Peritoneal fibrosis is characterized by abnormal production of extracellular matrix proteins leading to progressive thickening of the submesothelial compact zone of the peritoneal membrane. This process may be caused by a number of insults including pathological conditions linked to clinical practice, such as peritoneal dialysis, abdominal surgery, hemoperitoneum, and infectious peritonitis. All these events may cause acute/chronic inflammation and injury to the peritoneal membrane, which undergoes progressive fibrosis, angiogenesis, and vasculopathy. Among the cellular processes implicated in these peritoneal alterations is the generation of myofibroblasts from mesothelial cells and other cellular sources that are central in the induction of fibrosis and in the subsequent functional deterioration of the peritoneal membrane. Myofibroblast generation and activity is actually integrated in a complex network of extracellular signals generated by the various cellular types, including leukocytes, stably residing or recirculating along the peritoneal membrane. Here, the main extracellular factors and the cellular players are described with emphasis on the cross-talk between immune system and cells of the peritoneal stroma. The understanding of cellular and molecular mechanisms underlying fibrosis of the peritoneal membrane has both a basic and a translational relevance, since it may be useful for setup of therapies aimed at counteracting the deterioration as well as restoring the homeostasis of the peritoneal membrane.

Mechanisms of peritoneal fibrosis: focus on immune cells-peritoneal stroma interactions / Terri, Michela; Trionfetti, Flavia; Montaldo, Claudia; Cordani, Marco; Tripodi, Marco; Lopez-Cabrera, Manuel; Strippoli, Raffaele. - In: FRONTIERS IN IMMUNOLOGY. - ISSN 1664-3224. - 12:(2021). [10.3389/fimmu.2021.607204]

Mechanisms of peritoneal fibrosis: focus on immune cells-peritoneal stroma interactions

Michela Terri;Flavia Trionfetti;Claudia Montaldo;Marco Tripodi;Raffaele Strippoli
2021

Abstract

Peritoneal fibrosis is characterized by abnormal production of extracellular matrix proteins leading to progressive thickening of the submesothelial compact zone of the peritoneal membrane. This process may be caused by a number of insults including pathological conditions linked to clinical practice, such as peritoneal dialysis, abdominal surgery, hemoperitoneum, and infectious peritonitis. All these events may cause acute/chronic inflammation and injury to the peritoneal membrane, which undergoes progressive fibrosis, angiogenesis, and vasculopathy. Among the cellular processes implicated in these peritoneal alterations is the generation of myofibroblasts from mesothelial cells and other cellular sources that are central in the induction of fibrosis and in the subsequent functional deterioration of the peritoneal membrane. Myofibroblast generation and activity is actually integrated in a complex network of extracellular signals generated by the various cellular types, including leukocytes, stably residing or recirculating along the peritoneal membrane. Here, the main extracellular factors and the cellular players are described with emphasis on the cross-talk between immune system and cells of the peritoneal stroma. The understanding of cellular and molecular mechanisms underlying fibrosis of the peritoneal membrane has both a basic and a translational relevance, since it may be useful for setup of therapies aimed at counteracting the deterioration as well as restoring the homeostasis of the peritoneal membrane.
2021
peritoneal fibrosis; mesothelial cells; peritonitis; innate immunity; T cell subpopulations; pro-inflammatory cytokines
01 Pubblicazione su rivista::01g Articolo di rassegna (Review)
Mechanisms of peritoneal fibrosis: focus on immune cells-peritoneal stroma interactions / Terri, Michela; Trionfetti, Flavia; Montaldo, Claudia; Cordani, Marco; Tripodi, Marco; Lopez-Cabrera, Manuel; Strippoli, Raffaele. - In: FRONTIERS IN IMMUNOLOGY. - ISSN 1664-3224. - 12:(2021). [10.3389/fimmu.2021.607204]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1550677
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