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:The Bone Marrow Immune Microenvironment in CML: Treatment Responses, Treatment-Free Remission, and Therapeutic Vulnerabilities.
The Bone Marrow Immune Microenvironment in CML: Treatment Responses, Treatment-Free Remission, and Therapeutic Vulnerabilities.
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酪氨酸激酶抑制剂(TKIs)在慢性髓性白血病(CML)的治疗中非常成功,但由于TKI耐药的白血病干细胞(LSCs)持续存在,对大多数患者并不具有治愈性。骨髓免疫微环境(BME)通过多维相互作用为LSC提供保护,驱动治疗耐药,并凸显了在治疗上规避这些保护性龛的必要性。本综述更新了CML细胞与免疫微环境之间相互作用的证据,以期识别可靶向的治疗脆弱性,并描述了关于免疫调节在无治疗缓解(TFR)中作用的认识。
在CML中,负责破坏归巢的趋化CXCL12-CXCR4轴下游的细胞内信号传导已在LSCs中得到阐明,突出了新的治疗机会。此外,在现有证据基础上,表达CXCL12切割表面蛋白CD26的LSCs与CML负荷高度相关。较新的发现表明黏附分子CD44参与TKI耐药,而JAK/STAT介导的TKI耐药可能发生在BME中外源性信号传导的下游。外泌体BME-LSC交叉通讯也已被探索。最后,关于推测参与维持成功TFR的自然杀伤(NK)细胞表型的进一步细节已发表,并讨论了基于NK的免疫疗法。近期研究突出并拓展了我们对BME在CML持续存在和TKI耐药中作用的理解,指出了治疗上易受攻击的相互作用。重新利用现有药物和/或开发靶向这些关系的新型抑制剂,可能有助于克服TKI耐药CML中的这些问题,并用作维持TFR的辅助治疗。
PURPOSE OF REVIEW: Tyrosine kinase inhibitors (TKIs) are very successful for the treatment of chronic myeloid leukaemia (CML) but are not curative in most patients due to persistence of TKI-resistant leukaemia stem cells (LSCs). The bone marrow immune microenvironment (BME) provides protection to the LSC through multidimensional interactions, driving therapy resistance, and highlighting the need to circumvent these protective niches therapeutically.
This review updates the evidence for interactions between CML cells and the immune microenvironment with a view to identifying targetable therapeutic vulnerabilities and describes what is known about the role of immune regulation in treatment-free remission (TFR). RECENT FINDINGS: Intracellular signalling downstream of the chemotactic CXCL12-CXCR4 axis, responsible for disrupted homing in CML, has been elucidated in LSCs, highlighting novel therapeutic opportunities.
In addition, LSCs expressing CXCL12-cleaving surface protein CD26 were highly correlated with CML burden, building on existing evidence. Newer findings implicate the adhesion molecule CD44 in TKI resistance, while JAK/STAT-mediated resistance to TKIs may occur downstream of extrinsic signalling in the BME. Exosomal BME-LSC cross-communication has also been explored.
Finally, further detail on the phenotypes of natural killer (NK) cells putatively involved in maintaining successful TFR has been published, and NK-based immunotherapies are discussed. Recent studies highlight and build on our understanding of the BME in CML persistence and TKI resistance, pinpointing therapeutically vulnerable interactions. Repurposing existing drugs and/or the development of novel inhibitors targeting these relationships may help to overcome these issues in TKI-resistant CML and be used as adjuvant therapy for sustained TFR.
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