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Published on: September 19, 2019
Microenvironment and Tumor Heterogeneity as Pharmacological Targets in Precision Oncology
Stelvio Tonello1,2, Roberta Rolla3,4, Paolo Amedeo Tillio3
1Dipartimento di Medicina Traslazionale, Università del Piemonte Orientale, Via Solaroli 17, 28100 Novara, Italy.
Abstract:
Tumor diseases are characterized by high interindividual and intratumoral heterogeneity (ITH). The development and progression of neoplasms outline complex networks of extracellular and cellular signals that have yet to be fully elucidated. This narrative review provides a comprehensive overview of the literature related to the cellular and molecular mechanisms underlying the heterogeneity of the tumor mass. Furthermore, it examines the possible role of the tumor microenvironment in the development and support of the neoplasm, in order to highlight its potential in the construction of a diagnostic-therapeutic approach to precision medicine. Many authors underline the importance of the tumor microenvironment (TME) as it actively takes part in the growth of the neoplastic mass and in the formation of metastases and in the acquisition of resistance to anticancer drugs. In specific body districts, the ideal conditions occur for the TME establishment, particularly the inflammatory state, the recruitment of cell types, the release of specific cytokines and growth factors, hypoxic conditions. These components actively intervene by enabling tumor progression and construction of physical barriers shaped by the extracellular matrix that contribute to forming peripheral tolerance by intervention of myeloid precursors and the polarization of M2 macrophages. In recent years, ITH and the TME have assumed an important position in cancer research and pharmacology as they enable understanding the dense network of communication existing between the neoplasm and the surrounding environment, and to monitor and deepen the effects of drugs with a view to develop increasingly precise and effective therapies. In the last decade, knowledge of TME has been exploited to produce targeted molecular agents (inhibitory small molecules, monoclonal antibodies, gene therapy). Nonetheless, the bibliography shows the need to study ITH through new prognostic and predictive biomarkers (e.g., ctDNA and CTCs) and to increase its basic biology knowledge. Precision medicine is a new opportunity in the treatment of oncological diseases that is transforming the development of new drug approaches and their clinical use. Biology and biotechnologies are providing the bases for this revolution.
Insights
Tumor heterogeneity and the tumor microenvironment are key to understanding cancer progression and drug resistance. Further research into biomarkers and basic biology will advance precision medicine for better cancer treatment.
Area of Science:
- Oncology
- Cancer Biology
- Precision Medicine
Background:
- Tumor diseases exhibit significant interindividual and intratumoral heterogeneity (ITH).
- Complex cellular and molecular signaling networks drive neoplasm development and progression.
- The tumor microenvironment (TME) plays a critical role in tumor growth, metastasis, and drug resistance.
Purpose of the Study:
- To provide a comprehensive literature review on the cellular and molecular mechanisms of tumor heterogeneity.
- To examine the role of the TME in neoplasm development and support.
- To highlight the potential of TME and ITH in developing precision medicine approaches.
Main Methods:
- Narrative review of existing literature.
- Analysis of cellular and molecular mechanisms.
- Examination of the tumor microenvironment's role.
Main Results:
- ITH and TME are crucial for understanding cancer, influencing tumor growth, metastasis, and drug resistance.
- Specific conditions like inflammation, cell recruitment, cytokines, and hypoxia facilitate TME establishment and tumor progression.
- The extracellular matrix and immune cells (myeloid precursors, M2 macrophages) contribute to physical barriers and immune tolerance.
Conclusions:
- ITH and TME are central to cancer research and pharmacology, enabling better understanding of cancer-environment communication.
- Targeted molecular agents have been developed, but new prognostic/predictive biomarkers (ctDNA, CTCs) and basic biology knowledge are needed for ITH.
- Precision medicine offers a transformative opportunity for developing novel drug approaches and clinical applications in oncology.
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