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BACKGROUND: The CD40-CD40L costimulatory pathway regulates adaptive and innate immune responses and has been implicated in the pathogenesis of multiple sclerosis. Frexalimab is a second-generation anti-CD40L monoclonal antibody being evaluated for the treatment of multiple sclerosis. METHODS: In this phase 2, double-blind, randomized trial, we assigned, in a 4:4:1:1 ratio, participants with relapsing multiple sclerosis to receive 1200 mg of frexalimab administered intravenously every 4 weeks (with an 1800-mg loading dose), 300 mg of frexalimab administered subcutaneously every 2 weeks (with a 600-mg loading dose), or the matching placebos for each active treatment. The primary end point was the number of new gadolinium-enhancing T1-weighted lesions seen on magnetic resonance imaging at week 12 relative to week 8. Secondary end points included the number of new or enlarging T2-weighted lesions at week 12 relative to week 8, the total number of gadolinium-enhancing T1-weighted lesions at week 12, and safety. After 12 weeks, all the participants could receive open-label frexalimab. RESULTS: Of 166 participants screened, 129 were assigned to a trial group; 125 participants (97%) completed the 12-week double-blind period. The mean age of the participants was 36.6 years, 66% were women, and 30% had gadolinium-enhancing lesions at baseline. At week 12, the adjusted mean number of new gadolinium-enhancing T1-weighted lesions was 0.2 (95% confidence interval [CI], 0.1 to 0.4) in the group that received 1200 mg of frexalimab intravenously and 0.3 (95% CI, 0.1 to 0.6) in the group that received 300 mg of frexalimab subcutaneously, as compared with 1.4 (95% CI, 0.6 to 3.0) in the pooled placebo group. The rate ratios as compared with placebo were 0.11 (95% CI, 0.03 to 0.38) in the 1200-mg group and 0.21 (95% CI, 0.08 to 0.56) in the 300-mg group. Results for the secondary imaging end points were generally in the same direction as those for the primary analysis. The most common adverse events were coronavirus disease 2019 and headaches. CONCLUSIONS: In a phase 2 trial involving participants with multiple sclerosis, inhibition of CD40L with frexalimab had an effect that generally favored a greater reduction in the number of new gadolinium-enhancing T1-weighted lesions at week 12 as compared with placebo. Larger and longer trials are needed to determine the long-term efficacy and safety of frexalimab in persons with multiple sclerosis. (Funded by Sanofi; ClinicalTrials.gov number, NCT04879628.).
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Anticuerpos Monoclonales , Antígenos CD40 , Ligando de CD40 , Esclerosis Múltiple Recurrente-Remitente , Adulto , Femenino , Humanos , Masculino , Ligando de CD40/antagonistas & inhibidores , Ligando de CD40/inmunología , Método Doble Ciego , Gadolinio , Imagen por Resonancia Magnética , Esclerosis Múltiple/diagnóstico por imagen , Esclerosis Múltiple/tratamiento farmacológico , Esclerosis Múltiple/inmunología , Esclerosis Múltiple Recurrente-Remitente/diagnóstico por imagen , Esclerosis Múltiple Recurrente-Remitente/tratamiento farmacológico , Esclerosis Múltiple Recurrente-Remitente/inmunología , Anticuerpos Monoclonales/inmunología , Anticuerpos Monoclonales/uso terapéutico , Antígenos CD40/antagonistas & inhibidores , Antígenos CD40/inmunología , Administración Intravenosa , Inyecciones SubcutáneasRESUMEN
BACKGROUND: The double-blind TERIKIDS study demonstrated the efficacy and safety of teriflunomide. OBJECTIVE: To evaluate the efficacy, safety, and tolerability of continuous teriflunomide treatment in the TERIKIDS open-label extension. METHODS: In the double-blind period, children with relapsing MS were randomized to placebo or teriflunomide (14 mg adult-equivalent dose) for ⩽ 96 weeks. Participants received teriflunomide for ⩽ 192 weeks post-randomization in the open-label extension. RESULTS: The mean age at screening was 14.6 years. For teriflunomide/teriflunomide versus placebo/teriflunomide, estimated clinical relapse risk was reduced by 38% (hazard ratio (HR) 0.62; 95% confidence interval (CI) 0.39-0.98; p = 0.11) and numbers of gadolinium-enhancing T1 and new/enlarging T2 lesions were reduced by 43% (relative risk (RR) 0.570; 95% CI 0.33-0.98; p = 0.043) and 49% (RR 0.511; 95% CI 0.34-0.76; p = 0.001), respectively, in the combined double-blind and open-label periods. There was a trend toward reduced risk of 24-week sustained disability progression for teriflunomide/teriflunomide versus placebo/teriflunomide (HR 0.47; 95% CI 0.23-0.96). During the open-label extension, incidences of safety-related discontinuations were 4.0% (teriflunomide/teriflunomide) and 13.5% (placebo/teriflunomide), including two children who developed pancreatitis in the teriflunomide/teriflunomide group. CONCLUSION: Teriflunomide reduced the long-term risk of focal inflammatory activity, with generally manageable tolerability and no new safety signals. Further evidence would strengthen clinical efficacy findings.ClinicalTrials.gov: NCT02201108.
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Crotonatos , Hidroxibutiratos , Esclerosis Múltiple Recurrente-Remitente , Nitrilos , Toluidinas , Humanos , Toluidinas/efectos adversos , Toluidinas/uso terapéutico , Toluidinas/administración & dosificación , Toluidinas/farmacología , Crotonatos/efectos adversos , Crotonatos/uso terapéutico , Nitrilos/efectos adversos , Esclerosis Múltiple Recurrente-Remitente/tratamiento farmacológico , Femenino , Masculino , Método Doble Ciego , Adolescente , Niño , Resultado del Tratamiento , Imagen por Resonancia MagnéticaRESUMEN
BACKGROUND: The phase 3 TERIKIDS study demonstrated efficacy and manageable safety for teriflunomide versus placebo in children with relapsing multiple sclerosis (RMS). OBJECTIVE: Evaluate plasma neurofilament light chain (pNfL) concentrations in TERIKIDS. METHODS: Patients received placebo or teriflunomide (14 mg adult equivalent) for up to 96 weeks in the double-blind (DB) period. In the open-label extension (OLE), all patients received teriflunomide until up to 192 weeks after randomization. pNfL was measured using single-molecule array assay (Simoa® NF-light™). RESULTS: Baseline mean age was 14.5 years; 69.4% were female. Baseline geometric least square mean pNfL levels were similar for teriflunomide (n = 78) and placebo (n = 33) patients (19.83 vs 18.30 pg/mL). Over the combined DB and OLE periods, pNfL values were lower for teriflunomide versus placebo (analysis of variance p < 0.01; Week 192: 10.61 vs 17.32 pg/mL). Observed between-group pNfL differences were attenuated upon adjustment for gadolinium (Gd)-enhancing or new/enlarged T2 lesion counts at DB Week 24. Higher baseline pNfL levels were associated with shorter time since first MS symptom onset, higher baseline Gd-enhancing lesion counts and T2 lesion volume, and increased hazard of high magnetic resonance imaging activity or clinical relapse during the DB period. CONCLUSION: Teriflunomide treatment was associated with significantly reduced pNfL levels in children with RMS. CLINICALTRIALS.GOV IDENTIFIER: NCT02201108.
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Esclerosis Múltiple Recurrente-Remitente , Esclerosis Múltiple , Adulto , Humanos , Femenino , Niño , Adolescente , Masculino , Esclerosis Múltiple Recurrente-Remitente/tratamiento farmacológico , Filamentos Intermedios , Esclerosis Múltiple/tratamiento farmacológico , Crotonatos/uso terapéutico , Toluidinas/uso terapéuticoRESUMEN
BACKGROUND: In Phase 3 studies, teriflunomide reduced relapse rates and disability progression compared with placebo; however, decreases in lymphocyte counts were also observed. OBJECTIVE: To describe the effect of long-term teriflunomide treatment on lymphocyte counts and infection rates among patients in pooled analyses of Phase 3 core and extension studies. METHODS: Four randomized trials (TEMSO, TOWER, TENERE, and TOPIC) compared teriflunomide 7 mg or 14 mg treatment with either placebo and/or subcutaneous interferon (IFN) ß-1a 44 µg in patients with relapsing forms of multiple sclerosis (MS) (or first clinical episode suggestive of MS in TOPIC). RESULTS: In 1895, patients ever exposed to teriflunomide, mean (standard deviation) absolute lymphocyte counts declined from Week 0 (1.89 (0.59)) to Week 24 (1.67 (0.52)) and then remained stable thereafter. In the core plus extension studies (up to 10.7 years), 7.3% and 2.2% experienced Grade 1 and Grade 2 lymphopenia, respectively. Infections were reported in 56.9% of patients without lymphopenia, 60.9% with Grade 1 lymphopenia, and 54.8% with Grade 2 lymphopenia. Serious infections occurred in 3.7%, 4.3%, and 7.1%, respectively. CONCLUSION: Long-term risk of lymphopenia and infections in patients who continue to receive teriflunomide is low, demonstrating a limited impact on adaptive and innate immunity.
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Crotonatos , Hidroxibutiratos , Inmunosupresores , Esclerosis Múltiple Recurrente-Remitente , Nitrilos , Toluidinas , Crotonatos/efectos adversos , Crotonatos/uso terapéutico , Femenino , Humanos , Hidroxibutiratos/uso terapéutico , Inmunosupresores/uso terapéutico , Recuento de Linfocitos , Esclerosis Múltiple Recurrente-Remitente/tratamiento farmacológico , Nitrilos/uso terapéutico , Toluidinas/efectos adversos , Toluidinas/uso terapéuticoRESUMEN
BACKGROUND: Teriflunomide is contraindicated in pregnancy. Some pregnancies have occurred despite guidance to use effective contraception. OBJECTIVES: To report outcomes of pregnancies occurring in teriflunomide clinical trials and the post-marketing setting. METHODS: Outcomes are summarized for pregnancies in teriflunomide monotherapy clinical trials and the post-marketing setting (data cutoff: December 2017). RESULTS: Of 437 confirmed teriflunomide-exposed pregnancies, 222 had known outcomes (70 from clinical trials; 152 from the post-marketing setting); 161 were reported prospectively and 61 retrospectively. There were 107 (48.2%) live births, 63 (28.4%) elective abortions, 47 (21.2%) spontaneous abortions, 3 (1.4%) ectopic pregnancies, 1 (0.5%) stillbirth, and 1 (0.5%) maternal death leading to fetal death. Four birth defects were reported among cases with known pregnancy outcome: ureteropyeloectasia (only defect considered major); congenital hydrocephalus; ventricular septal defect; and malformation of right foot valgus. A case of cystic hygroma was identified on antenatal ultrasound (pregnancy outcome unknown). One elective abortion followed prenatal diagnosis of fetal anomaly (blighted ovum). The risk of major birth defects in prospectively reported live birth/stillbirth outcomes was 3.6% (1/28) in clinical trials and 0.0% (0/51) in post-marketing reports. CONCLUSIONS: Outcomes were consistent with the general population. Current human data do not indicate a teratogenic signal in teriflunomide-exposed pregnancies.
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Anomalías Inducidas por Medicamentos/epidemiología , Ensayos Clínicos como Asunto , Crotonatos/efectos adversos , Hidroxibutiratos/efectos adversos , Inmunosupresores/efectos adversos , Esclerosis Múltiple/tratamiento farmacológico , Nitrilos/efectos adversos , Complicaciones del Embarazo/inducido químicamente , Complicaciones del Embarazo/epidemiología , Resultado del Embarazo/epidemiología , Vigilancia de Productos Comercializados , Toluidinas/efectos adversos , Adulto , Femenino , Humanos , Recién Nacido , Embarazo , Estudios Prospectivos , Estudios RetrospectivosRESUMEN
Teriflunomide is a once-daily oral immunomodulator approved for relapsing-remitting multiple sclerosis (MS). The objective of this post hoc analysis of the phase 3, pooled TEMSO (NCT00134563) and TOWER (NCT00751881) dataset is to evaluate the effect of teriflunomide treatment on annualised relapse rate and disability worsening across patient subgroups defined according to prior disease-modifying therapy exposure. This analysis provides further supportive evidence for a consistent effect of teriflunomide across a broad range of patients with relapsing MS, including patients who have used and discontinued other disease-modifying therapies.
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Crotonatos/farmacología , Factores Inmunológicos/farmacología , Esclerosis Múltiple Recurrente-Remitente/tratamiento farmacológico , Toluidinas/farmacología , Adulto , Análisis de Datos , Femenino , Humanos , Hidroxibutiratos , Masculino , Persona de Mediana Edad , Nitrilos , Recurrencia , Prevención Secundaria , Resultado del TratamientoRESUMEN
BACKGROUND: Teriflunomide is a new oral disease-modifying therapy for relapsing forms of multiple sclerosis. METHODS: We concluded a randomized trial involving 1088 patients with multiple sclerosis, 18 to 55 years of age, with a score of 0 to 5.5 on the Expanded Disability Status Scale and at least one relapse in the previous year or at least two relapses in the previous 2 years. Patients were randomly assigned (in a 1:1:1 ratio) to placebo, 7 mg of teriflunomide, or 14 mg of teriflunomide once daily for 108 weeks. The primary end point was the annualized relapse rate, and the key secondary end point was confirmed progression of disability for at least 12 weeks. RESULTS: Teriflunomide reduced the annualized relapse rate (0.54 for placebo vs. 0.37 for teriflunomide at either 7 or 14 mg), with relative risk reductions of 31.2% and 31.5%, respectively (P<0.001 for both comparisons with placebo). The proportion of patients with confirmed disability progression was 27.3% with placebo, 21.7% with teriflunomide at 7 mg (P=0.08), and 20.2% with teriflunomide at 14 mg (P=0.03). Both teriflunomide doses were superior to placebo on a range of end points measured by magnetic resonance imaging (MRI). Diarrhea, nausea, and hair thinning were more common with teriflunomide than with placebo. The incidence of elevated alanine aminotransferase levels (≥1 times the upper limit of the normal range) was higher with teriflunomide at 7 mg and 14 mg (54.0% and 57.3%, respectively) than with placebo (35.9%); the incidence of levels that were at least 3 times the upper limit of the normal range was similar in the lower- and higher-dose teriflunomide groups and the placebo group (6.3%, 6.7%, and 6.7%, respectively). Serious infections were reported in 1.6%, 2.5%, and 2.2% of patients in the three groups, respectively. No deaths occurred. CONCLUSIONS: Teriflunomide significantly reduced relapse rates, disability progression (at the higher dose), and MRI evidence of disease activity, as compared with placebo. (Funded by Sanofi-Aventis; TEMSO ClinicalTrials.gov number, NCT00134563.).
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Crotonatos/uso terapéutico , Inhibidores Enzimáticos/uso terapéutico , Esclerosis Múltiple Recurrente-Remitente/tratamiento farmacológico , Oxidorreductasas actuantes sobre Donantes de Grupo CH-CH/antagonistas & inhibidores , Toluidinas/uso terapéutico , Administración Oral , Adulto , Alanina Transaminasa/sangre , Encéfalo/patología , Crotonatos/efectos adversos , Dihidroorotato Deshidrogenasa , Evaluación de la Discapacidad , Progresión de la Enfermedad , Inhibidores Enzimáticos/efectos adversos , Fatiga/tratamiento farmacológico , Femenino , Humanos , Hidroxibutiratos , Masculino , Persona de Mediana Edad , Esclerosis Múltiple Recurrente-Remitente/patología , Nitrilos , Prevención Secundaria , Toluidinas/efectos adversos , Adulto JovenRESUMEN
BACKGROUND: In previous studies, teriflunomide significantly reduced the annualised relapse rate (ARR) and disability progression. OBJECTIVE: This phase 3, rater-blinded study (NCT00883337) compared teriflunomide with interferon-beta-1a (IFNß-1a). METHODS: Patients with relapsing multiple sclerosis were randomised (1:1:1) to oral teriflunomide 7-or 14 mg, or subcutaneous IFNß-1a 44 µg. The primary composite endpoint was time to failure, defined as first occurrence of confirmed relapse or permanent treatment discontinuation for any cause. Secondary endpoints included ARR, Fatigue Impact Scale (FIS) and Treatment Satisfaction Questionnaire for Medication (TSQM). The study was completed 48 weeks after the last patient was randomised. RESULTS: Some 324 patients were randomised (IFNß-1a: 104; teriflunomide 7 mg: 109; teriflunomide 14 mg: 111). No difference in time to failure was observed. There was no difference in ARR between teriflunomide 14 mg and IFNß-1a, but ARR was significantly higher with teriflunomide 7 mg. FIS scores indicated more frequent fatigue with IFNß-1a, though differences were only significant with teriflunomide 7 mg. TSQM scores were significantly higher with teriflunomide. There were no unexpected safety findings. CONCLUSION: Effects on time to failure were comparable between teriflunomide and IFNß-1a. There was no difference between teriflunomide 14 mg and IFNß-1a on ARR, though ARR was higher with teriflunomide 7 mg. The teriflunomide safety profile was consistent with previous studies.
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Adyuvantes Inmunológicos/uso terapéutico , Crotonatos/uso terapéutico , Interferón beta/uso terapéutico , Esclerosis Múltiple Recurrente-Remitente/tratamiento farmacológico , Toluidinas/uso terapéutico , Adulto , Anciano , Crotonatos/administración & dosificación , Progresión de la Enfermedad , Femenino , Humanos , Hidroxibutiratos , Interferón beta-1a , Masculino , Persona de Mediana Edad , Nitrilos , Recurrencia , Toluidinas/administración & dosificación , Resultado del TratamientoRESUMEN
INTRODUCTION: Lymphocyte depletion via anti-CD52 monoclonal antibody (mAb) therapy is an effective treatment strategy for relapsing-remitting multiple sclerosis (MS) but is associated with infusion/injection-associated reactions (IARs) and autoimmune-related adverse events (AEs). Gatralimab is a next-generation humanized anti-CD52 mAb. METHODS: Two first-in-human trials were conducted in participants with progressive MS to assess the pharmacodynamics, pharmacokinetics, and safety of gatralimab administered via subcutaneous (SC) and intravenous (IV) routes, and to determine the effect of different comedication regimes on IARs to SC gatralimab. A Phase 1 trial (NCT02282826) included double-blind, placebo-controlled sequential ascending single IV (1, 3.5, and 12 mg) and SC (12, 36, and 60 mg) dose groups. A Phase 1b trial (NCT02977533) involved five groups who received SC gatralimab (36, 48, or 60 mg) and different comedications. A long-term safety (LTS) study (NCT02313285) examined safety and pharmacodynamics over 4 years. RESULTS: Gatralimab produced depletion of lymphocytes (dose-dependently) and CD4+ regulatory T cells, with partial repopulation to normal values by approximately 12 months. Peak serum gatralimab concentrations followed dose-proportionality and were delayed by 6.0-7.5 days following SC administration. Treatment-emergent AEs, including IARs, were reported for most participants but were generally of mild or moderate severity, and treatment-emergent serious AEs were mostly MS-related. Methylprednisolone and antihistamine comedications were associated with reduced incidence of fevers and skin and subcutaneous tissue AEs, respectively. During the LTS study, one participant (3.0%) experienced an autoimmune-related AE (Basedow's disease), and subsequently died from pulmonary sepsis deemed unrelated to gatralimab by the investigator. CONCLUSIONS: These data show that gatralimab achieves the desired pharmacodynamic effect of lymphocyte depletion followed by repopulation, and has an acceptable safety profile, including low risk of non-MS autoimmunity. Although gatralimab is no longer in development for MS, insights from these trials may inform the development of comedication regimes of future anti-CD52 mAbs and subcutaneous formulations of other lymphocyte-depleting mAbs. TRIAL REGISTRATION: NCT02282826, NCT02977533, NCT02313285.
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OBJECTIVE: The purpose of this study was to determine the effects of oral teriflunomide on multiple sclerosis (MS) pathology inferred by magnetic resonance imaging (MRI). METHODS: Patients (n=1088) with relapsing MS were randomized to once-daily teriflunomide 7 mg or 14 mg, or placebo, for 108 weeks. MRI was recorded at baseline, 24, 48, 72 and 108 weeks. Annualized relapse rate and confirmed progression of disability (sustained ≥12 weeks) were the primary and key secondary outcomes. The principal MRI outcome was change in total lesion volume. RESULTS: After 108 weeks, increase in total lesion volume was 67.4% (p=0.0003) and 39.4% (p=0.0317) lower in the 14 and 7 mg dose groups versus placebo. Other measures favoring teriflunomide were accumulated enhanced lesions, combined unique activity, T2-hyperintense and T1-hypointense component lesion volumes, white matter volume, and a composite MRI score; all were significant for teriflunomide 14 mg and most significant for 7 mg versus placebo. CONCLUSIONS: Teriflunomide provided benefits on brain MRI activity across multiple measures, with a dose effect evident on several markers. These effects were also consistent across selected subgroups of the study population. These findings complement clinical data showing significant teriflunomide-related reductions in relapse rate and disease progression, and demonstrate containment of MRI-defined disease progression.
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Antiinflamatorios/administración & dosificación , Encéfalo/patología , Crotonatos/administración & dosificación , Esclerosis Múltiple Recurrente-Remitente/tratamiento farmacológico , Esclerosis Múltiple Recurrente-Remitente/patología , Toluidinas/administración & dosificación , Adulto , Progresión de la Enfermedad , Relación Dosis-Respuesta a Droga , Inhibidores Enzimáticos/administración & dosificación , Femenino , Humanos , Hidroxibutiratos , Imagen por Resonancia Magnética , Masculino , NitrilosRESUMEN
BACKGROUND: Teriflunomide, an oral disease-modifying therapy in development for patients with relapsing forms of multiple sclerosis (RMS), was well tolerated and effective in reducing magnetic resonance imaging (MRI) lesions in 179 RMS patients in a phase 2 36-week, placebo-controlled study. METHODS: A total of 147 patients who completed the core study entered an open-label extension. Teriflunomide patients continued their assigned dose, and placebo patients were re-allocated to teriflunomide, 7 mg/day or 14 mg/day. An interim analysis was performed at a cut-off on January 8 2010. RESULTS: The mean and median duration of study treatment, including both the core and extension phase, from baseline to the interim cut-off, was 5.6 years (standard deviation: 2.7 years) and 7.1 years (range: 0.05-8.5 years), respectively. Of 147 patients, 62 (42.2%) discontinued (19% due to treatment-emergent adverse events (TEAEs)). The most common TEAEs were mild infections, fatigue, sensory disturbances and diarrhoea. No serious opportunistic infections occurred, with no discontinuations due to infection. Asymptomatic alanine aminotransferase increases (≤3× upper limit of normal (ULN)) were common (7 mg, 64.2%; 14 mg, 62.1%); increases >3×ULN were similar across groups (7 mg, 12.3%; 14 mg, 12.1%). Mild decreases in neutrophil counts occurred; none led to discontinuation. The incidence of malignancies was comparable to that of the general population, and cases were not reminiscent of those observed in immunocompromised patients. Annualised relapse rates remained low, minimal disability progression was observed, with a dose-dependent benefit with teriflunomide 14 mg for several MRI parameters. CONCLUSION: Teriflunomide had a favourable safety profile for up to 8.5 years.
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Crotonatos/administración & dosificación , Factores Inmunológicos/administración & dosificación , Esclerosis Múltiple Recurrente-Remitente/tratamiento farmacológico , Toluidinas/administración & dosificación , Administración Oral , Adulto , Crotonatos/efectos adversos , Evaluación de la Discapacidad , Progresión de la Enfermedad , Relación Dosis-Respuesta a Droga , Femenino , Estudios de Seguimiento , Humanos , Hidroxibutiratos , Factores Inmunológicos/efectos adversos , Imagen por Resonancia Magnética , Masculino , Persona de Mediana Edad , Esclerosis Múltiple Recurrente-Remitente/diagnóstico , Esclerosis Múltiple Recurrente-Remitente/psicología , Nitrilos , Valor Predictivo de las Pruebas , Calidad de Vida , Factores de Tiempo , Toluidinas/efectos adversos , Resultado del TratamientoRESUMEN
BACKGROUND: The Teriflunomide Multiple Sclerosis Oral (TEMSO) trial, a randomized, double-blind, placebo-controlled phase III study, demonstrated that teriflunomide significantly reduced annualized relapse rate (ARR), disease progression and magnetic resonance imaging (MRI) activity, with a favorable safety profile in relapsing multiple sclerosis (RMS) patients. OBJECTIVE: The purpose of this study was to report the effects of teriflunomide on ARR and disability progression in pre-specified subgroups. METHODS: RMS patients (n=1088) were randomized to placebo or teriflunomide, 7 mg or 14 mg, once daily, for 108 weeks. Subgroup analyses were performed for ARR and disability progression by baseline demographics (gender, race, age), disease characteristics (Expanded Disability Status Scale (EDSS) strata, relapse history, multiple sclerosis (MS) subtype), MRI parameters (gadolinium-enhancing lesions, total lesion volume) and prior use of MS drugs. A generalized estimating equation method and Cox regression model were used to assess consistency of the treatment effect across subgroups, utilizing a treatment-by-subgroup interaction test for each factor separately. RESULTS: Reductions in ARR and disability progression were consistent across subgroups in favor of teriflunomide, with no treatment-by-subgroup interaction test reaching statistical significance. CONCLUSION: The positive effects of teriflunomide were demonstrated consistently across subgroups in TEMSO.
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Antiinflamatorios/administración & dosificación , Crotonatos/administración & dosificación , Esclerosis Múltiple Recurrente-Remitente/tratamiento farmacológico , Toluidinas/administración & dosificación , Adulto , Antiinflamatorios/efectos adversos , Canadá , Crotonatos/efectos adversos , Evaluación de la Discapacidad , Progresión de la Enfermedad , Método Doble Ciego , Europa (Continente) , Humanos , Hidroxibutiratos , Estimación de Kaplan-Meier , Imagen por Resonancia Magnética , Esclerosis Múltiple Recurrente-Remitente/diagnóstico , Nitrilos , Valor Predictivo de las Pruebas , Modelos de Riesgos Proporcionales , Factores de Tiempo , Toluidinas/efectos adversos , Resultado del Tratamiento , Estados UnidosRESUMEN
Many patients with multiple sclerosis (MS) receive disease-modifying therapies (DMTs), such as teriflunomide, to reduce disease activity and slow progression. DMTs mediate their efficacy by modulating or suppressing the immune system, which might affect a patient's response to vaccination. As vaccines against the SARS-CoV-2 virus become available, questions have arisen around their efficacy and safety for patients with MS who are receiving DMTs. Data are beginning to emerge regarding the potential influence of certain DMTs on a patient's response to coronavirus disease 2019 (COVID-19) vaccines and are supported by evidence from vaccination studies of other pathogens. This review summarizes the available data on the response to vaccines in patients with MS who are receiving DMTs, with a focus on teriflunomide. It also provides an overview of the leading COVID-19 vaccines and current guidance around COVID-19 vaccination for patients with MS. Though few vaccination studies have been done for this patient population, teriflunomide appears to have minimal influence on the response to seasonal influenza vaccine. The evidence for other DMTs (e.g., fingolimod, glatiramer acetate) is less consistent: some studies suggest no effect of DMTs on vaccine response, whereas others show reduced vaccine efficacy. No unexpected safety signals have emerged in any vaccine study. Current guidance for patients with MS is to continue DMTs during COVID-19 vaccination, though adjusted timing of dosing for some DMTs may improve the vaccine response.
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BACKGROUND: Therapeutic options for children with multiple sclerosis are scarce. Teriflunomide is approved in more than 80 countries for the treatment of adults with relapsing multiple sclerosis. The TERIKIDS study examined the safety and efficacy of teriflunomide in children with relapsing multiple sclerosis. METHODS: The TERIKIDS trial was a multicentre, phase 3, double-blind, parallel-group, randomised, placebo-controlled study conducted at 57 clinical centres in 22 countries in Asia, Europe, the Middle East, North Africa, and North America. The trial enrolled patients aged 10-17 years, diagnosed with relapsing multiple sclerosis and with at least one relapse in the year preceding screening or at least two relapses in the 2 years preceding screening. Patients were randomly assigned (2:1) to oral teriflunomide (dosage equivalent to 14 mg in adults) or matching placebo, using an interactive web and voice response system, for up to 96 weeks. Personnel in all sites and all patients were masked to study treatment in the double-blind period. Early entry into a subsequent 96-week open-label extension phase was possible before the end of the double-blind period for patients with confirmed clinical relapse or high MRI activity (at least five new or enlarged T2 lesions at week 24, followed by at least nine new or enlarged T2 lesions at week 36, or at least five new or enlarged T2 lesions at weeks 36 and 48, or at weeks 48 and 72). The primary endpoint was time to first confirmed clinical relapse by the end of the double-blind period. Key secondary imaging endpoints were number of new or enlarged T2 lesions and number of gadolinium-enhancing lesions per MRI scan. Efficacy endpoints were analysed in the intention-to-treat population, and safety was assessed in all patients randomly assigned to treatment and exposed to the double-blind study medication. This study is registered with ClinicalTrials.gov (trial number NCT02201108) and is closed to recruitment, but an additional optional open-label extension is ongoing. FINDINGS: Between July 24, 2014, and the date of last patient visit on Oct 25, 2019, 185 patients were screened for eligibility, 166 (90%) were enrolled, and 109 were randomly assigned teriflunomide and 57 were randomly assigned placebo. 102 (94%) of 109 and 53 (93%) of 57 completed the double-blind period. Switch to the ongoing open-label extension because of high MRI activity was more frequent than anticipated in the placebo group (14 [13%] of 109 patients in the teriflunomide group vs 15 [26%] of 57 in the placebo group), decreasing the power of the study. After 96 weeks, there was no difference in time to first confirmed clinical relapse with teriflunomide compared with placebo (hazard ratio 0·66, 95% CI 0·39-1·11; p=0·29). Teriflunomide reduced the number of new or enlarged T2 lesions versus placebo by 55% (relative risk 0·45, 95% CI 0·29-0·71; p=0·00061), and the number of gadolinium-enhancing lesions by 75% (relative risk 0·25, 0·13-0·51; p<0·0001). Adverse events occurred in 96 (88%) patients in the teriflunomide group and 47 (82%) patients in the placebo group; serious adverse events occurred in 12 (11%) patients in the teriflunomide group and 6 (11%) patients in the placebo group. Nasopharyngitis, upper-respiratory-tract infection, alopecia, paraesthesia, abdominal pain, and increased blood creatine phosphokinase were more frequent with teriflunomide than with placebo. During the double-blind phase, four patients in the teriflunomide group had pancreatic adverse events (two with acute pancreatitis and two with pancreatic enzyme elevation), of which three events led to treatment discontinuation. INTERPRETATION: No significant difference in time to first confirmed clinical relapse was found, possibly because more patients than expected switched from the double-blind to the open-label treatment period because of high MRI activity. Key secondary imaging analyses and a prespecified sensitivity analysis of probability of relapse or high MRI activity suggest that teriflunomide might have beneficial effects in children with relapsing multiple sclerosis by reducing the risk of focal inflammatory activity. FUNDING: Sanofi.
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Esclerosis Múltiple Recurrente-Remitente , Esclerosis Múltiple , Pancreatitis , Enfermedad Aguda , Adolescente , Adulto , Niño , Crotonatos , Método Doble Ciego , Humanos , Hidroxibutiratos , Esclerosis Múltiple/tratamiento farmacológico , Esclerosis Múltiple Recurrente-Remitente/tratamiento farmacológico , Nitrilos , Toluidinas , Resultado del TratamientoRESUMEN
Leflunomide is contraindicated in pregnant women, yet human data from leflunomide-exposed pregnancies do not indicate an embryofetal toxicity signal. The objective of the present analysis was to report pregnancy outcomes for leflunomide-exposed pregnancies in clinical trials and in the post-marketing setting. Pregnancy outcomes are summarized from leflunomide clinical trials and the post-marketing setting. The data cut-off was 31 December 2017. Of 1167 pregnancies reported in female patients exposed to leflunomide, 587 had a known outcome. Of these, 337 (57.4%) were reported prospectively and 250 (42.6%) were reported retrospectively. Of the 587 pregnancies with a known outcome (which involved 15 sets of twins), there were 333 (56.7%) live births, with 285 (48.6%) full-term births and 48 (8.2%) pre-term births. Birth defects were reported in 44 babies/fetuses/embryos from 587 pregnancies, with 2 reporting at least 3 minor defects and 20 reporting major defects. Major defects were reported in 3 of 337 (0.9%) prospectively-reported pregnancies; 1 major birth defect occurred in a live birth, and 2 were electively terminated due to a detected fetal anomaly. Two of the babies/fetuses/embryos, a live birth and an electively aborted baby/fetus/embryo, from 206 prospectively-reported pregnancies exposed to leflunomide during the first trimester experienced major defects. Birth defects showed no specific patterns and were distributed evenly across organ systems. Outcomes were consistent with the general population. These findings do not suggest an embryofetal toxicity signal for leflunomide, which is consistent with previous findings from leflunomide-exposed pregnancies.
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Anomalías Congénitas/epidemiología , Inmunosupresores/uso terapéutico , Leflunamida/uso terapéutico , Resultado del Embarazo/epidemiología , Adulto , Crotonatos , Femenino , Humanos , Hidroxibutiratos , Esclerosis Múltiple , Nitrilos , Embarazo , Toluidinas , Adulto JovenRESUMEN
BACKGROUND: In the phase 3 TOWER core study (NCT00751881), the efficacy and safety of teriflunomide compared with placebo were demonstrated in patients with relapsing forms of multiple sclerosis (RMS). Here, the long-term safety and efficacy outcomes from the TOWER extension study (NCT00751881) are reported. METHODS: All patients who entered the extension (N = 751) were assigned to teriflunomide 14 mg and assessed for long-term safety and efficacy. RESULTS: Of 751 patients in the TOWER extension study, 253, 265, and 233 patients received placebo/teriflunomide 14 mg, teriflunomide 7 mg/14 mg, and teriflunomide 14 mg/14 mg, respectively. Median teriflunomide exposure was 4.25 years (maximum 6.3 years). The overall frequency of adverse events (AEs) was comparable across treatment groups, but a higher proportion of patients in the teriflunomide 7 mg/14 mg (12.4%) and 14 mg/14 mg (12.4%) groups had serious AEs compared with the placebo/teriflunomide 14 mg group (6.4%). Alanine aminotransferase increase and hair thinning occurred at a higher frequency in the placebo/teriflunomide 14 mg group (11.2% and 14.3%, respectively) compared with the teriflunomide 7 mg/14 mg (3.0% and 4.5%, respectively) and 14 mg/14 mg groups (5.2% and 4.3%, respectively). The incidences of AEs of interest (hematologic and hepatic effects, peripheral neuropathy, hypertension, and malignancy) were low and comparable across treatment arms. Disability worsening and adjusted annualized relapse rates were low and stable over time, and mean Expanded Disability Status Scale scores were unchanged over time, for all treatment groups. CONCLUSION: In the TOWER extension study, the efficacy of teriflunomide 14 mg was maintained in patients with RMS. No new or unexpected AEs were observed with teriflunomide treatment, supporting a safety profile in the extension that was consistent with the core trial. These findings support the positive benefit:risk profile of teriflunomide as a long-term immunomodulatory therapy.
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Esclerosis Múltiple Recurrente-Remitente , Esclerosis Múltiple , Crotonatos/efectos adversos , Humanos , Hidroxibutiratos , Esclerosis Múltiple Recurrente-Remitente/tratamiento farmacológico , Nitrilos , Recurrencia , Toluidinas/efectos adversosRESUMEN
The roundtable 1 "Relevance of the evaluation criteria used in clinical trials for Alzheimer's disease" made reference to the guideline published by the EMEA (European Medicines Agency) in July 2008 on the development of new treatments for Alzheimer's disease (AD) and other dementias, and addressed principally two of the three indications listed in the guideline: symptomatic improvement and disease-modification (primary prevention was hardly discussed). The discussions focussed on two main aspects: improvement of the selection of patients in clinical trials and clinical evaluation and biomarkers. The following suggestions were made:Reinforce the interest for clinical trials at the early stages of AD (including prodromal stage), particularly for disease-modifiers. Strengthen the research centers' expertise with biomarkers, in a perspective of subsequent use in clinical trials, either for the description of the patients included, or as part of selection criteria. Furthermore, ongoing intercenter validation studies, in France, of neuro-imaging and biomarker assays in CSF, are essential for preparing multicenter clinical trials. Facilitate the conduct of ancillary studies with biomarkers, grafted on clinical studies. Further develop the training and experience of raters with functional scales, which are now required as one of the two primary endpoints in pivotal clinical trials, and with the additional items of ADAS-cog (Alzheimer's Disease Assessment scale, Cognitive sub scale), which are useful for the early stages of AD. Improve knowledge of functional clinical scales by in depth analysis of available databases, through public/private collaborations. Improve knowledge of relationship between rating scales used in clinical trials and tools used in clinical practice (which are usually different), in order to provide supporting evidence for the interpretation of the clinical relevance of clinical trials results. Consider the potential needs of adaptation of rating scales to the societal changes, in particular for the evaluation of cognitive performance. Discuss the possibility of measures for extending data protection for candidate disease-modifiers, considering the negative impact for all players of the constraints of duration and the difficulties of clinical trials. Further discuss the ethics and acceptability of placebo-controlled monotherapy studies on durations of 6-9 months.
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Enfermedad de Alzheimer/tratamiento farmacológico , Ensayos Clínicos como Asunto/normas , Enfermedad de Alzheimer/psicología , Guías como Asunto , Humanos , Proyectos de InvestigaciónRESUMEN
In the phase 3 TOWER (NCT00751881) study, teriflunomide 14â¯mg significantly reduced annualized relapse rate (ARR) and risk of 12-week confirmed disability worsening (12-w CDW) vs placebo in patients with relapsing forms of MS (RMS). The TOWER population included an appreciable proportion of Asian patients. Reductions in ARR and 12-w CDW associated with teriflunomide 14â¯mg were comparable between the Asian and overall populations, as were the rates for adverse events and serious adverse events, with no new or unexpected safety findings. These observations provide further evidence to support the clinical benefits and safety profile of teriflunomide in a broad range of patients with RMS.
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Crotonatos/uso terapéutico , Factores Inmunológicos/uso terapéutico , Toluidinas/uso terapéutico , Adulto , Pueblo Asiatico , Método Doble Ciego , Femenino , Humanos , Hidroxibutiratos , Masculino , Persona de Mediana Edad , Esclerosis Múltiple Recurrente-Remitente/tratamiento farmacológico , Nitrilos , RecurrenciaRESUMEN
BACKGROUND: In the phase 3 TOPIC study, teriflunomide significantly reduced the risk of relapse determining conversion to clinically definite multiple sclerosis (CDMS) in patients with clinically isolated syndrome, versus placebo. We assessed clinical and safety outcomes associated with extended teriflunomide treatment in the TOPIC extension study. METHODS: Patients who completed the TOPIC core study (including those still on study at early termination) or converted to CDMS after at least 24 weeks in the core study were eligible to participate in the extension. The primary efficacy endpoint in the extension was time to conversion to CDMS. RESULTS: Risk of relapse determining conversion to CDMS was 47.1% lower in patients treated with teriflunomide 14â¯mg during the core and extension studies compared with patients treated with placebo during the core study and teriflunomide 14â¯mg during the extension. The incidence of adverse events was 75.8% and 81.9% for 7 and 14â¯mg teriflunomide, respectively. CONCLUSIONS: Reduced risk of relapse determining conversion to CDMS in patients with early MS receiving teriflunomide 14â¯mg in the core study remained throughout the extension supporting the benefits of early treatment. No new safety signals were observed for teriflunomide 7 or 14â¯mg.
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Crotonatos/uso terapéutico , Enfermedades Desmielinizantes/tratamiento farmacológico , Esclerosis Múltiple/prevención & control , Toluidinas/uso terapéutico , Adulto , Método Doble Ciego , Femenino , Humanos , Hidroxibutiratos , Masculino , NitrilosRESUMEN
OBJECTIVE: To predict long-term disability outcomes in TEMSO core (NCT00134563) and extension (NCT00803049) studies in patients with relapsing forms of MS treated with teriflunomide. METHODS: A post hoc analysis was conducted in a subgroup of patients who received teriflunomide in the core study, had MRI and clinical relapse assessments at months 12 (n = 552) and 18, and entered the extension. Patients were allocated risk scores for disability worsening (DW) after 1 year of teriflunomide treatment: 0 = low risk; 1 = intermediate risk; and 2-3 = high risk, based on the occurrence of relapses (0 to ≥2) and/or active (new and enlarging) T2-weighted (T2w) lesions (≤3 or >3) after the 1-year MRI. Patients in the intermediate-risk group were reclassified as responders or nonresponders (low or high risk) according to relapses and T2w lesions on the 18-month MRI. Long-term risk (7 years) of DW was assessed by Kaplan-Meier survival curves. RESULTS: In patients with a score of 2-3, the risk of 12-week-confirmed DW over 7 years was significantly higher vs those with a score of 0 (hazard ratio [HR] = 1.96, p = 0.0044). Patients reclassified as high risk at month 18 (18.6%) had a significantly higher risk of DW vs those in the low-risk group (81.4%; HR = 1.92; p = 0.0004). CONCLUSIONS: Over 80% of patients receiving teriflunomide were classified as low risk (responders) and had a significantly lower risk of DW than those at increased risk (nonresponders) over 7 years of follow-up in TEMSO. Close monitoring of relapses and active T2w lesions after short-term teriflunomide treatment predicts a differential rate of subsequent DW long term. CLINICALTRIALSGOV IDENTIFIER: TEMSO, NCT00134563; TEMSO extension, NCT00803049.