Overcoming therapeutic inertia in newly diagnosed type 2 diabetes: Protocol of a randomized, quality improvement

Thanh K Thai1, Christine A Board2, Joshua R Nugent2

  • 1Kaiser Permanente San Francisco Medical Center, San Francisco, CA, United States of America.

PubMed

Insights

Therapeutic inertia delays type 2 diabetes treatment. A trial combining physician education and pharmacist outreach improved glycemic control in newly diagnosed patients, aiming to enhance type 2 diabetes outcomes.

Area of Science:

  • Endocrinology
  • Internal Medicine
  • Healthcare Management

Background:

  • Therapeutic inertia, a delay in diabetes treatment, hinders improved glycemic control.
  • Early intervention post-diagnosis is crucial for long-term type 2 diabetes (T2D) management.
  • Technology and team-based care can overcome treatment inertia.

Purpose of the Study:

  • To evaluate strategies addressing metformin-related therapeutic inertia in adults with recently diagnosed T2D.
  • To assess the impact of physician education and clinical pharmacist outreach on glycemic control.

Main Methods:

  • A randomized quality improvement trial design.
  • Three arms: usual care, physician education, and physician education with pharmacist outreach.
  • Primary outcome: Proportion of patients achieving HbA1c <7% at 6, 12, and 18 months.

Main Results:

  • Pending outcome abstraction and analysis in late 2024.
  • The study protocol is detailed herein.
  • This trial aims to provide insights into improving T2D care.

Conclusions:

  • Effective strategies are needed to combat therapeutic inertia in T2D.
  • Team-based care models show promise for enhancing patient outcomes.
  • This research may inform healthcare systems seeking to improve T2D management.

Related Concept Videos

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Diabetes: Management and Pharmacotherapy

The therapy for diabetes aims to alleviate hyperglycemia-related symptoms, prevent acute metabolic decompensation, and reduce chronic end-organ complications. Glycemic control is evaluated through short-term (self-monitoring, continuous glucose monitoring) and long-term (A1c, fructosamine) metrics, enabling near real-time tracking of blood glucose levels and reflecting glycemic control over specific time frames.
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