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Showing posts with label Depression. Show all posts
Showing posts with label Depression. Show all posts

Friday, August 21, 2026

When “Depression” Isn’t Depression: Three Medical Mimics Primary Care and NP Clinicians Miss — and How To Catch Them

 

NP CHRONICLES

Clinical Deep Dive

When “Depression” Isn’t Depression

Three medical mimics primary care and NP clinicians miss — and how to catch them

 

A PHQ-9 of 17. A tearful patient who “just doesn’t feel like myself.” It’s tempting to reach straight for an SSRI — and often that’s exactly right. But depressive syndromes are the final common pathway for a surprising number of non-psychiatric conditions, and treatment-resistant “depression” is one of the more common ways those conditions announce themselves in a primary care visit.

Jeffrey Rado, MD, MPH, DFAPA (Northwestern Feinberg School of Medicine) built a CME talk around exactly this problem, using three composite cases to walk through the medical mimics most likely to slip past a busy PCP or NP: obstructive sleep apnea, vitamin B12 deficiency, and medication-induced mood change. Below is a working summary of that talk, reorganized case-by-case with the diagnostic reasoning made explicit — useful both for your own practice and for board review.

Case 1: Brenda — “Treatment-Resistant” Depression

Case from Practice

Brenda, 51, presents with 6 months of low mood, anhedonia, exhaustion, non-restorative sleep, and irritability. Sertraline was titrated from 50 mg to 100 mg six weeks ago with little benefit; an earlier duloxetine trial also failed. She has occasional stress headaches, low libido, and nocturia she attributes to evening fluids.

PMHx: hypertension, seasonal allergies. Mother has hypothyroidism and depression. Vitals: BP 141/82, BMI 34.3. PHQ-9 = 17.

 

Brenda’s CMP, CBC, TSH, and B12 all come back normal, and her husband confirms no snoring and 8–9 hours of sleep a night — on paper, nothing points to a sleep disorder. Her STOP-BANG score is 4 (intermediate risk). A follow-up call adds occasional palpitations. Sleep medicine is consulted anyway, and polysomnography confirms obstructive sleep apnea. Four months after starting CPAP, her PHQ-9 drops from 17 to 6.

Why This Gets Missed

The classic OSA triad — snoring, witnessed apneas, daytime sleepiness — is a poor fit for how the disease actually presents in women. Women with OSA more often report fatigue, insomnia, morning headaches, and mood symptoms, and the absence of snoring doesn’t rule the diagnosis out: upper airway resistance syndrome can fragment sleep and produce depressive symptoms without any audible snoring at all.

Clinically, OSA reproduces the depression phenotype through several overlapping mechanisms:

     Low mood and anhedonia from sleep fragmentation and intermittent hypoxia disrupting mood-regulating circuits

     Fatigue and daytime sleepiness misread as psychomotor retardation or neurovegetative symptoms

     Impaired concentration and memory from nocturnal hypoxemia — the “brain fog” of depression

     Irritability and emotional dysregulation from impaired prefrontal function

     Nocturia — often chalked up to fluid intake, but can reflect atrial natriuretic peptide release triggered by intrathoracic pressure swings during obstructive events

Worth remembering: several medications commonly prescribed alongside a depression diagnosis can worsen OSA and quietly perpetuate it. Benzodiazepines and opioids relax upper airway muscles and blunt respiratory drive; atypical antipsychotics (olanzapine, quetiapine, risperidone) worsen OSA through weight gain and a separate, weight-independent effect on upper airway muscle tone. Sedating antihistamines and low-dose antipsychotics used for sleep can mask the very symptoms — fragmented sleep, daytime sleepiness — that would otherwise prompt an OSA work-up.

Clinical Pearls

     Treatment-resistant depression after two adequate antidepressant trials should always prompt consideration of undiagnosed OSA, regardless of body habitus or reported sleep complaints.

     A normal STOP-BANG or a negative snoring history does not exclude OSA, particularly in women.

     Bruxism, nocturia, GERD, and palpitations are underrecognized nocturnal clues to sleep-disordered breathing.

Case 2: Ken — New-Onset Depression at 68

Case from Practice

Ken, 68, has type 2 diabetes and GERD and presents with three months of sad mood, fatigue, anhedonia, increasing forgetfulness, irritability, and a passive death wish — with no prior psychiatric history. He reports foot tingling treated with gabapentin and nearly fell two months ago. He has followed a plant-based diet for 2–3 years to help control his diabetes.

Current meds: pantoprazole, metformin, sitagliptin, gabapentin.

 

CMP, CBC, and TSH are unremarkable. Sertraline, titrated from 50 mg to 100 mg, produces minimal benefit. A vitamin B12 level comes back at 201 pg/mL — borderline low. After repletion, Ken reports his depression starting to lift at follow-up.

Why This Gets Missed

Depression is the most common psychiatric manifestation of B12 deficiency, driven by disrupted one-carbon metabolism and impaired neurotransmitter synthesis: B12 is a required cofactor in converting homocysteine to methionine, which forms SAMe — itself required for synthesizing dopamine, serotonin, and norepinephrine. Anxiety tracks with low B12 levels as well. Psychiatric symptoms from B12 deficiency can precede the textbook findings of anemia and spinal cord disease, which is exactly why relying on a normal CBC to “clear” B12 status is a mistake.

Ken’s case stacks three separate risk factors for deficiency in one patient:

     Metformin use — the ADA recommends periodic B12 assessment, since metformin interferes with B12 absorption

     Chronic PPI use — gastric acid suppression reduces B12 absorption from food

     A plant-based diet — B12 is found almost exclusively in animal products

Guidelines back up routinely checking B12: an NEJM review on primary care depression recommends B12 and folate as initial screening labs for any patient with depressive symptoms, and the 2022 VA/DoD Clinical Practice Guideline for major depressive disorder specifically calls for ruling out B12 deficiency as a secondary cause. Yield is highest in patients age 75 and up, those on metformin for more than four months or a PPI/H2 blocker for more than a year, those on vegan or strict vegetarian diets, and anyone with neuropsychiatric features beyond mood — paresthesias, cognitive change, gait disturbance, or fatigue out of proportion to the degree of depression.

One nuance worth flagging for patients and colleagues alike: repletion doesn’t work on a single timeline. Mood and energy typically improve within weeks; cognition takes weeks to months; neuropathy takes months and, if repletion is delayed, may not fully resolve.

Clinical Pearls

     New-onset depression in an older adult, with any cognitive or neurological symptoms, or that isn’t responding to an antidepressant, warrants a B12 check.

     Metformin, PPIs/H2 blockers, and plant-based diets are the three risk factors to actively screen for.

     A “normal” B12 in the 200s pg/mL range is borderline, not reassuring — correlate with symptoms before writing it off.

Case 3: Ashley — Depression That Tracks a New Prescription

Case from Practice

Ashley, 41, has major depression well controlled on escitalopram 10 mg for 18 months and is functioning well, working full time. She was hospitalized at an outside facility for seizures two months ago and started on new medications she can’t name. The hospitalization and new diagnosis have been “very hard” on her — she is withdrawing socially, wondering if she’s getting depressed again, and not enjoying time with her kids.

Her husband reports she was coping reasonably well until she became more irritable and down following a dose increase of the new medication two weeks ago. A nurse reaches Ashley at home and learns the new medication is levetiracetam.

Why This Gets Missed

It’s easy — and reasonable — to read Ashley’s mood change as a psychological reaction to a frightening new diagnosis. But the timeline is the tell: symptoms tracked a specific medication start and then worsened with a dose increase two weeks later. That temporal and dose-response relationship, on top of new irritability and emotional volatility in a previously stable patient, points toward levetiracetam-induced mood change rather than a purely reactive depression.

Levetiracetam binds synaptic vesicle protein 2A (SV2A), decreasing glutamate release; the resulting blunted limbic synaptic signaling is thought to lower dopamine and serotonin tone — a plausible mechanism for the irritability and depressive symptoms seen in a subset of patients. Risk is highest with a history of depression, anxiety, or emotional lability; prior antidepressant use or psychiatric hospitalization; temporal lobe epilepsy; traumatic brain injury or a structural brain lesion; rapid titration to full dose (under two weeks); high dosing (1000–1500 mg BID); and concurrent CNS-active medications. Early warning signs — new irritability, emotional reactivity, sleep disturbance, social withdrawal, subtle mood flattening — typically surface in the first one to three weeks and, if present, are highly predictive of the depression that follows.

Levetiracetam is far from the only offender. Interferon-alfa, interleukin-2, and high-dose corticosteroids (especially above 40 mg prednisone) carry the highest risk of medication-induced mood change; topiramate and phenobarbital sit alongside levetiracetam in that same tier. Combined oral contraceptives, GnRH analogs like leuprolide, and montelukast carry moderate risk; beta blockers and isotretinoin remain controversial. Even medications prescribed to manage sleep and anxiety — gabapentin and pregabalin (long-term depression and suicidality risk), dual orexin receptor antagonists, and benzodiazepines — can move the needle on mood. As Rado puts it, essentially any psychotropic carries some risk.

A Necessary Nuance

No medication cleanly causes classic major depressive disorder — what these drugs produce are depressive syndromes layered on top of whatever is already driving risk. In Ashley’s case, the underlying illness (new-onset epilepsy, the trauma of a first seizure and hospitalization) is a plausible contributor in its own right, roughly as strong a driver as the medication itself. Before attributing a mood change entirely to a drug, walk through four questions: Does the timing fit (onset within weeks to months of the start)? Is there a dose-response relationship? Does it improve off the drug and recur on re-exposure? And is there a competing explanation — illness burden, sleep disruption, inflammation — that fits just as well?

Clinical Bottom Line

Clinical Bottom Line

     Treatment-resistant depression deserves a STOP-BANG and a low threshold for sleep medicine referral — don’t let a negative snoring history or a lean body habitus close that door, especially in women.

     Check vitamin B12 in any patient with new-onset or atypical depression, particularly those 75 and older, on metformin or a PPI/H2 blocker long-term, following a plant-based diet, or with neuropsychiatric symptoms beyond mood.

     Always ask about new medications and dosage changes at every visit — timing, dose-response, and rechallenge history are the fastest ways to separate a medication effect from a primary mood disorder.

 

Board Prep: What to Remember

A few facts from this topic that tend to show up on certification and recertification exams:

1.    In women, OSA more often presents with fatigue, insomnia, morning headaches, and mood symptoms than the classic snoring/witnessed-apnea/daytime-sleepiness triad.

2.    Metformin (via B12 malabsorption), chronic PPI/H2 blocker use, and vegan/vegetarian diets are the three classic risk factors for B12 deficiency worth screening for in a depressed patient.

3.    B12 repletion improves mood/energy within weeks, cognition within weeks to months, and neuropathy over months — and neuropathy may only partially resolve if treatment is delayed.

4.    Highest-risk medications for drug-induced depression: interferon-alfa, interleukin-2, high-dose corticosteroids (>40 mg prednisone), and the antiepileptics levetiracetam, topiramate, and phenobarbital.

5.    Benzodiazepines and opioids relax upper airway musculature and suppress respiratory drive — both worsen OSA and should be minimized when OSA is a concern.

References

Rado J. Medical Mimics in Psychiatry: Pitfalls for PCPs. Northwestern Medicine / Northwestern Feinberg School of Medicine CME presentation, developed in partnership with Pri-Med Institute.

Benca R. (2023), as cited in Rado, Medical Mimics in Psychiatry.

Veasey S. (2019); Khazaie H. (2018), as cited in Rado, Medical Mimics in Psychiatry.

Robertson (2024), as cited in Rado, Medical Mimics in Psychiatry.

Sahu (2022); Cavalcante-Silva (2025), as cited in Rado, Medical Mimics in Psychiatry.

Josephson C. (2019), as cited in Rado, Medical Mimics in Psychiatry.

This post summarizes and reorganizes third-party CME content for educational purposes; it is not a substitute for the original presentation or for individualized clinical judgment.

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When “Depression” Isn’t Depression: Three Medical Mimics Primary Care and NP Clinicians Miss — and How To Catch Them

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