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Author Spotlight: Exploring Salidroside's Molecular Mechanisms in Breast Cancer Treatment
Published on: June 9, 2023
Sphingosine Kinase 1 in Breast Cancer-A New Molecular Marker and a Therapy Target
Heba Alshaker1, Hannah Thrower2, Dmitri Pchejetski1
1School of Medicine, University of East Anglia, Norwich, United Kingdom.
Abstract:
It is now well-established that sphingosine kinase 1 (SK1) plays a significant role in breast cancer development, progression, and spread, whereas SK1 knockdown can reverse these processes. In breast cancer cells and tumors, SK1 was shown to interact with various pathways involved in cell survival and chemoresistance, such as nuclear factor-kappa B (NFκB), Notch, Ras/MAPK, PKC, and PI3K. SK1 is upregulated by estrogen signaling, which, in turn, confers cancer cells with resistance to tamoxifen. Sphingosine-1-phosphate (S1P) produced by SK1 has been linked to tumor invasion and metastasis. Both SK1 and S1P are closely linked to inflammation and adipokine signaling in breast cancer. In human tumors, high SK1 expression has been linked with poorer survival and prognosis. SK1 is upregulated in triple negative tumors and basal-like subtypes. It is often associated with high phosphorylation levels of ERK1/2, SFK, LYN, AKT, and NFκB. Higher tumor SK1 mRNA levels were correlated with poor response to chemotherapy. This review summarizes the up-to-date evidence and discusses the therapeutic potential for the SK1 inhibition in breast cancer, with emphasis on the mechanisms of chemoresistance and combination with other therapies such as gefitinib or docetaxel. We have outlined four key areas for future development, including tumor microenvironment, combination therapies, and nanomedicine. We conclude that SK1 may have a potential as a target for precision medicine, its high expression being a negative prognostic marker in ER-negative breast cancer, as well as a target for chemosensitization therapy.
Insights
Sphingosine kinase 1 (SK1) drives breast cancer growth and resistance to therapies. Inhibiting SK1 shows promise for improving chemotherapy response and offers a potential target for precision medicine in breast cancer treatment.
Area of Science:
- Oncology
- Biochemistry
- Molecular Biology
Background:
- Sphingosine kinase 1 (SK1) is integral to breast cancer development, progression, and metastasis.
- SK1 interacts with key pathways like NFκB, Notch, and PI3K, influencing cell survival and chemoresistance.
- Estrogen signaling upregulates SK1, contributing to tamoxifen resistance in cancer cells.
Purpose of the Study:
- To review current evidence on SK1's role in breast cancer.
- To discuss the therapeutic potential of SK1 inhibition.
- To explore SK1's mechanisms in chemoresistance and combination therapies.
Main Methods:
- Comprehensive literature review of studies on SK1 in breast cancer.
- Analysis of SK1's association with signaling pathways and clinical outcomes.
- Discussion of therapeutic strategies including SK1 inhibition and combination treatments.
Main Results:
- High SK1 expression correlates with poorer survival, metastasis, and resistance to chemotherapy.
- SK1 is upregulated in aggressive subtypes like triple-negative breast cancer.
- SK1 inhibition is explored as a strategy to overcome chemoresistance.
Conclusions:
- SK1 is a potential therapeutic target for breast cancer, particularly in ER-negative disease.
- SK1 inhibition may enhance sensitivity to chemotherapy and other targeted agents.
- Future research should focus on combination therapies, nanomedicine, and the tumor microenvironment.
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