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Dive into the research topics where Federica Moalli is active.

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Featured researches published by Federica Moalli.


Journal of Experimental Medicine | 2007

The humoral pattern recognition receptor PTX3 is stored in neutrophil granules and localizes in extracellular traps

Sébastien Jaillon; Giuseppe Peri; Yves Delneste; Isabelle Frémaux; Andrea Doni; Federica Moalli; Cecilia Garlanda; Luigina Romani; Hugues Gascan; Silvia Bellocchio; Silvia Bozza; Marco A. Cassatella; Pascale Jeannin; Alberto Mantovani

The long pentraxin (PTX) 3 is produced by macrophages and myeloid dendritic cells in response to Toll-like receptor agonists and represents a nonredundant component of humoral innate immunity against selected pathogens. We report that, unexpectedly, PTX3 is stored in specific granules and undergoes release in response to microbial recognition and inflammatory signals. Released PTX3 can partially localize in neutrophil extracellular traps formed by extruded DNA. Eosinophils and basophils do not contain preformed PTX3. PTX3-deficient neutrophils have defective microbial recognition and phagocytosis, and PTX3 is nonredundant for neutrophil-mediated resistance against Aspergillus fumigatus. Thus, neutrophils serve as a reservoir, ready for rapid release, of the long PTX3, a key component of humoral innate immunity with opsonic activity.


Nature Immunology | 2010

Regulation of leukocyte recruitment by the long pentraxin PTX3

Livija Deban; Remo Castro Russo; Marina Sironi; Federica Moalli; Margherita Scanziani; Vanessa Zambelli; Ivan Cuccovillo; Antonio Bastone; Marco Gobbi; Sonia Valentino; Andrea Doni; Cecilia Garlanda; Silvio Danese; Giovanni Salvatori; Marica Sassano; Virgilio Evangelista; Barbara Rossi; Elena Zenaro; Gabriela Constantin; Carlo Laudanna; Barbara Bottazzi; Alberto Mantovani

Pentraxins are a superfamily of conserved proteins involved in the acute-phase response and innate immunity. Pentraxin 3 (PTX3), a prototypical member of the long pentraxin subfamily, is a key component of the humoral arm of innate immunity that is essential for resistance to certain pathogens. A regulatory role for pentraxins in inflammation has long been recognized, but the underlying mechanisms remain unclear. Here we report that PTX3 bound P-selectin and attenuated neutrophil recruitment at sites of inflammation. PTX3 released from activated leukocytes functioned locally to dampen neutrophil recruitment and regulate inflammation. Antibodies have glycosylation-dependent regulatory effect on inflammation. Therefore, PTX3, which is an essential component of humoral innate immunity, and immunoglobulins share functional outputs, including complement activation, opsonization and, as shown here, glycosylation-dependent regulation of inflammation.


Circulation | 2009

Deficiency of the Long Pentraxin PTX3 Promotes Vascular Inflammation and Atherosclerosis

Giuseppe Danilo Norata; Patrizia Marchesi; Vivek Krishna Pulakazhi Venu; Fabio Pasqualini; Achille Anselmo; Federica Moalli; Irene Pizzitola; Cecilia Garlanda; Alberto Mantovani; Alberico L. Catapano

Background— Immune responses participate in several phases of atherosclerosis; there is, in fact, increasing evidence that both adaptive immunity and innate immunity tightly regulate atherogenesis. Pentraxins are a superfamily of acute-phase proteins that includes short pentraxins such as C-reactive protein or long pentraxins such as PTX3, a molecule acting as the humoral arm of innate immunity. To address the potential role of PTX3 in atherogenesis, we first investigated the expression of PTX3 during atherogenesis, generated double-knockout mice lacking PTX3 and apolipoprotein E, and then studied the effect of murine PTX3 deficiency on plasma lipids, atherosclerosis development, and gene expression pattern in the vascular wall. Methods and Results— PTX3 expression increases in the vascular wall of apolipoprotein E–knockout mice from 3 up to 18 months of age. Double-knockout mice lacking PTX3 and apolipoprotein E were fed an atherogenic diet for 16 weeks. Aortic lesions were significantly increased in double-knockout mice and mice heterozygous for PTX3 compared with apolipoprotein E–knockout mice. Mice lacking PTX3 showed a more pronounced inflammatory profile in the vascular wall as detected by cDNA microarray and quantitative polymerase chain reaction analysis and an increased macrophage accumulation within the plaque. Finally, lesion size correlated with the number of bone marrow monocytes. Conclusion— PTX3 has atheroprotective effects in mice, which, in light of the cardioprotective effects recently reported, suggests a cardiovascular protective function of the long pentraxin 3 through the modulation of the immunoinflammatory balance in the cardiovascular system.


Immunological Reviews | 2009

The long pentraxin PTX3 as a prototypic humoral pattern recognition receptor: interplay with cellular innate immunity.

Barbara Bottazzi; Cecilia Garlanda; Alessia Cotena; Federica Moalli; Sébastien Jaillon; Livija Deban; Alberto Mantovani

Summary:  The innate immune system consists of a cellular arm and a humoral arm. Components of humoral immunity include diverse molecular families, which represent functional ancestors of antibodies. They play a key role as effectors and modulators of innate resistance in animals and humans, interacting with cellular innate immunity. The prototypic long pentraxin, pentraxin 3 (PTX3), represents a case in point of this interplay. Gene targeting of this evolutionarily conserved long pentraxin has unequivocally defined its role at the crossroads of innate immunity, inflammation, matrix deposition, and female fertility. Phagocytes represent a key source of this fluid‐phase pattern recognition receptor, which, in turn, facilitates microbial recognition by phagocytes acting as an opsonin. Moreover, PTX3 has modulatory functions on innate immunity and inflammation. Here, we review the studies on PTX3 which emphasize the complexity and complementarity of the crosstalk between the cellular and humoral arms of innate immunity.


Blood | 2010

Role of complement and Fcγ receptors in the protective activity of the long pentraxin PTX3 against Aspergillus fumigatus

Federica Moalli; Andrea Doni; Livija Deban; Teresa Zelante; Silvia Zagarella; Barbara Bottazzi; Luigina Romani; Alberto Mantovani; Cecilia Garlanda

Pentraxin 3 (PTX3) is a soluble pattern recognition molecule playing a nonredundant role in resistance against Aspergillus fumigatus. The present study was designed to investigate the molecular pathways involved in the opsonic activity of PTX3. The PTX3 N-terminal domain was responsible for conidia recognition, but the full-length molecule was necessary for opsonic activity. The PTX3-dependent pathway of enhanced neutrophil phagocytic activity involved complement activation via the alternative pathway; Fcγ receptor (FcγR) IIA/CD32 recognition of PTX3-sensitized conidia and complement receptor 3 (CR3) activation; and CR3 and CD32 localization to the phagocytic cup. Gene targeted mice (ptx3, FcR common γ chain, C3, C1q) validated the in vivo relevance of the pathway. In particular, the protective activity of exogenous PTX3 against A fumigatus was abolished in FcR common γ chain-deficient mice. Thus, the opsonic and antifungal activity of PTX3 is at the crossroad between complement, complement receptor 3-, and FcγR-mediated recognition. Because short pentraxins (eg, C-reactive protein) interact with complement and FcγR, the present results may have general significance for the mode of action of these components of the humoral arm of innate immunity.


Journal of Infection | 2009

Long pentraxin PTX3 is associated with mortality and disease severity in severe Leptospirosis

Jiri F. P. Wagenaar; Marga G. A. Goris; M. Hussein Gasem; Bambang Isbandrio; Federica Moalli; Alberto Mantovani; Kimberly R. Boer; Rudy A. Hartskeerl; Cecilia Garlanda; Eric C. M. van Gorp

OBJECTIVE To evaluate the long pentraxin PTX3 in patients with severe leptospirosis and to compare the results with the widely used short pentraxin C-reactive protein and the pro-inflammatory cytokines IL-6 and IL-8. METHODS This observational cohort study was carried out in Semarang, Indonesia, where leptospirosis is endemic and mortality is high. Consecutive patients with severe leptospirosis were sampled on admission and during follow-up. RESULTS A total number of 52 patients entered the study, the mortality was 27%. Severe leptospirosis patient yielded elevated plasma PTX3 levels. PTX3 correlated with IL-8 and to a lesser extent with CRP and IL-6 levels. High levels of PTX3, IL-6 and IL-8 were associated with mortality (OR 5.6, 95%CI: 1.2-26; OR 3.2, 95%CI: 1.2-8.1; OR 6.5, 95%CI: 1.5-28). Moreover, PTX3 levels were associated with disease severity (OR 9.5; 95%CI: 2.9-45). This association was unique, since none of the other markers showed this relation. C-reactive protein was not able to differentiate the severe from the severest cases. CONCLUSIONS The long pentraxin PTX3 is elevated in patients with severe leptospirosis and is associated with fatal disease and disease severity. PTX3 may be used as a marker to monitor disease severity in severe leptospirosis or predict outcome.


BioMed Research International | 2011

Pathogen recognition by the long pentraxin PTX3.

Federica Moalli; Sébastien Jaillon; Antonio Inforzato; Marina Sironi; Barbara Bottazzi; Alberto Mantovani; Cecilia Garlanda

Innate immunity represents the first line of defence against pathogens and plays key roles in activation and orientation of the adaptive immune response. The innate immune system comprises both a cellular and a humoral arm. Components of the humoral arm include soluble pattern recognition molecules (PRMs) that recognise pathogen-associated molecular patterns (PAMPs) and initiate the immune response in coordination with the cellular arm, therefore acting as functional ancestors of antibodies. The long pentraxin PTX3 is a prototypic soluble PRM that is produced at sites of infection and inflammation by both somatic and immune cells. Gene targeting of this evolutionarily conserved protein has revealed a nonredundant role in resistance to selected pathogens. Moreover, PTX3 exerts important functions at the cross-road between innate immunity, inflammation, and female fertility. Here, we review the studies on PTX3, with emphasis on pathogen recognition and cross-talk with other components of the innate immune system.


Immunity | 2014

The Humoral Pattern Recognition Molecule PTX3 Is a Key Component of Innate Immunity against Urinary Tract Infection

Sébastien Jaillon; Federica Moalli; Bryndís Ragnarsdóttir; Eduardo Bonavita; Manoj Puthia; Federica Riva; Elisa Barbati; Manuela Nebuloni; Lidija Cvetko Krajinović; Alemka Markotić; Sonia Valentino; Andrea Doni; Silvia Tartari; Giorgio Graziani; Alessandro Montanelli; Yves Delneste; Catharina Svanborg; Cecilia Garlanda; Alberto Mantovani

Immunity in the urinary tract has distinct and poorly understood pathophysiological characteristics and urinary tract infections (UTIs) are important causes of morbidity and mortality. We investigated the role of the soluble pattern recognition molecule pentraxin 3 (PTX3), a key component of the humoral arm of innate immunity, in UTIs. PTX3-deficient mice showed defective control of UTIs and exacerbated inflammation. Expression of PTX3 was induced in uroepithelial cells by uropathogenic Escherichia coli (UPEC) in a Toll-like receptor 4 (TLR4)- and MyD88-dependent manner. PTX3 enhanced UPEC phagocytosis and phagosome maturation by neutrophils. PTX3 was detected in urine of UTI patients and amounts correlated with disease severity. In cohorts of UTI-prone patients, PTX3 gene polymorphisms correlated with susceptibility to acute pyelonephritis and cystitis. These results suggest that PTX3 is an essential component of innate resistance against UTIs. Thus, the cellular and humoral arms of innate immunity exert complementary functions in mediating resistance against UTIs.


Journal of Immunology | 2011

The Therapeutic Potential of the Humoral Pattern Recognition Molecule PTX3 in Chronic Lung Infection Caused by Pseudomonas aeruginosa

Federica Moalli; Moira Paroni; Tania Veliz Rodriguez; Federica Riva; Nadia Polentarutti; Barbara Bottazzi; Sonia Valentino; Stefano Mantero; Manuela Nebuloni; Alberto Mantovani; Alessandra Bragonzi; Cecilia Garlanda

Chronic lung infections by Pseudomonas aeruginosa strains are a major cause of morbidity and mortality in cystic fibrosis (CF) patients. Although there is no clear evidence for a primary defect in the immune system of CF patients, the host is generally unable to clear P. aeruginosa from the airways. PTX3 is a soluble pattern recognition receptor that plays nonredundant roles in the innate immune response to fungi, bacteria, and viruses. In particular, PTX3 deficiency is associated with increased susceptibility to P. aeruginosa lung infection. To address the potential therapeutic effect of PTX3 in P. aeruginosa lung infection, we established persistent and progressive infections in mice with the RP73 clinical strain RP73 isolated from a CF patient and treated them with recombinant human PTX3. The results indicated that PTX3 has a potential therapeutic effect in P. aeruginosa chronic lung infection by reducing lung colonization, proinflammatory cytokine levels (CXCL1, CXCL2, CCL2, and IL-1β), and leukocyte recruitment in the airways. In models of acute infections and in in vitro assays, the prophagocytic effect of PTX3 was maintained in C1q-deficient mice and was lost in C3- and Fc common γ-chain–deficient mice, suggesting that facilitated recognition and phagocytosis of pathogens through the interplay between complement and FcγRs are involved in the therapeutic effect mediated by PTX3. These data suggested that PTX3 is a potential therapeutic tool in chronic P. aeruginosa lung infections, such as those seen in CF patients.


Current Pharmaceutical Design | 2011

Pentraxins and atherosclerosis: the role of PTX3.

Cecilia Garlanda; Barbara Bottazzi; Federica Moalli; Livija Deban; Fabiola Molla; Roberto Latini; Alberto Mantovani

Pentraxins are a family of evolutionarily conserved multifunctional pattern-recognition proteins characterized by a cyclic multimeric structure. Based on the primary structure of the subunit, the pentraxins are divided into two groups: short pentraxins and long pentraxins. C-reactive protein (CRP) and serum amyloid P-component (SAP) are the two short pentraxins. The prototype protein of the long pentraxin group is pentraxin 3 (PTX3). CRP and SAP are produced primarily in the liver in response to IL-6, while PTX3 is produced by a variety of tissues and cells and in particular by innate immunity cells in response to proinflammatory signals and Toll-like receptor (TLR) engagement. PTX3 interacts with several ligands, including growth factors, extracellular matrix components and selected pathogens, playing a role in complement activation and facilitating pathogen recognition by phagocytes, acting as a predecessor of antibodies. In addition, PTX3 is essential in female fertility by acting as a nodal point for the assembly of the cumulus oophorus hyaluronan-rich extracellular matrix. Here we will concisely review the general properties of PTX3 in the context of the pentraxin superfamily and discuss recent data suggesting that PTX3 plays a cardiovascular protective effect. PTX3 may represent a new marker in vascular pathology which correlates with the risk of developing vascular events.

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Cecilia Garlanda

Mario Negri Institute for Pharmacological Research

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Barbara Bottazzi

Mario Negri Institute for Pharmacological Research

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Alessandra Bragonzi

Vita-Salute San Raffaele University

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