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[调节性T细胞在多发性骨髓瘤进展中的作用]

[The role of regulatory T cells in multiple myeloma progression].

作者信息

Kawano Yawara

机构信息

Department of Hematology, Rheumatology, and Infectious Disease, Graduate School of Medical Sciences, Faculty of Life Sciences, Faculty of Life Sciences, Kumamoto University.

出版信息

Rinsho Ketsueki. 2021;62(4):299-304. doi: 10.11406/rinketsu.62.299.

Abstract

Regulatory T cells (Tregs) are a subset of CD4+ T lymphocytes that suppress the functions of antigen-presenting cells and effector T cells, characterized by the expression of transcription factor forkhead box P3 (FOXP3). Recent studies have reported an increase in the number of Tregs in the bone marrow (BM) of multiple myeloma (MM) patients. However, the role and mechanisms of Treg accumulation in the BM of MM patients remain debatable. Here, we present our data demonstrating the significance of Tregs in the context of MM disease progression. Using the transplantable MM mouse model, we observed a significant increase in Tregs in the BM of MM-injected mice from the early disease stage. We observed extended survival in MM-injected mice with Treg depletion than in mice without Treg depletion, demonstrating direct in vivo evidence that Tregs enhance disease progression in MM. It is noteworthy that type 1 interferon (IFN) signaling is activated in MM-associated Tregs. By using type 1 IFN receptor blocking antibody treatment and type 1 IFN receptor knockout Tregs, we demonstrated a significant decrease in MM-associated Treg proliferation, which was associated with longer survival in MM-injected mice. Thus, we have demonstrated that Tregs play a significant role in MM progression; the function and homeostasis of Tregs are regulated by type 1 IFN secreted in the BM microenvironment.

摘要

调节性T细胞(Tregs)是CD4 + T淋巴细胞的一个亚群,可抑制抗原呈递细胞和效应T细胞的功能,其特征在于转录因子叉头框P3(FOXP3)的表达。最近的研究报道,多发性骨髓瘤(MM)患者骨髓(BM)中Tregs的数量增加。然而,Tregs在MM患者骨髓中积累的作用和机制仍存在争议。在此,我们展示了我们的数据,证明了Tregs在MM疾病进展中的重要性。使用可移植的MM小鼠模型,我们观察到从疾病早期阶段开始,注射MM的小鼠骨髓中Tregs显著增加。我们观察到,与未进行Treg耗竭的小鼠相比,进行Treg耗竭的注射MM的小鼠生存期延长,这证明了Tregs在体内直接促进MM疾病进展的证据。值得注意的是,1型干扰素(IFN)信号在MM相关的Tregs中被激活。通过使用1型干扰素受体阻断抗体治疗和1型干扰素受体敲除的Tregs,我们证明MM相关的Treg增殖显著减少,这与注射MM的小鼠更长的生存期相关。因此,我们证明了Tregs在MM进展中起重要作用;Tregs的功能和稳态受骨髓微环境中分泌的1型干扰素调节。

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