Tumor-educated Mesenchymal Stem Cells Promote Pro-metastatic Phenotype
Overview
Affiliations
Multipotent mesenchymal stem cells (MSCs) are recruited into tumor microenvironment in response to multiple signals produced by cancer cells. Molecules involved in their homing to tumors are the same inflammatory mediators produced by injured tissues: chemokines, cytokines and growth factors. When MSCs arrive into the tumor microenvironment these are "educated" to have pro-metastatic behaviour. Firstly, they promote cancer immunosuppression modulating both innate and adaptive immune systems. Moreover, tumor associated-MSCs trans-differentiating into cancer-associated fibroblasts can induce epithelial-mesenchymal-transition program in tumor cells. This process determinates a more aggressive phenotype of cancer cells by increasing their motility and invasiveness and favoring their dissemination to distant sites. In addition, MSCs are involved in the formation and modelling of pre-metastatic niches creating a supportive environment for colonization of circulating tumor cells. The development of novel therapeutic approaches targeting the different functions of MSCs in promoting tumor progression as well as the mechanisms underlying their activities could enhance the efficacy of conventional and immune anti-cancer therapies. Furthermore, many studies report the use of MSCs engineered to express different genes or as vehicle to specifically deliver novel drugs to tumors exploiting their strong tropism. Importantly, this approach can enhance local therapeutic efficacy and reduce the risk of systemic side effects.
Tumor dormancy and relapse: understanding the molecular mechanisms of cancer recurrence.
Tufail M, Jiang C, Li N Mil Med Res. 2025; 12(1):7.
PMID: 39934876 PMC: 11812268. DOI: 10.1186/s40779-025-00595-2.
Ferrara Y, Latino D, Costagliola di Polidoro A, Oliver A, Sarnella A, Caprio M Cell Commun Signal. 2025; 23(1):74.
PMID: 39930439 PMC: 11809099. DOI: 10.1186/s12964-025-02073-7.
Adipose MSCs response to breast cancer cell-derived factors in conditioned media and extracts.
Sadeghian F, Kazemi F, Pirsadeghi A, Asadi F, Tashakori M, Yousefi-Ahmadipour A Cell Tissue Bank. 2024; 26(1):6.
PMID: 39733372 DOI: 10.1007/s10561-024-10156-x.
Nguyen H, Vuong C, Fukushige M, Usuda M, Takagi L, Yamashita T Front Oncol. 2024; 14:1346312.
PMID: 38515582 PMC: 10955079. DOI: 10.3389/fonc.2024.1346312.
Xing Z, Lin D, Hong Y, Ma Z, Jiang H, Lu Y Front Oncol. 2023; 13:1186858.
PMID: 38074669 PMC: 10698552. DOI: 10.3389/fonc.2023.1186858.