Introduction Diabetes self-management in older adults with type 1 diabetes (T1D) presents a unique clinical challenge, since maintaining tight glycemic control must be carefully weighed against age-related vulnerabilities. This study aimed to analyze glycemic control through the effects of customized algorithm settings in a cohort of older adults with T1D using an automated insulin delivery (AID) system. Methods This retrospective real-world data analysis included users of the MiniMed™ 780G AID system, aged ≥60 years. Continuous glucose monitoring (CGM) data including time in range (TIR; 70–180 mg/dL; 3.9–10.0 mmol/L), time in tight range (TITR; 70–140 mg/dL; 3.9–7.8 mmol/L), time below range (TBR; <70 mg/dL; <3.9 mmol/L), level 2 TBR (<54 mg/dL; <3.0 mmol/L) and time above range (TAR; >180 mg/dL; >10.0 mmol/L) were analyzed alongside algorithm settings and daily insulin use. Group comparisons utilized standard parametric and non-parametric statistical tests. A multivariable logistic regression model identified independent clinical predictors of high glycemic performance (TITR ≥50%). Results The cohort comprised 97 AID users (70.1% female, mean age 67.9 ± 6.7; range 60–90 years). Overall glycemic control was good, with mean TIR 76.1%, TITR 51.1% and TBR 1.1%. Fourteen participants (14.4%) used the manufacturer’s recommended optimal settings (ROS); i.e., target glucose of 5.5 mmol/L and active insulin time of 2 hours. CGM metrics did not differ between ROS and non-ROS users for TIR, TITR and TBR. When stratifying the cohort by glycemic performance, 55 participants (56.7%) reached TITR ≥50%; however, the adoption of ROS in high (≥50%) TITR and lower (<50%) TITR subgroups was similar (16.4% vs 11.9%; Fisher p=0.58). When compared to the lower TITR subgroup, participants in the high TITR subgroup delivered less auto-correction insulin (14.2% vs 20.6%, p<0.001) and a higher proportion of manual bolus insulin (46.1% vs 35.2%, p<0.001), which remained a significant predictor of high TITR after multivariable adjustment. TBR was significantly higher in the high (≥50%) TITR subgroup, although it remained low in absolute terms (1.5% vs. 0.8%; p=0.017). Conclusion While the MiniMed™ 780G AID system use is associated with low CGM-derived hypoglycemia exposure and highly effective glycemic control, regardless of customized settings, superior glycemic control is associated with a higher proportion of user-initiated manual boluses. The algorithm supports, but cannot replace, user engagement.
Š. Volčanšek, P. Vidmar, A. Janež et al.· Frontiers in Endocrinology· 0 citations
For decades, type 2 diabetes (T2D) pharmacotherapy has followed a reactive, stepwise approach, typically initiated with metformin monotherapy and intensified only after glycemic deterioration. This so-called wait-to-fail strategy may prolong hyperglycemia and increase the cumulative risk of microvascular and macrovascular complications. Early combination therapy (ECT) has been proposed as an alternative strategy to achieve faster glycemic control, improve glycemic durability, and enable timely use of glucose-lowering agents with cardiovascular, renal, and metabolic benefits. This narrative review examines the rationale for ECT in newly diagnosed T2D and summarizes evidence from landmark clinical trials. Recent updates to major international guidelines, including the 2026 American Diabetes Association Standards of Care in Diabetes and National Institute for Health and Care Excellence NG28, are also discussed, reflecting a shift toward individualized, comorbidity-focused treatment selection. While ECT represents an important evolution in T2D management, current clinical evidence supports its use mainly in selected patients rather than as a universal default strategy.
A. Janež, Tanja Smid, Manfredi Rizzo et al.· Journal of diabetes and its...· 0 citations
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