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1.
Acta Diabetol ; 61(2): 151-159, 2024 Feb.
Article in English | MEDLINE | ID: mdl-37747554

ABSTRACT

AIMS: To analyze if midterm improvement in diabetes distress can be explained by resilience, diabetes acceptance, and patient characteristics. METHODS: N = 179 adults with type 1 diabetes were enrolled during their stay at a tertiary diabetes center (monocentric enrolment) and followed up over three months in a prospective, observational study ('DIA-LINK1'). Improvement in diabetes distress was assessed as reduction in the Problem Areas in Diabetes Scale score from baseline to follow-up. Resilience (Resilience Scale-13), acceptance (Diabetes Acceptance Scale), and patient characteristics were analyzed as predictors of improvement in diabetes distress using hierarchical multiple regression. RESULTS: Greater reductions in diabetes distress were significantly explained by lower diabetes acceptance at baseline (ß = -0.34, p < 0.01), while resilience, diabetes complications, and other person-related variables were not significantly related to changes in diabetes distress (all p > 0.05). When change in diabetes acceptance from baseline to follow-up was added to the model, improved diabetes distress was explained by increasing diabetes acceptance (ß = 0.41, p < 0.01) and a shorter duration of diabetes (ß = -0.18, p = 0.03), while baseline diabetes acceptance was no longer significantly associated (ß = -0.14, p > 0.05). CONCLUSIONS: Diabetes acceptance is inversely related to diabetes distress, and increasing acceptance explained greater improvement in diabetes distress. These findings suggest that increasing diabetes acceptance may facilitate the reduction of diabetes distress. Treatment approaches targeting acceptance might be useful for the mental healthcare of people with type 1 diabetes and clinically elevated diabetes distress.


Subject(s)
Diabetes Complications , Diabetes Mellitus, Type 1 , Resilience, Psychological , Adult , Humans , Diabetes Mellitus, Type 1/complications , Prospective Studies , Stress, Psychological/etiology
2.
Cells ; 12(4)2023 02 17.
Article in English | MEDLINE | ID: mdl-36831319

ABSTRACT

Ischemic lesions stimulate adult neurogenesis in the dentate gyrus, however, this is not associated with better cognitive function. Furthermore, increased neurogenesis is associated with the formation of aberrant neurons. In a previous study, we showed that a running task after a stroke not only increases neurogenesis but also the number of aberrant neurons without improving general performance. Here, we determined whether stimulation in an enriched environment after a lesion could increase neurogenesis and cognitive function without enhancing the number of aberrant neurons. After an ischemic stroke induced by MCAO, animals were transferred to an enriched environment containing a running wheel, tunnels and nest materials. A GFP-retroviral vector was delivered on day 3 post-stroke and a modified water maze test was performed 6 weeks after the lesion. We found that the enriched environment significantly increased the number of new neurons compared with the unstimulated stroke group but not the number of aberrant cells after a lesion. Increased neurogenesis after environmental enrichment was associated with improved cognitive function. Our study showed that early placement in an enriched environment after a stroke lesion markedly increased neurogenesis and flexible learning but not the formation of aberrant neurons, indicating that rehabilitative training, as a combination of running wheel training and enriched environment housing, improved functional and structural outcomes after a stroke.


Subject(s)
Cognition , Stroke , Mice , Animals , Cognition/physiology , Stroke/pathology , Neurons/physiology , Neurogenesis/physiology , Hippocampus/pathology
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