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Nabil, A.

Publications and source records attributed to Nabil, A..

2 recordsLinked to original sources

Immunomodulatory mechanisms of submicron phosphatidylserine-exposing polymeric particles (PSPs)

Macrophages are highly dynamic cells that maintain tissue homeostasis by regulating both initiation and resolution of inflammation. During efferocytosis, macrophages recognize the eat me signal, phosphatidylserine (PS), exposed at the surface of apoptotic cells, leading to the resolution of inflammation and acquisition of a pro-resolving phenotype. Inspired by this endogenous mechanism, PS-based biomaterials have demonstrated immunomodulatory potential. However, the molecular mechanisms underlying PS-mediated macrophage reprogramming remain poorly understood. Here, submicron PS-exposing polymeric particles (PSPs; [~]300 nm) were developed to improve the suitability of PSP formulations for future systemic administration while preserving their immunomodulatory activity. PSPs were efficiently internalized by macrophages through both actin- and dynamin-dependent pathways. PSP treatment significantly reduced IL-6 and IL-12p70 production in LPS-stimulated macrophages, whereas induction of the classical anti-inflammatory M2 marker CD206 was limited. Transcriptomic analysis revealed coordinated attenuation of inflammatory signaling pathways, including downregulation of Myd88, Nfkb1, Rel, and Irf8, together with activation of NRF2-associated antioxidant pathways characterized by increased expression of Nfe2l2, Hmox1, Prdx1, Gclm, and Gclc. Activation of antioxidant-associated genes together with reduced Irf8 expression suggests that PSP promotes inflammatory resolution through coordinated redox adaptation and selective attenuation of inflammatory signaling. Collectively, these findings provide mechanistic insight into PS-mediated macrophage reprogramming and support the future development of systemically administered therapies for chronic inflammatory diseases, including vascular inflammatory disorders. HighlightsO_LISubmicron PSPs retain immunomodulatory activity of apoptotic cell-mimicking biomaterials. C_LIO_LIPSPs are rapidly internalized through actin- and dynamin-dependent pathways. C_LIO_LIPSPs attenuate inflammatory signaling and selectively suppress IL-6 and IL-12p70 production. C_LIO_LIPSPs induce NRF2-associated antioxidant and glutathione responses. C_LIO_LITranscriptomics reveals an early redox-adaptive macrophage program. C_LI

bioengineering↗

T cell subsets in chronic hepatitis C patients genotype 4 who achieved SVR following DAAs Therapy

BackgroundT cells are the primary effector cells that mediate viral clearance in spontaneous recovery from HCV infection and T cell dysfunction is a hallmark of progression to chronic HCV infection. Material and methodsThis study included 49 well charcterised HCV genotype 4-infected patients at Egyptian Liver Research Institute and Hospital (ELRIAH), Mansoura, Egypt, who were enrolled to receive direct acting antiviral therapy for hepatitis C. Immuno-phenotyping was performed to assess the expression of multiple T cell lineage, activation and inhibitory receptors. This was done before treatment, during treatment, at end of treatment and one year after treatment. 50 patients were also enrolled as control. ResultsOur data showed, significant increase in the percentages of CD8+ cells as compared to control group. The percentages of PD-1 expression on the CD8+ T-cell population were signifecntly elevated in patients before treatment (p<0.001). Significant increase in Treg (CD4+CD25hFoxP3+) subsets was noticed in comparison with control pateints. The expression of the inhibitory and activated markers in CD8+ T-cells was markedly reduced but more obvios in exhausted cytotoxic T cells compared to baseline finding (p<0.001). exhausted (PD1+CD8+) T-cells from HCV+ individuals reduced markedly after 4 weeks of DAA therapy (by 3 folds, p <0.001). Intereatingly it started to increase gradually again at the end of treatment and after 1 year but the increase doesnt reach levels noticed in healthy control subjects. ConclusionUnderstanding the mechanisms of immune dysfunction and barriers to immune restoration after HCV cure will aid in better understanding of the remaining negative long-term health outcomes for HCV patients and the possibility of HCC development.

immunology↗