Cancer stem cells: advances in knowledge and implications for cancer therapy
Раковые стволовые клетки: достижения в изучении и значение для терапии рака
2024-07-04
SCID: 54.1/68x4djf5
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CSC signaling pathwayscancer stem cellstargeted therapytherapeutic resistancetumor heterogeneity
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Abstract (AI)
Cancer stem cells (CSCs), a small subset of cells in tumors that are characterized by self-renewal and continuous proliferation, lead to tumorigenesis, metastasis, and maintain tumor heterogeneity. Cancer continues to be a significant global disease burden. In the past, surgery, radiotherapy, and chemotherapy were the main cancer treatments. The technology of cancer treatments continues to develop and advance, and the emergence of targeted therapy, and immunotherapy provides more options for patients to a certain extent. However, the limitations of efficacy and treatment resistance are still inevitable. Our review begins with a brief introduction of the historical discoveries, original hypotheses, and pathways that regulate CSCs, such as WNT/β-Catenin, hedgehog, Notch, NF-κB, JAK/STAT, TGF-β, PI3K/AKT, PPAR pathway, and their crosstalk. We focus on the role of CSCs in various therapeutic outcomes and resistance, including how the treatments affect the content of CSCs and the alteration of related molecules, CSCs-mediated therapeutic resistance, and the clinical value of targeting CSCs in patients with refractory, progressed or advanced tumors. In summary, CSCs affect therapeutic efficacy, and the treatment method of targeting CSCs is still difficult to determine. Clarifying regulatory mechanisms and targeting biomarkers of CSCs is currently the mainstream idea.
Key Findings
1
CSCs influence therapeutic outcomes by altering treatment responses and contributing to resistance across conventional, targeted, and immune-based cancer therapies.
2
Cancer stem cells are a small self-renewing, continuously proliferating tumor-cell subset that drives tumorigenesis, metastasis, and intratumoral heterogeneity.
3
Clarifying CSC regulatory mechanisms and identifying reliable CSC biomarkers are central priorities for developing treatments for refractory, progressive, or advanced tumors.
4
Current evidence suggests that therapies can change CSC abundance and associated molecular profiles, but effective clinical strategies for selectively targeting CSCs remain difficult to establish.
5
Multiple signaling pathways regulate CSC biology, including WNT/β-catenin, Hedgehog, Notch, NF-κB, JAK/STAT, TGF-β, PI3K/AKT, and PPAR pathways, with substantial crosstalk.
Research Object
Cancer stem cells (CSCs) in tumors
Research Subject
The regulatory mechanisms, therapeutic roles, treatment resistance, and clinical implications of CSCs
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2024-07-04
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