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Stem Cell Plasticity and Dormancy in the Development of Cancer Therapy Resistance
Maria Laura De Angelis1, Federica Francescangeli1, Filippo La Torre2
1Department of Oncology and Molecular Medicine, Istituto Superiore di Sanità, Rome, Italy.
Abstract:
Cancer treatment with either standard chemotherapy or targeted agents often results in the emergence of drug-refractory cell populations, ultimately leading to therapy failure. The biological features of drug resistant cells are largely overlapping with those of cancer stem cells and include heterogeneity, plasticity, self-renewal ability, and tumor-initiating capacity. Moreover, drug resistance is usually characterized by a suppression of proliferation that can manifest as quiescence, dormancy, senescence, or proliferative slowdown. Alterations in key cellular pathways such as autophagy, unfolded protein response or redox signaling, as well as metabolic adaptations also contribute to the establishment of drug resistance, thus representing attractive therapeutic targets. Moreover, a complex interplay of drug resistant cells with the micro/macroenvironment and with the immune system plays a key role in dictating and maintaining the resistant phenotype. Recent studies have challenged traditional views of cancer drug resistance providing innovative perspectives, establishing new connections between drug resistant cells and their environment and indicating unexpected therapeutic strategies. In this review we discuss recent advancements in understanding the mechanisms underlying drug resistance and we report novel targeting agents able to overcome the drug resistant status, with particular focus on strategies directed against dormant cells. Research on drug resistant cancer cells will take us one step forward toward the development of novel treatment approaches and the improvement of relapse-free survival in solid and hematological cancer patients.
Insights
Drug-resistant cancer cells, similar to cancer stem cells, evade therapy through dormancy and altered pathways. Novel strategies targeting these resistant cells, especially dormant ones, are crucial for improving patient survival.
Area of Science:
- Oncology
- Cancer Biology
- Drug Discovery
Background:
- Cancer therapies frequently fail due to the emergence of drug-refractory cell populations.
- Drug-resistant cells share characteristics with cancer stem cells, including heterogeneity and self-renewal.
- Therapy failure is often linked to suppressed proliferation, such as dormant or senescent cells.
Purpose of the Study:
- To review recent advancements in understanding cancer drug resistance mechanisms.
- To highlight novel therapeutic agents and strategies for overcoming drug resistance.
- To focus on therapeutic approaches targeting dormant cancer cells.
Main Methods:
- Literature review of recent studies on cancer drug resistance.
- Analysis of biological features of drug-resistant and cancer stem cells.
- Evaluation of cellular pathways and microenvironmental interactions contributing to resistance.
Main Results:
- Drug resistance is associated with cancer stem cell-like properties and suppressed proliferation (dormancy).
- Altered cellular pathways (autophagy, UPR, redox signaling) and metabolism are key contributors.
- The tumor microenvironment and immune system play significant roles in maintaining resistance.
Conclusions:
- Understanding drug resistance mechanisms is critical for developing effective cancer treatments.
- Targeting dormant cells and their associated pathways offers promising therapeutic strategies.
- Advancements in this field are essential for improving relapse-free survival in cancer patients.
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