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Cancer as an ecomolecular disease and a neoplastic consortium
Santiago Ramón Y Cajal1, Claudia Capdevila2, Javier Hernandez-Losa1
1Translational Molecular Pathology, Vall d'Hebron Research Institute (VHIR), Universitat Autònoma de Barcelona, Passeig Vall d'Hebron 119-129, 08035 Barcelona, Spain; Pathology Department, Vall d'Hebron Hospital, 08035 Barcelona, Spain; Spanish Biomedical Research Network Centre in Oncology (CIBERONC), Spain.
Abstract:
Current anticancer paradigms largely target driver mutations considered integral for cancer cell survival and tumor progression. Although initially successful, many of these strategies are unable to overcome the tremendous heterogeneity that characterizes advanced tumors, resulting in the emergence of resistant disease. Cancer is a rapidly evolving, multifactorial disease that accumulates numerous genetic and epigenetic alterations. This results in wide phenotypic and molecular heterogeneity within the tumor, the complexity of which is further amplified through specific interactions between cancer cells and the tumor microenvironment. In this context, cancer may be perceived as an "ecomolecular" disease that involves cooperation between several neoplastic clones and their interactions with immune cells, stromal fibroblasts, and other cell types present in the microenvironment. This collaboration is mediated by a variety of secreted factors. Cancer is therefore analogous to complex ecosystems such as microbial consortia. In the present article, we comment on the current paradigms and perspectives guiding the development of cancer diagnostics and therapeutics and the potential application of systems biology to untangle the complexity of neoplasia. In our opinion, conceptualization of neoplasia as an ecomolecular disease is warranted. Advances in knowledge pertinent to the complexity and dynamics of interactions within the cancer ecosystem are likely to improve understanding of tumor etiology, pathogenesis, and progression. This knowledge is anticipated to facilitate the design of new and more effective therapeutic approaches that target the tumor ecosystem in its entirety.
Insights
Cancer is a complex "ecomolecular" disease, not just driven by mutations. Viewing cancer as an ecosystem offers new therapeutic strategies targeting the entire tumor environment.
Area of Science:
- Oncology
- Systems Biology
- Cancer Research
Background:
- Current cancer treatments focus on driver mutations but often fail due to tumor heterogeneity and resistance.
- Advanced tumors exhibit significant genetic and epigenetic alterations, leading to diverse cancer cell phenotypes.
- Tumor microenvironment interactions amplify cancer cell heterogeneity, complicating treatment outcomes.
Purpose of the Study:
- To propose a new conceptualization of cancer as an "ecomolecular" disease.
- To discuss current cancer diagnostics and therapeutics in light of tumor complexity.
- To highlight the potential of systems biology in understanding and treating cancer.
Main Methods:
- Review and commentary on existing cancer research paradigms.
- Conceptual analysis of cancer as a complex ecosystem.
- Discussion of systems biology approaches for cancer research.
Main Results:
- Cancer exhibits complexity analogous to microbial ecosystems, involving interactions between neoplastic clones and the microenvironment.
- Traditional approaches targeting single mutations are insufficient for advanced, heterogeneous cancers.
- Conceptualizing cancer as an ecomolecular disease provides a framework for understanding its complexity.
Conclusions:
- Viewing cancer as an ecomolecular disease is crucial for advancing oncology.
- Understanding the dynamics of the cancer ecosystem can improve diagnostics and therapeutics.
- Targeting the entire tumor ecosystem offers a promising strategy for more effective cancer treatments.
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