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The significance and regulatory mechanisms of innate immune cells in the development of sepsis

机译:先天性免疫细胞在脓毒症发生中的意义和调控机制

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Sepsis with subsequent multiple organ dysfunction is a pronounced systemic inflammatory response to concealed or known infection and is a leading cause of death in intensive care units. The survival rate of severe sepsis and septic shock has not markedly improved in recent decades despite a great number of receptors and molecules involved in its pathogenesis have been found and taken as therapeutic targets. It is essential to thoroughly understand the host cell-mediated immunity involved in the development of sepsis and sepsis-related organ injury. Recent studies indicate that innate immune cells (such as neutrophils, macrophages, dendritic cells, T lymphocytes, regulatory T cells, and natural killer T cells) play pivotal roles in the maintenance of peripheral homeostasis and regulation of immune responses during sepsis. Therefore, an understanding of the biological significance and pathophysiological roles of different cell populations might gain novel insights into the immunoregulatory mechanisms of sepsis. In this review, we focus on major immune cells that may play potential roles in the contribution of new therapeutic approaches for sepsis.
机译:败血症及其后的多器官功能障碍是对隐蔽或已知感染的明显全身性炎症反应,是重症监护病房的主要死亡原因。尽管已经发现了许多脓毒症和败血性休克的发病机制中涉及的受体和分子,并将其作为治疗靶标,但近几十年来严重脓毒症和败血性休克的存活率并未显着提高。彻底了解败血症和败血症相关器官损伤的发展过程中所涉及的宿主细胞介导的免疫至关重要。最近的研究表明,先天性免疫细胞(如嗜中性粒细胞,巨噬细胞,树突状细胞,T淋巴细胞,调节性T细胞和自然杀伤性T细胞)在维持外周稳态和败血症期间免疫反应的调节中起着关键作用。因此,了解不同细胞群体的生物学意义和病理生理作用可能会为脓毒症的免疫调节机制提供新的见解。在这篇综述中,我们集中于主要的免疫细胞,这些细胞可能在脓毒症的新治疗方法的贡献中发挥潜在作用。

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