Background: Left-truncation is an unrecorded interval between multiple sclerosis (MS) onset and initial data in observational studies. This delay may bias estimates of disease-modifying therapy (DMT) effectiveness, especially when determined by patient or disease characteristics. Objectives: To examine whether causal effect estimates of DMTs over the full disease course can be reliably derived from left-truncated registry data. Methods: We analysed data from MSBase (144 centres, 41 countries) to assess the impact of left-truncation on causal treatment effect estimates. Cox marginal structural models (MSMs) estimated hazard ratios (HRs) for relapses, disability worsening and improvement, considering left-truncation at random and not-at-random. Fixed-time truncation and multivariable adjustment were applied to remediate bias. Results: The study included 5588 patients tracked from true MS onset. The null model, without left-truncation, estimated the DMT effect on relapse risk (HR = 0.64; 95% confidence interval (CI) = 0.54-0.77). Left-truncation inflated this estimate. Shorter random truncation (1 year) produced greater bias (HR = 0.34), decreasing with longer durations (3-year HR = 0.48). Truncation not-at-random biased relapse estimates (HR = 0.37). Disability outcomes were less sensitive. Conclusion: MSMs can reliably estimate DMT effectiveness in left-truncated MS registry data, although accuracy depends on truncation mechanism and duration. Both random and not-at-random truncation impact relapse estimates. Disability outcomes appear less sensitive. Fixed-time truncation and covariate adjustment mitigated bias.
Causal effects of multiple sclerosis therapies in left-truncated registry data / Haile, D.C., Diouf, I., Ozakbas, S., Horakova, D., Havrdova, E.K., Patti, F., Eichau, S., Alroughani, R., Lugaresi, A., Tomassini, V., Prat, A., Girard, M., Terzi, M., Yamout, B., Khoury, S.J., Grammond, P., Blanco, Y., Shaygannejad, V., Foschi, M., Surcinelli, A., et al.. - In: MULTIPLE SCLEROSIS. - ISSN 1352-4585. - ELETTRONICO. - (2026), pp. 0-0. [10.1177/13524585261459943]
Causal effects of multiple sclerosis therapies in left-truncated registry data
Neri, Stefano;Amato, Maria Pia;Di Gregorio, Maria;Stuart, Elizabeth A;
2026
Abstract
Background: Left-truncation is an unrecorded interval between multiple sclerosis (MS) onset and initial data in observational studies. This delay may bias estimates of disease-modifying therapy (DMT) effectiveness, especially when determined by patient or disease characteristics. Objectives: To examine whether causal effect estimates of DMTs over the full disease course can be reliably derived from left-truncated registry data. Methods: We analysed data from MSBase (144 centres, 41 countries) to assess the impact of left-truncation on causal treatment effect estimates. Cox marginal structural models (MSMs) estimated hazard ratios (HRs) for relapses, disability worsening and improvement, considering left-truncation at random and not-at-random. Fixed-time truncation and multivariable adjustment were applied to remediate bias. Results: The study included 5588 patients tracked from true MS onset. The null model, without left-truncation, estimated the DMT effect on relapse risk (HR = 0.64; 95% confidence interval (CI) = 0.54-0.77). Left-truncation inflated this estimate. Shorter random truncation (1 year) produced greater bias (HR = 0.34), decreasing with longer durations (3-year HR = 0.48). Truncation not-at-random biased relapse estimates (HR = 0.37). Disability outcomes were less sensitive. Conclusion: MSMs can reliably estimate DMT effectiveness in left-truncated MS registry data, although accuracy depends on truncation mechanism and duration. Both random and not-at-random truncation impact relapse estimates. Disability outcomes appear less sensitive. Fixed-time truncation and covariate adjustment mitigated bias.| File | Dimensione | Formato | |
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