RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Targeting a STING agonist to perivascular macrophages in prostate tumors delays resistance to androgen deprivation therapy.
Targeting a STING agonist to perivascular macrophages in prostate tumors delays resistance to androgen deprivation therapy.
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我们的数据表明,将 STING 激动剂靶向作用于 PV TAMs 可用于延长前列腺癌 ADT 的治疗窗口。
雄激素剥夺疗法(ADT)是前列腺癌的一线治疗方法。在一些男性中,其肿瘤可能变得难治,导致去势抵抗性前列腺癌(CRPC)的发生。这导致肿瘤在持续治疗的情况下重新生长和转移,并对患者生存产生负面影响。已知ADT会刺激前列腺肿瘤中免疫抑制细胞的积累,如促肿瘤的肿瘤相关巨噬细胞(TAMs)、髓源性抑制细胞和调节性T细胞,以及功能低下的T细胞。在其他形式的癌症中,促肿瘤TAMs已被证明在化疗和放疗期间积聚在肿瘤血管周围,在那里它们驱动肿瘤复发。我们的目的是观察这种血管周围(PV)TAMs是否也在CRPC之前接受ADT治疗的前列腺肿瘤中积累,如果是,选择性地诱导它们表达一种强效免疫刺激剂干扰素β(IFNβ)是否会刺激抗肿瘤免疫并延缓CRPC。
我们使用多重免疫荧光评估ADT对小鼠和/或人前列腺肿瘤中TAMs、CD8+T细胞、CD4+T细胞和NK细胞的分布及活化状态的影响。随后,我们使用抗体包被的脂质纳米颗粒(LNPs),在ADT期间将STING激动剂2'3'-cGAMP(cGAMP)选择性靶向至小鼠前列腺肿瘤的PV TAMs。
TAMs 在 ADT 作用下大量聚集于血管周围,并表达促肿瘤表型标志物,包括 folate receptor-beta(FR-β)、MRC1(CD206)、CD169 和 VISTA。此外,这些 PV 肿瘤区域中 inactive(PD-1-)CD8+T 细胞数量增多,active(CD69+)NK 细胞数量减少。用抗 FR-β 抗体包被的 LNPs 在 ADT 处理的肿瘤中选择性将 cGAMP 递送至 PV TAMs,并在其中激活 STING 并上调 IFNβ 的表达。这导致 PV 肿瘤区域中 active CD8+T 细胞(以及 CD4+T 细胞和 NK 细胞)密度显著增加,并显著延迟了 CRPC 的发生。在 LNP 给药期间通过抗体清除 CD8+T 细胞,证明了这些细胞在 LNPs 诱导的 CRPC 延迟中发挥关键作用。
Androgen deprivation therapy (ADT) is a front-line treatment for prostate cancer. In some men, their tumors can become refractory leading to the development of castration-resistant prostate cancer (CRPC). This causes tumors to regrow and metastasize, despite ongoing treatment, and impacts negatively on patient survival. ADT is known to stimulate the accumulation of immunosuppressive cells like protumoral tumor-associated macrophages (TAMs), myeloid-derived suppressor cells and regulatory T cells in prostate tumors, as well as hypofunctional T cells. Protumoral TAMs have been shown to accumulate around tumor blood vessels during chemotherapy and radiotherapy in other forms of cancer, where they drive tumor relapse. Our aim was to see whether such perivascular (PV) TAMs also accumulate in ADT-treated prostate tumors prior to CRPC, and, if so, whether selectively inducing them to express a potent immunostimulant, interferon beta (IFNβ), would stimulate antitumor immunity and delay CRPC.
We used multiplex immunofluorescence to assess the effects of ADT on the distribution and activation status of TAMs, CD8+T cells, CD4+T cells and NK cells in mouse and/or human prostate tumors. We then used antibody-coated, lipid nanoparticles (LNPs) to selectively target a STING agonist, 2'3'-cGAMP (cGAMP), to PV TAMs in mouse prostate tumors during ADT.
TAMs accumulated at high density around blood vessels in response to ADT and expressed markers of a protumoral phenotype including folate receptor-beta (FR-β), MRC1 (CD206), CD169 and VISTA. Additionally, higher numbers of inactive (PD-1-) CD8+T cells and reduced numbers of active (CD69+) NK cells were present in these PV tumor areas. LNPs coated with an antibody to FR-β selectively delivered cGAMP to PV TAMs in ADT-treated tumors, where they activated STING and upregulated the expression of IFNβ. This resulted in a marked increase in the density of active CD8+T cells (along with CD4+T cells and NK cells) in PV tumor areas, and significantly delayed the onset of CRPC. Antibody depletion of CD8+T cells during LNP administration demonstrated the essential role of these cells in delay in CRPC induced by LNPs.
Together, our data indicate that targeting a STING agonist to PV TAMs could be used to extend the treatment window for ADT in prostate cancer.
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