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Novel multi-drug delivery hydrogel using scar-homing liposomes improves spinal cord injury repair

机译:使用疤痕归巢脂质体的新型多药递送水凝胶可改善脊髓损伤修复

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摘要

Proper selection and effective delivery of combination drugs targeting multiple pathophysiological pathways key to spinal cord injury (SCI) hold promise to address the thus far scarce clinical therapeutics for improving recovery after SCI. In this study, we aim to develop a clinically feasible way for targeted delivery of multiple drugs with different physiochemical properties to the SCI site, detail the underlying mechanism of neural recovery, and detect any synergistic effect related to combination therapy.>Methods: Liposomes (LIP) modified with a scar-targeted tetrapeptide (cysteine-alanine-glutamine-lysine, CAQK) were first constructed to simultaneously encapsulate docetaxel (DTX) and brain-derived neurotrophic factor (BDNF) and then were further added into a thermosensitive heparin-modified poloxamer hydrogel (HP) with affinity-bound acidic fibroblast growth factor (aFGF-HP) for local administration into the SCI site (CAQK-LIP-GFs/DTX@HP) in a rat model. In vivo fluorescence imaging was used to examine the specificity of CAQK-LIP-GFs/DTX binding to the injured site. Multiple comprehensive evaluations including biotin dextran amine anterograde tracing and magnetic resonance imaging were used to detect any synergistic effects and the underlying mechanisms of CAQK-LIP-GFs/DTX@HP both in vivo (rat SCI model) and in vitro (primary neuron).>Results: The multiple drugs were effectively delivered to the injured site. The combined application of GFs and DTX supported neuro-regeneration by improving neuronal survival and plasticity, rendering a more permissive extracellular matrix environment with improved regeneration potential. In addition, our combination therapy promoted axonal regeneration via moderation of microtubule function and mitochondrial transport along the regenerating axon.>Conclusion: This novel multifunctional therapeutic strategy with a scar-homing delivery system may offer promising translational prospects for the clinical treatment of SCI.
机译:正确选择和有效递送针对多种脊髓损伤(SCI)关键病理生理途径的联合药物,有望解决迄今为止尚不足以改善SCI后恢复的临床疗法。在这项研究中,我们旨在开发一种临床可行的方法,将具有不同理化特性的多种药物靶向递送至SCI部位,详细说明神经恢复的潜在机制,并检测与联合疗法相关的任何协同效应。>方法: 首先,构建用靶向疤痕的四肽(半胱氨酸-丙氨酸-谷氨酰胺-赖氨酸,CAQK)修饰的脂质体(LIP),以同时包封多西他赛(DTX)和脑源性神经营养因子(BDNF),然后进一步添加在大鼠模型中,将其与具有亲和力的酸性成纤维细胞生长因子(aFGF-HP)结合在一起的热敏性肝素修饰的泊洛沙姆水凝胶(HP),用于局部给药至SCI部位(CAQK-LIP-GFs / DTX @ HP)。体内荧光成像用于检查CAQK-LIP-GFs / DTX与受损部位结合的特异性。包括生物素葡聚糖胺顺行性示踪和磁共振成像在内的多项综合评估用于检测CAQK-LIP-GFs / DTX @ HP在体内(大鼠SCI模型)和体外(原神经元)的任何协同作用和潜在机制。 >结果:多种药物有效地运送到了受伤的地点。 GF和DTX的组合应用通过改善神经元存活和可塑性来支持神经再生,从而提供了一种更宽容的细胞外基质环境,并具有增强的再生潜力。此外,我们的联合疗法通过调节微管功能和沿着再生轴突的线粒体转运促进轴突再生。>结论:这种新型的带有疤痕归巢递送系统的多功能治疗策略可能为轴突的转移提供有希望的翻译前景。 SCI的临床治疗。

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