Publications by authors named "Nagwa Elkhafif"

Background: Anthelminthic treatment options against schistosomiasis are limited. The current treatment relies almost exclusively on a single drug, praziquantel (PZQ). As a consequence, the development of resistance to PZQ and limited activity of PZQ against earlier development stages are respectively a risk and a limitation to achieving the goals of the new WHO roadmap towards elimination.

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Liver fibrosis is one of the most serious consequences of S. mansoni infection. The aim of the present study was to investigate the potential anti-fibrotic effect of human Wharton's jelly-derived mesenchymal stem cells (WJMSCs) combined with praziquantel (PZQ) in S.

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The in vivo angiogenic potential of transplanted human umbilical cord blood (UCB) CD133(+) stem cells in experimental chronic hepatic fibrosis induced by murine schistosomiasis was studied. Enriched cord blood-derived CD133(+) cells were cultured in primary medium for 3 weeks. Twenty-two weeks post-Schistosomiasis infection in mice, after reaching the chronic hepatic fibrotic stage, transplantation of stem cells was performed and mice were sacrificed 3 weeks later.

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The efficiency of differentiation of bone marrow cells (BMCs) into hepatocytes in vivo and its importance in physiopathological processes is still debated. Murine schistosomiasis was used as a liver injury model and unfractionated male mice BMCs were transplanted through intrahepatic injection into non-irradiated Schistosoma mansoni-infected female mice on their 16th week post-infection. Two weeks after bone marrow transplantation, mice were sacrificed on a weekly basis until 10 weeks.

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An ultrastructural quantitative assessment of hepatic stellate cells (HSCs) was made in relation to hepatic fibrosis, apoptotic cellular changes, intracellular fat deposition, circulating inflammatory cells in the sinusoids, and the necroinflammatory activity in liver specimens of 33 patients proven to be positive for hepatitis C virus (HCV)-RNA by polymerase chain reaction with the intention that electron microscopy may throw more light on the role of HSCs in the complicated process of fibrogenesis. A detailed review concerning these parameters and observed evidence suggesting the potential properties of HSCs to recycle cellular debris into collagen fibers are reported.

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