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Dive into the research topics where Chiara Mignogna is active.

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Featured researches published by Chiara Mignogna.


Pathology Research and Practice | 2016

A reappraisal of macrophage polarization in glioblastoma: Histopathological and immunohistochemical findings and review of the literature

Chiara Mignogna; Francesco Signorelli; Marco Flavio Michele Vismara; Pio Zeppa; Caterina Camastra; Tullio Barni; Giuseppe Donato; Anna Di Vito

The survival rate in glioblastoma multiforme patients has scarcely improved in the last decades; however, many new therapeutic strategies have been theorized or developed for these neoplasias. Recently, the inverse correlation observed between patient prognosis and tumor-associated macrophages (TAMs) density in solid tumors has encouraged the development of anti-tumor strategies aiming to target TAMs. As expected, TAMs polarization is influenced by both macrophage localization and tumor microenvironment signals, resulting in a more complex scenario than the simple M1/M2 activation status. Macrophage polarization in glioblastoma has not yet been fully elucidated, and most results have been obtained in experimental non-human settings, with some apparent contradiction. The authors performed a histopathological and immunohistochemical study of 37 cases of glioblastoma in order to characterize the M1 and M2 macrophage populations within TAMs. A high prevalence of CD163+ M2-polarized macrophages was detected in this cohort, whereas iNOS+ macrophages were rarely found. The down-regulation of CD68 expression in microglia/macrophage infiltrating glioblastomas is also reported for the first time. Such a finding is associated with a specific location of TAMs within the lesion, as confirmed by the fact that CD68 staining was lower than CD163, mainly in perivascular areas. The authors discuss the recent literature about the global scenario of macrophage plasticity and polarization in glioblastoma, and suggest some pivotal points for therapeutic applications.


Histopathology | 2015

The mysterious pathways of cardiac myxomas: a review of histogenesis, pathogenesis and pathology

Anna Di Vito; Chiara Mignogna; Giuseppe Donato

Cardiac myxoma is the most common benign cardiac tumour, localized generally in the left atrium. The majority of cardiac myxomas occur sporadically, while a relatively small proportion of cases develop as a part of Carney complex syndrome. Currently, the histogenesis of myxoma is poorly understood; however, the mesenchymal and endothelial properties of myxoma cells suggest that a clearer understanding of tumour origins can be achieved through a detailed investigation of heart development and endocardial histogenesis. Growing evidence appears to indicate the reactivated expression in cardiac myxoma of genes encoding heart precursor markers, although the exact mechanisms have not yet been described. In this paper we review the most recent scientific literature concerning cardiac embryology and relate this to recent advances in our understanding of the histogenesis of cardiac myxoma. Moreover, given that much of the literature regarding myxoma is of single case reports, we review progress in our knowledge of the pathology and pathogenesis of this condition.


Acta Cytologica | 2016

Lymph Node Fine-Needle Cytology: Beyond Flow Cytometry.

Anna Lucia Peluso; Antonio Ieni; Chiara Mignogna; Pio Zeppa

Lymph node (LN) fine-needle cytology (FNC) coupled with flow cytometry immunophenotyping provides relevant information for the diagnosis of non-Hodgkin lymphoma (NHL). Numerous studies have shown FNC samples to be suitable for different molecular procedures; in this review, some of the molecular procedures most commonly employed for NHL are briefly described and evaluated in this perspective. Fluorescence in situ hybridization and chromogenic in situ hybridization are briefly described. Polymerase chain reaction (PCR)-based assays are used to identify and quantify mutations and translocations, namely immunoglobulin (IGH) and T-cell receptor rearrangements by clonality testing and IGVH somatic hypermutations either by Sanger sequencing, single-strand conformational polymorphisms or RT-PCR strategies. High-throughput technologies (HTT) encompass numerous and different diagnostic tools that share the capacity of multiple molecular investigation and sample processing in a fast and reproducible manner. HTT includes gene expression profiling, comparative genomic hybridization, single-nucleotide polymorphism arrays and next-generation sequencing technologies. A brief description of these tools and their potential application to LN FNC is reported. The challenge for FNC will be to achieve new knowledge and apply new technologies to FNC, exploiting its own basic qualities.


Scientific Reports | 2015

Impairment of T cell development and acute inflammatory response in HIV-1 Tat transgenic mice

Giuseppe Fiume; Annarita Scialdone; Francesco Albano; Annalisa Rossi; Franca Maria Tuccillo; Domenica Rea; Camillo Palmieri; Elisabetta Caiazzo; Carla Cicala; Claudio Bellevicine; Cristina Falcone; Eleonora Vecchio; Antonio Pisano; Simona Ceglia; Selena Mimmi; Enrico Iaccino; Annamaria de Laurentiis; Marilena Pontoriero; Valter Agosti; Giancarlo Troncone; Chiara Mignogna; Giuseppe De Palma; Claudio Arra; Massimo Mallardo; Franco M. Buonaguro; Giuseppe Scala; Ileana Quinto

Immune activation and chronic inflammation are hallmark features of HIV infection causing T-cell depletion and cellular immune dysfunction in AIDS. Here, we addressed the issue whether HIV-1 Tat could affect T cell development and acute inflammatory response by generating a transgenic mouse expressing Tat in lymphoid tissue. Tat-Tg mice showed thymus atrophy and the maturation block from DN4 to DP thymic subpopulations, resulting in CD4+ and CD8+ T cells depletion in peripheral blood. In Tat-positive thymus, we observed the increased p65/NF-κB activity and deregulated expression of cytokines/chemokines and microRNA-181a-1, which are involved in T-lymphopoiesis. Upon LPS intraperitoneal injection, Tat-Tg mice developed an abnormal acute inflammatory response, which was characterized by enhanced lethality and production of inflammatory cytokines. Based on these findings, Tat-Tg mouse could represent an animal model for testing adjunctive therapies of HIV-1-associated inflammation and immune deregulation.


International Journal of Molecular Sciences | 2018

Role of Macrophages in Brain Tumor Growth and Progression

Elia Guadagno; Ivan Presta; Domenico Maisano; Annalidia Donato; Caterina Pirrone; Gabriella Cardillo; Simona Corrado; Chiara Mignogna; Teresa Mancuso; Giuseppe Donato; Marialaura Del Basso De Caro; Natalia Malara

The role of macrophages in the growth and the progression of tumors has been extensively studied in recent years. A large body of data demonstrates that macrophage polarization plays an essential role in the growth and progression of brain tumors, such as gliomas, meningiomas, and medulloblastomas. The brain neoplasm cells have the ability to influence the polarization state of the tumor associated macrophages. In turn, innate immunity cells have a decisive role through regulation of the acquired immune response, but also through humoral cross-talking with cancer cells in the tumor microenvironment. Neoangiogenesis, which is an essential element in glial tumor progression, is even regulated by the tumor associated macrophages, whose activity is linked to other factors, such as hypoxia. In addition, macrophages play a decisive role in establishing the entry into the bloodstream of cancer cells. As is well known, the latter phenomenon is also present in brain tumors, even if they only rarely metastasize. Looking ahead in the future, we can imagine that characterizing the relationships between tumor and tumor associated macrophage, as well as the study of circulating tumor cells, could give us useful tools in prognostic evaluation and therapy. More generally, the study of innate immunity in brain tumors can boost the development of new forms of immunotherapy.


International Journal of Immunopathology and Pharmacology | 2017

Innate immunity may play a role in growth and relapse of chordoid meningioma

Ivan Presta; Elia Guadagno; Anna Di Vito; Natalia Malara; Chiara Mignogna; Domenico Maisano; Annalidia Donato; Gabriella Cardillo; Marialaura Del Basso De Caro; Giuseppe Donato

Chordoid meningioma (CM) is a rare subtype of meningioma, which represents only 0.5% of all meningiomas. It is classified as Grade II according to the World Health Organization classification because of its tendency to relapse. Pathological and clinical characteristics have been studied in order to forecast the future evolution of the lesions. However, information about infiltration of macrophagic elements and mast cells is very scarce. The authors analyzed the immunohistochemical patterns of three cases and a relapse of CM, in order to verify whether infiltrating macrophages are in a polarized state and what would be the proportion between such elements and mastocytes. Results suggest that macrophages in CMs are mainly in a non-polarized or M2 state and their abundance might be associated with a major potential of relapse; additionally, there is an inverse correlation between the number of mast cells and macrophages. Further studies are requested in order to confirm these intriguing data.


International Journal of Immunopathology and Pharmacology | 2016

Inflammation and macrophage polarization in cutaneous melanoma: Histopathological and immunohistochemical study

Elisabetta Scali; Chiara Mignogna; Anna Di Vito; Ivan Presta; Caterina Camastra; Giuseppe Donato; Ugo Bottoni

Tumor-associated macrophages (TAMs) are considered to affect tumor growth and progression. Macrophages can be classified into two states of polarized activation, namely classically activated M1 macrophages and alternatively activated M2 macrophages. The dynamic balance between TAMs and tumor cells has an important impact on tumor homeostasis and progression. The aim of this study was to characterize the phenotype of TAMs present in different subtypes of superficial spreading cutaneous melanoma and their relationship with the lymphocytic infiltrate in order to identify new histopathological tools for melanoma prognosis and suitable targets for melanoma therapy. We selected four groups of patients with malignant melanoma in order to analyze the profile of polarized macrophage activation using immunohistochemical methods. Histopathological analysis showed that the macrophage polarization state appears to be more related to the lymphocytic infiltrate than to the thickness of the lesions. Further studies are necessary to increase understanding of the immunopathological dynamic of melanoma that may be modulated by future targeted immunotherapies.


BMC Neurology | 2016

Non-invasive real-time biopsy of intracranial lesions using short time expanded circulating tumor cells on glass slide: report of two cases

Natalia Malara; Giusy Guzzi; Chiara Mignogna; Valentina Trunzo; Caterina Camastra; A. Della Torre; A. Di Vito; A. M. Lavecchia; M. Gliozzi; C. Ceccotti; Volpentesta G; A. Lavano; Giuseppe Donato; Vincenzo Mollace

BackgroundCirculating Tumor Cells (CTCs) are promising biomarkers for monitoring solid cancer and were used to monitor brain tumors. Here we report two cases in which, for the first time, CTCs were used in cytological diagnostic evaluation to discriminate a space-occupying lesion of the brain.Case presentationTwo cases of focal intracranial lesions, unclassified for diagnosis, untreated and apparently symptomatic, were examined after high-contrast resolution Magnetic Resonance Imaging and/or Computed Tomography scans. CTCs were seeded on chamber slides and short-time expanded under the optimized conditions as we previously reported. The first case was a focal lesion localized in the parietal-occipital area in a 67-year-old woman. The second case was a 31-year-old man with an expansive intracerebral lesion localized in the left peri-trigonal area. Both patients underwent excisional biopsy. Histopathological evaluation of the biopsy confirmed the previous cytological diagnoses, and the analysis of the clinical outcomes retrospectively validated both diagnoses.ConclusionsThe cases here reported illustrate the potential for using expanded CTCs as non-invasive, real-time biopsy. Moreover, non-invasive real-time biopsy can represent an alternative diagnostic tool to be used when a functional area of the brain is at risk of injury from excisional biopsy procedures.


Brain Research Bulletin | 2017

Cerebral small vessel disease predisposes to temporal lobe epilepsy in spontaneously hypertensive rats

Emilio Russo; Antonio Leo; Francesca Scicchitano; Annalidia Donato; Edoardo Ferlazzo; Sara Gasparini; Vittoria Cianci; Chiara Mignogna; Giuseppe Donato; Rita Citraro; Umberto Aguglia; Giovambattista De Sarro

The link between cerebral small vessel disease (CSVD) and epilepsy has been poorly investigated. Some reports suggest that CSVD may predispose to temporal lobe epilepsy (TLE). Aim of this study was to evaluate whether spontaneously hypertensive rats (SHRs), an established model of systemic hypertension and CSVD, have a propensity to develop TLE more than generalized seizures. To this aim, amygdala kindling, as a model of TLE, and pentylenetetrazole (PTZ)-induced kindling, as a model of generalized seizures, have been used to ascertain whether SHRs are more prone to TLE as compared to Wistar Kyoto control rats. While young SHRs (without CSVD) do not differ from their age-matched controls in both models, old SHRs (with CSVD) develop stage 5 seizures in the amygdala kindling model (TLE) faster than age-matched control rats without CSVD. At odds, no differences between old SHRs and age-matched controls was observed in the development of PTZ kindling. Enalapril pre-treatment prevented the development of CSVD and normalized kindling development to control levels in SHRs. No difference was observed in the response to pharmacological treatment with carbamazepine or losartan. Overall, our study suggests that uncontrolled hypertension leading to CSVD might represent a risk factor for TLE. Further experimental studies are needed to unravel other risk factors that, along with CSVD, may predispose to TLE.


PLOS ONE | 2016

AKT1E17K Is Oncogenic in Mouse Lung and Cooperates with Chemical Carcinogens in Inducing Lung Cancer

Donatella Malanga; Stefania Belmonte; Fabiana Colelli; Marzia Scarfò; Carmela De Marco; Duarte Mendes Oliveira; Teresa Mirante; Caterina Camastra; Monica Gagliardi; Antonia Rizzuto; Chiara Mignogna; Orlando Paciello; S. Papparella; Henrik Fagman; Giuseppe Viglietto

The hotspot AKT1E17K mutation in the pleckstrin homology domain of AKT1 occurs in approximately 0.6–2% of human lung cancers. Recently, we have demonstrated that AKT1E17K transforms immortalized human bronchial cells. Here by use of a transgenic Cre-inducible murine strain in the wild type Rosa26 (R26) locus (R26-AKT1E17K mice) we demonstrate that AKT1E17K is a bona-fide oncogene and plays a role in the development of lung cancer in vivo. In fact, we report that mutant AKT1E17K induces bronchial and/or bronchiolar hyperplastic lesions in murine lung epithelium, which progress to frank carcinoma at very low frequency, and accelerates tumor formation induced by chemical carcinogens. In conclusion, AKT1E17K induces hyperplasia of mouse lung epithelium in vivo and cooperates with urethane to induce the fully malignant phenotype.

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Natalia Malara

Istituto Italiano di Tecnologia

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Pio Zeppa

University of Salerno

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