首页> 美国卫生研究院文献>Oxidative Medicine and Cellular Longevity >Improved Healing of Diabetic Foot Ulcer upon Oxygenation Therapeutics through Oxygen-Loading Nanoperfluorocarbon Triggered by Radial Extracorporeal Shock Wave
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Improved Healing of Diabetic Foot Ulcer upon Oxygenation Therapeutics through Oxygen-Loading Nanoperfluorocarbon Triggered by Radial Extracorporeal Shock Wave

机译:通过径向体外冲击波触发的载氧纳米全氟化碳在充氧治疗后改善糖尿病足溃疡的愈合

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摘要

Diabetic foot ulcers (DFUs), the most serious complication of diabetes mellitus, can induce high morbidity, the need to amputate lower extremities, and even death. Although many adjunctive strategies have been applied for the treatment of DFUs, the low treatment efficiency, potential side effects, and high cost are still huge challenges. Recently, nanomaterial-based drug delivery systems (NDDSs) have achieved targeted drug delivery and controlled drug release, offering great promises in various therapeutics for diverse disorders. Additionally, the radial extracorporeal shock wave (rESW) has been shown to function as a robust trigger source for the NDDS to release its contents, as the rESW harbors a potent capability in generating pressure waves and in creating the cavitation effect. Here, we explored the performance of oxygen-loaded nanoperfluorocarbon (Nano-PFC) combined with the rESW as a treatment for DFUs. Prior to in vivo assessment, we first demonstrated the high oxygen affinity in vitro and great biocompatibility of Nano-PFC. Moreover, the rESW-responsive oxygen release behavior from oxygen-saturated Nano-PFC was also successfully verified in vitro and in vivo. Importantly, the wound healing of DFUs was significantly accelerated due to improved blood microcirculation, which was a result of rESW therapy (rESWT), and the targeted release of oxygen into the wound from oxygen-loaded Nano-PFC, which was triggered by the rESW. Collectively, the oxygen-saturated Nano-PFC and rESW provide a completely new approach to treat DFUs, and this study highlights the advantages of combining nanotechnology with rESW in therapeutics.
机译:糖尿病足溃疡(DFU)是糖尿病最严重的并发症,可诱发高发病率,需要截肢下肢甚至死亡。尽管已经将许多辅助策略用于DFU的治疗,但是低治疗效率,潜在的副作用和高成本仍然是巨大的挑战。近来,基于纳米材料的药物输送系统(NDDSs)已实现了靶向药物输送和可控药物释放,为各种疾病的各种治疗方法提供了广阔前景。另外,径向体外冲击波(rESW)已被证明是NDDS释放其内含物的强大触发源,因为rESW具有产生压力波和产生空化作用的强大能力。在这里,我们探索了结合有氧的纳米全氟化碳(Nano-PFC)与rESW一起作为DFU的处理方法的性能。在体内评估之前,我们首先证明了体外的高氧亲和力和纳米PFC的良好生物相容性。此外,还成功地在体外和体内验证了氧饱和纳米PFC的rESW响应性氧释放行为。重要的是,由于rESW治疗(rESWT)改善了血液的微循环,DFU的伤口愈合得到了显着加速,这是由于rESW触发了氧气从含氧的纳米PFC靶向释放到伤口中的结果。总而言之,氧饱和的纳米PFC和rESW为治疗DFU提供了一种全新的方法,这项研究突出了将纳米技术与rESW结合在治疗中的优势。

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