Abstract
Background and aims: Insulin degludec is an insulin analog with an ultra-long duration of action that exhibits less intra-patient variability in its glucose-lowering activity, and reduces nocturnal, overall, and severe hypoglycemia relative to insulin glargine. The aim of the present study was to evaluate the cost-effectiveness of insulin degludec relative to insulin glargine in patients with: type 1 diabetes (T1D), type 2 diabetes receiving basal-only therapy (T2DBOT), and type 2 diabetes receiving basal-bolus therapy (T2DBB) in Denmark.Methods: A short-term (1 year) cost-utility model was developed to model insulin use, non-severe and severe hypoglycemia, and self-monitoring of blood glucose in patients using insulin degludec and insulin glargine from the perspective of a Danish healthcare payer. Where possible, data were derived from Danish patients with diabetes and meta-analyses of clinical trials comparing insulin degludec with insulin glargine. Using these characteristics, the model estimated costs and quality-adjusted life years (QALYs) gained for the two insulin regimens in each of the three diabetes populations.Results: Insulin degludec dominated insulin glargine (i.e. reduced costs while improving quality-adjusted life expectancy) in patients with T1D and patients with type 2 diabetes using a basal-only insulin regimen. In the T2DBB cohort, insulin degludec was associated with an incremental cost-effectiveness ratio of DKK 221,063 per QALY gained, which would be considered cost-effective at a willingness-to-pay threshold of EUR 30,000 (∼DKK 224,000) per QALY gained. Sensitivity analysis showed that results were most affected by changes in hypoglycemia rate ratio assumptions, but were broadly insensitive to changes in individual input parameters.Conclusions: Insulin degludec reduces incidence of hypoglycemia and improves quality-of-life in patients with diabetes. Over a 1-year time horizon, insulin degludec resulted in cost savings relative to insulin glargine in T1D and T2DBOT cohorts, while being cost-effective in T2DBB.
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