tumor microenvironment

Molecular Pathways in Liver Cell Dynamics

Molecular Pathways in Liver Cell Dynamics

The group is interested in i) analyzing the genetic and epigenetic mechanisms that regulate hepatocyte differentiation and transdifferentiation (EMT) and contribute to the progression of hepatocellular carcinoma, ii) dissecting the signaling pathways that mediate cellular responses to microenvironmental stimuli (such as soluble factors and extracellular matrix stiffness) under phys

CELL STRESS BIOLOGY

CELL STRESS BIOLOGY

Prof. Fimia carries out his research actiivity at the “Cell Stress Biology” laboratory of Department of Molecular Medicine, as well as at the Cell Biology and Electron Microscopy lab of the National Institute for Infectious Diseases (INMI) L. Spallanzani in Rome,
where the Prof. Fimia has part of his research group to carry out research activity on the basis of a formal Collaborative Agreement. 

Tumor Microenvironment Research Group

Tumor Microenvironment Research Group

Prof. Carmine Mancone is the director of the Tumor Microenvironment Research Group. This group works on understanding the molecular basis of the interaction between cancer cells and the tumor microenvironment (TME) in liver and biliary tract carcinomas.

NK cells and ILCs in tumor immunotherapy

Cells of the innate immunity play an important role in tumor immunotherapy. Thus, NK cells can control tumor growth and metastatic spread. Thanks to their strong cytolytic activity against tumors, different approaches have been developed for exploiting/harnessing their function in patients with leukemia or solid tumors. Pioneering trials were based on the adoptive transfer of autologous NK cell-enriched cell populations that were expanded in vitro and co-infused with IL-2.

Expression and clinical implication of cyclooxygenase-2 and e-cadherin in oral squamous cell carcinomas

Epithelial-Mesenchymal Transition (EMT) and angiogenesis are crucial events for development of aggressive and often fatal Oral Squamous Cell Carcinomas (OSCCs). Both promote cancer progression and metastasis development, but while the former induces the loss of E-cadherin expression and, hence cadherin switching; the latter produces haematic blood vessel neo-formation and contribute to OSCC cell growth, tumor mass development, and dissemination. Cyclooxygenase-2 (COX-2) has an important role, not only in angiogenic mechanisms, but also in favoring cancer invasion.

The Immune Landscape of Cancer

We performed an extensive immunogenomic analysis of more than 10,000 tumors comprising 33 diverse cancer types by utilizing data compiled by TCGA. Across cancer types, we identified six immune subtypes-wound healing, IFN-γ dominant, inflammatory, lymphocyte depleted, immunologically quiet, and TGF-β dominant-characterized by differences in macrophage or lymphocyte signatures, Th1:Th2 cell ratio, extent of intratumoral heterogeneity, aneuploidy, extent of neoantigen load, overall cell proliferation, expression of immunomodulatory genes, and prognosis.

Spatial Organization and Molecular Correlation of Tumor-Infiltrating Lymphocytes Using Deep Learning on Pathology Images

Beyond sample curation and basic pathologic characterization, the digitized H&E-stained images
of TCGA samples remain underutilized. To highlight this resource, we present mappings of tumorinfiltrating lymphocytes (TILs) based on H&E images from 13 TCGA tumor types. These TIL
maps are derived through computational staining using a convolutional neural network trained to
classify patches of images. Affinity propagation revealed local spatial structure in TIL patterns and

Cholangiocarcinoma: novel therapeutic targets

Introduction: Cholangiocarcinoma (CCA) is a liver cancer derived from the biliary tree with a less than 30% five-year survival rate. Early diagnosis of CCA is challenging and treatment options are limited. Some CCA patients have genetic mutations and several therapeutic drugs or antibodies have been introduced to target abnormally expressed proteins. However, CCA is heterogeneous and patients often present with drug resistance which is attributed to multiple mutations or other factors. Novel approaches and methodologies for CCA treatments are in demand.

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