研究概要
我们的研究结果表明,Ole-4 发挥直接抗癌作用,可能通过 STK 依赖性机制介导,同时它间接增强免疫效应应答,使肿瘤细胞对免疫介导的凋亡敏感。基于这些肿瘤抑制和免疫调节特性,Ole-4 成为设计下一代抗癌药物的有前景候选者。
研究思路结论见上方概要
背景
在驱动癌症进展的多种机制中,激酶信号失调和免疫逃逸机制尤为关键,因此需要开发能够同时靶向激酶依赖性肿瘤生存通路并重振抗肿瘤免疫的疗法。橄榄苦苷(OP)是一种具有已知化学预防活性的天然多酚,但其效力和生物利用度有限。为克服这些局限,开发了一系列结构优化的半合成OP类似物并筛选其抗癌活性。其中最优选的Ole-4进一步评估了其抗肿瘤作用机制。
方法
将10种OP类似物针对一组人类和小鼠癌细胞系进行了筛选。其中活性最强的Ole-4,通过增殖实验、细胞周期分析和凋亡定量,进一步评估了其在乳腺癌细胞中的抑制细胞增殖和促凋亡作用。进行了激酶组谱分析,以鉴定Ole-4诱导的蛋白酪氨酸(PTK)和丝氨酸/苏氨酸(STK)激酶活性的改变。携带皮下B16.F1黑色素瘤的C57BL/6J小鼠和携带CT26结肠癌及D2F2/E2乳腺癌的BALB/c小鼠,通过腹腔注射Ole-4以评估其体内疗效。通过流式细胞术和免疫组织化学分析了免疫激活和效应细胞对肿瘤的浸润。
结果
在体外,OP类似物Ole-4对乳腺癌、卵巢癌、黑色素瘤、宫颈癌和结肠癌细胞系表现出强效细胞毒性。具体而言,在HER2+乳腺癌细胞中,Ole-4通过诱导S期阻滞和触发凋亡显著抑制增殖。这些效应与激酶组谱数据相关,表明对STK Akt和P70S6KB的功能性持续抑制,这两个激酶是细胞存活和生长的关键调控因子。同样,Ole-4降低了Src、ROCK1和EphA2激酶的活性,这些激酶与肿瘤转移密切相关,并增强了RAF/ERK和Jak1b信号轴,这些信号轴与应激适应性反应紧密相关。在体内,Ole-4抑制了皮下接种同基因B16.F1、CT26和D2F2/E2癌细胞的小鼠中黑色素瘤、结肠癌和乳腺癌的生长。此外,Ole-4在治疗小鼠中产生了免疫细胞介导的抗肿瘤细胞毒性,并且重要的是,增加了细胞毒性T细胞和NK 细胞的肿瘤浸润。
展开英文摘要原文
BACKGROUND: Among the diverse mechanisms driving cancer progression, dysregulated kinase signaling and immune evasion mechanisms are particularly critical, necessitating the development of therapies that simultaneously target kinase-dependent tumor survival pathways and reinvigorate antitumor immunity. Oleuropein (OP), a natural polyphenol with established chemopreventive activity, exhibits limited potency and bioavailability. To overcome these limitations, a series of structurally optimized semi-synthetic OP analogs were developed and screened for their anticancer activity. The most prominent, Ole-4, was further evaluated for its antitumor mechanism of action. METHODS: Ten OP analogs were screened against a panel of human and mouse cancer cell lines. The most active, Ole-4 was further assessed for its cytostatic and pro-apoptotic effects in breast cancer cells using proliferation assays, cell-cycle analysis, and apoptosis quantification. Kinome profiling was performed to identify alterations in protein tyrosine (PTK) and serine/threonine (STK) kinase activity induced by Ole-4. C57BL/6J mice bearing subcutaneous B16.F1 melanoma tumors and BALB/c mice bearing CT26 colon and D2F2/E2 breast carcinomas, were treated intraperitoneally with Ole-4 to evaluate its in vivo efficacy. Immune activation and tumor infiltration by effector cells were analyzed by flow cytometry and immunohistochemistry. RESULTS: In vitro, the OP analog Ole-4 exhibited potent cytotoxicity against breast, ovarian, melanoma, cervical and colon carcinoma cell lines. Specifically in HER2+ breast cancer cells, Ole-4 significantly inhibited proliferation by inducing S-phase arrest and triggering apoptosis. These effects correlated with kinome profiling data, indicating sustained functional suppression of the STKs Akt and P70S6KB, key regulators of cell survival and growth. Likewise, Ole-4 reduced the activity of Src, ROCK1, and EphA2 kinases which are critically implicated in tumor metastasis, and enhanced the RAF/ERK and Jak1b signaling axes, closely linked to stress-adaptive responses. In vivo, Ole-4 suppressed melanoma, colon and breast carcinoma growth in mice subcutaneously inoculated with syngeneic B16.F1, CT26 and D2F2/E2 cancer cells. Additionally, Ole-4 generated immune cell-mediated antitumor cytotoxicity in treated mice, and importantly, increased tumor infiltration by cytotoxic T and natural killer cells. CONCLUSIONS: Our findings suggest that Ole-4 exerts direct anticancer effects, likely mediated via STK-dependent mechanisms, while indirectly it enhances immune effector responses, sensitizing tumor cells to immune-mediated apoptosis. Based on these tumor inhibitory and immunomodulatory properties, Ole-4 emerges as a promising candidate for designing next-generation anticancer drugs.
论文信息
- 作者
- Angelis NV、Paronis E、Sarikaki G、Nikolakopoulos KS、Velentzas AD、Mikropoulou EV、Stathopoulos P、Katsimpoulas M
- 第一作者单位
- Flow Cytometry Unit, Section of Animal and Human Physiology, Department of Biology, National and Kapodistrian University of Athens, Panepistimiopolis, Ilissia, Athens, 15784, Greece. nangelis@biol.uoa.gr.Greece
- 通讯作者单位
- Flow Cytometry Unit, Section of Animal and Human Physiology, Department of Biology, National and Kapodistrian University of Athens, Panepistimiopolis, Ilissia, Athens, 15784, Greece. rtsitsil@biol.uoa.gr.Greece
- 文献类型
- 非美国政府资助研究
- 期刊
- Journal of translational medicine2026 Mar 27