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Isolation and Functional Assessment of Human Breast Cancer Stem Cells from Cell and Tissue Samples
Published on: October 2, 2020
Targeting breast cancer stem cells through retinoids: A new hope for treatment
Nusrat Jan1, Shazia Sofi1, Hina Qayoom1
1Department of Bioresources, School of Biological Sciences, University of Kashmir, Srinagar 190006, India.
Abstract:
Breast cancer is a complex and diverse disease accounting for nearly 30% of all cancers diagnosed in females. But unfortunately, patients develop resistance to the existing chemotherapeutic regimen, resulting in approximately 90% treatment failure. With over half a million deaths annually, it is imperative to explore new therapeutic approaches to combat the disease. Within a breast tumor, a small sub-population of heterogeneous cells, with a unique ability of self-renew and differentiation and responsible for tumor formation, initiation, and recurrence are referred to as breast cancer stem cells (BCSCs). These BCSCs have been identified as one of the main contributors to chemoresistance in breast cancer, making them an attractive target for developing novel therapeutic strategies. These cells exhibit surface biomarkers such as CD44+, CD24-/LOW, ALDH, CD133, and CD49f phenotypes. Higher expression of CD44+ and ALDH activity has been associated with the formation of tumors in various cancers. Moreover, the abnormal regulation of signaling pathways, including Hedgehog, Notch, β-catenin, JAK/STAT, and P13K/AKT/mTOR, leads to the formation of cancer stem cells, resulting in the development of tumors. The growing drug resistance in BC is a significant challenge, highlighting the need for new therapeutic strategies to combat this dreadful disease. Retinoids, a large group of synthetic derivatives of vitamin A, have been studied as chemopreventive agents in clinical trials and have been shown to regulate various crucial biological functions including vision, development, inflammation, and metabolism. On a cellular level, the retinoid activity has been well characterized and translated and is known to induce differentiation and apoptosis, which play important roles in the outcome of the transformation of tissues into malignant. Retinoids have been investigated extensively for their use in the treatment and prevention of cancer due to their high receptor-binding affinity to directly modulate gene expression programs. Therefore, in this study, we aim to summarize the current understanding of BCSCs, their biomarkers, and the associated signaling pathways. Retinoids, such as Adapalene, a third-generation retinoid, have shown promising anti-cancer potential and may serve as therapeutic agents to target BCSCs.
Insights
Breast cancer stem cells (BCSCs) drive chemoresistance and recurrence. This study reviews BCSCs, their biomarkers, and signaling pathways, highlighting retinoids like Adapalene as potential therapies targeting these resistant cells.
Area of Science:
- Oncology
- Cell Biology
- Pharmacology
Background:
- Breast cancer is a leading cause of cancer death in females, with high treatment failure rates due to drug resistance.
- Breast cancer stem cells (BCSCs) are a subpopulation responsible for tumor initiation, recurrence, and chemoresistance.
- Identifying novel therapeutic targets is crucial to overcome treatment resistance in breast cancer.
Purpose of the Study:
- To summarize current knowledge on breast cancer stem cells (BCSCs), including their biomarkers and associated signaling pathways.
- To explore the potential of retinoids as a therapeutic strategy against BCSCs and chemoresistance.
- To highlight Adapalene as a promising retinoid for targeting BCSCs.
Main Methods:
- Literature review of studies on breast cancer stem cells, biomarkers, signaling pathways, and retinoid activity.
- Analysis of the role of specific biomarkers (e.g., CD44+, CD24-/LOW, ALDH) in BCSCs.
- Examination of signaling pathways (e.g., Hedgehog, Notch, Wnt/β-catenin, JAK/STAT, PI3K/AKT/mTOR) implicated in BCSCs.
Main Results:
- BCSCs possess self-renewal and differentiation capabilities, contributing to tumor formation and relapse.
- Key BCSCs biomarkers include CD44+, CD24-/LOW, ALDH, CD133, and CD49f.
- Dysregulation of signaling pathways promotes BCSCs formation and survival, leading to drug resistance.
Conclusions:
- Retinoids, vitamin A derivatives, exhibit anti-cancer properties by inducing differentiation and apoptosis.
- Retinoids can modulate gene expression, offering a potential strategy to target BCSCs.
- Adapalene, a third-generation retinoid, shows promise as a therapeutic agent for targeting BCSCs and overcoming chemoresistance in breast cancer.
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