CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Emerging Role of Glioma Stem Cells in Mechanisms of Therapy Resistance.
Emerging Role of Glioma Stem Cells in Mechanisms of Therapy Resistance.
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自本世纪初被发现以来,胶质瘤干细胞(GSCs)就引发了广泛的研究和激烈的科学辩论,讨论其在胶质母细胞瘤(GBM)的发生、进展、复发和耐药中的作用。GBM的不同分子亚型共存于同一肿瘤中,并且对化疗表现出不同的敏感性。GSCs促进了肿瘤异质性,并重现了在患者中发现的三种GBM亚型所描述的途径改变。GSCs表现出高度可塑性,允许在不同分子GBM亚型之间相互转化,具有不同的增殖潜力,以及不同程度的自我更新和分化。这种高度可塑性使得其能够适应化疗和放疗引起的环境变化。小鼠模型的证据表明,GSCs在治疗干预后重新填充脑肿瘤,并且由于GSC的可塑性,它们在复发肿瘤中重建了异质性。GSCs也天然对标准治疗具有抵抗力,耐药机制包括增强的DNA损伤修复、MGMT启动子去甲基化、自噬、凋亡诱导受损、代谢适应、化疗耐药和免疫逃逸。GSCs显著的致癌特性激发了人们对更好地理解GSC生物学和功能的浓厚兴趣,因为它们可能代表有吸引力的靶点,以推进目前GBM患者有限的治疗选择。这提高了对开发新型靶向治疗方法的期望,包括靶向GSC可塑性、CAR-T(CAR-T)细胞和溶瘤病毒。在这篇综述中,我们关注GSCs作为GBM驱动因素和治疗耐药的作用,并讨论对GSC生物学和可塑性的见解如何推进针对GSC的治疗方法。
Since their discovery at the beginning of this millennium, glioma stem cells (GSCs) have sparked extensive research and an energetic scientific debate about their contribution to glioblastoma (GBM) initiation, progression, relapse, and resistance. Different molecular subtypes of GBM coexist within the same tumor, and they display differential sensitivity to chemotherapy. GSCs contribute to tumor heterogeneity and recapitulate pathway alterations described for the three GBM subtypes found in patients. GSCs show a high degree of plasticity, allowing for interconversion between different molecular GBM subtypes, with distinct proliferative potential, and different degrees of self-renewal and differentiation. This high degree of plasticity permits adaptation to the environmental changes introduced by chemo- and radiation therapy. Evidence from mouse models indicates that GSCs repopulate brain tumors after therapeutic intervention, and due to GSC plasticity, they reconstitute heterogeneity in recurrent tumors.
GSCs are also inherently resilient to standard-of-care therapy, and mechanisms of resistance include enhanced DNA damage repair, MGMT promoter demethylation, autophagy, impaired induction of apoptosis, metabolic adaptation, chemoresistance, and immune evasion. The remarkable oncogenic properties of GSCs have inspired considerable interest in better understanding GSC biology and functions, as they might represent attractive targets to advance the currently limited therapeutic options for GBM patients.
This has raised expectations for the development of novel targeted therapeutic approaches, including targeting GSC plasticity, chimeric antigen receptor T (CAR T) cells, and oncolytic viruses. In this review, we focus on the role of GSCs as drivers of GBM and therapy resistance, and we discuss how insights into GSC biology and plasticity might advance GSC-directed curative approaches.
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