Publications by Elisa Ficarra

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Automated 3D immunofluorescence analysis of Dorsal Root Ganglia for the investigation of neural circuit alterations: a preliminary study

Authors: Di Cataldo, Santa; Tonti, Simone; Ciglieri, Elisa; Ferrini, Francesco; Macii, Enrico; Ficarra, Elisa; Salio, Chiara

Diabetic polyneuropathy is a major complication of diabetes mellitus, causing severe alterations of the neural circuits between spinal nerves and … (Read full abstract)

Diabetic polyneuropathy is a major complication of diabetes mellitus, causing severe alterations of the neural circuits between spinal nerves and spinal cord. The analysis of 3D confocal images of dorsal root ganglia in diabetic mice, where different fluorescent markers are used to identify different types of nociceptors, can help understanding the unknown mechanisms of this pathology. Nevertheless, due to the inherent challenges of 3D confocal imaging, a thorough and comprehensive visual investigation is very difficult. In this work we introduce a tool, 3DRG, that provides a fully-automated segmentation and 3D rendering of positively labeled nociceptors in a dorsal root ganglion, as well a quantitative characterisation of its immunopositivity to each fluorescent marker. Our preliminary experiments on 3D confocal images of entire dorsal root ganglia from healthy and diabetic mice provided very interesting insights about the effects of the pathology on two different types of nociceptors.

2016 Relazione in Atti di Convegno

isomiR-SEA: An RNA-Seq analysis tool for miRNAs/isomiRs expression level profiling and miRNA-mRNA interaction sites evaluation

Authors: Urgese, Gianvito; Paciello, Giulia; Acquaviva, Andrea; Ficarra, Elisa

Published in: BMC BIOINFORMATICS

>Background: Massive parallel sequencing of transcriptomes, revealed the presence of many miRNAs and miRNAs variants named isomiRs with a potential … (Read full abstract)

>Background: Massive parallel sequencing of transcriptomes, revealed the presence of many miRNAs and miRNAs variants named isomiRs with a potential role in several cellular processes through their interaction with a target mRNA. Many methods and tools have been recently devised to detect and quantify miRNAs from sequencing data. However, all of them are implemented on top of general purpose alignment methods, thus providing poorly accurate results and no information concerning isomiRs and conserved miRNA-mRNA interaction sites. >Results: To overcome these limitations we present a novel algorithm named isomiR-SEA, that is able to provide users with very accurate miRNAs expression levels and both isomiRs and miRNA-mRNA interaction sites precise classifications. Tags are mapped on the known miRNAs sequences thanks to a specialized alignment algorithm developed on top of biological evidence concerning miRNAs structure. Specifically, isomiR-SEA checks for miRNA seed presence in the input tags and evaluates, during all the alignment phases, the positions of the encountered mismatches, thus allowing to distinguish among the different isomiRs and conserved miRNA-mRNA interaction sites. >Conclusions: isomiR-SEA performances have been assessed on two public RNA-Seq datasets proving that the implemented algorithm is able to account for more reliable and accurate miRNAs expression levels with respect to those provided by two compared state of the art tools. Moreover, differently from the few methods currently available to perform isomiRs detection, the proposed algorithm implements the evaluation of isomiRs and conserved miRNA-mRNA interaction sites already in the first alignment phases, thus avoiding any additional filtering stages potentially responsible for the loss of useful information.

2016 Articolo su rivista

Novel fusion transcripts identified by RNAseq cooperate with somatic mutations in the pathogenesis of acute myeloid leukemia

Authors: Antonella, Padella; Giorgia, Simonetti; Anna, Ferrari; Paciello, Giulia; Elisa, Zago; Carmen, Baldazzi; Viviana, Guadagnuolo; Cristina, Papayannidis; Valentina, Robustelli; Enrica, Imbrogno; Nicoletta, Testoni; Massimo, Delledonne; Ilaria, Iacobucci; Tiziana Clelia, Storlazzi; Ficarra, Elisa; Pier Luigi, Lollini; Giovanni, Martinelli

Published in: CANCER RESEARCH

2016 Abstract in Rivista

The Genomic and Transcriptomic Landscape of Systemic Mastocytosis

Authors: Simona, Soverini; Caterina De, Benedittis; Michela, Rondoni; Cristina, Papayannidis; Ficarra, Elisa; Paciello, Giulia; Marco, Manfrini; Manuela, Mancini; Roberta, Zanotti; Luigi, Scaffidi; Giorgina, Specchia; Francesco, Albano; Serena, Merante; Chiara, Elena; Livio, Pagano; Domenica, Gangemi; Patrizia, Tosi; Luana, Bavaro

Published in: BLOOD

2016 Abstract in Rivista

Unsupervised analysis of cancer-cell intrinsic transcriptional traits defines a new classification system for colorectal cancer with improved predictive and prognostic value

Authors: Andrea, Bertotti; Claudio, Isella; Sara E., Bellomo; Brundu, Francesco Gavino; Francesco, Galimi; Ficarra, Elisa; Livio, Trusolino; Enzo, Medico

Published in: CANCER RESEARCH

2016 Abstract in Rivista

A novel patient-derived tumorgraft model with TRAF1-ALK anaplastic large-cell lymphoma translocation

Authors: F., Abate; M., Todaro; J. A., Van Der Krogt; M., Boi; I., Landra; R., Machiorlatti; F., Tabbò; K., Messana; A., Barreca; D., Novero; M., Gaudiano; S., Aliberti; F., Di Giacomo; T., Tousseyn; E., Lasorsa; R., Crescenzo; L., Bessone; Ficarra, Elisa; Acquaviva, Andrea; A., Rinaldi; M., Ponzoni; Dl, Longo; S., Aime; M., Cheng; B., Ruggeri; Pp, Piccaluga; S., Pileri; E., Tiacci; B., Falini; B., Pera Gresely; L., Cerchietti; J., Iqbal; Wc, Chan; Ld, Shultz; I., Kwee; R., Piva; I., Wlodarska; R., Rabadan; F., Bertoni; G., Inghirami; The European T., Cell Lymphoma Study Group

Published in: LEUKEMIA

Although anaplastic large-cell lymphomas (ALCL) carrying anaplastic lymphoma kinase (ALK) have a relatively good prognosis, aggressive forms exist. We have … (Read full abstract)

Although anaplastic large-cell lymphomas (ALCL) carrying anaplastic lymphoma kinase (ALK) have a relatively good prognosis, aggressive forms exist. We have identified a novel translocation, causing the fusion of the TRAF1 and ALK genes, in one patient who presented with a leukemic ALK+ ALCL (ALCL-11). To uncover the mechanisms leading to high-grade ALCL, we developed a human patient-derived tumorgraft (hPDT) line. Molecular characterization of primary and PDT cells demonstrated the activation of ALK and nuclear factor kB (NFkB) pathways. Genomic studies of ALCL-11 showed the TP53 loss and the in vivo subclonal expansion of lymphoma cells, lacking PRDM1/Blimp1 and carrying c-MYC gene amplification. The treatment with proteasome inhibitors of TRAF1-ALK cells led to the downregulation of p50/p52 and lymphoma growth inhibition. Moreover, a NFkB gene set classifier stratified ALCL in distinct subsets with different clinical outcome. Although a selective ALK inhibitor (CEP28122) resulted in a significant clinical response of hPDT mice, nevertheless the disease could not be eradicated. These data indicate that the activation of NFkB signaling contributes to the neoplastic phenotype of TRAF1-ALK ALCL. ALCL hPDTs are invaluable tools to validate the role of druggable molecules, predict therapeutic responses and implement patient specific therapies.

2015 Articolo su rivista

An automated approach to the segmentation of HEp-2 cells for the indirect immunofluorescence ANA test

Authors: Tonti, Simone; Di Cataldo, Santa; Bottino, Andrea Giuseppe; Ficarra, Elisa

Published in: COMPUTERIZED MEDICAL IMAGING AND GRAPHICS

The automatization of the analysis of Indirect Immunofluorescence (IIF) images is of paramount importance for the diagnosis of autoimmune diseases. … (Read full abstract)

The automatization of the analysis of Indirect Immunofluorescence (IIF) images is of paramount importance for the diagnosis of autoimmune diseases. This paper proposes a solution to one of the most challenging steps of this process, the segmentation of HEp-2 cells, through an adaptive marker-controlled watershed approach. Our algorithm automatically conforms the marker selection pipeline to the peculiar characteristics of the input image, hence it is able to cope with different fluorescent intensities and staining patterns without any a priori knowledge. Furthermore, it shows a reduced sensitivity to over-segmentation errors and uneven illumination, that are typical issues of IIF imaging.

2015 Articolo su rivista

An integrated approach for morphofunctional analysis of DRGs in normal and diabetic mice

Authors: Ciglieri, Elisa; Ferrini, Francesco; Tonti, Simone; Di Cataldo, Santa; Ficarra, Elisa; Salio, Chiara

2015 Abstract in Atti di Convegno

Convergent Mutations and Kinase Fusions Lead to Oncogenic STAT3 Activation in Anaplastic Large Cell Lymphoma

Authors: Ramona, Crescenzo; Francesco, Abate; Elena, Lasorsa; Fabrizio, Tabbo’; Marcello, Gaudiano; Nicoletta, Chiesa; Filomena Di, Giacomo; Elisa, Spaccarotella; Luigi, Barbarossa; Elisabetta, Ercole; Maria, Todaro; Michela, Boi; Acquaviva, Andrea; Ficarra, Elisa; Domenico, Novero; Andrea, Rinaldi; Thomas, Tousseyn; Andreas, Rosenwald; Lukas, Kenner; Lorenzo, Cerroni; Alexander, Tzankov; Maurilio, Ponzoni; Marco, Paulli; Dennis, Weisenburger; Wing C., Chan; Javeed, Iqbal; Miguel A., Piris; Alberto, Zamo’; Carmela, Ciardullo; Davide, Rossi; Gianluca, Gaidano; Stefano, Pileri; Enrico, Tiacci; Brunangelo, Falini; Leonard D., Shultz; Laurence, Mevellec; Jorge E., Vialard; Roberto, Piva; Francesco, Bertoni; Raul, Rabadan; Giorgio, Inghirami

Published in: CANCER CELL

JAK/STAT3 signaling pathway is often deregulated in hematopoietic disorders including peripheral T-cell lymphoma. We describe two novel mechanisms leading to … (Read full abstract)

JAK/STAT3 signaling pathway is often deregulated in hematopoietic disorders including peripheral T-cell lymphoma. We describe two novel mechanisms leading to the constitutive activation of STAT3 in ALK- ALCL. Oncogenic JAK1 or STAT3 mutations are associated to hyperactive pSTAT3 that regulated canonical STAT3 and ATF3 genes. Moreover, synergizing JAK1 and STAT3 mutants sustain the neoplastic growth, which can be efficiently controlled in vitro and in an ALCL patient derived tumorgraft model by JAK1/2 inhibitors. We have discovered that novel chimera, displaying concomitant transcriptional and kinase activities, are power oncogenes capable to sustain via STAT3 the ALCL phenotype and can be uniquely neutralized by a novel ROS1 inhibitor. The pharmacological inhibition of JAK/STAT3 represents a novel strategy for the treatment of molecular stratified ALCL.

2015 Articolo su rivista

Erratum to Convergent Mutations and Kinase Fusions Lead to Oncogenic STAT3 Activation in Anaplastic Large Cell Lymphoma [Cancer Cell 27, 516-532] April 13, 2015 10.1016/j.ccell.2015.04.014

Authors: Crescenzo, R.; Abate, F.; Lasorsa, E.; Tabbo', F.; Gaudiano, M.; Chiesa, N.; Di Giacomo, F.; Spaccarotella, E.; Barbarossa, L.; Ercole, E.; Todaro, M.; Boi, M.; Acquaviva, A.; Ficarra, E.; Novero, D.; Rinaldi, A.; Tousseyn, T.; Rosenwald, A.; Kenner, L.; Cerroni, L.; Tzankov, A.; Ponzoni, M.; Paulli, M.; Weisenburger, D.; Chan, W. C.; Iqbal, J.; Piris, M. A.; Zamo', A.; Ciardullo, C.; Rossi, D.; Gaidano, G.; Pileri, S.; Tiacci, E.; Falini, B.; Shultz, L. D.; Mevellec, L.; Vialard, J. E.; Piva, R.; Bertoni, F.; Rabadan, R.; Inghirami, G.

Published in: CANCER CELL

2015 Articolo su rivista

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