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首页> 外文期刊>International Journal of Nanomedicine >Nerve growth factor delivery by ultrasound-mediated nanobubble destruction as a treatment for acute spinal cord injury in rats
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Nerve growth factor delivery by ultrasound-mediated nanobubble destruction as a treatment for acute spinal cord injury in rats

机译:通过超声介导的纳米柔臼破碎作为大鼠急性脊髓损伤治疗的神经生长因子

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Background: Spinal cord injuries (SCIs) can cause severe disability or death. Treatment options include surgical intervention, drug therapy, and stem cell transplantation. However, the efficacy of these methods for functional recovery remains unsatisfactory. Purpose: This study was conducted to explore the effect of ultrasound (US)-mediated destruction of poly(lactic-co-glycolic acid) (PLGA) nanobubbles (NBs) expressing nerve growth factor (NGF) ( NGF /PLGA NBs) on nerve regeneration in rats following SCI. Materials and methods: Adult male Sprague Dawley rats were randomly divided into four treatment groups after Allen hit models of SCI were established. The groups were normal saline (NS) group, NGF and NBs group, NGF and US group, and NGF /PLGA NBs and US group. Histological changes after SCI were observed by hematoxylin and eosin staining. Neuron viability was determined by Nissl staining. Terminal deoxynucleotidyl transferase-mediated dUTP-biotin nick end labeling staining was used to examine cell apoptosis. NGF gene and protein expressions were detected by quantitative reverse transcription polymerase chain reaction and Western blotting. Green fluorescent protein expression in the spinal cord was examined using an inverted fluorescence microscope. The recovery of neural function was determined using the Basso, Beattie, and Bresnahan test. Results: NGF therapy using US-mediated NGF /PLGA NBs destruction significantly increased NGF expression, attenuated histological injury, decreased neuron loss, inhibited neuronal apoptosis in injured spinal cords, and increased BBB scores in rats with SCI. Conclusion: US-mediated NGF /PLGA NBs destruction effectively transfects the NGF gene into target tissues and has a significant effect on the injured spinal cord. The combination of US irradiation and gene therapy through NGF /PLGA NBs holds great promise for the future of nanomedicine and the development of noninvasive treatment options for SCI and other diseases.
机译:背景:脊髓损伤(SCI)可引起严重的残疾或死亡。治疗方案包括外科手术干预,药物治疗和干细胞移植。然而,这些功能恢复方法的功效仍然不令人满意。目的:进行本研究以探讨超声(US)介导的多(乳酸)纳米骨(PLGA)纳米博尔斯(NBS)对神经上的神经生长因子(NGF)(NGF / PLGA NBS)的影响的影响SCI后大鼠的再生。材料和方法:成年雄性Sprague Dawley大鼠在SCI的艾伦击中模型后随机分为四个治疗组。该群体是正常的盐水(NS)组,NGF和NBS组,NGF和US组,NGF / PLGA NBS和US组。通过苏木精和曙红染色观察SCI后的组织学变化。通过NISSL染色测定神经元活力。末端脱氧核苷酸转移酶介导的DUTP-BIOTIN切口末端标记染色用于检查细胞凋亡。通过定量逆转录聚合酶链反应和蛋白质印迹检测NGF基因和蛋白质表达。使用倒置荧光显微镜检查脊髓中的绿色荧光蛋白表达。使用Basso,Beattie和Bresnahan测试确定神经功能的恢复。结果:NGF治疗使用美国介导的NGF / PLGA NBS破坏显着增加了NGF表达,减毒的组织学损伤,降低神经元损失,抑制受伤脊髓的神经元凋亡,并增加了SCI大鼠的BBB分数。结论:美国介导的NGF / PLGA NBS破坏有效地将NGF基因转染到目标组织中,对受伤的脊髓产生显着影响。通过NGF / PLGA NBS的美国辐照和基因治疗的结合对纳米医生的未来以及SCI和其他疾病的非侵入性治疗方案的发展具有很大的承诺。

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