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Dive into the research topics where Rossana Franzin is active.

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Featured researches published by Rossana Franzin.


American Journal of Transplantation | 2016

Complement Modulation of Anti-Aging Factor Klotho in Ischemia/Reperfusion Injury and Delayed Graft Function.

Giuseppe Castellano; Angelica Intini; Alessandra Stasi; Chiara Divella; Margherita Gigante; Paola Pontrelli; Rossana Franzin; Matteo Accetturo; A. Zito; Marco Fiorentino; Vincenzo Montinaro; Giuseppe Lucarelli; Pasquale Ditonno; Michele Battaglia; Antonio Crovace; Francesco Staffieri; Beatrijs D. Oortwijn; E. van Amersfoort; Giovanni Pertosa; Giuseppe Grandaliano; Loreto Gesualdo

Klotho is an anti‐aging factor mainly produced by renal tubular epithelial cells (TEC) with pleiotropic functions. Klotho is down‐regulated in acute kidney injury in native kidney; however, the modulation of Klotho in kidney transplantation has not been investigated. In a swine model of ischemia/reperfusion injury (IRI), we observed a remarkable reduction of renal Klotho by 24 h from IRI. Complement inhibition by C1‐inhibitor preserved Klotho expression in vivo by abrogating nuclear factor kappa B (NF‐kB) signaling. In accordance, complement anaphylotoxin C5a led to a significant down‐regulation of Klotho in TEC in vitro that was NF‐kB mediated. Analysis of Klotho in kidneys from cadaveric donors demonstrated a significant expression of Klotho in pre‐implantation biopsies; however, patients affected by delayed graft function (DGF) showed a profound down‐regulation of Klotho compared with patients with early graft function. Quantification of serum Klotho after 2 years from transplantation demonstrated significant lower levels in DGF patients. Our data demonstrated that complement might be pivotal in the down‐regulation of Klotho in IRI leading to a permanent deficiency after years from transplantation. Considering the anti‐senescence and anti‐fibrotic effects of Klotho at renal levels, we hypothesize that this acquired deficiency of Klotho might contribute to DGF‐associated chronic allograft dysfunction.


Nephrology Dialysis Transplantation | 2016

Emerging role of Lipopolysaccharide binding protein in sepsis-induced acute kidney injury

Alessandra Stasi; Angelica Intini; Chiara Divella; Rossana Franzin; Eustacchio Montemurno; Giuseppe Grandaliano; Claudio Ronco; Enrico Fiaccadori; Giovanni Pertosa; Loreto Gesualdo; Giuseppe Castellano

Sepsis remains a serious cause of morbidity and mortality in critically ill patients, with limited therapeutic options available. Of the several disorders connected with sepsis, acute kidney injury (AKI) is one of the major complications. The pathophysiology of sepsis-induced AKI is characterized by severe inflammation in renal parenchyma with endothelial dysfunction, intra-glomerular thrombosis and tubular injury. Endothelial dysfunction is regulated by several mechanisms implicated in cellular de-differentiation, such as endothelial-to-mesenchymal transition (EndMT). Gram-negative bacteria and their cell wall component lipopolysaccharides (LPSs) are frequently involved in the pathogenesis of AKI. The host recognition of LPS requires a specific receptor, which belongs to the Toll-like receptor (TLR) family of proteins, called TLR4, and two carrier proteins, namely the LPS-binding protein (LBP) and cluster of differentiation 14 (CD14). In particular, LBP is released as a consequence of Gram-negative infection and maximizes the activation of TLR4 signalling. Recent findings regarding the emerging role of LBP in mediating sepsis-induced AKI, and the possible beneficial effects resulting from the removal of this endogenous adaptor protein, will be discussed in this review.


Frontiers in Immunology | 2018

Complement Activation During Ischemia/Reperfusion Injury Induces Pericyte-to-Myofibroblast Transdifferentiation Regulating Peritubular Capillary Lumen Reduction Through pERK Signaling

Giuseppe Castellano; Rossana Franzin; Alessandra Stasi; Chiara Divella; Fabio Sallustio; Paola Pontrelli; Giuseppe Lucarelli; Michele Battaglia; Francesco Staffieri; Antonio Crovace; Giovanni Stallone; Marc A. Seelen; Mohamed R. Daha; Giuseppe Grandaliano; Loreto Gesualdo

Pericytes are one of the principal sources of scar-forming myofibroblasts in chronic kidneys disease. However, the modulation of pericyte-to-myofibroblast transdifferentiation (PMT) in the early phases of acute kidney injury is poorly understood. Here, we investigated the role of complement in inducing PMT after transplantation. Using a swine model of renal ischemia/reperfusion (I/R) injury, we found the occurrence of PMT after 24 h of I/R injury as demonstrated by reduction of PDGFRβ+/NG2+ cells with increase in myofibroblasts marker αSMA. In addition, PMT was associated with significant reduction in peritubular capillary luminal diameter. Treatment by C1-inhibitor (C1-INH) significantly preserved the phenotype of pericytes maintaining microvascular density and capillary lumen area at tubulointerstitial level. In vitro, C5a transdifferentiated human pericytes in myofibroblasts, with increased αSMA expression in stress fibers, collagen I production, and decreased antifibrotic protein Id2. The C5a-induced PMT was driven by extracellular signal-regulated kinases phosphorylation leading to increase in collagen I release that required both non-canonical and canonical TGFβ pathways. These results showed that pericytes are a pivotal target of complement activation leading to a profibrotic maladaptive cellular response. Our studies suggest that C1-INH may be a potential therapeutic strategy to counteract the development of PMT and capillary lumen reduction in I/R injury.


Nephrology Dialysis Transplantation | 2018

FP025THE ROLE OF LONG NON-CODING RNAS IN THE REGULATION OF ADULT RENAL STEM/PROGENITOR CELLS (ARPCS) FUNCTIONS

Simona Simone; G De Palma; Alessandra Stasi; Claudia Curci; Rossana Franzin; Matteo Accetturo; Monica Rutigliano; Giuseppe Lucarelli; Michele Battaglia; A Gallone; Giuseppe Grandaliano; Giuseppe Castellano; Loreto Gesualdo; Giovanni Pertosa; Fabio Sallustio


Nephrology Dialysis Transplantation | 2018

FP693RENAL ACUTE AND CHRONIC ANTIBODY-MEDIATED REJECTION (AMR) ACCELERATE THE TUBULAR SENESCENCE INCREASING THE EXPRESSION OF CELL CYCLE NEGATIVE REGULATORS

Rossana Franzin; Chiara Divella; Alessandra Stasi; Fabio Sallustio; Giuseppe Lucarelli; Michele Battaglia; Giuseppe Grandaliano; Vincenzo Cantaluppi; Loreto Gesualdo; Giuseppe Castellano


Nephrology Dialysis Transplantation | 2018

FP211A CLUSTER OF PROTEINS SECRETED BY HUMAN RENAL STEM/PROGENITOR CELLS (ARPCS) PROVIDE A NOVEL STRATEGY TO REVERT ENDOTHELIAL DYSFUNCTION AND RENAL INJURY IN SEPSIS-INDUCED ACUTE KIDNEY INJURY (AKI)

Fabio Sallustio; Alessandra Stasi; Claudia Curci; Rossana Franzin; Angela Picerno; Chiara Divella; P Laghetti; G De Palma; Matteo Accetturo; Monica Rutigliano; Giuseppe Lucarelli; Michele Battaglia; Giovanni Pertosa; A Gallone; Loreto Gesualdo; Giuseppe Castellano


Nephrology Dialysis Transplantation | 2018

SaO053ADULT RENAL STEM/PROGENITOR CELLS (ARPCS) HAVE AN IMMUNOMODULATORY EFFECT ON T REGULATORY CELLS (TREGS) AND DOUBLE NEGATIVE (DN) T CELLS

Claudia Curci; N Chaoul; Angela Picerno; G De Palma; P Laghetti; Alessandra Stasi; Rossana Franzin; Monica Rutigliano; Giuseppe Lucarelli; Michele Battaglia; Giovanni Pertosa; A Gallone; Giuseppe Castellano; Loreto Gesualdo; Fabio Sallustio


Nephrology Dialysis Transplantation | 2017

SP160LPS-MEDIATED RECRUITMENT OF MTOR COMPLEX 1 ENHANCES ENDOTHELIAL DYSFUNCTION IN SEPSIS-INDUCED ACUTE KIDNEY INJURY

Alessandra Stasi; Fabio Sallustio; Chiara Divella; Rossana Franzin; Margherita Gigante; Angela Picerno; Paola Pontrelli; Giuseppe Grandaliano; Loreto Gesualdo; Giuseppe Castellano


Nephrology Dialysis Transplantation | 2017

MO008LPS BINDING PROTEIN AMPLIFIES TLR-4 SIGNALING AND PERICYTE TO MYOFIBROBLASTS TRANS-DIFFERENTIATION IN LPS-INDUCED ACUTE KIDNEY INJURY

Alessandra Stasi; Fabio Sallustio; Rossana Franzin; Chiara Divella; Alessandra Spinelli; Margherita Gigante; Giuseppe Grandaliano; Giovanni Pertosa; Loreto Gesualdo; Giuseppe Castellano


Nephrology Dialysis Transplantation | 2017

MO009COMPLEMENT MODULATES THE EXPRESSION OF GENES INVOLVED IN SENESCENCE BY DNA METHYLATION IN RENAL PROXIMAL TUBULAR EPITHELIAL CELLS

Rossana Franzin; Fabio Sallustio; Alessandra Stasi; Claudia Curci; Angela Picerno; Chiara Divella; Loreto Gesualdo; Giuseppe Castellano

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