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Cathepsins: Emerging targets in the tumor ecosystem to overcome cancers
Yuki Fujii1, Zahra Asadi2, Kamiya Mehla3
1Department of Oncology Science, University of Oklahoma Health Sciences, Oklahoma City, OK 73014, USA.
Abstract:
Cathepsins, a group of lysosomal peptidases, have traditionally been recognized as tumor facilitators. Recent research, however, highlights their critical role in orchestrating cancer and the tumor microenvironment (TME). Primality, cathepsins degrade extracellular matrix, enabling cancer cells to invade and metastasize, while also promoting vascular endothelial infiltration and subsequent angiogenesis. Additionally, cathepsins boost fibroblast growth, thereby supporting tumor progression. More importantly, cathepsins are pivotal in modulating immune cells within the TME by regulating their recruitment, antigen processing and presentation, differentiation, and cell death, primarily contributing to immune suppression. Given their overexpression in tumors and elevated levels in the circulation of cancer patients, it is crucial to consider the systemic effects of cathepsins. Although the comprehensive role of cathepsins in cancer patients' bodies remains underexplored, they likely influence systemic immunity and inflammation, cellular metabolism, muscle wasting, and distant metastasis through their unique proteolytic functions. Notably, cathepsins also confer resistance to chemoradiotherapy by rewriting the cellular profile within the TME. In this context, promising results are emerging from studies combining cathepsin inhibitors with conventional therapies to suppress tumor development effectively. This review aims to decipher the cathepsin-driven networks within cancer cells and the TME, detailing their contribution to chemoradioresistance by reshaping both micro- and macroenvironments. Furthermore, we explore current and future perspectives on therapies targeting cathepsins' interactions, offering insights into innovative treatment strategies.
Insights
Cathepsins, lysosomal peptidases, facilitate cancer progression and immune suppression within the tumor microenvironment (TME). Targeting cathepsins with inhibitors shows promise for overcoming therapy resistance and improving cancer treatment outcomes.
Area of Science:
- Biochemistry
- Oncology
- Immunology
Background:
- Cathepsins, lysosomal peptidases, are increasingly recognized for their multifaceted roles in cancer.
- Traditionally viewed as tumor promoters, recent studies reveal their critical involvement in the tumor microenvironment (TME).
Purpose of the Study:
- To elucidate the complex networks driven by cathepsins within cancer cells and the TME.
- To detail cathepsins' contribution to chemoradiotherapy resistance by modifying both micro- and macroenvironments.
- To explore current and future therapeutic strategies targeting cathepsin interactions.
Main Methods:
- Literature review of cathepsin functions in cancer.
- Analysis of cathepsin roles in extracellular matrix degradation, angiogenesis, and immune cell modulation.
- Investigation of cathepsin-mediated resistance to conventional therapies.
Main Results:
- Cathepsins degrade the extracellular matrix, promoting invasion, metastasis, and angiogenesis.
- They modulate immune cells in the TME, leading to immune suppression.
- Cathepsins contribute to chemoradiotherapy resistance by altering the TME.
- Overexpression in tumors and circulation suggests systemic effects on immunity, metabolism, and metastasis.
Conclusions:
- Cathepsins are key players in cancer progression, immune evasion, and therapy resistance.
- Targeting cathepsins, particularly in combination with existing therapies, presents a promising avenue for cancer treatment.
- Further research into systemic cathepsin effects and targeted therapies is warranted.
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