- Research Article
66
- 10.1016/j.ebiom.2019.102615
Mesenchymal stem cells ameliorate β cell dysfunction of human type 2 diabetic islets by reversing β cell dedifferentiation.
- Jan 01, 2020
- EBioMedicine
- Le Wang + 15 more +15
Publications from 2021 to 2026
Showing 3 of 3 papers
Mesenchymal stem cells ameliorate β cell dysfunction of human type 2 diabetic islets by reversing β cell dedifferentiation.
Vitamin D and ω-3 Supplementations in Mediterranean Diet During the 1st Year of Overt Type 1 Diabetes: A Cohort Study
Vitamin D and ω-3 fatty acids (ω-3) co-supplementation potentially improve type 1 diabetes (T1D) by attenuating autoimmunity and counteracting inflammation.This cohort study preliminary to a randomized control trial (RCT) is aimed to evaluate, in a series of T1D children assuming Mediterranean diet and taking cholecalciferol 1000U/day fromT1D onset, if ω-3 co-supplementation preserves the residual endogen insulin secretion (REIS).Therefore, 22 new onsets of 2017 received ω-3 [eicosapentenoic acid (EPA) plus docosahexaenoic acid (DHA), 60mg/kg/day], and were compared retrospectively vs. 37 previous onsets without ω-3 supplementation. HbA1c%, daily insulin demand (IU/Kg/day) and IDAA1c, a composite index (calculated as IU/Kg/dayx4 + HbA1c%) as surrogate of REIS, were evaluated at recruitment (T0) and 12 months later (T12). In the ω-3 supplemented group, dietary intakes were evaluated at T0 and T12. As outcome, decreased insulin demand (p<0.01), particularly pre-meal boluses (p<0.01), and IDAA1c (p<0.05), were found in the ω-3 group while HbA1c% were not different in the two groups. Diet analysis, at T12 vs. T0, showed that the intake of arachidonic acid (AA) was decreased (p<0.01) in the ω-3 supplemented group while other nutrients were unchanged; at T0, the AA intake was inversely correlated with HbA1c% (p<0.05; r;.0.411). In conclusion, the results suggest that vitamin D plus ω-3 co-supplementation and AA reduction in Mediterranean diet display benefits for T1D children and deserve further investigation.
Read moreClinical pancreatic islet transplantation.
Clinical pancreatic islet transplantation can be considered one of the safest and least invasive transplant procedures. Remarkable progress has occurred in both the technical aspects of islet cell processing and the outcomes of clinical islet transplantation. With >1,500 patients treated since 2000, this therapeutic strategy has moved from a curiosity to a realistic treatment option for selected patients with type 1 diabetes mellitus (that is, those with hypoglycaemia unawareness, severe hypoglycaemic episodes and glycaemic lability). This Review outlines the techniques required for human islet isolation, in vitro culture before the transplant and clinical islet transplantation, and discusses indications, optimization of recipient immunosuppression and management of adjunctive immunomodulatory and anti-inflammatory strategies. The potential risks, long-term outcomes and advances in treatment after the transplant are also discussed to further move this treatment towards becoming a more widely available option for patients with type 1 diabetes mellitus and eventually a potential cure.
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