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Tumor Microenvironment-Associated Pericyte Populations May Impact Therapeutic Response in Thyroid Cancer
Asumi Iesato1,2, Carmelo Nucera3,4,5
1Human Thyroid Cancers Preclinical and Translational Research Program, Division of Experimental Pathology, Cancer Research Institute, Department of Pathology, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA, USA.
Abstract:
Thyroid cancer is the most common endocrine malignancy, and aggressive radioactive iodine refractory thyroid carcinomas still lack an effective treatment. A deeper understanding of tumor heterogeneity and microenvironment will be critical to establishing new therapeutic approaches. One of the important influencing factors of tumor heterogeneity is the diversity of cells in the tumor microenvironment. Among these are pericytes, which play an important role in blood vessel stability and angiogenesis, as well as tumor growth and metastasis. Pericytes also have stem cell-like properties and are a heterogeneous cell population, and their lineage, which has been challenging to define, may impact tumor resistance at different tumor stages. Pericytes are also important stroma cell types in the angiogenic microenvironment which express tyrosine-kinase (TK) pathways (e.g., PDGFR-β). Although TK inhibitors (TKI) and BRAFV600E inhibitors are currently used in the clinic for thyroid cancer, their efficacy is not durable and drug resistance often develops. Characterizing the range of distinct pericyte populations and distinguishing them from other perivascular cell types may enable the identification of their specific functions in the thyroid carcinoma vasculature. This remains an essential step in developing new therapeutic strategies. Also, assessing whether thyroid tumors hold immature and/or mature vasculature with pericyte populations coverage may be key to predicting tumor response to either targeted or anti-angiogenesis therapies. It is also critical to apply different markers in order to identify pericyte populations and characterize their cell lineage. This chapter provides an overview of pericyte ontogenesis and the lineages of diverse cell populations. We also discuss the role(s) and targeting of pericytes in thyroid carcinoma, as well as their potential impact on precision targeted therapies and drug resistance.
Insights
Understanding diverse pericyte populations in thyroid cancer is crucial for developing new treatments. Targeting these cells could overcome drug resistance and improve therapies for radioactive iodine-refractory thyroid carcinomas.
Area of Science:
- Endocrinology
- Oncology
- Cell Biology
Background:
- Thyroid cancer is the most common endocrine malignancy, with limited treatment options for aggressive forms.
- Tumor heterogeneity and microenvironment significantly influence therapeutic outcomes.
- Pericytes, crucial for vascular stability and angiogenesis, are key components of the tumor microenvironment and impact tumor growth and metastasis.
Purpose of the Study:
- To explore the role of pericytes in thyroid carcinoma, focusing on their heterogeneity and lineage.
- To investigate how pericyte populations influence tumor vascularization and drug resistance.
- To identify potential therapeutic strategies targeting pericytes in thyroid cancer.
Main Methods:
- Review of pericyte ontogenesis and diverse cell population lineages.
- Analysis of pericyte roles in thyroid carcinoma vasculature and microenvironment.
- Discussion of pericyte targeting strategies and their impact on precision therapies.
Main Results:
- Pericytes are heterogeneous and possess stem cell-like properties, influencing tumor resistance.
- Tyrosine-kinase (TK) pathways, like PDGFR-β, are expressed in pericytes within the angiogenic microenvironment.
- Current treatments (TKI, BRAF inhibitors) show limited durable efficacy due to drug resistance.
Conclusions:
- Characterizing distinct pericyte populations is essential for understanding their function in thyroid carcinoma vasculature.
- Assessing pericyte coverage and vasculature maturity can predict tumor response to targeted or anti-angiogenesis therapies.
- Identifying pericyte lineage and targeting them holds potential for novel precision therapies and overcoming drug resistance in thyroid cancer.
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