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In SilicoHead-to-Head Comparison of Insulin Glargine 300 U/mL and Insulin Degludec 100 U/mL in Type 1 Diabetes
Author(s) -
Michele Schiavon,
R. Visentin,
Clemens Giegerich,
Jochen Sieber,
Chiara Dalla Man,
Claudio Cobelli,
Thomas Klabunde
Publication year - 2020
Publication title -
diabetes technology and therapeutics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.142
H-Index - 88
eISSN - 1557-8593
pISSN - 1520-9156
DOI - 10.1089/dia.2020.0027
Subject(s) - medicine , insulin degludec , glycemic , insulin , insulin glargine , type 1 diabetes , diabetes mellitus , basal (medicine) , type 2 diabetes , pharmacokinetics , hypoglycemia , endocrinology , pharmacology
Background: Second-generation long-acting insulin glargine 300 U/mL (Gla-300) and degludec 100 U/mL (Deg-100) provide novel basal insulin therapies for the treatment of type 1 diabetes (T1D). Both offer a flatter pharmacokinetic (PK) profile than the previous generation of long-acting insulins, thus improving glycemic control while reducing hypoglycemic events. This work describes an in silico head-to-head comparison of the two basal insulins on 24-h glucose profiles and was used to guide the design of a clinical trial. Materials and Methods: The Universities of Virginia (UVA)/Padova T1D simulator describes the intra-/interday variability of glucose-insulin dynamics and thus provides a robust bench-test for assessing glucose control for basal insulin therapies. A PK model describing subcutaneous absorption of Deg-100, in addition to the one already available for Gla-300, has been developed based on T1D clinical data and incorporated into the simulator. One hundred in silico T1D subjects received a basal insulin dose (Gla-300 or Deg-100) for 12 weeks (8 weeks uptitration, 4 weeks stable dosing) by morning or evening administration in a basal/bolus regimen. The virtual patients were uptitrated to their individual doses with two different titration rules. Results: The last 2-week simulated continuous glucose monitoring data were used to calculate various outcome metrics for both basal insulin treatments, with primary outcome being the percent time in glucose target (70-140 mg/dL). The simulations show no statistically significant difference for Gla-300 versus Deg-100 in the main endpoints. Conclusions: This work suggests comparable glucose control using either Gla-300 or Deg-100 and was used to guide the design of a clinical trial intended to compare second-generation long-acting insulin analogues.

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