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February 5, 2026International Journal of Molecular Sciences4 citationsOpen Access

Targeting Matrix Stiffness and Mechanotransduction in Breast Cancer: Implications for Emerging Therapies

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MHMichael HallLoma Linda UniversityOAOzichi AmobiLoma Linda UniversityJKJohn KhalafLoma Linda University

Key Points

  • The aim is to explore how ECM stiffness and mechanotransduction contribute to breast cancer progression and to identify potential therapies.
  • Reviewed recent studies on ECM properties and mechanotransduction in breast cancer
  • Examined ancestry impacts on ECM and breast cancer survival
  • Analyzed agents targeting mechanotransduction signaling pathways
  • Stiff ECM configurations promote tumor cell invasion and metastasis
  • Patient ancestry influences ECM stiffness and contributes to survival disparities
  • Emerging therapies targeting mechanotransduction pathways show potential for treating aggressive breast cancer subtypes

Abstract

Breast cancer remains a leading cause of mortality among women worldwide. The inherent heterogeneity in tumors among patients with breast cancer poses a challenge to effective therapeutic management. The extracellular matrix (ECM) is an important structural component of the tumor microenvironment (TME) that regulates cellular behavior. When the ECM adopts a stiff configuration, this coincides with biochemical remodeling in response to biomechanical cues that drive tumor cell invasion, immune evasion, and metastatic spread in breast cancer. Emerging studies suggest that patient ancestry significantly impacts ECM stiffness to contribute to disparities in breast cancer survival. In this review, we discuss recent advances in our understanding of how the tumor ECM orchestrates breast cancer invasion and metastasis through mechanotransduction signaling to promote breast cancer progression. We also discuss ancestry-associated differences in breast ECM architecture and agents targeting mechanotransduction signaling pathways with potential to treat breast cancer and improve patient outcomes. Collectively, this review will highlight the significance of tumor mechanobiology and present emerging therapies that target stiffness-sensitive mechanotransduction pathways. By integrating mechanistic insights with therapeutic innovation, we aim to support the development of ECM-targeted therapies to enable more efficacious treatment of aggressive breast cancer subtypes.

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Cite This Study

Hall et al. (2026) studied this question.

synapsesocial.com/papers/698435f0f1d9ada3c1fb54d3https://doi.org/10.3390/ijms27031510
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