Publications by authors named "Mohamed Abdelrasoul"

Article Synopsis
  • The study highlights the importance of identifying periodontal phenotypes in clinical practice, as tissue thickness affects responses to inflammation and surgical outcomes.
  • The research was conducted using non-invasive methods like Colorvue® probes and iTero® scanners to assess gingival tissue, comparing them with traditional methods.
  • Results showed that non-invasive techniques not only provided significant color perception differences but also reduced patient anxiety and pain levels, especially with intraoral scanning.
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Dynamin 1 (Dyn1) GTPase, a principal driver of membrane fission during synaptic endocytosis, self-assembles into short mechanoactive helices cleaving the necks of endocytic vesicles. While structural information about Dyn1 helix is abundant, little is known about the nanoscale dynamics of the helical scaffolding at the moment of fission, complicating mechanistic understanding of Dyn1 action. To address the role of the helix dynamics in fission, we used High-Speed Atomic Force Microscopy (HS-AFM) and fluorescence microscopy to track and compare the spatiotemporal characteristics of the helices formed by wild-type Dyn1 and its K44A mutant impaired in GTP hydrolysis on minimal lipid membrane templates.

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Article Synopsis
  • The study investigates the effects of adjusting the pH of tobramycin ophthalmic solution, originally designed for humans, on treating ocular disorders in donkeys.
  • Modifying the pH to 8.26 significantly improved the drug's bioavailability in the tears and aqueous humor of donkeys, allowing it to remain effective against harmful bacteria like Pseudomonas aeruginosa and Staphylococcus aureus for extended periods.
  • The findings suggest that a pH-adjusted version of the commonly used tobramycin solution could enhance treatment outcomes for ocular infections in equines.
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Background: Periodontal regenerative therapy using bone-substituting materials has gained favorable clinical significance in enhancing osseous regeneration. These materials should be biocompatible, osteogenic, malleable, and biodegradable. This study assessed the periodontal regenerative capacity of a novel biodegradable bioactive hydrogel template of organic-inorganic composite loaded with melatonin.

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Interlayer excitons (ILXs) - electron-hole pairs bound across two atomically thin layered semiconductors - have emerged as attractive platforms to study exciton condensation, single-photon emission and other quantum information applications. Yet, despite extensive optical spectroscopic investigations, critical information about their size, valley configuration and the influence of the moiré potential remains unknown. Here, in a WSe/MoS heterostructure, we captured images of the time-resolved and momentum-resolved distribution of both of the particles that bind to form the ILX: the electron and the hole.

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An exciton, a two-body composite quasiparticle formed of an electron and hole, is a fundamental optical excitation in condensed matter systems. Since its discovery nearly a century ago, a measurement of the excitonic wave function has remained beyond experimental reach. Here, we directly image the excitonic wave function in reciprocal space by measuring the momentum distribution of electrons photoemitted from excitons in monolayer tungsten diselenide.

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Gingival bleeding, which was not previously present, may be a preceding symptom associated with COVID-19 infections, preceding or coincidental with fever, other clinical signs, and positive testing.

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