Publications by authors named "R Franceschi"

Background: Untreated patients affected by hereditary fructose intolerance (HFI) present an abnormal transferrin (Tf) glycosylation pattern suggestive of N-hypoglycosylation. Analysis of defects in N-glycosylation is possible by analysis of serum sialotransferrin (sialoTf) pattern. The sialoTf profile is a valuable tool to facilitate the diagnosis of HFI.

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Aims: New technology has been reported as a factor driving people to choose an automatic insulin delivery system (AIDs) and to sustain its acceptance. We aimed to explore the role of continuous glucose monitoring (CGM) technology (instant scanning vs. real-time) and insulin treatment modality to determine the future acceptance of AIDs among T1D individuals.

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The current clinical applications of bone morphogenetic proteins (BMPs) are limited to only a few specific indications. Locally controlled delivery of combinations of growth factors can be a promising strategy to improve BMP-based bone repair. However, the success of this approach requires the development of an effective release system and the correct choice of growth factors capable of enhancing BMP activity.

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Article Synopsis
  • The study aimed to analyze how often type 1 diabetes (T1D) and diabetic ketoacidosis (DKA) occurred in kids aged 0-14 in the Trentino-Alto Adige region of Italy from 2014 to 2023.
  • Results showed an overall T1D incidence of 21.5 per 100,000 person-years, peaking at 31.1 during 2021, and DKA occurred in about 36.9% of cases, with younger patients showing higher HbA1c levels.
  • The findings suggest that the incidence of T1D in the region is similar to other northern Italian areas, highlighting the need for educational campaigns to raise
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Article Synopsis
  • * A new phase-separation technology was developed to create nanofibrous poly(l-lactic acid) (PLLA) scaffolds designed to mimic the bone matrix and enhance regeneration by attaching synthetic collagen-like peptides that activate key bone cell receptors.
  • * The resulting peptide-decorated scaffolds showed significantly improved bone regeneration (7.8 times more) compared to traditional scaffolds in a study, highlighting their ability to stimulate the body’s natural healing processes.
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