Primary Central Nervous System Vasculitis: Seeing the Invisible
For postgraduate trainees and
practicing consultants in internal medicine, neurology, and rheumatology
Dr Neeraj Manikath
KEY
POINTS
● Primary CNS vasculitis (PCNSV) is
rare (≈2.4 cases per million person-years), affects middle-aged men slightly
more than women, and always announces itself on MRI and usually in the
CSF — but almost never in the ESR, CRP, or ANCA.
● Angiographic "beading"
is a clinical honey trap: reversible cerebral vasoconstriction syndrome
(RCVS) looks identical on catheter angiography. The angiogram alone can no
longer make this diagnosis.
● The two most important exclusion
diagnoses — intravascular lymphoma and infection — can be
transiently masked by steroids. Biopsy before you immunosuppress, whenever the
patient allows.
● Modern management is stratified and
"treat-to-target": glucocorticoids plus cyclophosphamide for
severe disease, plus mycophenolate mofetil for less severe disease, with
18–24 months of maintenance.
● Roughly 80% achieve remission today;
relapse (~25–30%) is the rule to plan for, not the exception.
Abstract
Primary central nervous system
vasculitis (PCNSV) — historically called primary angiitis of the CNS (PACNS) —
is an inflammatory, vasculitic disease confined to the brain, spinal cord, and
leptomeninges, with no systemic involvement. It is simultaneously one of the
most feared and most over-diagnosed conditions in neurology. This review
synthesises the contemporary evidence base for the general physician: a
clinically distilled pathophysiology, the bedside observations that separate
the great from the good, the mimics that kill (both from the disease and from
its treatment), a practical diagnostic algorithm, and a stratified,
target-driven management framework with explicit escalation thresholds. A
mnemonic and summary tables are provided for the ward.
1. Introduction: The Tuesday That Teaches
Let me begin with a woman I have
never fully forgotten.
Mrs. KV, 58, a
schoolteacher, arrives with ten weeks of "fog". Word-finding
difficulty first noticed by her students, then episodic throbbing headaches,
then — three days ago — two witnessed focal seizures affecting the right arm.
Her husband insists she is "not herself": irritable, slow,
occasionally losing the thread of a sentence.
Her examination is disarmingly
benign: mild anomia, subtle right pronator drift, nothing else. No fever. No
rash, no arthritis, no weight loss, no night sweats. ESR 8 mm/h. CRP 2 mg/L.
ANCA negative. MRI shows bilateral cortical–subcortical FLAIR lesions, a
subacute right frontal infarct, a tiny old left occipital lacune, and faint
leptomeningeal enhancement. CSF: 14 lymphocytes/µL, protein 0.88 g/L.
Catheter angiography: elegant "beading" of the right M2 and left A2
segments.
The ward team, energised,
declares: "PACNS — start 1 g methylprednisolone."
Pause. That same
angiogram, in a 42-year-old woman six weeks postpartum with thunderclap
headaches and near-normal CSF, would be RCVS. That same MRI-and-decline
picture, in a 66-year-old man with a modestly elevated LDH, might be intravascular
lymphoma — a malignancy that melts transiently on steroids and kills when
we relax. The angiogram is the least trustworthy witness in the courtroom; it
testifies with equal eloquence for three different defendants.
Mrs. KV had a navigated brain
biopsy (before the pulse steroids — remember that sequencing): granulomatous
vasculitis. She received steroids plus cyclophosphamide and returned to her
classroom over six months, with a residual naming deficit.
Now the epidemiological hook: in
Olmsted County, Minnesota — the world's most carefully counted population —
PCNSV occurs at ~2.4 cases per million person-years [3]. That means a
busy general physician may meet this disease once in an entire career.
But the patient who is almost mislabelled with it — or whose true PCNSV
is dismissed as "vascular dementia" or "psychiatric" —
walks past your clinic every single week.
That asymmetry — a disease you
will rarely see, and rarely be wrong about at the right time — is why this
review exists.
2. Pathophysiology: Only What Changes Your
Decisions
You do not need the cytokine
biology to manage PCNSV; you need four consequences of it.
1. Vessel size determines
everything diagnostic. PCNSV inflames small and medium-sized
leptomeningeal and parenchymal arteries. Medium vessels (M1, A1, basilar)
are visible to catheter angiography; arterioles under ~200 µm are not. This
single fact explains why ~40–60% of biopsy-proven cases have a normal
angiogram [2,7] — "angiography-negative PCNSV" is small-vessel
disease, not imagination.
2. The inflammation is patchy
— "skip lesions." Diseased segments alternate with normal vessel.
This is why brain biopsy has a sensitivity of only ~50–75% even in
expert hands [6,8]: the surgeon can miss the lesion like a police search
missing one house on the street. Target the enhancing lesion and include
leptomeninges.
3. The inflammation is
confined — and quiet — systemically. There is no circulating inflammatory
storm, which is why constitutional symptoms are mild or absent and ESR/CRP
are usually normal [2]. A normal CRP in a suspected vasculitis is not a red
flag against the diagnosis here — it is characteristic. The flip side:
fever, weight loss, and a CRP in the hundreds should redirect you toward
infection or systemic vasculitis.
4. Histology does not dictate
therapy. Granulomatous (~50–60%), lymphocytic, and necrotizing patterns
coexist and do not reliably stratify prognosis or treatment [4,5]. What does
matter is what the pathologist finds instead of vasculitis — lymphoma,
infection, amyloid — which is why the biopsy's greatest value is often what it excludes.
One cousin deserves separate
billing: amyloid-β–related angiitis (ABRA) — CAA with a superimposed
vasculitic inflammatory response, seen in older patients (more often women),
with rapid cognitive decline and lobar haemorrhagic markers. Mechanistically it
is an immune reaction to vascular amyloid, and it behaves differently from
PCNSV (more on it in Section 5).
3. Clinical Pearls 🪙 —
Counterintuitive, High-Yield, Non-Negotiable
🪙 Pearl
1 — The thunderclap veto. PCNSV headache is subacute, progressive, dull,
and "confusing" — it is not thunderclap. A thunderclap
headache with angiographic beading and near-normal CSF is RCVS until proven
otherwise [9,10]. This one sentence prevents more iatrogenic harm in this
field than any other.
🪙 Pearl
2 — Normal ESR/CRP does not reassure you away from PCNSV. This is
the opposite of giant cell arteritis logic. In the Mayo cohort, mean ESR was
unremarkable [2]. If systemic markers are high, your prior should shift away
from PCNSV toward infection or systemic vasculitis.
🪙 Pearl
3 — The gender inversion. Most autoimmune diseases prefer women; PCNSV
mildly prefers men (~2:1 in many series), in the sixth decade. A
middle-aged man with months of cognitive slippage and multifocal infarcts of different
ages on MRI deserves this diagnosis on your differential.
🪙 Pearl
4 — A normal MRI is a near-perfect veto. MRI is abnormal in ~97–100% of cases
[2,5]. Normal MRI + normal CSF ≈ PCNSV excluded. Stop, rethink, and save
the patient from speculative immunosuppression.
🪙 Pearl
5 — Strokes of different ages. The signature MRI clue is infarcts in
multiple vascular territories at different stages — an acute DWI-bright
lesion beside a chronic FLAIR cavitary one. Monophasic large-artery
atherosclerosis doesn't do this; vasculitis and cardioembolism do.
🪙 Pearl
6 — PCNSV rarely bleeds. Lobar haemorrhage or numerous cortical microbleeds
point to CAA/ABRA, not classical PCNSV. Subarachnoid blood on convexity,
again, whispers RCVS [9,10].
🪙 Pearl
7 — Look at the skin, the joints, the urine. Rash, arthritis, haematuria,
or mononeuritis multiplex means the vasculitis is not
"primary" to the CNS. Systemic involvement reclassifies everything —
ANCA vasculitis, Behçet, PAN — with different treatments.
🪙 Pearl
8 — The tempo test. PCNSV evolves over weeks to months. Acute
catastrophic stroke-in-evolution in a young patient is more likely arterial
dissection, embolism, thrombophilia, or RCVS-related late ischemia. PCNSV is a
marathoner, not a sprinter.
4. Oysters 🦪 — The Hidden Gems Most
Clinicians Miss
🦪 Oyster
1 — The tumour that isn't a tumour. A striking minority of PCNSV presents
as a mass lesion — enhancing, oedematous, biopsy-planned as
"neoplasm" [5]. Neuropathology then reveals vasculitis. The critical
corollary: if the pre-biopsy differential includes lymphoma, withhold
steroids until tissue is obtained — glucocorticoids can render lymphoma
undiagnosable (the "ghost tumour") while transiently shrinking it.
🦪 Oyster
2 — Intravascular lymphoma (IVL): the great imitator. Subacute cognitive
decline, multifocal infarcts/lesions, leptomeningeal enhancement, modest CSF
pleocytosis — IVL mirrors PCNSV nearly perfectly. Clues: age >60, elevated LDH,
skin nodules, anaemia/thrombocytopenia. IVL responds transiently to steroids,
inducing false comfort, then explodes. If the picture is atypical or steroid
response is partial/relapsing, re-biopsy and search the skin before
concluding PCNSV.
🦪 Oyster
3 — Steroids cause the syndrome they are being given for. High-dose
glucocorticoids are themselves a trigger for RCVS [12]. A patient
"treated for vasculitis" who develops a thunderclap headache on day 4
of methylprednisolone has not necessarily relapsed — you may have created
a vasoconstriction syndrome. Do not reflexively escalate immunosuppression;
re-image and re-think.
🦪 Oyster
4 — ABRA, the common cousin. In an older woman with rapid cognitive
decline, lobar microbleeds, leptomeningeal enhancement, and vasculitic
angiography — think amyloid-β–related angiitis [4,5]. It is
steroid-responsive more often than classical PCNSV, cyclophosphamide is less
routinely needed, and anticoagulation is hazardous given CAA. You will
not think of it unless you know it.
🦪 Oyster
5 — The pharmacy history. Systematically ask about SSRIs, triptans,
decongestants (phenylephrine), cocaine, amphetamines, heavy cannabis, and the
postpartum state — all RCVS triggers [9,10]. Two minutes of medication
reconciliation can prevent six weeks of immunosuppression.
🦪 Oyster
6 — VZV vasculopathy in the elderly. A shingle-free elderly patient can
still have varicella-zoster vasculopathy — small-vessel strokes, basal
ganglia predilection, mimicry of PCNSV — weeks after the rash (which the
patient and family may have forgotten). CSF VZV PCR and VZV IgG (with
parallel serum) should be routine in the workup. Treating
"vasculitis" with steroids alone in VZV vasculopathy is harmful;
acyclovir is the answer.
🦪 Oyster
7 — Susac's syndrome hides in the eye and ear. Encephalopathy plus branch
retinal artery occlusions (seen only on fluorescein angiography) and sensorineural
hearing loss, with spherical "snowball" lesions in the central
corpus callosum. Steroid-responsive but requires IVIG/rituximab thinking.
Fundoscopy and audiometry are part of the "vasculitis" examination,
not optional extras.
🦪 Oyster
8 — Angiogram-negative is not vasculitis-negative. If clinical suspicion
remains high after a normal DSA, the disease is small-vessel by definition [7].
Do not stop at the angiogram; biopsy. Conversely, if the angiogram is
positive, the CSF normal, and the story thunderclap — stop before the
biopsy and diagnose RCVS.
🦪 Oyster
9 — "Probable angiographic PACNS" is a concept we have retired.
Historical series contain many "probable" cases that later proved to
be RCVS, atherosclerotic vasculopathy, or infection. Modern practice demands histology,
or a compelling non-invasive picture plus rigorous mimic exclusion — and
time as an investigator.
🦪 Oyster
10 — Remote radiation, remote cocaine, remote everything. Radiotherapy
decades ago causes a slowly progressive vasculopathy indistinguishable on
angiography from PCNSV. Ask the question; read the old records.
5. Diagnostic Nuances: What Separates Good
from Great
5.1 The history — five questions that matter
more than the antibody panel
1. Tempo: weeks-to-months decline (PCNSV) vs.
thunderclap (RCVS) vs. stuttering over years (CADASIL, atherosclerosis)?
2. Headache character: dull/progressive (PCNSV) vs.
thunderclap in showers (RCVS)?
3. Constitutional symptoms: their absence
supports PCNSV; fever/weight loss argues for infection or systemic disease.
4. Drug and obstetric history: vasoactive triggers,
postpartum status, remote radiation.
5. The family history: early strokes, dementia,
migraine — CADASIL (anterior temporal pole lesions, NOTCH3), Fabry, moyamoya.
5.2 The examination — three things beyond the
neuro screen
● Fundoscopy ± fluorescein
angiography: branch retinal artery occlusions → Susac; retinal vasculitis →
Behçet or systemic disease (both argue against PCNSV).
● Hearing: unexplained SNHL →
Susac.
● The "systemic sweep":
skin, nails (splinter haemorrhages → endocarditis), joints, urine dipstick,
pulses. PCNSV is silent outside the neuraxis.
5.3 The CSF — a gatekeeper, not a formality
Abnormal in ~90% of cases
[2]: mild lymphocytic pleocytosis (usually <50 cells/µL) and protein
elevation (usually <1.5 g/L). Oligoclonal bands may appear — do not
anchor on multiple sclerosis. A striking neutrophilic pleocytosis or protein
>2.5 g/L should make you hunt for infection. CSF plus MRI both normal =
PCNSV effectively excluded; this combination is the single most useful
negative test in the field.
5.4 The MRI — read it yourself
You are looking for: bilateral,
multifocal, supratentorial, cortical and subcortical lesions; DWI infarcts
of differing ages; deep grey matter involvement; leptomeningeal
enhancement (~30%); and occasionally mass-like lesions. Lobar microbleeds
(SWI/T2*) reorient you to CAA/ABRA. Diffuse white matter disease in a younger
patient with migraine/family history is CADASIL territory.
5.5 The angiogram — handle with gloves
Catheter DSA remains more
sensitive than CTA/MRA for beading, but its specificity for vasculitis is
poor (~30%) [4,9,11]. RCVS, atherosclerosis, infection, and even technical
artefact produce "beading." If you must interpret: beading in multiple
vessels/territories with a compatible MRI and CSF raises the
posterior probability; in isolation, it proves nothing. A high-quality 6-vessel
3D rotational study by an experienced neuroradiologist is worth the
logistics.
5.6 Vessel-wall MRI — the promising adjutant
High-resolution intracranial
vessel-wall MRI (pre- and post-contrast, dedicated protocols) can show multifocal,
circumferential, often nodular wall enhancement in PCNSV, versus eccentric
enhancement in atherosclerosis [13]. Caution: early RCVS can also enhance the wall,
so VWMRI is adjunctive, not adjudicative — best used for pattern
recognition and, prospectively, treatment monitoring.
5.7 The biopsy — still the referee
Indications: suspicion
persisting after non-invasive workup, angiogram-negative disease, diagnostic
uncertainty where lymphoma/infection are live possibilities, or before
committing to long-term immunosuppression. Target cortex + leptomeninges
at/near an enhancing lesion (stereotactic navigation helps). Sensitivity
~50–75%, specificity high; serious complication rates in modern series are low
(1–2%, up to ~6% historically) [6,8]. Tell the pathologist about steroid
exposure — treated lymphoma and partially treated vasculitis are pathologic
mirages.
5.8 The mimic showdown
|
Feature |
PCNSV |
RCVS |
ABRA |
Intravascular lymphoma |
Neurosarcoid |
VZV/TB vasculopathy |
|
Typical patient |
Man ~50s |
Woman ~40s; postpartum/triggers |
Woman ~65+ |
Man/woman ~65+ |
Any adult |
Elderly / immunosuppressed |
|
Headache |
Dull, progressive |
Thunderclap, recurrent |
Variable |
Variable |
± chronic meningitic |
Variable |
|
Tempo |
Weeks–months |
Peaks ~3 wks; reverses by 3 mo |
Months (fast) |
Weeks–months |
Months–years |
Weeks |
|
CSF |
Lymphocytes <50, protein <1.5 |
Normal/mild |
Abnormal |
Abnormal; LDH high |
Lymphocytes, protein high |
PCR/serology diagnostic |
|
MRI signature |
Multifocal infarcts of different ages, leptomeningeal
enhancement |
Convexity SAH, PRES, watershed infarcts late |
Lobar microbleeds, CAA |
Multifocal lesions, enhancement |
Basal leptomeningeal, cranial nerves, spinal cord |
Basal ganglia (VZV); basal meninges + hydrocephalus
(TB) |
|
DSA |
Beading ± normal |
Beading, reversible |
Beading ± normal |
Often normal |
Often normal |
Beading, progressive |
|
The tell-tale |
Biopsy: vasculitis, no amyloid/infection |
8–12-week reversibility; triggers |
Amyloid on biopsy |
LDH, sIL-2R; CD20 on tissue |
ACE, chest CT, extraneural signs |
CSF PCR/IGG/AFB |
|
Fatal mistake |
Over-diagnosing from DSA |
Starting steroids |
Anticoagulating CAA |
"Treating" with steroids and relaxing |
Steroids without infection screen |
Steroids alone |
6. State of the Art: What Has Actually Changed
Practice
1. The angiogram-only
diagnosis is dead. The historical category of "probable PACNS" —
diagnosed on angiography alone — has been dismantled by cohorts showing that
most such patients have RCVS, atherosclerotic vasculopathy, or other conditions
[4,9,10,11]. Modern diagnosis requires clinical + CSF + imaging coherence,
with histology as the gold standard when feasible.
2. Treat-to-target is the new
standard. Salvarani and colleagues demonstrated that a structured strategy
— glucocorticoids plus cyclophosphamide for severe disease, plus mycophenolate
mofetil for less severe disease — achieved remission in ~80% of
patients, with relapse in ~25–30% and acceptable toxicity [15]. Define the
target (neurological stability/improvement, objective mRS and imaging) and
document it.
3. Mycophenolate mofetil
entered the algorithm. The Mayo group's MMF experience established steroids
+ MMF as a legitimate induction choice for less severe disease, sparing
cyclophosphamide's toxicity [14].
4. Rituximab is knocking.
Small series and expert practice now deploy rituximab for refractory or
relapsing disease — a logical CD20 approach (and one that would also cover IVL
if the diagnosis were wrong). No randomised data; enthusiasm is tempered by
evidence.
5. Steroid-associated RCVS
changed early decision-making. Singhal's analyses showed glucocorticoids
are not only ineffective in RCVS but associated with its development and
prolongation [12] — reshaping the "just give steroids while we
wait" reflex.
6. Vessel-wall MRI matured
from novelty to standardised tool [13], increasingly used for baseline
characterisation and follow-up — though it still cannot reliably separate early
RCVS from PCNSV.
7. Honest frontier: there
are no randomised trials in adult PCNSV, and none are likely (numbers
preclude them). International registries and consensus statements are
consolidating practice. Anecdotal JAK-inhibitor and cytokine-directed reports
exist; treat them as horizons, not standards.
7. Management Intricacies: Drugs, Doses,
Sequencing, Pitfalls
7.1 First, stratify severity
● Severe: progressive
encephalopathy, disabling or multifocal deficits, strokes in evolution,
brainstem/cord involvement, or biopsy-proven necrotizing disease → pulse
methylprednisolone + cyclophosphamide.
● Less severe: stable deficits,
isolated cognitive change, small-vessel pattern without progression → glucocorticoids
+ mycophenolate [14,15].
● Diagnostic limbo (suspected RCVS
or unproven): no immunosuppression until the picture resolves or
tissue is obtained.
7.2 The induction regimen (severe disease)
1. Methylprednisolone 1 g IV daily × 3–5 days → prednisone
1 mg/kg/day (usual maximum 60–80 mg), tapered over 4–6 months
(roughly halve every 2–4 weeks once improving).
2. Cyclophosphamide 750 mg/m² IV monthly × 6 doses,
adjusted by the day 10–14 leukocyte nadir (reduce dose ~25% for nadir
<2,000/µL; omit if severe sepsis/cytopenias). Mesna and generous hydration
for cystitis prophylaxis; cumulative dose ~6–10 g.
3. PJP prophylaxis is non-negotiable: co-trimoxazole
480–960 mg daily (or DS three times weekly), or atovaquone/dapsone if
intolerant.
7.3 Induction for less severe disease
● Prednisone 1 mg/kg/day with
the same taper, plus MMF 2–3 g/day in two divided doses [14]. Watch GI
intolerance and cytopenias.
7.4 Maintenance — where relapses are won or
lost
● Continue MMF 2–3 g/day (or
azathioprine 2–3 mg/kg/day after TPMT/NUDT15 screening) for at least 18–24
months of remission. The treat-to-target data show relapse clustering in
the first 2–3 years [15]; maintenance is not optional homework, it is the
treatment.
● For relapse: confirm it is
relapse (new deficits + new imaging/CSF findings — and exclude infection, PML,
and steroid-associated RCVS first), then re-induce (cyclophosphamide if unused,
or rituximab) and consider extending maintenance.
7.5 Adjuncts and supportive care
● Aspirin 75–100 mg if
infarction has occurred (evidence thin, practice near-universal).
● Vascular risk control, blood
pressure, lipids, glycaemia.
● Bone protection
(calcium/vitamin D; bisphosphonate for prolonged steroids), PPI during
high-dose steroids, inactivated vaccinations (influenza, pneumococcal,
COVID-19) before or during therapy; screen HBV/HCV/HIV and IGRA before
immunosuppression and rituximab.
● Fertility discussion before the
first cyclophosphamide pulse — sperm or oocyte banking takes days you must
plan for. MMF is teratogenic: explicit contraception counselling.
7.6 Drug cheat sheet
|
Agent |
Role |
Typical dosing |
Monitor |
Pitfalls |
|
Methylprednisolone → prednisone |
Induction backbone |
1 g IV ×3–5 d → 1 mg/kg/day, taper 4–6 mo |
Glucose, BP, mood, bone |
Can trigger RCVS; masks lymphoma/infection |
|
Cyclophosphamide |
Severe induction |
750 mg/m² IV monthly ×6 |
CBC day 10–14 nadir; urinalysis |
Infertility, cystitis, malignancy, infections |
|
Mycophenolate mofetil |
Less-severe induction; maintenance |
2–3 g/day divided |
CBC, LFTs |
Teratogenicity; GI intolerance |
|
Azathioprine |
Maintenance alternative |
2–3 mg/kg/day |
TPMT/NUDT15, CBC, LFTs |
Slow onset; interaction with allopurinol |
|
Rituximab |
Refractory/relapsing |
375 mg/m² weekly ×4, or 1 g ×2 fortnightly |
Immunoglobulins, HBV screen |
Hypogammaglobulinaemia; serum-sickness reactions |
|
Co-trimoxazole |
PJP prophylaxis |
480–960 mg/day (or DS 3×/wk) |
CBC, renal |
Hyperkalaemia with ACEi |
|
Nimodipine (RCVS context) |
Headache/vasospasm |
30–60 mg q4–6h ×3–4 wks |
BP |
Hypotension; no outcome benefit proven |
⚡ The
sequencing commandment: tissue before toxicity. Outside fulminant
presentations, obtain biopsy (or at minimum a completed mimic-exclusion workup)
before the first high-dose steroid — because steroids can sterilise lymphoma,
quiet infection into illegibility, and provoke RCVS, all while appearing to "work."
8. When to Escalate, When to Watch: Decision
Thresholds with Reasoning
Escalate within hours
(pulse steroids ± cyclophosphamide, ICU):
● Rapidly progressive encephalopathy
or declining GCS, status epilepticus, new brainstem or spinal cord deficits,
crescendo strokes with DWI progression, or biopsy-proven necrotizing
vasculitis. Reasoning: here, the disease's arithmetic of irreversible
infarction beats the diagnostic purity of waiting; treat, and biopsy-informed
adjustments follow.
Escalate within days
(biopsy first if not yet done):
● Subacute progression over weeks
without fulminancy, where lymphoma or infection remains genuinely possible. Reasoning:
PCNSV deteriorates over weeks, not hours; the diagnostic window is real, and a
"failed" biopsy costs less than a missed lymphoma.
Watch — do not treat
(structured observation):
● Stable deficits, mild cognitive
complaints, normal CSF, or a picture favouring RCVS (thunderclap headaches,
triggers, near-normal CSF, convexity SAH). Repeat clinical assessment and MRI
in 2–4 weeks; repeat DSA at 8–12 weeks — complete reversal = RCVS;
persistence/progression = reconsider PCNSV [9,10,11].
The 48-hour rule:
● If a patient deteriorates within the
first days of high-dose steroids, your default is not
"under-treated vasculitis." Consider — in order — wrong diagnosis
(IVL, infection), steroid-associated RCVS, or a metabolic/infectious
complication. Re-image, repeat CSF, and re-think before stacking more
immunosuppression.
Relapse thresholds: new
or worsening neurological deficits plus new imaging or CSF abnormality,
after documented stability — ideally confirmed objectively (mRS change,
radiographic progression), because steroid-related fatigue and headache are
notorious impostors of true relapse.
9. The One-Page Summary: Mnemonic + Tables
The PACNS Mnemonic 🧠
|
Letter |
Remember |
|
P |
Persistent subacute decline + headache, Paucity
of systemic signs, PJP prophylaxis when treating |
|
A |
Angiographic beading ≠ vasculitis (RCVS!); Almost
always abnormal MRI; ANCA/ESR usually normal |
|
C |
CSF abnormal in ~90% (lymphocytes <50, protein
<1.5); CSF + MRI normal excludes; CYC + steroids for severe |
|
N |
No thunderclap headache; Necrotizing skip
lesions → biopsy sensitivity ~50–75%; Never biopsy-empty-handed —
exclude lymphoma/infection first |
|
S |
Small-vessel disease = angiogram-negative → biopsy;
Steroids can cause RCVS; Second agent always,
maintenance 18–24 months |
The five-step algorithm, compressed
1. Gate: MRI + CSF. Both normal → stop.
2. Exclude: infection, lymphoma, drugs, RCVS,
sarcoid, Susac, atherosclerosis, CADASIL (Table in §5.8).
3. Confirm: pattern coherence ± VWMRI ± DSA; biopsy
when feasible and diagnosis-changing.
4. Treat-to-target: stratify severity → GC + CYC
(severe) or GC + MMF (less severe) → maintenance ≥18–24 months.
5. Surveil: MRI at 3, 6, 12 months, then annually;
mRS + MoCA each visit; relapse = new deficits + new objective abnormality.
10. Closing Remarks
PCNSV rewards two clinician
virtues in tension: suspicion without sedation, and conviction
without hurry. The disease is rare enough that most of us will see it once;
its mimics are common enough that we will treat them wrongly many times unless
the algorithm above is second nature. Let the CSF and the MRI be your
gatekeepers, let the angiogram testify but never convict, let the biopsy speak
before the steroids deafen it — and when the diagnosis is finally earned, treat
boldly, maintain patiently, and follow with intent.
Mrs. KV is teaching again. Her
residual anomia surfaces only when she can't find "hippocampus"
mid-lesson — which, she tells me, is a fine irony to share with her students.
References
1. Calabrese LH, Mallek JA. Primary angiitis of the central
nervous system. Report of 8 new cases, review of the literature, and proposal
for diagnostic criteria. Medicine (Baltimore). 1988;67(1):20–39.
2. Salvarani C, Brown RD Jr, Calamia KT, et al. Primary
central nervous system vasculitis: analysis of 101 patients. Ann Neurol.
2007;62(5):442–451.
3. Salvarani C, Brown RD Jr, Christianson TJH, et al. Incidence
and prevalence of primary central nervous system vasculitis in Olmsted County,
Minnesota. Mayo Clin Proc. 2015;90(10):1396–1400.
4. Hajj-Ali RA, Singhal AB, Benseler S, Molloy E, Calabrese
LH. Primary angiitis of the CNS. Lancet Neurol. 2011;10(6):561–572.
5. Salvarani C, Brown RD Jr. Adult primary central nervous
system vasculitis. Lancet. 2012;380(9843):767–777.
6. Miller DV, Salvarani C, Hunder GG, et al. Biopsy findings
in primary angiitis of the central nervous system. Neurology. 2009;72(1):34–39.
7. Salvarani C, Brown RD Jr, Calamia KT, et al.
Angiography-negative primary central nervous system vasculitis: a phenomenon
involving the small vessels only? J Rheumatol. 2013;40(4):383–389.
8. de Boysson H, Zuber M, Naggara O, et al. Primary angiitis
of the central nervous system: description of the first four-tier biopsy-based
prospective cohort. Cerebrovasc Dis. 2014;37(4):299–306.
9. Ducros A. Reversible cerebral vasoconstriction syndrome.
Lancet Neurol. 2012;11(10):906–917.
10. Singhal AB, Hajj-Ali RA, Topcuoglu MA, et al. Reversible
cerebral vasoconstriction syndromes: analysis of prospective series and
proposed new diagnostic scheme. JAMA Neurol. 2019;76(1):89–101.
11. de Boysson H, Lamy C, Mas JL, et al. Primary angiitis of
the central nervous system and reversible cerebral vasoconstriction syndrome: a
comparative study. Stroke. 2015;46(6):1487–1491.
12. Singhal AB, Topcuoglu MA. Glucocorticoid-associated
reversible cerebral vasoconstriction syndrome. Neurology. 2020;95(2):152–161.
13. Mandell DM, Mossa-Basha M; American Society of
Neuroradiology Vessel Wall Imaging Study Group. Intracranial vessel wall MRI:
principles and expert consensus recommendations of the American Society of
Neuroradiology. AJNR Am J Neuroradiol. 2017;38(2):218–229.
14. Salvarani C, Brown RD Jr, Christianson TJH, et al.
Mycophenolate mofetil in primary central nervous system vasculitis. Semin
Arthritis Rheum. 2015;45(3):333–336.
15. Salvarani C, Brown RD Jr, Christianson TJH, et al.
Treat-to-target approach in primary CNS vasculitis: an outcome study. Arthritis
Rheumatol. 2018;70(10):1668–1676.
Conflicts of interest: none
declared. This review is for educational purposes; individual patient decisions
should integrate local expertise, drug licensing, and the clinical context.