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Mendez, R.

Publications and source records attributed to Mendez, R..

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Microbial Dysbiosis and polyamine metabolism as predictive markers for early detection during progression of pancreatic adenocarcinoma in spontaneous mouse model

PurposeThe lack of tools for early detection of pancreatic ductal adenocarcinoma (PDAC) is directly correlated to the abysmal survival rate in patients. In addition to several potential detection tools under active investigation, we tested the gut microbiome and its metabolic complement as one of the earliest detection tools that could be useful in patients at high-risk for PDAC.\n\nExperimental DesignA combination of 16s pyrosequencing and whole-genome sequencing of gut microbiota was used in a spontaneous genetically engineered PDAC murine model (KRASG12DTP53R172HPdxCre or KPC). Metabolic reconstruction of microbiome was done using the HUmanN2 pipeline. Serum polyamine levels were measured from murine and patient samples using standard methods.\n\nResultsResults showed a progressive Proteobacterial and Firmicutes dominance in gut microbiota in early stages of PDAC development. Upon in silico reconstruction of active metabolic pathways within the altered microbial flora, polyamine and nucleotide biosynthetic pathways were significantly elevated. These metabolic products are known to be actively assimilated by the host and eventually utilized by rapidly dividing cells for proliferation validating their importance in the context of tumorigenesis. In KPC mice, as well as PDAC patients, we show significantly elevated serum polyamine concentration. Therefore, at the early stages of tumorigenesis, the gut microbial composition changes in a way to release metabolites that foster host tumorigenesis, thereby fulfilling the vicious cycle hypothesis of the role of the microbiome in health and disease states.\n\nConclusionsOur results provide a potential, precise, non-invasive tool for early detection of PDAC, which will result in improved outcomes.\n\nSynopsisGut microbiota changes during early stages of pancreatic ductal adenocarcinoma (PDAC) progression and contributes towards host polyamine pool. Both changes can be used as an early predictive marker for PDAC.\n\nTranslational RelevancePancreatic carcinogenesis progresses through pre-cancerous PanIN lesions to invasive cancer. Even though these morphological changes are histologically distinct, imaging techniques are not able to distinguish the pre-invasive PanINs from normal pancreas, making detection of a tumor at a precancerous stage impossible. Thus, majority of cases (85-90%) present with advanced pancreatic cancer at the time of diagnosis. This contributes to the dismal survival rate in this disease. Our study of gut microbiome analysis on KPC mice during tumor progression followed by metabolic reconstruction and experimental validation in human samples indicate that gut-microbiome analysis along with an analysis of the microbial metabolites can be developed as potential biomarkers for detection of PDAC at early stages when histological changes are not yet grossly apparent.

cancer biology

Lymphopenic community acquired pneumonia, an unnoticed phenotype associated to mortality in non immuno-suppressed patients: a retrospective cohort study

BackgroundThe role of neutrophil and lymphocyte counts as predictors of prognosis in Community Acquired Pneumonia (CAP) has not been appropriately studied.\n\nMethodsThis was a retrospective study to evaluate by multivariate regression analysis, the association between neutrophil and lymphocyte counts with mortality at 30-days post discharge in two large cohorts of hospitalized patients with CAP and no prior immunosupression: a multicentric with 1550 patients recruited at 14 hospitals in Spain and a unicentric with 2840 patients recruited at the Hospital Clinic-Barcelona.\n\nFindingsThe unicentric cohort accounted with a higher proportion of critically ill patients: 586 (20{middle dot}6%) vs 131 (8{middle dot}5%) and non survivors 245 (8{middle dot}6%) vs 74 (4{middle dot}8%). Lymphopenia (< 1000 lymphocytes/mm3) was present in the 52{middle dot}8% of the patients in both cohorts. A sub-group of lymphopenic patients, those with lymphocyte counts below decil 3 (677 lymphocytes/mm3 in the multicentric cohort and 651 lymphocytes/mm3 in the unicentric one), showed > 2-fold increase in the risk of mortality, independently of the CURB-65 score, critical illness and receiving an appropriated antibiotic treatment: (OR [CI95%], p) (2{middle dot}18 [1{middle dot}21- 3{middle dot}92], 0{middle dot}009) and (2{middle dot}33 [1{middle dot}61-3{middle dot}33], <0{middle dot}001) respectively. Neutrophil counts were not associated with mortality risk.\n\nInterpretationLymphopenia is present in a half of the patients with CAP needing of hospitalization, in absence of antecendents of immunosupression. Lymphopenic CAP with lymphocyte counts < 664 lymphocytes/mm3 constitutes a particular immunological phenotype of the disease which is associated to an increased risk of mortality.\n\nFundingCibeRes, 2009 Support to Research Groups of Catalonia 911, IDIBAPS, SEPAR, SVN

immunology

Post-transcriptional regulation of adult CNS axonal regeneration by Cpeb1

Adult mammalian CNS neurons are unable to regenerate following axonal injury, leading to permanent functional impairments. Yet, the reasons underlying this regeneration failure are not fully understood. Here, we study the transcriptome and proteome shortly after spinal cord injury. Profiling of the total and ribosome-bound RNA in injured and naive spinal cords identify a substantial post-transcriptional regulation of gene expression. In particular, transcripts associated with nervous system development were downregulated in the total RNA-fraction while remaining stably loaded onto ribosomes. Interestingly, motif association analysis of post-transcriptionally regulated transcripts identified the cytoplasmic polyadenylation element (CPE) as enriched in a subset of these transcripts that was more resistant to injury-induced reduction at transcriptome level. Modulation of these transcripts by overexpression of the CPE binding protein, Cpeb1, in mouse and Drosophila CNS neurons promoted axonal regeneration following injury. Our study uncovers a global conserved post-transcriptional mechanism enhancing regeneration of injured CNS axons.

neuroscience