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Nanomedicine therapies modulating Macrophage Dysfunction: a potential strategy to attenuate Cytokine Storms in severe infections

机译:Nanomedicine治疗调节巨噬细胞功能障碍:潜在的策略,以减轻严重感染中细胞因子风暴的潜在策略

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Cytokine storms, defined by the dysregulated and excessive production of multiple pro-inflammatory cytokines, are closely associated with the pathology and mortality of several infectious diseases, including coronavirus disease 2019 (COVID-19). Effective therapies are urgently needed to block the development of cytokine storms to improve patient outcomes, but approaches that target individual cytokines may have limited effect due to the number of cytokines involved in this process. Dysfunctional macrophages appear to play an essential role in cytokine storm development, and therapeutic interventions that target these cells may be a more feasible approach than targeting specific cytokines. Nanomedicine-based therapeutics that target macrophages have recently been shown to reduce cytokine production in animal models of diseases that are associated with excessive proinflammatory responses. In this mini-review, we summarize important studies and discuss how macrophage-targeted nanomedicines can be employed to attenuate cytokine storms and their associated pathological effects to improve outcomes in patients with severe infections or other conditions associated with excessive pro-inflammatory responses. We also discuss engineering approaches that can improve nanocarriers targeting efficiency to macrophages, and key issues should be considered before initiating such studies.? The author(s).
机译:由多发性促炎细胞因子的失调和过量生产定义的细胞因子风暴与几种传染病的病理和死亡率密切相关,包括冠状病毒疾病2019(Covid-19)。迫切需要迫切需要有效的疗法来阻止细胞因子风暴的发展,以改善患者结果,但靶向个体细胞因子的方法可能由于该过程中涉及的细胞因子的数量而产生有限的效果。功能障碍巨噬细胞似乎在细胞因子风暴发育中发挥着重要作用,并且靶向这些细胞的治疗干预措施可能是比靶向特异性细胞因子更可行的方法。基于纳米的治疗方法最近已被证明靶向巨噬细胞,以减少与过量炎症反应相关的疾病的动物模型中的细胞因子产生。在这个迷你审查中,我们总结了重要的研究,并讨论了巨噬细胞靶向纳米海运会如何才能丧失细胞因子风暴及其相关的病理效果,以改善严重感染或与过度炎症反应相关的其他病症的患者的结果。我们还讨论可以改善纳米载体靶向巨噬细胞效率的工程方法,并且在发起此类研究之前应考虑关键问题。作者。

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