疗中的应用开辟了新途径。