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Biology subjects

Fayad, E.

Publications and source records attributed to Fayad, E..

2 recordsLinked to original sources

Deciphering Immune Complexity: Single-Cell Insights into Autoimmune Myocarditis Progression

Autoimmune myocarditis is a complex inflammatory response in the heart caused by abnormal immune system activity. We used modern single-cell technologies to analyze the complex gene expression patterns in autoimmune myocarditis tissue samples during several stages of inflammation: acute, subacute, and chronic. We identified the presence of T cell-monocyte complexes in both control and myocarditis samples from different phases using detailed analysis of vast single-cell RNA sequencing data. These complexes were notably more prevalent throughout the acute and subacute stages. Our investigation of gene ontology revealed their involvement in important processes as signal transduction, immune response control, and T cell proliferation and activation. We conducted a thorough analysis of trajectories, uncovering the step-by-step changes of macrophages into clusters linked to antigen presentation, oxidative stress responses, complement activation, and phagocytosis. Furthermore, our examination of neutrophil paths revealed their development and maturation from the bone marrow to distinct functional stages. Our analysis of cellular communication networks revealed consistent and phase-specific patterns, providing valuable information on how immune responses change as the disease progresses. We noted a substantial increase in BAFF signaling from normal to acute phases, while CHEMERIN signaling was upregulated from acute to chronic phases. The discoveries greatly improve our understanding of autoimmune myocarditis on a molecular level, providing a strong basis for creating personalized precision medicine treatments for each patient. Graphical Abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=141 SRC="FIGDIR/small/584698v1_ufig1.gif" ALT="Figure 1"> View larger version (40K): org.highwire.dtl.DTLVardef@1150607org.highwire.dtl.DTLVardef@13eb725org.highwire.dtl.DTLVardef@6a0be9org.highwire.dtl.DTLVardef@3400ac_HPS_FORMAT_FIGEXP M_FIG C_FIG

genomics↗

Inhibition of Herpes simplex virus and Vesicular stomatitis virus Proliferation by Lactiplantibacillus planterum and star anise Extract Is Associated with Induction of MX gene expression

PurposeThere is an immense need to develop new antiviral compounds that are effective and have little side effects. Natural compounds provide a good candidate that is gaining popularity. Probiotics as Lactiplantibacillus plantarum and plant-derived medicines as star anise extract have been investigated to treat viral diseases, cancer, and inflammation. This work aimed to investigate the antiviral effect of probiotics (Lactiplantibacillus plantarum) and (star anise) against Herpes simplex virus type 1(HSV-1) and Vesicular stomatitis virus (VSV). Patients and methodsLactiplantibacillus plantarum and star anise extract had been prepared and tested against vero cell lines for cytotoxicity assay. The antiviral effect of L. plantarum and star anise against HSV-1 and VSV was evaluated by titration calculation (TCID50). The expression of MX genes were measured in infected cells before and after treatment with L. plantarum and star anise. ResultsWe found that L. planterum is more effective against HSV-1 and caused 2.5 log reduction in virus titre while star anise extract is more effective against VSV and caused 1.25 log reduction in virus titre. Evaluation of MX genes expression revealed higher expression in HSV-1 infected cell treated with L. planterum and VSV infected cells treated with star anise extract. ConclusionL. planterum and star anise could be useful antiviral natural compounds that have minimal side effects Plain language SummaryBoth Herpes simplex virus type 1(HSV-1) and Vesicular stomatitis virus (VSV) caused infection characterized by lytic lesions. Lactiplantibacillus plantarum and star anise had shown promising antiviral effects. So, we investigated the antiproliferative effect of L. plantarum and star anise against HSV-1 and VSV by assessment of virus titre before and after treatment and assessment of MX gene coding for antiviral proteins. We found that L. plantarum and star anise could inhibit proliferation of HSV-1 and VSV and increase expression of MX gene. L. plantarum and star anise could be good antiviral candidate.

microbiology↗