Publications by authors named "Latifa M Abdelgawad"

Article Synopsis
  • Recent research explored the effects of photobiomodulation (PBM) and nano-bone on mandibular bone repair in mice with created bone defects.
  • The study involved four groups: a control group, a group receiving PBM treatment, a group using nano-bone, and a group combining both PBM and nano-bone, with evaluations at one, two, and four weeks.
  • Results showed that the combination of PBM and nano-bone led to less inflammation and significantly greater new bone formation compared to other groups, suggesting their potential for enhancing bone regeneration.
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The present study aimed to test the efficiency of photoinduced photoacoustic streaming using 2940 nm Er: YAG laser and 980 nm diode laser agitation on smear layer removal, sealer penetration and push-out bond strength. Sixty single canaled human permanent teeth were collected for this study. Specimens were grouped into three experimental groups (20 teeth in each group), depending on the activation protocol used for final irrigation: Group I (needle agitation), group II (980nm diode laser agitation) and group III (photon induced photoacoustic streaming (PIPS) using 2940 nm Er: YAG laser.

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The regeneration of dental pulp tissue using human dental pulp stem cells (HDPSCs) has attracted increasing attention in recent years. Recent studies have suggested that several factors such as photobiomodulation (PBM) and vitamin D affect the proliferation and differentiation of HDPSCs. Therefore, the present study evaluated the effects of PBM and vitamin D on odontogenic differentiation of HDPSCs for dentin -like tissue formation.

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Background: (1)Human periodontal ligament stem cells (HPDLSCs) are a unique population of mesenchymal stem cells (MSCs). Recently, the positive effects of photobiomodulation on the regulation of MSCs proliferation and osteogenic differentiation have gained significant attention. This study aimed to assess the effects of photobiomodulation and vitamin D (as an anabolic factor) on HPDLSCs for bone regeneration.

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