研究概要
本研究证明了在临床环境中靶向FSTL1-ALCAM轴治疗OS的合理性。
中文摘要
骨肉瘤(OS)是最常见的原发性骨恶性肿瘤。许多患者在治疗后出现复发和转移,需要更有效的治疗来改善临床结局。据报道,FSTL1 在鼠源和人源 OS 中过表达,但 FSTL1 的功能作用仍不清楚。在此,我们利用小鼠和人 OS 细胞系、小鼠 OS 模型以及临床标本,阐明了难治性 OS 背后的肿瘤生物学和免疫学机制。OS 细胞中 FSTL1 敲除显著抑制了细胞功能,包括增殖、侵袭、球状集落形成和 ALCAM 表达。FSTL1 缺失的肿瘤细胞在体内环境中因强效 NK 细胞的产生而被完全排斥。事实上,FSTL1 刺激部分通过诱导凋亡抑制了 NK 活性,但阻断 FSTL1 或 CD6(ALCAM 的受体)显著恢复了 NK 活性。抗 FSTL1 治疗显著抑制了小鼠 OS 模型中的肿瘤生长和转移,并与抗 CD6 治疗协同提供了显著更好的预后。这些表明,阻断 FSTL1 是成功治疗 OS 的一种有前景的策略。本研究证明了在临床环境中靶向 FSTL1-ALCAM 轴治疗 OS 的合理性。
展开英文摘要原文
Osteosarcoma (OS) is the most common primary bone malignancy. Many patients develop relapse and metastasis after treatments, and more effective treatments are needed for improving the clinical outcome. FSTL1 overexpression has been reported in murine and human OS, while the functional roles of FSTL1 remain unclear. Here, we elucidated tumor biological and immunological mechanisms underlying the refractory OS using mouse and human OS cell lines, mouse OS models, and clinical specimens. FSTL1 knockout in OS cells significantly suppressed cellular functions, including proliferation, invasion, sphere colony formation, and ALCAM expression. The FSTL1-ablated tumor cells were completely rejected due to generation of potent NK cells in the in vivo setting. Indeed, FSTL1 stimulation suppressed NK activity partly via apoptosis induction, but blocking FSTL1 or CD6, a receptor for ALCAM, significantly restored NK activity. Anti-FSTL1 therapy significantly suppressed tumor growth and metastasis in mouse OS models, and synergized with anti-CD6 therapy in providing significantly better prognosis. These suggest that blocking FSTL1 is a promising strategy for successfully treating OS. This study demonstrates a rationale of targeting the FSTL1-ALCAM axis in the treatment of OS in clinical settings.
论文信息
- 作者
- Ogiwara Y、Nakagawa M、Nakatani F、Uemura Y、Zhang R、Kudo-Saito C
- 第一作者单位
- Department of Immune Medicine, National Cancer Center Research Institute, Tokyo, 104-0045, Japan.Japan
- 通讯作者单位
- Department of Immune Medicine, National Cancer Center Research Institute, Tokyo, 104-0045, Japan. Electronic address: ckudo@ncc.go.jp.Japan
- 期刊
- Cancer letters2022 Jul 1