Permanent Pro-Tumorigenic Shift in Adipose Tissue-Derived Mesenchymal Stromal Cells Induced by Breast Malignancy. 2020

Jana Plava, and Marina Cihova, and Monika Burikova, and Martin Bohac, and Marian Adamkov, and Slavka Drahosova, and Dominika Rusnakova, and Daniel Pindak, and Marian Karaba, and Jan Simo, and Michal Mego, and Lubos Danisovic, and Lucia Kucerova, and Svetlana Miklikova
Cancer Research Institute, Biomedical Research Center, University Science Park for Biomedicine, Slovak Academy of Sciences, 845 05 Bratislava, Slovakia.

During cancer progression, breast tumor cells interact with adjacent adipose tissue, which has been shown to be engaged in cancer aggressiveness. However, the tumor-directed changes in adipose tissue-resident stromal cells affected by the tumor-stroma communication are still poorly understood. The acquired changes might remain in the tissue even after tumor removal and may contribute to tumor relapse. We investigated functional properties (migratory capacity, expression and secretion profile) of mesenchymal stromal cells isolated from healthy (n = 9) and tumor-distant breast adipose tissue (n = 32). Cancer patient-derived mesenchymal stromal cells (MSCs) (MSC-CA) exhibited a significantly disarranged secretion profile and proliferation potential. Co-culture with MDA-MB-231, T47D and JIMT-1, representing different subtypes of breast cancer, was used to analyze the effect of MSCs on proliferation, invasion and tumorigenicity. The MSC-CA enhanced tumorigenicity and altered xenograft composition in immunodeficient mice. Histological analysis revealed collective cell invasion with a specific invasive front of EMT-positive tumor cells as well as invasion of cancer cells to the nerve-surrounding space. This study identifies that adipose tissue-derived mesenchymal stromal cells are primed and permanently altered by tumor presence in breast tissue and have the potential to increase tumor cell invasive ability through the activation of epithelial-to-mesenchymal transition in tumor cells.

UI MeSH Term Description Entries
D009361 Neoplasm Invasiveness Ability of neoplasms to infiltrate and actively destroy surrounding tissue. Invasiveness, Neoplasm,Neoplasm Invasion,Invasion, Neoplasm
D001943 Breast Neoplasms Tumors or cancer of the human BREAST. Breast Cancer,Breast Tumors,Cancer of Breast,Breast Carcinoma,Cancer of the Breast,Human Mammary Carcinoma,Malignant Neoplasm of Breast,Malignant Tumor of Breast,Mammary Cancer,Mammary Carcinoma, Human,Mammary Neoplasm, Human,Mammary Neoplasms, Human,Neoplasms, Breast,Tumors, Breast,Breast Carcinomas,Breast Malignant Neoplasm,Breast Malignant Neoplasms,Breast Malignant Tumor,Breast Malignant Tumors,Breast Neoplasm,Breast Tumor,Cancer, Breast,Cancer, Mammary,Cancers, Mammary,Carcinoma, Breast,Carcinoma, Human Mammary,Carcinomas, Breast,Carcinomas, Human Mammary,Human Mammary Carcinomas,Human Mammary Neoplasm,Human Mammary Neoplasms,Mammary Cancers,Mammary Carcinomas, Human,Neoplasm, Breast,Neoplasm, Human Mammary,Neoplasms, Human Mammary,Tumor, Breast
D002450 Cell Communication Any of several ways in which living cells of an organism communicate with one another, whether by direct contact between cells or by means of chemical signals carried by neurotransmitter substances, hormones, and cyclic AMP. Cell Interaction,Cell-to-Cell Interaction,Cell Communications,Cell Interactions,Cell to Cell Interaction,Cell-to-Cell Interactions,Communication, Cell,Communications, Cell,Interaction, Cell,Interaction, Cell-to-Cell,Interactions, Cell,Interactions, Cell-to-Cell
D002465 Cell Movement The movement of cells from one location to another. Distinguish from CYTOKINESIS which is the process of dividing the CYTOPLASM of a cell. Cell Migration,Locomotion, Cell,Migration, Cell,Motility, Cell,Movement, Cell,Cell Locomotion,Cell Motility,Cell Movements,Movements, Cell
D002471 Cell Transformation, Neoplastic Cell changes manifested by escape from control mechanisms, increased growth potential, alterations in the cell surface, karyotypic abnormalities, morphological and biochemical deviations from the norm, and other attributes conferring the ability to invade, metastasize, and kill. Neoplastic Transformation, Cell,Neoplastic Cell Transformation,Transformation, Neoplastic Cell,Tumorigenic Transformation,Cell Neoplastic Transformation,Cell Neoplastic Transformations,Cell Transformations, Neoplastic,Neoplastic Cell Transformations,Neoplastic Transformations, Cell,Transformation, Cell Neoplastic,Transformation, Tumorigenic,Transformations, Cell Neoplastic,Transformations, Neoplastic Cell,Transformations, Tumorigenic,Tumorigenic Transformations
D005260 Female Females
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D016513 Mice, SCID Mice homozygous for the mutant autosomal recessive gene "scid" which is located on the centromeric end of chromosome 16. These mice lack mature, functional lymphocytes and are thus highly susceptible to lethal opportunistic infections if not chronically treated with antibiotics. The lack of B- and T-cell immunity resembles severe combined immunodeficiency (SCID) syndrome in human infants. SCID mice are useful as animal models since they are receptive to implantation of a human immune system producing SCID-human (SCID-hu) hematochimeric mice. SCID Mice,SCID-hu Mice,Severe Combined Immunodeficient Mice,Immunodeficient Mice, Severe Combined,Mouse, SCID,Mouse, SCID-hu,Mice, SCID-hu,Mouse, SCID hu,SCID Mouse,SCID hu Mice,SCID-hu Mouse
D045744 Cell Line, Tumor A cell line derived from cultured tumor cells. Tumor Cell Line,Cell Lines, Tumor,Line, Tumor Cell,Lines, Tumor Cell,Tumor Cell Lines

Related Publications

Jana Plava, and Marina Cihova, and Monika Burikova, and Martin Bohac, and Marian Adamkov, and Slavka Drahosova, and Dominika Rusnakova, and Daniel Pindak, and Marian Karaba, and Jan Simo, and Michal Mego, and Lubos Danisovic, and Lucia Kucerova, and Svetlana Miklikova
November 2013, Cytotherapy,
Jana Plava, and Marina Cihova, and Monika Burikova, and Martin Bohac, and Marian Adamkov, and Slavka Drahosova, and Dominika Rusnakova, and Daniel Pindak, and Marian Karaba, and Jan Simo, and Michal Mego, and Lubos Danisovic, and Lucia Kucerova, and Svetlana Miklikova
November 2022, Cancers,
Jana Plava, and Marina Cihova, and Monika Burikova, and Martin Bohac, and Marian Adamkov, and Slavka Drahosova, and Dominika Rusnakova, and Daniel Pindak, and Marian Karaba, and Jan Simo, and Michal Mego, and Lubos Danisovic, and Lucia Kucerova, and Svetlana Miklikova
January 2011, Neoplasma,
Jana Plava, and Marina Cihova, and Monika Burikova, and Martin Bohac, and Marian Adamkov, and Slavka Drahosova, and Dominika Rusnakova, and Daniel Pindak, and Marian Karaba, and Jan Simo, and Michal Mego, and Lubos Danisovic, and Lucia Kucerova, and Svetlana Miklikova
January 2020, Cell & bioscience,
Jana Plava, and Marina Cihova, and Monika Burikova, and Martin Bohac, and Marian Adamkov, and Slavka Drahosova, and Dominika Rusnakova, and Daniel Pindak, and Marian Karaba, and Jan Simo, and Michal Mego, and Lubos Danisovic, and Lucia Kucerova, and Svetlana Miklikova
January 2009, Cytotherapy,
Jana Plava, and Marina Cihova, and Monika Burikova, and Martin Bohac, and Marian Adamkov, and Slavka Drahosova, and Dominika Rusnakova, and Daniel Pindak, and Marian Karaba, and Jan Simo, and Michal Mego, and Lubos Danisovic, and Lucia Kucerova, and Svetlana Miklikova
November 2019, Journal of cellular physiology,
Jana Plava, and Marina Cihova, and Monika Burikova, and Martin Bohac, and Marian Adamkov, and Slavka Drahosova, and Dominika Rusnakova, and Daniel Pindak, and Marian Karaba, and Jan Simo, and Michal Mego, and Lubos Danisovic, and Lucia Kucerova, and Svetlana Miklikova
November 2022, International journal of molecular sciences,
Jana Plava, and Marina Cihova, and Monika Burikova, and Martin Bohac, and Marian Adamkov, and Slavka Drahosova, and Dominika Rusnakova, and Daniel Pindak, and Marian Karaba, and Jan Simo, and Michal Mego, and Lubos Danisovic, and Lucia Kucerova, and Svetlana Miklikova
January 2006, Cells, tissues, organs,
Jana Plava, and Marina Cihova, and Monika Burikova, and Martin Bohac, and Marian Adamkov, and Slavka Drahosova, and Dominika Rusnakova, and Daniel Pindak, and Marian Karaba, and Jan Simo, and Michal Mego, and Lubos Danisovic, and Lucia Kucerova, and Svetlana Miklikova
November 2013, BMC cancer,
Jana Plava, and Marina Cihova, and Monika Burikova, and Martin Bohac, and Marian Adamkov, and Slavka Drahosova, and Dominika Rusnakova, and Daniel Pindak, and Marian Karaba, and Jan Simo, and Michal Mego, and Lubos Danisovic, and Lucia Kucerova, and Svetlana Miklikova
November 2023, Immunobiology,
Copied contents to your clipboard!