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Botox for Chronic Migraine: What 479 Real-World Patients Show

Posted on September 08 2026, By: Cerebral Torque

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Botox for Chronic Migraine: What 479 Real-World Patients Show

Nearly 6 fewer headache days a month, and a prediction model that could not tell in advance who would respond.
Read the Study

What the Study Did

OnabotulinumtoxinA has been licensed for chronic migraine since 2010, and most of what is known about how well it works comes from the pivotal trials that got it there. Trial populations are selected, monitored and supported in ways that clinic populations are not, so the question of how the treatment performs in ordinary practice keeps coming up.

A new study in Therapeutic Advances in Neurological Disorders reports on 479 patients treated across 12 tertiary headache centres in Poland, all within the national reimbursement programme. It is a retrospective observational cohort rather than a trial, which limits what can be concluded, but the size makes it one of the larger real-world datasets on this treatment.

The Cohort

479 patients, 88.9% female, mean age 43.6 years. Everyone had chronic migraine and had already failed at least two oral preventive medications. All received 195 units following the PREEMPT injection protocol, and effectiveness was assessed after three treatment cycles, roughly nine months. Baseline burden was high: a mean of 19.1 monthly headache days.

479
Patients across 12 headache centres
All had failed at least two prior oral preventives
5.9
Mean reduction in monthly headache days
From a baseline of 19.1 days, standard deviation 5.4
27.3%
Achieved a 50% or greater reduction
A further 23.2% were partial responders at 25 to 49%

Results at 9 Months

Monthly headache days fell by a mean of 5.9 days, from 19.1 at baseline. For someone starting at 19 headache days a month, that is a move to around 13.

Disability scores moved further than the day count alone suggests. MIDAS improved by a mean of 52.7 points, with a standard deviation of 48.3. The spread is wide. A standard deviation of 48.3 around a mean of 52.7 means individual experiences differed a great deal, with some patients improving substantially and others barely at all.

Outcomes After Three Treatment Cycles
Baseline monthly headache days 19.1, standard deviation 4.4
Mean reduction 5.9 days, standard deviation 5.4
MIDAS improvement 52.7 points, standard deviation 48.3
50% or greater responders 27.3%
Partial responders, 25 to 49% 23.2%
Medication overuse resolved 41.6% of those who had it at baseline

Who Counted as a Responder

The headline response figure depends entirely on where the line is drawn, and this study reports two lines rather than one.

At the conventional threshold of a 50% or greater reduction in monthly headache days, 27.3% responded. Adding the partial responders, who achieved a 25 to 49% reduction, brings the total to just over half the cohort at 50.5%.

About the 50% Threshold

A 50% cut is the standard endpoint in migraine trials because it is a clear, agreed line. It is also arbitrary. Someone going from 20 headache days to 11 counts as a non-responder, while someone going from 20 to 10 counts as a responder, and the difference between them is one day. For chronic migraine specifically, where baseline burden is very high, a 25 to 49% reduction can still mean several fewer disabling days each month. Reporting both thresholds gives a fuller picture than either alone.

Medication Overuse

Of the patients who met criteria for medication-overuse headache at baseline, 41.6% no longer met those criteria after treatment.

This matters because medication overuse and chronic migraine tend to reinforce each other, and the traditional approach involved withdrawing the overused drug before or alongside starting a preventive. The 2026 AAN and AHS prevention guideline reports that evidence now favours starting a preventive on its own as being about as effective as adding a withdrawal programme, with the important exception of opioids and barbiturates. This cohort is consistent with that pattern: treating the migraine reduced the medication overuse in a substantial minority without withdrawal being the primary intervention.

The Prediction Model

The research team tried to work out who would respond, using the clinical characteristics available before treatment. Two factors came out statistically significant, both associated with a poorer response.

Predictors of Poorer Response
Family history of migraine OR 0.55, 95% CI 0.36 to 0.84, p = 0.005
Four or more prior preventive failures OR 0.61, 95% CI 0.37 to 0.98, p = 0.04
Model discrimination AUC 0.605, cross-validated AUC 0.54

The third row qualifies the first two.

What AUC Measures

The area under the curve describes how well a model separates two groups. An AUC of 1.0 is perfect separation. An AUC of 0.5 is what you get from a coin toss. Cross-validation tests the model on data it was not built from, which is the harder and more honest test, since a model can fit its own training data well and still fail on anyone new.

This model reached 0.605 on its own data and 0.54 under cross-validation. A value of 0.54 is close enough to chance that the model has essentially no ability to tell in advance which individual patient will respond.

Both findings can hold at once. Family history and multiple prior failures do shift the odds across a group of 479 people, and knowing them still does not let a clinician predict the outcome for the person in front of them. The authors state this directly, concluding that standard clinical phenotypes alone are insufficient to predict outcomes with this treatment.

Why These Numbers Run Lower

A 27.3% response rate sits below what the pivotal trials reported, and the study is explicit about why that comparison is not like for like.

Entry to the Polish reimbursement programme required documented failure of at least two prior oral preventives, and the treatment was delivered at tertiary headache centres, which see the harder cases. The cohort is therefore more refractory than a typical trial population by construction. The authors describe the setting as a strict programmatic framework and frame their findings as reflecting the challenge of managing highly refractory patients within it.

Other Limits

  • Retrospective and uncontrolled. There is no placebo arm, so regression to the mean and natural fluctuation cannot be separated from treatment effect.
  • Nine months, three cycles. Some patients respond later than three cycles, and this design cannot capture them.
  • Single healthcare system. Access rules, referral patterns and prescribing culture in Poland shape who ends up in the cohort.
  • No comparison group on other preventives. The study cannot say how these patients would have fared on an alternative.

What It Means in Practice

For someone considering or already receiving this treatment, a few things follow from the data.

Reasonable Reading
Expected benefit Around 6 fewer headache days a month on average, in a group averaging 19 at baseline
Odds of a large response Roughly 1 in 4 reach the 50% threshold, and about half reach at least 25%
Prior failures Having failed several preventives shifts group odds but does not rule out a good individual response
Time to judge This study assessed at three cycles. The AAN and AHS guideline recommends waiting 24 weeks before judging efficacy
Medication overuse Treatment resolved overuse in 41.6% of those who had it, without withdrawal as the lead intervention

The prediction finding has a practical edge for anyone who has been told they are unlikely to respond because of their treatment history. A model built on 479 patients, using exactly that kind of information, performed at close to chance when tested properly. Group-level associations of this strength do not translate into individual forecasts.

Key Takeaways

What to Remember
Main finding Mean reduction of 5.9 monthly headache days from a baseline of 19.1, over nine months
Response rates 27.3% at the 50% threshold, 23.2% more at 25 to 49%
Medication overuse Resolved in 41.6% of those affected at baseline
Prediction Two significant predictors, but cross-validated AUC of 0.54, close to chance
Population More refractory than trial populations by design, all with two or more prior preventive failures
Design limit Retrospective, uncontrolled, no placebo arm, single healthcare system

The study adds a large real-world effectiveness estimate for a treatment whose reputation rests mostly on registration trials, and the estimate is lower than those trials in a population that was selected to be harder to treat.

The prediction analysis is the part that transfers beyond this treatment. Two predictors reached statistical significance across 479 people, and the same model could not forecast the outcome for an individual.

Important Medical Disclaimer

This information is for educational purposes only and should not replace professional medical advice, diagnosis, or treatment. OnabotulinumtoxinA for migraine is a prescription treatment administered by trained clinicians and is licensed for chronic migraine, not episodic migraine. Decisions about starting, continuing, or stopping it should be made with a qualified healthcare provider. Do not stop a prescribed medication without medical advice. New, sudden, or changing headache patterns, or headaches accompanied by vision loss, weakness, confusion, or fever, need prompt medical evaluation.

References

  1. Waliszewska-Prosol M, Marschollek K, Paczkowska M, et al. OnabotulinumtoxinA for chronic migraine: a real-life multicenter study of 479 patients. Therapeutic Advances in Neurological Disorders. 2026;19:17562864261476132. doi:10.1177/17562864261476132. PMID: 42662157.
  2. Potrebic S, Tanveer S, Becker WJ, et al. Pharmacologic treatment for migraine prevention in adults practice guideline recommendations: report of the AAN Guidelines Subcommittee and the American Headache Society. Neurology. 2026;107(7):e214881. doi:10.1212/WNL.0000000000214881.
  3. Dodick DW, Turkel CC, DeGryse RE, et al. OnabotulinumtoxinA for treatment of chronic migraine: pooled results from the double-blind, randomized, placebo-controlled phases of the PREEMPT clinical program. Headache. 2010;50(6):921-936. doi:10.1111/j.1526-4610.2010.01678.x.
  4. Headache Classification Committee of the International Headache Society. The International Classification of Headache Disorders, 3rd edition. Cephalalgia. 2018;38(1):1-211. doi:10.1177/0333102417738202.
  5. Stewart WF, Lipton RB, Dowson AJ, Sawyer J. Development and testing of the Migraine Disability Assessment (MIDAS) Questionnaire to assess headache-related disability. Neurology. 2001;56(6 Suppl 1):S20-S28. doi:10.1212/wnl.56.suppl_1.s20.

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