1.When NSTEMI is not coronary disease: MINOCA revealing pheochromocytoma
Shaleela Mohd Esha ; Hazwani Aziz ; Elliyyin Katiman
Journal of the ASEAN Federation of Endocrine Societies 2026;41(S1):22-
Introduction:
Pheochromocytoma is a catecholamine-secreting tumor
with diverse cardiovascular manifestations, including
myocardial infarction with non-obstructive coronary
arteries (MINOCA). We report a case of biochemically
confirmed pheochromocytoma initially presenting as
non-ST-elevation myocardial infarction (NSTEMI), later
reclassified as MINOCA.
Case:
A 62-year-old female with type 2 diabetes mellitus and
hypertension was admitted with presumed NSTEMI and
commenced on dual antiplatelet therapy. Further history
revealed recurrent presyncope associated with paroxysmal headache, palpitations, and profuse diaphoresis.
During admission, her blood pressure was markedly
labile, ranging from 75/45 to 220/122 mmHg, raising
suspicion of pheochromocytoma. Biochemical evaluation
demonstrated markedly elevated 24-hour urinary
normetanephrine of 36.19 µmol/day (reference 0–2.13)
and methoxytyramine of 3.90 µmol/day (reference 0.10–
1.79), consistent with catecholamine excess. Dedicated
adrenal computed tomography identified a 3.8-cm right
adrenal lesion with high attenuation (44 Hounsfield Unit
[HU]), arterial enhancement (119 HU), and low washout
(absolute 40%, relative 24%), without calcification or
necrosis. Electrocardiography showed sinus rhythm with
T-wave inversion in leads I, aVL, and V5–V6. Transthoracic
echocardiography demonstrated a preserved left
ventricular ejection fraction of 67% without regional wallmotion abnormalities. Coronary angiography subsequently
showed normal coronary arteries, supporting a diagnosis of
MINOCA likely secondary to pheochromocytoma-related
catecholamine excess and hypertensive crisis. Antiplatelets
were discontinued. She was commenced on α-blockade,
with additional felodipine and low-dose β-blocker for
blood pressure optimization, and subsequently underwent
successful open right adrenalectomy. Postoperatively, she
required transient inotropic support but was weaned within
36 hours.
Conclusion
Pheochromocytoma-associated MINOCA is uncommon
but important to recognize. Catecholamine surges may
cause myocardial injury through coronary vasospasm, myocardial oxygen supply-demand mismatch, and direct
catecholamine-mediated cardiotoxicity. Recognition is
crucial, as management differs fundamentally from atherosclerotic acute coronary syndrome and requires α-blockade
before β-blockade.
MINOCA
;
Non-ST Elevated Myocardial Infarction
;
Pheochromocytoma
2.Impact of a Rapid Optimization Clinic on Glycemic Control and Insulin Deintensification in Patients With Diabetes: An Early Retrospective Audit
Pang Hoy Yan ; Varuna Shashti Dhevi Marimuthu ; Amir Ridzwan Maula Mohd Nasir ; Muhammad Firdaus Ghani ; Chen Chiew Yee ; Hidayatil Alimi Keya Nordin ; Elliyyin Katiman
Journal of the ASEAN Federation of Endocrine Societies 2026;41(S1):41-42
Introduction:
Improving glycemic control while minimizing unnecessary
insulin exposure is an important goal in diabetes
management. The Rapid Optimization Clinic (ROC) was
established as a structured multidisciplinary service to
support therapy individualization, close follow-up, and
timely insulin deintensification. This audit evaluated early
changes in glycated hemoglobin A1c (HbA1c) and insulin
treatment burden following ROC care over 3 months.
Methodology:
We conducted a retrospective audit of routine clinical
data from patients with diabetes managed in the ROC at a
district hospital. Baseline and 3-month HbA1c and insulin
data were extracted from non-electronic clinic records.
Insulin dose was standardized as total daily dose (TDD)
in units/kg/day. Insulin deintensification was evaluated
primarily by change in TDD from baseline to 3 months and
by the proportion of patients who discontinued insulin
during follow-up. Paired analyses were performed for patients with complete baseline and follow-up data for
each outcome. Continuous variables are presented as mean
± standard deviation or median with interquartile range,
as appropriate. Exploratory analyses were undertaken to
assess whether available patient factors were associated
with HbA1c improvement.
Results:
Twenty-three patients were included. Paired HbA1c data
were available for 12 patients, whereas paired TDD data
were available for 21 patients. Mean HbA1c decreased
from 10.78 ± 2.59% at baseline to 8.42 ± 2.29% at 3 months,
representing a mean reduction of 2.36 percentage points
(95% confidence interval [CI] 0.09–4.62; p = 0.043). Mean TDD
decreased from 0.434 ± 0.248 to 0.286 ± 0.313 units/kg/day,
corresponding to a mean reduction of 0.148 units/kg/day
(95% CI 0.077–0.219; p <0.001). Insulin was discontinued in
9 of 21 patients (42.9%). No clear association was observed
between HbA1c improvement and age, sex, or number of
visits. Interpretation is limited by the small sample size,
reflecting the early phase of a newly established clinic.
Conclusion
In this early audit, ROC care was associated with clinically
meaningful improvement in glycemic control and
significant insulin deintensification over 3 months. These
findings support the potential role of a structured multidisciplinary optimization clinic in delivering individualized
diabetes care and facilitating safe reduction of insulin
burden.
Humans
;
Glycemic Control
;
Retrospective Studies
;
Diabetes Mellitus
;
Insulins


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