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Published on: March 8, 2022
Deciphering molecular mechanisms of metastasis: novel insights into targets and therapeutics
Bikashita Kalita1, Mohane Selvaraj Coumar2
1Centre for Bioinformatics, School of Life Sciences, Pondicherry University, Kalapet, Pondicherry, 605014, India.
Background:
The transition of a primary tumour to metastatic progression is driven by dynamic molecular changes, including genetic and epigenetic alterations. The metastatic cascade involves bidirectional interactions among extracellular and intracellular components leading to disintegration of cellular junctions, cytoskeleton reorganization and epithelial to mesenchymal transition. These events promote metastasis by reprogramming the primary cancer cell's molecular framework, enabling them to cause local invasion, anchorage-independent survival, cell death and immune resistance, extravasation and colonization of distant organs. Metastasis follows a site-specific pattern that is still poorly understood at the molecular level. Although various drugs have been tested clinically across different metastatic cancer types, it has remained difficult to develop efficacious therapeutics due to complex molecular layers involved in metastasis as well as experimental limitations.
Conclusions:
In this review, a systemic evaluation of the molecular mechanisms of metastasis is outlined and the potential molecular components and their status as therapeutic targets and the associated pre-clinical and clinical agents available or under investigations are discussed. Integrative methods like pan-cancer data analysis, which can provide clinical insights into both targets and treatment decisions and help in the identification of crucial components driving metastasis such as mutational profiles, gene signatures, associated pathways, site specificities and disease-gene phenotypes, are discussed. A multi-level data integration of the metastasis signatures across multiple primary and metastatic cancer types may facilitate the development of precision medicine and open up new opportunities for future therapies.
Insights
Metastasis involves complex molecular changes enabling cancer spread. Understanding these mechanisms and integrating data can lead to better precision medicine and new cancer therapies.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Metastatic progression is driven by dynamic molecular and epigenetic alterations.
- The metastatic cascade involves complex cellular interactions and reprogramming.
- Site-specific metastasis patterns remain poorly understood at the molecular level.
Purpose of the Study:
- To systematically evaluate molecular mechanisms of metastasis.
- To discuss potential therapeutic targets and agents for metastatic cancers.
- To explore integrative methods for identifying metastasis drivers.
Main Methods:
- Systemic evaluation of molecular metastasis mechanisms.
- Review of pre-clinical and clinical agents targeting metastasis.
- Discussion of integrative methods like pan-cancer data analysis.
Main Results:
- Metastasis involves genetic/epigenetic changes, cellular reprogramming, and immune evasion.
- Therapeutic development for metastasis is challenging due to molecular complexity.
- Integrative approaches can identify key metastasis drivers.
Conclusions:
- Understanding metastasis molecular drivers is crucial for therapeutic development.
- Pan-cancer data analysis and multi-level data integration can advance precision medicine.
- New opportunities for future therapies can be opened by integrating metastasis signatures.
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