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IL25(+) 巨噬细胞是 IL17RB(+) 乳腺癌治疗耐药的关键决定因素

英文原题:IL25(+) macrophages are a key determinant of treatment resistance of IL17RB(+) breast cancer.

查看英文原题

IL25(+) macrophages are a key determinant of treatment resistance of IL17RB(+) breast cancer.

PubMed 2023/10/15(内容时间) Am J Cancer Res Q2 · IF 3.1(JCR 2025)

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中文摘要

复发和转移对多模式治疗具有抵抗性,是乳腺癌死亡的主要原因。越来越多的证据表明,IL17RB 信号通路在乳腺癌的进展和转移中发挥关键作用。肿瘤组织中 IL17RB 阳性的临床意义也已被报道为乳腺癌的不良预后因素。

然而,IL17RB+ 乳腺癌患者不良预后背后的分子机制,特别是免疫学方面,尚未完全阐明,且在临床实践中尚未实现 IL17RB+ 肿瘤的清除。

在本研究中,我们通过使用转导 il17rb 基因的小鼠和人乳腺癌细胞进行肿瘤生物学和免疫学研究,揭示了 IL17RB+ 肿瘤难治性的独特分子机制。肿瘤细胞中 IL17RB 过表达赋予肿瘤细胞干性,包括高侵袭和自我更新能力,以及对 CDK4/6 抑制剂的高度耐药,尽管 CDK4/6 抑制剂被认为是治疗乳腺癌的有前景的药物,但疗效有限。在植入 IL17RB+ 肿瘤的小鼠中,IL25+ 巨噬细胞(Møs)在肿瘤组织局部和脾脏系统中扩增,并通过增强肿瘤功能直接促进 IL17RB+ 肿瘤进展,以及利用分泌的 IL25 损害抗肿瘤效应 CTL 和 NK 细胞间接促进肿瘤进展。

然而,用特异性 mAb 阻断 IL25 可干扰这些不良事件,并与 CDK4/6 抑制剂联合成功引发显著的抗肿瘤疗效,在小鼠乳腺肿瘤模型中提供更好的生存。这些结果提示,IL25 + Mø是构建IL17RB + 乳腺癌坚固治疗耐药性的关键决定因素。靶向IL17RB-IL25轴可能是改善乳腺癌患者治疗临床结局的有前景策略,尤其是对于IL17RB + 肿瘤。

展开英文摘要原文

Recurrence and metastasis are resistant to multimodal treatments, and are the major causes of death in breast cancer. Accumulating evidence suggests that the IL17RB signaling pathway plays a key role in progression and metastasis of breast cancer. Clinical significance of the IL17RB positivity in tumor tissues has been also reported as a poor prognostic factor in breast cancer.

However, the molecular mechanisms underlying the poor prognosis of patients with IL17RB + breast cancer, particularly the immunological aspects, remain to be fully elucidated, and elimination of the IL17RB + tumors has not been practically achieved in clinical settings. In this study, we identified a distinct molecular mechanism underlying the intractability of the IL17RB + tumors through tumor biological and immunological investigation using mouse and human breast cancer cells transduced with il17rb gene. IL17RB overexpression in tumor cells confers cancer stemness, including high invasive and self-renewal abilities, and high resistance to CDK4/6 inhibitors that have been considered as a promising agent for treating breast cancer despite the limited efficacy.

In the mice implanted with the IL17RB + tumors, IL25 + macrophages (Møs) are expanded locally in tumor tissues and systemically in spleen, and promote the IL17RB + tumor progression directly by intensifying the tumor functions, and indirectly via impairment of anti-tumor effector CTLs and NK cells utilizing the secreted IL25.

Blocking IL25 with the specific mAb, however, interferes the adverse events, and successfully elicits significant anti-tumor efficacy in combination with CDK4/6 inhibitors providing better survival in murine mammary tumor models. These results suggest that the IL25 + Mø is a key determinant of building the solid treatment resistance of the IL17RB + breast cancer. Targeting the IL17RB-IL25 axis may be a promising strategy to improve clinical outcomes in the treatment of breast cancer patients, particularly with IL17RB + tumors.

论文信息

作者
Ozaki Y、Kinowaki K、Kawabata H、Kudo-Saito C
单位
Department of Immune Medicine, National Cancer Center Research Institute Tokyo 104-0045, Japan.Japan
期刊
American journal of cancer research2023
原文标识
PubMed 37970362