Unraveling the tumor microenvironment: Insights into cancer metastasis and therapeutic strategies
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Date
2024
Journal Title
Journal ISSN
Volume Title
Publisher
Cancer Letters
Abstract
This comprehensive review delves into the pivotal role of the tumor microenvironment (TME) in cancer metastasis and therapeutic response, offering fresh insights
into the intricate interplay between cancer cells and their surrounding milieu. The TME, a dynamic ecosystem comprising diverse cellular and acellular elements, not
only fosters tumor progression but also profoundly affects the efficacy of conventional and emerging cancer therapies. Through nuanced exploration, this review
illuminates the multifaceted nature of the TME, elucidating its capacity to engender drug resistance via mechanisms such as hypoxia, immune evasion, and the
establishment of physical barriers to drug delivery. Moreover, it investigates innovative therapeutic approaches aimed at targeting the TME, including stromal
reprogramming, immune microenvironment modulation, extracellular matrix (ECM)-targeting agents, and personalized medicine strategies, highlighting their po
tential to augment treatment outcomes.
Furthermore, this review critically evaluates the challenges posed by the complexity and heterogeneity of the TME, which contribute to variable therapeutic
responses and potentially unintended consequences. This underscores the need to identify robust biomarkers and advance predictive models to anticipate treatment
outcomes, as well as advocate for combination therapies that address multiple facets of the TME. Finally, the review emphasizes the necessity of an interdisciplinary
approach and the integration of cutting-edge technologies to unravel the intricacies of the TME, thereby facilitating the development of more effective, adaptable,
and personalized cancer treatments. By providing critical insights into the current state of TME research and its implications for the future of oncology, this review
highlights the dynamic and evolving landscape of this field.
Description
Keywords
tumor microenvironment (TME), cancer metastasis
