CD8+ Regulatory T Cells Induced by Lipopolysaccharide Improve Mouse Endotoxin Shock.

Nanaka Morita, Masato Hoshi, Hiroyuki Tezuka, Tatsuya Ando, Sayaka Yoshida, Fumiaki Sato, Hiroyuki Yokoi, Hiroyasu Ito, Kuniaki Saito
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Abstract

Sepsis is a systemic inflammatory disease caused by a bacterial infection that leads to severe mortality, especially in elderly patients, because of an excessive immune response and impaired regulatory functions. Antibiotic treatment is widely accepted as the first-line therapy for sepsis; however, its excessive use has led to the emergence of multidrug-resistant bacteria in patients with sepsis. Therefore, immunotherapy may be effective in treating sepsis. Although CD8+ regulatory T cells (Tregs) are known to have immunomodulatory effects in various inflammatory diseases, their role during sepsis remains unclear. In this study, we investigated the role of CD8+ Tregs in an LPS-induced endotoxic shock model in young (8-12 wk old) and aged (18-20 mo old) mice. The adoptive transfer of CD8+ Tregs into LPS-treated young mice improved the survival rate of LPS-induced endotoxic shock. Moreover, the number of CD8+ Tregs in LPS-treated young mice increased through the induction of IL-15 produced by CD11c+ cells. In contrast, LPS-treated aged mice showed a reduced induction of CD8+ Tregs owing to the limited production of IL-15. Furthermore, CD8+ Tregs induced by treatment with the rIL-15/IL-15Rα complex prevented LPS-induced body wight loss and tissue injury in aged mice. In this study, to our knowledge, the induction of CD8+ Tregs as novel immunotherapy or adjuvant therapy for endotoxic shock might reduce the uncontrolled immune response and ultimately improve the outcomes of endotoxic shock.

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脂多糖诱导的CD8+调节性T细胞改善小鼠内毒素休克。
脓毒症是一种由细菌感染引起的全身炎症性疾病,由于免疫反应过度和调节功能受损,会导致严重死亡,尤其是老年患者。抗生素治疗被广泛接受为败血症的一线治疗方法;然而,它的过度使用导致败血症患者出现了耐多药细菌。因此,免疫疗法可能对治疗败血症有效。尽管已知CD8+调节性T细胞(Tregs)在各种炎症性疾病中具有免疫调节作用,但它们在败血症中的作用尚不清楚。在本研究中,我们研究了CD8+Treg在年轻(8-12周大)和老年(18-20个月大)小鼠LPS诱导的内毒素休克模型中的作用。将CD8+Treg过继转移到LPS处理的年轻小鼠中提高了LPS诱导的内毒素休克的存活率。此外,LPS处理的年轻小鼠中CD8+Treg的数量通过诱导CD11c+细胞产生的IL-15而增加。相反,LPS处理的老年小鼠由于IL-15的产生有限,显示CD8+Treg的诱导减少。此外,用rIL-15/IL-15Rα复合物处理诱导的CD8+Treg可防止LPS诱导的衰老小鼠体重损失和组织损伤。据我们所知,在本研究中,诱导CD8+Treg作为内毒素休克的新免疫疗法或辅助疗法可能会减少不受控制的免疫反应,并最终改善内毒素休克的结果。
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