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采用工程化水凝胶向损伤的颈脊髓局部递送 BDNF 可增强膈神经呼吸功能。

Local BDNF Delivery to the Injured Cervical Spinal Cord using an Engineered Hydrogel Enhances Diaphragmatic Respiratory Function.

机构信息

Department of Neuroscience, Vickie and Jack Farber Institute for Neuroscience, Sidney Kimmel Medical College at Thomas Jefferson University, Philadelphia, Pennsylvania 19107.

School of Biomedical Engineering, Science and Health Systems, Drexel University, Philadelphia, Pennsylvania 19104, and.

出版信息

J Neurosci. 2018 Jun 27;38(26):5982-5995. doi: 10.1523/JNEUROSCI.3084-17.2018. Epub 2018 Jun 11.

Abstract

We developed an innovative biomaterial-based approach to repair the critical neural circuitry that controls diaphragm activation by locally delivering brain-derived neurotrophic factor (BDNF) to injured cervical spinal cord. BDNF can be used to restore respiratory function via a number of potential repair mechanisms; however, widespread BDNF biodistribution resulting from delivery methods such as systemic injection or lumbar puncture can lead to inefficient drug delivery and adverse side effects. As a viable alternative, we developed a novel hydrogel-based system loaded with polysaccharide-BDNF particles self-assembled by electrostatic interactions that can be safely implanted in the intrathecal space for achieving local BDNF delivery with controlled dosing and duration. Implantation of BDNF hydrogel after C4/C5 contusion-type spinal cord injury (SCI) in female rats robustly preserved diaphragm function, as assessed by recordings of compound muscle action potential and electromyography amplitudes. However, BDNF hydrogel did not decrease lesion size or degeneration of cervical motor neuron soma, suggesting that its therapeutic mechanism of action was not neuroprotection within spinal cord. Interestingly, BDNF hydrogel significantly preserved diaphragm innervation by phrenic motor neurons (PhMNs), as assessed by detailed neuromuscular junction morphological analysis and retrograde PhMN labeling from diaphragm using cholera toxin B. Furthermore, BDNF hydrogel enhanced the serotonergic axon innervation of PhMNs that plays an important role in modulating PhMN excitability. Our findings demonstrate that local BDNF hydrogel delivery is a robustly effective and safe strategy to restore diaphragm function after SCI. In addition, we demonstrate novel therapeutic mechanisms by which BDNF can repair respiratory neural circuitry. Respiratory compromise is a leading cause of morbidity and mortality following traumatic spinal cord injury (SCI). We used an innovative biomaterial-based drug delivery system in the form of a hydrogel that can be safely injected into the intrathecal space for achieving local delivery of brain-derived neurotrophic factor (BDNF) with controlled dosing and duration, while avoiding side effects associated with other delivery methods. In a clinically relevant rat model of cervical contusion-type SCI, BDNF hydrogel robustly and persistently improved diaphragmatic respiratory function by enhancing phrenic motor neuron (PhMN) innervation of the diaphragm neuromuscular junction and by increasing serotonergic innervation of PhMNs in ventral horn of the cervical spinal cord. These exciting findings demonstrate that local BDNF hydrogel delivery is a safe and robustly effective strategy to maintain respiratory function after cervical SCI.

摘要

我们开发了一种创新的基于生物材料的方法,通过局部递送脑源性神经营养因子(BDNF)来修复控制膈神经激活的关键神经回路,从而修复受损的颈脊髓。BDNF 可通过多种潜在的修复机制来恢复呼吸功能;然而,由于全身注射或腰椎穿刺等给药方法导致的 BDNF 广泛生物分布可能导致药物输送效率低下和不良反应。作为一种可行的替代方法,我们开发了一种新型的水凝胶基系统,该系统负载有通过静电相互作用自组装的多糖-BDNF 颗粒,可安全植入鞘内空间,以实现局部 BDNF 递药,控制剂量和持续时间。在雌性大鼠 C4/C5 挫伤型脊髓损伤(SCI)后植入 BDNF 水凝胶,有力地保持了膈神经功能,这通过复合肌肉动作电位和肌电图幅度的记录得到评估。然而,BDNF 水凝胶并未减小损伤大小或颈运动神经元胞体的退化,这表明其治疗作用机制不是脊髓内的神经保护作用。有趣的是,BDNF 水凝胶通过膈神经运动神经元(PhMN)的膈神经支配显著保存,这通过详细的神经肌肉接头形态分析和使用霍乱毒素 B 从膈神经逆行标记 PhMN 来评估。此外,BDNF 水凝胶增强了调节 PhMN 兴奋性的 5-羟色胺能轴突支配 PhMN 的作用。我们的研究结果表明,局部 BDNF 水凝胶递药是一种强大有效的安全策略,可在 SCI 后恢复膈神经功能。此外,我们证明了 BDNF 修复呼吸神经回路的新治疗机制。呼吸功能障碍是创伤性脊髓损伤(SCI)后发病率和死亡率的主要原因。我们使用了一种创新的生物材料给药系统,以水凝胶的形式,可以安全地注入鞘内空间,实现脑源性神经营养因子(BDNF)的局部递药,控制剂量和持续时间,同时避免与其他给药方法相关的副作用。在颈挫伤型 SCI 的临床相关大鼠模型中,BDNF 水凝胶通过增强膈神经运动神经元(PhMN)对膈神经肌肉接头的支配以及增加颈脊髓腹角中 PhMN 的 5-羟色胺能神经支配,有力且持续地改善了膈式呼吸功能。这些令人兴奋的发现表明,局部 BDNF 水凝胶递药是一种安全且有效的策略,可维持颈 SCI 后的呼吸功能。

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