4.6 Article

Tumor-derived exosomes: Key players in non-small cell lung cancer metastasis and their implication for targeted therapy

Journal

MOLECULAR CARCINOGENESIS
Volume 61, Issue 3, Pages 269-280

Publisher

WILEY
DOI: 10.1002/mc.23378

Keywords

exosome; lung cancer; metastasis; microRNA; targeted therapy; the tumor microenvironment

Funding

  1. University Hospital Jena Germany

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Exosomes are crucial intercellular communicators that play a significant role in tumor growth, progression, and drug resistance. Lung cancer, a major clinical challenge, may benefit from lung tumor-derived exosomes in activating the tumor microenvironment and promoting metastasis.
Exosomes represent extracellular vesicles of endocytic origin ranging from 30 to 100 nm that are released by most of eukaryotic cells and can be found in body fluids. These vesicles in carrying DNA, RNA, microRNA (miRNA), Long noncoding RNA, proteins, and lipids serve as intercellular communicators. Due to their role in crosstalk between tumor cells and mesenchymal stroma cells, they are vital for tumor growth, progression, and anticancer drug resistance. Lung cancer is a global leading cause of cancer-related deaths with 5-year survival rates of about 7% in patients with distant metastasis. Although the implementation of targeted therapy has improved the clinical outcome of nonsmall cell lung cancer, drug resistance remains a major obstacle. Lung tumor-derived exosomes (TDEs) conveying molecular information from tumor cells to their neighbor cells or cells at distant sites of the body activate the tumor microenvironment (TME) and facilitate tumor metastasis. Exosomal miRNAs are also considered as noninvasive biomarkers for early diagnosis of lung cancer. This review summarizes the influence of lung TDEs on the TME and metastasis. Their involvement in targeted therapy resistance and potential clinical applications are discussed. Additionally, challenges encountered in the development of exosome-based therapeutic strategies are addressed.

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