True Heading NP

True Heading NP
True Heading NP Advance Practice
Showing posts with label hypercortisolism. Show all posts
Showing posts with label hypercortisolism. Show all posts

Thursday, July 23, 2026

Diabetes in 2026: The Ominous Octet Just Got a New Member

 

NP CHRONICLES

Clinical Deep Dive



Diabetes in 2026: The Ominous Octet Just Got a New Member

A CME update from Harvard's Martin Abrahamson, MD, brings the 2026 ADA algorithm, the CATALYST hypercortisolism data, and head-to-head incretin trials into one practical framework for NPs managing T2DM.

If you trained on DeFronzo's "Ominous Octet," you may want to update your mental model. A recent Pri-Med CME session led by Martin J. Abrahamson, MD (Harvard Medical School) walks through where diabetes management actually stands in 2026 — and one finding in particular deserves space on your differential the next time a patient's A1c won't budge despite reasonable adherence.

The Noxious Nine: Adrenals Join the Pathogenesis Model

DeFronzo's original 2009 framework identified eight interlocking defects driving hyperglycemia in T2DM: impaired insulin secretion, increased hepatic glucose production, decreased glucose uptake in skeletal muscle, increased lipolysis in adipose tissue, decreased incretin effect, increased glucagon secretion, increased renal glucose reabsorption, and neurotransmitter dysfunction in the brain. The updated model adds a ninth: adrenal hypercortisolism.

This isn't a theoretical addition. The CATALYST trial screened 1,055 people with difficult-to-control T2DM (A1c 7.5%–11.5%, on ≥3 antihyperglycemic drugs, insulin plus another agent, or multiple agents with vascular complications) using a 1 mg dexamethasone suppression test. The result: 24% — almost 1 in 4 — had biochemical evidence of endogenous hypercortisolism, and an adrenal abnormality was found on imaging in 34% of those screened positive.

AMBER FLAG — This Doesn't Mean Screen Everyone Tomorrow

A 24% positive rate in a trial population selected specifically for treatment-resistant T2DM is not the same as a 24% prevalence in your general diabetic panel. Before this becomes a routine screen, professional society guidance needs to catch up with the data, and cost-effectiveness in unselected populations hasn't been established. Where it's worth remembering: the patient who is maximized on multiple agents, insulin, and lifestyle changes and still isn't moving — that's the CATALYST population, and it's reasonable to have hypercortisolism on your radar for that specific patient.

The mechanistic follow-up, CATALYST Part 2, tested whether treating the hypercortisolism actually helps. In a multicenter, double-blind, placebo-controlled phase IV trial, 91 patients with confirmed hypercortisolism and uncontrolled T2DM received oral mifepristone (300–900 mg daily) versus placebo for 24 weeks. The primary endpoint — change in A1c — favored mifepristone by 1.32 percentage points (95% CI, -1.81 to -0.83; p<0.001 at both week 12 and week 24), with secondary improvements in body weight and waist circumference as well.

What the 2026 ADA Standards of Care Actually Say

The updated ADA algorithm organizes pharmacologic decision-making around two simultaneous goals rather than a single A1c target: achieving glycemic control and achieving weight management, with cardiorenal risk reduction layered on top for patients who qualify.

      Very high glucose-lowering efficacy: high-dose dulaglutide, semaglutide, tirzepatide, insulin, and combination regimens (oral or injectable combos, GLP-1 RA plus insulin).

      Very high weight-loss efficacy: semaglutide and tirzepatide specifically — not the GLP-1 RA class as a whole.

      For ASCVD or high-risk indicators (age ≥55 with 2+ of: obesity, hypertension, smoking, dyslipidemia, albuminuria): choose a GLP-1 RA or SGLT2i with proven cardiovascular benefit, independent of A1c.

      For heart failure (HFrEF or HFpEF): SGLT2i with proven HF benefit in that specific population.

      For CKD on maximally tolerated ACEi/ARB: SGLT2i with primary evidence of slowing CKD progression (can be started down to eGFR ≥20), or a GLP-1 RA with proven CKD benefit.

      If MASLD/MASH risk needs mitigating: GLP-1 RA, dual GIP/GLP-1 RA, pioglitazone, or a GLP-1 RA-pioglitazone combination; insulin is reserved for decompensated cirrhosis.

The organizing principle worth internalizing: medication choice is now driven first by comorbidity profile (ASCVD, HF, CKD, MASLD), and only secondarily by A1c-lowering potency alone.

Case From Practice

Meet Mr. L: A1c at Goal, But Is His Regimen Actually Right?

Mr. L is a 63-year-old part-time teacher, 6 years out from a T2DM diagnosis, with hypertension, hyperlipidemia, and coronary artery disease. Cardiac function is normal. BMI 29.4 kg/m², A1c 6.7%, eGFR 68 mL/min/1.73m², normal LFTs and urine microalbumin. Current regimen: metformin 2000 mg/day, glipizide 10 mg/day, atorvastatin 10 mg/day, lisinopril 40 mg/day, HCTZ 12.5 mg/day, aspirin 81 mg/day.

The tempting answer is (a): he's at goal, leave it alone. That's the wrong answer — and the case is built specifically to surface why.

      He meets ASCVD criteria (established coronary artery disease) — per the 2026 ADA algorithm, that alone is an indication for a GLP-1 RA or SGLT2i with proven cardiovascular benefit, independent of his A1c.

      He's on a sulfonylurea (glipizide), which carries hypoglycemia risk and is weight-neutral-to-positive — exactly the profile the "newer agent" era is designed to move away from.

      The best-supported answer is (d) or (e): add a GLP-1 RA or SGLT2i with proven CV benefit and stop or reduce the sulfonylurea, rather than simply layering a new drug on top of an agent that's actively working against the safety goals (hypoglycemia risk, weight gain).

      Take-home for board prep and practice alike: an A1c at goal is necessary but not sufficient. Ask what class of problem you're actually treating — glycemic, cardiorenal, or weight — before deciding a regimen is "done."

Clinical Bottom Line

      Difficult-to-control T2DM (multiple agents, insulin, or vascular complications despite treatment) now has a plausible, testable explanation in a meaningful minority of patients: endogenous hypercortisolism. A 1 mg dexamethasone suppression test is the first-line screen; confirmatory workup includes ACTH, DHEAS, and adrenal CT.

      Medication selection in 2026 is comorbidity-first: ASCVD, heart failure, and CKD each have a specific preferred agent class with outcomes-trial backing, and that recommendation applies whether or not the patient's A1c is already at goal.

      Semaglutide and tirzepatide currently top both the glucose-lowering and weight-loss efficacy tables among GLP-1-class agents — but "GLP-1 RA" is not a monolith; efficacy and evidence vary substantially within the class.

      Glycemic targets should be individualized: tighter (<6.5%) for younger, healthier patients with long life expectancy; looser (7.0%–8.0%+) for older patients, those with comorbidities, hypoglycemia-prone patients, or shorter life expectancy. "Best control achievable safely" beats a flat number.

Board Prep: High-Yield Diabetes Pharmacology

A few associations worth drilling before your next exam or recert:

      CVOTs with MACE benefit for GLP-1 RA: LEADER (liraglutide), SUSTAIN-6 (semaglutide), REWIND (dulaglutide), HARMONY OUTCOMES (albiglutide) — superior vs. placebo. EXSCEL (exenatide-ER) and PIONEER-6/SOUL (oral semaglutide) — noninferior.

      CVOTs with MACE benefit for SGLT2i: EMPA-REG OUTCOME (empagliflozin), CANVAS (canagliflozin) — reduced MACE in secondary prevention specifically. DECLARE-TIMI 58 (dapagliflozin) and VERTIS-CV (ertugliflozin) were neutral for MACE but still showed heart failure and renal benefit.

      DPP-4 inhibitors are the class with consistently neutral CVOT results (SAVOR-TIMI, EXAMINE, TECOS, CARMELINA) — useful when you need a weight-neutral, hypoglycemia-low option without a strong CV or renal indication.

      Comparative A1c lowering (network meta-analysis): subcutaneous semaglutide and liraglutide lead (~1.4–1.5 percentage points), ahead of dulaglutide, basal insulin, and oral semaglutide; DPP-4 inhibitors are at the low end of the efficacy spectrum.

      Comparative weight loss: semaglutide SC (-3.8 kg vs. placebo) and the newer combination/triple agonists (tirzepatide, retatrutide, CagriSema) outperform first-generation GLP-1 RAs by a wide margin; insulin and sulfonylureas trend toward weight gain.

      Tirzepatide vs. semaglutide head-to-head (SURPASS trials): tirzepatide 15 mg produced greater A1c reduction (-2.30 vs. -1.86 percentage points) and greater weight loss (-12.4 kg vs. -6.2 kg at 40 weeks) than semaglutide 1 mg.

References

Abrahamson, M.J. "Diabetes in the Modern Era: Guidelines and Treatment Advances." Pri-Med Institute CME activity, 2026.

Buse, J.B., et al. "Prevalence of Hypercortisolism Among Patients With Difficult-to-Control Type 2 Diabetes." Diabetes Care 2025;48:1-9. https://doi.org/10.2337/dc24-2841

DeFronzo, R.A. "From the Triumvirate to the Ominous Octet." Diabetes 2009;58:773-795.

American Diabetes Association. "Standards of Care in Diabetes—2026." Diabetes Care 2026;49(Suppl. 1):S183-S215.

Frias, J., et al. "Tirzepatide versus Semaglutide Once Weekly in Patients with Type 2 Diabetes." N Engl J Med 2021;385:503-515.

NP Chronicles — Clinical education for NP students and new graduates since 2012.

Featured Post

Diabetes in 2026: The Ominous Octet Just Got a New Member

  NP CHRONICLES Clinical Deep Dive Diabetes in 2026: The Ominous Octet Just Got a New Member A CME update from Harvar...