The immune system is a fine modulator of the tumor biology supporting or inhibiting its progression, growth, invasion and conveys the pharmacological treatment effect. Tumors, on their side, have developed escaping mechanisms from the immune system action ranging from the direct secretion of biochemical signals to an indirect reaction, in which the cellular actors of the tumor microenvironment (TME) collaborate to mechanically condition the extracellular matrix (ECM) making it inhospitable to immune cells. TME is composed of several cell lines besides cancer cells, including tumor-associated macrophages, cancer-associated fibroblasts, CD4+ and CD8+ lymphocytes, and innate immunity cells. These populations interface with each other to prepare a conservative response, capable of evading the defense mechanisms implemented by the host's immune system. The presence or absence, in particular, of cytotoxic CD8+ cells in the vicinity of the main tumor mass, is able to predict, respectively, the success or failure of drug therapy. Among various mechanisms of immunescaping, in this study, we characterized the modulation of the phenotypic profile of CD4+ and CD8+ cells in resting and activated states, in response to the mechanical pressure exerted by a three-dimensional in vitro system, able to recapitulate the rheological and stiffness properties of the tumor ECM.

Tumor Extracellular Matrix Stiffness Promptly Modulates the Phenotype and Gene Expression of Infiltrating T Lymphocytes / Chirivì, Maila; Maiullari, Fabio; Milan, Marika; Presutti, Dario; Cordiglieri, Chiara; Crosti, Mariacristina; Sarnicola, Maria Lucia; Soluri, Andrea; Volpi, Marina; Święszkowski, Wojciech; Prati, Daniele; Rizzi, Marta; Costantini, Marco; Seliktar, Dror; Parisi, Chiara; Bearzi, Claudia; Rizzi, Roberto. - In: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. - ISSN 1422-0067. - 22:11(2021), pp. 1-19. [10.3390/ijms22115862]

Tumor Extracellular Matrix Stiffness Promptly Modulates the Phenotype and Gene Expression of Infiltrating T Lymphocytes

Chirivì, Maila
Primo
;
Milan, Marika;Presutti, Dario;Rizzi, Marta;Rizzi, Roberto
2021

Abstract

The immune system is a fine modulator of the tumor biology supporting or inhibiting its progression, growth, invasion and conveys the pharmacological treatment effect. Tumors, on their side, have developed escaping mechanisms from the immune system action ranging from the direct secretion of biochemical signals to an indirect reaction, in which the cellular actors of the tumor microenvironment (TME) collaborate to mechanically condition the extracellular matrix (ECM) making it inhospitable to immune cells. TME is composed of several cell lines besides cancer cells, including tumor-associated macrophages, cancer-associated fibroblasts, CD4+ and CD8+ lymphocytes, and innate immunity cells. These populations interface with each other to prepare a conservative response, capable of evading the defense mechanisms implemented by the host's immune system. The presence or absence, in particular, of cytotoxic CD8+ cells in the vicinity of the main tumor mass, is able to predict, respectively, the success or failure of drug therapy. Among various mechanisms of immunescaping, in this study, we characterized the modulation of the phenotypic profile of CD4+ and CD8+ cells in resting and activated states, in response to the mechanical pressure exerted by a three-dimensional in vitro system, able to recapitulate the rheological and stiffness properties of the tumor ECM.
2021
3D culture; T lymphocytes; extracellular matrix; tumor microenvironment
01 Pubblicazione su rivista::01a Articolo in rivista
Tumor Extracellular Matrix Stiffness Promptly Modulates the Phenotype and Gene Expression of Infiltrating T Lymphocytes / Chirivì, Maila; Maiullari, Fabio; Milan, Marika; Presutti, Dario; Cordiglieri, Chiara; Crosti, Mariacristina; Sarnicola, Maria Lucia; Soluri, Andrea; Volpi, Marina; Święszkowski, Wojciech; Prati, Daniele; Rizzi, Marta; Costantini, Marco; Seliktar, Dror; Parisi, Chiara; Bearzi, Claudia; Rizzi, Roberto. - In: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. - ISSN 1422-0067. - 22:11(2021), pp. 1-19. [10.3390/ijms22115862]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1551913
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