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Hanidziar, Dusan

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Hanidziar

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Dusan

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Hanidziar, Dusan

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Now showing 1 - 3 of 3
  • Publication

    The Role of TNF-(\alpha) in Mice with Type 1- and 2- Diabetes

    (Public Library of Science, 2012) Bhasin, Manoj; Awdeh, Zuheir; Qipo, Andi; Putheti, Prabhakar; Shi, Hang; Csizuadia, Eva; Koulmanda, Maria; Fan, Zhigang; Hanidziar, Dusan; Libermann, Towia; Strom, Terry B.

    Background: Previously, we have demonstrated that short-term treatment of new onset diabetic Non-obese diabetic (NOD) mice, mice that are afflicted with both type 1 (T1D) and type 2 (T2D) diabetes with either Power Mix (PM) regimen or alpha1 antitrypsin (AAT) permanently restores euglycemia, immune tolerance to self-islets and normal insulin signaling. Methodology and Principal Findings: To search for relevant therapeutic targets, we have applied genome wide transcriptional profiling and systems biology oriented bioinformatics analysis to examine the impact of the PM and AAT regimens upon pancreatic lymph node (PLN) and fat, a crucial tissue for insulin dependent glucose disposal, in new onset diabetic non-obese diabetic (NOD) mice. Systems biology analysis identified tumor necrosis factor alpha (TNF-(\alpha)) as the top focus gene hub, as determined by the highest degree of connectivity, in both tissues. In PLNs and fat, TNF-(\alpha) interacted with 53% and 32% of genes, respectively, associated with reversal of diabetes by previous treatments and was thereby selected as a therapeutic target. Short-term anti-TNF-(\alpha) treatment ablated a T cell-rich islet-invasive and beta cell-destructive process, thereby enhancing beta cell viability. Indeed anti-TNF-(\alpha) treatment induces immune tolerance selective to syngeneic beta cells. In addition to these curative effects on T1D anti-TNF-e33254 treatment restored in vivo insulin signaling resulting in restoration of insulin sensitivity. Conclusions: In short, our molecular analysis suggested that PM and AAT both may act in part by quenching a detrimental TNF-(\alpha) dependent effect in both fat and PLNs. Indeed, short-term anti-TNF-(\alpha) mAb treatment restored enduring euglycemia, self-tolerance, and normal insulin signaling.

  • Publication

    More of the Gut in the Lung: How Two Microbiomes Meet in ARDS

    (YJBM, 2018) Mukherjee, Samiran; Hanidziar, Dusan

    In critically ill patients, lung and gut microbiomes undergo profound changes. Lung microbiome might become enriched with gut-associated microbes as recently demonstrated in sepsis and acute respiratory distress syndrome (ARDS). It has been proposed that in these conditions, bacteria from the gut might enter the lungs via translocation, a process facilitated by increased gut and alveolo-capillary permeability. In patients requiring mechanical ventilation after severe trauma, lung microbiome enrichment with gut-associated microbes was found to correlate with the development of ARDS. The lungs in ARDS are increasingly susceptible to opportunistic infections which can further perpetuate alveolar inflammation and injury. Undoubtedly, more research on the gut-lung crosstalk in critically ill patients is needed to identify causal relationships between the altered microbiome, infections, inflammation, and acute lung injury. With further insights, this area of investigation could lead to the development of novel, microbiome-targeted, and immunomodulation strategies with the potential to improve outcomes of critically ill patients with sepsis, trauma, and ARDS.

  • Publication

    CD73 Is a Phenotypic Marker of Effector Memory Th17 Cells in Inflammatory Bowel Disease

    (Wiley, 2012-10-29) Doherty, Glen; Bai, Aiping; Hanidziar, Dusan; Longhi, Maria Serena; Lawlor, Garrett; Putheti, Prabhakar; Csizmadia, Eva; Nowak, Martina; Cheifetz, Adam; Moss, Alan; Robson, Simon

    Purinergic signaling and associated ectonucleotidases, such as CD39 and CD73, have been implicated in the pathogenesis of inflammatory bowel disease (IBD). CD39 is known to be a Treg memory cell marker, and here we determine the phenotype and function of CD73+CD4+ T lymphocytes in patients with IBD. We describe elevated levels of CD73+CD4+ T cells in the peripheral blood and intestinal lamina propria of patients with active IBD. The functional phenotype of these CD73+CD4+ T cells was further determined by gene expression, ecto-enzymatic activity, and suppressive assays. Increased numbers of CD73+CD4+ T cells in the periphery and lamina propria were noted during active inflammation, which returned to baseline levels following anti-TNF treatment. Peripheral CD73+CD4+ T cells predominantly expressed CD45RO, and were enriched with IL-17A+ cells. The CD73+CD4+ cell population expressed higher levels of RORC, IL-17A, and TNF, and lower levels of FOXP3 and/or CD25, than CD73−CD4+ T cells. Expression of CD73 by peripheral CD4+ T cells was increased by TNF, and decreased by an anti-TNF monoclonal antibody (infliximab). In vitro, these peripheral CD73+CD4+ T cells did not suppress proliferation of CD25− effector cells, and expressed higher levels of pro-inflammatory markers. We conclude that the CD73+CD4+ T-cell population in patients with active IBD are enriched with cells with a T-helper type 17 phenotype, and could be used to monitor disease activity during treatment.