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骨微环境抑制的 T 细胞促进小鼠破骨细胞形成和溶骨性骨转移

英文原题:Bone Microenvironment-Suppressed T Cells Increase Osteoclast Formation and Osteolytic Bone Metastases in Mice.

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Bone Microenvironment-Suppressed T Cells Increase Osteoclast Formation and Osteolytic Bone Metastases in Mice.

PubMed 2022/06/17(内容时间) J Bone Miner Res Q1 · IF 6.5(JCR 2025)

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中文摘要

免疫疗法利用免疫系统的组成部分,如T细胞,来对抗癌细胞,正在改变癌症治疗方式,使部分患者产生持久缓解。骨转移是晚期乳腺癌和前列腺癌患者中一种令人衰弱的并发症。已获批的治疗方法无法治愈骨转移或提高患者生存率,而且免疫疗法能否使患者获益仍不清楚。骨微环境汇集了多种免疫抑制因子,与T细胞产物联合作用可能增加骨吸收,从而推动骨转移的恶性循环。利用同系小鼠模型,我们的研究发现,4T1乳腺癌骨转移灶中含有TIL(肿瘤浸润淋巴细胞)(TILs),且与免疫缺陷小鼠和T细胞耗竭小鼠相比,正常小鼠中骨转移的发展更为严重。这一效应似乎是由骨内特异性TILs引起的,因为T细胞耗竭增加了4T1原位肿瘤,但并未影响缺乏TILs的RM-1前列腺癌细胞的骨转移。T细胞在离体和在体条件下均促进破骨细胞形成,从而助长骨转移的恶性循环。这种促破骨细胞效应是未活化T细胞所特有的,因为活化T细胞分泌干扰素γ(IFNγ)和白细胞介素4(IL-4),实际上抑制了破骨细胞生成,这可能对患者有益。

然而,来自骨转移灶的未活化T细胞在离体培养中无法被活化。4T1骨转移与功能性多形核和单核髓源性抑制细胞(MDSCs)的增加相关,后者是强效的T细胞抑制因子。尽管西地那非和唑来膦酸在其他模型中有效,但它们对骨转移灶中的MDSCs没有影响。在寻找其他治疗靶点时,我们发现单核细胞来源的MDSCs比多形核MDSCs具有更强的免疫抑制能力,并且在骨中表达程序性细胞死亡受体-1配体(PD-L1)+,由于70%的T细胞表达其受体程序性细胞死亡受体-1(PD-1),这可能触发T细胞抑制。

总之,我们的研究结果揭示了一种新的机制,即受抑制的T细胞会增加破骨细胞生成和骨转移。我们的结果也为使用免疫治疗提供了依据,因为T细胞激活将增强其抗癌和抗破骨细胞特性。© 2022 The Authors. Journal of Bone and Mineral Research published by Wiley Periodicals LLC on behalf of American Society for Bone and Mineral Research (ASBMR).

展开英文摘要原文

Immunotherapies use components of the immune system, such as T cells, to fight cancer cells, and are changing cancer treatment, causing durable responses in some patients. Bone metastases are a debilitating complication in advanced breast and prostate cancer patients. Approved treatments fail to cure bone metastases or increase patient survival and it remains unclear whether immunotherapy could benefit patients. The bone microenvironment combines various immunosuppressive factors, and combined with T cell products could increase bone resorption fueling the vicious cycle of bone metastases.

Using syngeneic mouse models, our study revealed that bone metastases from 4T1 breast cancer contain tumor-infiltrating lymphocyte (TILs) and their development is increased in normal mice compared to immunodeficient and T-cell depleted mice. This effect seemed caused by the TILs specifically in bone, because T-cell depletion increased 4T1 orthotopic tumors and did not affect bone metastases from RM-1 prostate cancer cells, which lack TILs.

T cells increased osteoclast formation ex vivo and in vivo contributing to bone metastasis vicious cycle. This pro-osteoclastic effect is specific to unactivated T cells, because activated T cells, secreting interferon γ (IFNγ) and interleukin 4 (IL-4), actually suppressed osteoclastogenesis, which could benefit patients.

However, non-activated T cells from bone metastases could not be activated in ex vivo cultures. 4T1 bone metastases were associated with an increase of functional polymorphonuclear and monocytic myeloid-derived suppressor cells (MDSCs), potent T-cell suppressors. Although effective in other models, sildenafil and zoledronic acid did not affect MDSCs in bone metastases.

Seeking other therapeutic targets, we found that monocytic MDSCs are more potent suppressors than polymorphonuclear MDSCs, expressing programmed cell death receptor-1 ligand (PD-L1) + in bone, which could trigger T-cell suppression because 70% express its receptor, programmed cell death receptor-1 (PD-1). Collectively, our findings identified a new mechanism by which suppressed T cells increase osteoclastogenesis and bone metastases.

Our results also provide a rationale for using immunotherapy because T-cell activation would increase their anti-cancer and their anti-osteoclastic properties. © 2022 The Authors. Journal of Bone and Mineral Research published by Wiley Periodicals LLC on behalf of American Society for Bone and Mineral Research (ASBMR).

论文信息

作者
Arellano DL、Juárez P、Verdugo-Meza A、Almeida-Luna PS、Corral-Avila JA、Drescher F、Olvera F、Jiménez S
单位
Biomedical Innovation Department, Centro de Investigación Científica y de Educación Superior de Ensenada (CICESE), Ensenada.
文献类型
美国 NIH 资助研究 · 非美国政府资助研究
期刊
Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research2022 Aug
原文标识
PubMed 35635377 · DOI 10.1002/jbmr.4615