Real-world treatments for 5q-spinal muscular atrophy (SMA) have evolved rapidly following the sequential approval of three disease-modifying treatments (DMTs): nusinersen, onasemnogene abeparvovec and risdiplam. The aim of this study was to map the sequence and timing of SMA treatments accurately using the SMArtCARE registry, a disease-specific registry for patients with SMA across 84 participating centres in Germany, Austria and Switzerland. All patients registered in SMArtCARE were included in the analysis. Patients were grouped based on their treatment regimen: those who remained on the first DMT versus those who switched DMT. The impacts of clinical and genetic factors on treatment decisions were evaluated, including age at initiation of treatment, SMN2 copy number, motor function status, the need for ventilator support or tube feeding, and the presence of scoliosis. A total of 2140 patients were included. Of these, 1294 patients (60.5%) initiated treatment with nusinersen, 514 patients (24.0%) with risdiplam and 243 patients (11.4%) with onasemnogene abeparvovec. Overall, 1366 patients (63.8%) remained on the first DMT. Most treatment switches occurred shortly after approval of a new DMT. Notably, most patients who switched showed no change in motor milestone status between the start of the first and the second DMT. In this large real-world cohort, we present the first comprehensive analysis of SMA treatment patterns across all age groups and disease severities. Although most patients remained on the first DMT, switches were observed, mainly after DMT approvals. Decisions to switch appear multifactorial and are not related directly to motor function effectiveness.
BACKGROUND:Systematic protocols for long-term surveillance of children with spinal muscular atrophy treated with onasemnogene abeparvovec are lacking. Together with best practice recommendations for safety monitoring and management, such recommendations should increase patient safety and confidence levels of healthcare providers. OBJECTIVE:Based on systematic literature review and evidence grading from part 1, this initiative aims to develop a structured treatment plan applicable across all treatment centers in Germany, Austria and Switzerland. Additionally, it seeks to establish consensus recommendations for the clinical management of safety alerts. METHODS:Part 2 describes the methodology used to formulate Delphi consensus statements, the development of a structured treatment plan for OA treatment, and the anonymous consensus voting process with standardized follow-up in case of disagreement. RESULTS:A total of 12 consensus statements were developed, addressing diagnostic work-up, safety evaluation, and best practice management of common adverse drug reactions associated with OA gene therapy. All statements achieved >95% consensus in the anonymous Delphi voting. Additionally, two consensus recommendations for handling of positive newborn screening result achieved consensus of 97% and 87%, respectively. A structured treatment plan for gene therapy was consented with 100% agreement, as were standardized recommendations for laboratory testing and a consensus-based algorithm for management of liver transaminase elevations. CONCLUSIONS:Delphi-based expert recommendations, developed in co-creation with patient representatives, provide a framework to minimize complications associated with gene therapy and establish the basis for standardized post-marketing data collections. The methodology used in this Delphi-consensus-group can serve as a blueprint for future gene therapy approvals.
Background and objectivesThe severity of the phenotype of spinal muscular atrophy (SMA) is highly variable, yet little is known about the phenotypic variation among siblings. We systematically investigated the phenotypic variability of therapy-naïve 5q-SMA siblings leveraging a large multicentre cohort from the SMArtCARE registry.ResultsClinical information was available from 132 siblings of 65 families. There were 24 (18.2%) type 1, 38 (28.7%) type 2, 54 (40.9%) type 3 patients, and 16 (12.1%) presymptomatic individuals. In 17 families (32.1%), there was discordance in the type of SMA among symptomatic siblings. We found no influence of gender on discordance in SMA type among siblings (p = 0.528). The median age at disease onset within all sibships varied by 6 months (interquartile range (IQR) = 1-30). There was no correlation in age of onset among siblings (r = 0.405; p = 0.052). Among siblings who lost ambulation, the median interval between the start of wheelchair use was 12 months, but the maximal interval was 18 years. In one pair of siblings, one sibling lost the ability to walk at the age of 13, whereas the other sibling was still ambulatory at the age of 54. In 6 sibling pairs (9.5%), only one of both siblings had a history of scoliosis surgery. Analysing SMN2 copy numbers, in one sibling pair (1.8%) 1 SMN2 gene copy was detected, while 10 (17.5%) had 2 copies, 23 (40.4%) had 3 copies, and 17 (29.8%) had 4 copies. Concordance in SMN2 copy numbers across siblings was observed in 90% of families. With increasing SMN2 copy number, the median differences in age of onset among siblings increased without reaching statistical significance.ConclusionThis study reports considerable phenotypic variability in therapy-naïve SMA sibships that cannot solely be explained by differences in SMN2 copy numbers.
An increasing number of adults with spinal muscular atrophy (SMA) wish to become parents. New disease-modifying therapies (DMT) have improved health outcomes and are expected to reduce disability in adults with SMA, but their current label prevents their use in pregnancy. While there is some information on pregnancy outcomes in the pre-DMT era, little has been published recently, and no ubiquitously accepted guidelines exist. Nonetheless, it is crucial to provide knowledgeable and open counselling, ideally in the context of treatments. Counseling for both adolescent and adult patients should include the subject of 'reproductive choices' when discussing the selection of DMTs for those considering parenthood. A multi-disciplinary team, including gynecologists and neurologists with expertise in neuromuscular disorders must closely monitor pregnant patients with SMA, preferably within disease registries, to detect potential complications early and ensure optimal treatment options are available. Real-world data in so far three patients with SMA showed a beneficial pregnancy outcome with nusinersen. It is anticipated that forthcoming real-world data will finally clarify the safety of administering Nusinersen during pregnancy, particularly in relation to child health and for preserving muscle function and preventing motor deterioration in the affected mother.
Background Since the approval of onasemnogen abeparvovec (OA) for gene addition therapy in children with spinal muscular atrophy (SMA), there has been a considerable increase of evidence regarding its effectiveness and safety. Consequently, the previous recommendations needed to be revised. Objective The primary objective was to develop an evidence- and expert-based best practice protocol ensuring optimal patient safety and comprehensive support for affected families. The harmonization of treatment algorithms is expected to facilitate the collection of standardized real-world data, laying the foundation for future evidence-based adjustments. Methods A modified, two-part Delphi process was selected as a standardized methodology. Experts specializing in SMA from all 31 neuromuscular treatment centers within Germany, Austria and Switzerland, and patient advocacy groups participated in an industry-independent Delphi panel. Existing evidence concerning effectiveness, safety, and guidelines of OA was analyzed in a systematic literature followed by development of consensus statements regarding its effectiveness. Results Strong consensus was reached regarding the following statements on effectiveness: (1) OA gene addition therapy for SMA demonstrates a clear advantage compared to the natural progression of the disease. (2) Superiority of any of the three approved disease-modifying therapies has not been proven. (3) Earlier initiation of therapy with fewer symptoms and shorter disease duration leads to better outcomes. (4) There is no clinical evidence supporting the superiority of combining two treatments over monotherapy. Conclusions: The systematic literature analysis constitutes the basis for the subsequent part 2, which involves the generation of expert-based recommendations for the surveillance of SMA gene addition therapy.
Background:Spinal muscular atrophy (SMA) is a genetic motor neuron disease marked by the progressive decline of motor function. Risdiplam, an orally administered SMN2 splicing modifier, was approved for the treatment of 5q-associated SMA (5q-SMA) across all age groups. However, clinical trial data have primarily focused on paediatric populations, with limited evidence available for adult patients. This study aimed to evaluate the efficacy and safety of risdiplam in treatment-naïve adults with 5q-SMA in a real-world, multicentre setting. Methods:We conducted a nationwide, observational cohort study across eight neuromuscular centres in Austria. Patients aged ≥16 years at treatment initiation with genetically confirmed 5q-SMA, who were previously untreated and initiated risdiplam between December 2020 and September 2024 were eligible for inclusion if they had received risdiplam for ≥3 months and had functional motor assessments available at baseline (T0) and at least one follow-up. Functional outcomes were assessed at four predefined intervals after baseline: 3-<6 months (T1), 6-<12 months (T2), 12-<18 months (T3), and ≥18 months (T4). The primary outcome was the change from baseline in the Hammersmith Functional Motor Scale Expanded (HFMSE). Secondary outcomes included changes in the Revised Upper Limb Module (RULM), Amyotrophic Lateral Sclerosis Functional Rating Scale-Revised (ALSFRS-R), and 6-min walk test (6MWT). Adverse events were extracted from medical records. Findings:A total of 87 patients had received risdiplam, of whom 57 fulfilled the inclusion criteria and were included in this study. The median age at treatment initiation was 35.7 years (IQR 28.8-43.4), with a median disease duration of 29.6 years (IQR 24.2-36.3). Most individuals had SMA type II (40.4%) or III (47.4%). Mean HFMSE changes from baseline were +1.00 (95% CI 0.05-1.95, p = 0.0100) at T1, +0.97 (95% CI 0.22-1.72, p = 0.0132) at T2, +1.78 (0.66-2.89, p = 0.0008) at T3, and +1.73 (0.49-2.97, p = 0.0049) at T4. Clinically meaningful improvements in motor function (≥3 points in HFMSE and/or ≥2 in RULM) were observed in 63.9% of patients at T4. Improvements were more pronounced in patients with higher baseline function, ambulatory status, or without a history of spinal surgery. Risdiplam was generally well tolerated, with predominantly mild and non-specific adverse events reported in 14.0% of patients. Interpretation:In this nationwide observational study in a real-world setting, adult patients with 5q-SMA demonstrated consistent and clinically meaningful functional improvements with risdiplam over time, particularly by 18 months and beyond. These findings support the long-term use of risdiplam in adults with SMA and help close a critical evidence gap in this underrepresented population. Funding:This study was financially supported by F. Hoffmann-La Roche Ltd.
(Abstracted from JAMA Pediatr 2024;178(6):540–547 Spinal muscular atrophy (SMA) is a genetic disorder characterized by progressive muscle weakness and atrophy, with the most severe cases leading to ventilator dependency or death within 2 years. Three new therapies have significantly improved outcomes, especially with early treatment.
Duchenne muscular dystrophy (DMD) is an X-linked genetic disorder manifesting in early childhood with progressive muscular weakness and atrophy, and resulting in early loss of ambulation. The collection and evaluation of epidemiological data for this disease is crucial for an early diagnosis and disease management. In Germany, data are collected via the TREAT-NMD DMD patient registry ( www.dmd-register.de ). In contrast, data collection in Austria has not yet been performed systematically. For collecting data from Austrian DMD patients, an online survey of the patient’s caregivers was conducted. Data of 57 patients were collected entailing initial symptoms, diagnosis and therapeutic measures. Comparable data has been collected for Germany via the TREAT-NMD DMD patient registry. 57 DMD patients aged 4–34 years completed the Austrian survey. On average, first symptoms of the disease appeared at the age of 3.1 years. As the most frequent first symptom, 46% of the patients described problems in climbing stairs. In 40% of the patients, DMD was diagnosed early due to an accidentally detected hyperCKemia in infancy or early childhood. Corticosteroids represented the main therapeutic option in our cohort. At the time of the survey, only 52% of the patients were treated with corticosteroids. Patients from Germany reported that first symptoms appeared at the age of 3.06 years. Diagnosis was established by genetic testing or muscle biopsy. 47% of the patients were treated with corticosteroids. Time between first symptoms and diagnosis was 7 months in Austria, and 4.7 months in Germany, respectively. Compared to earlier international studies, the Austrian data show encouraging results regarding earlier start of corticosteroid therapy in a larger percentage of patients. Austrian and German data show a trend towards an earlier diagnosis of DMD, while the age at symptom onset was similar to previous studies. The collection and evaluation of epidemiological data of DMD patients is important and will hopefully contribute to accelerate DMD diagnosis and treatment access for the patients.
Congenital myasthenic syndromes (CMS) are a heterogeneous group of disorders caused by genetic defects resulting in impaired neuromuscular transmission. Although effective treatments are available, CMS is probably underdiagnosed, and systematic clinico-genetic investigations are warranted. We used a nationwide approach to collect Austrian patients with genetically confirmed CMS. We provide a clinical and molecular characterization of this cohort and aimed to ascertain the current frequency of CMS in Austria. Twenty-eight cases with genetically confirmed CMS were identified, corresponding to an overall prevalence of 3.1 per million (95% CI 2.0–4.3) in Austria. The most frequent genetic etiology was CHRNE (n = 13), accounting for 46.4% of the cohort. Within this subgroup, the variant c.1327del, p.(Glu443Lysfs*64) was detected in nine individuals. Moreover, causative variants were found in DOK7 (n = 4), RAPSN (n = 3), COLQ (n = 2), GMPPB (n = 2), CHAT (n = 1), COL13A1 (n = 1), MUSK (n = 1) and AGRN (n = 1). Clinical onset within the first year of life was reported in one half of the patients. Across all subtypes, the most common symptoms were ptosis (85.7%), lower limb (67.9%), upper limb (60.7%) and facial weakness (60.7%). The majority of patients (96.4%) received specific treatment, including acetylcholinesterase inhibitors in 20, adrenergic agonists in 11 and 3,4-diaminopyridine in nine patients. Our study presents the first systematic characterization of individuals with CMS in Austria, providing prevalence estimates and genotype–phenotype correlations that may help to improve the diagnostic approach and patient management.
BACKGROUND AND OBJECTIVES:Disease progression in patients with spinal muscular atrophy (SMA) has changed dramatically within the past years due to the approval of three different disease-modifying treatments. Nusinersen was the first drug to be approved for the treatment of SMA patients. Clinical trials provided data from infants with SMA type 1 and children with SMA type 2, but there is still insufficient evidence and only scarcely reported long-term experience for nusinersen treatment in ambulant patients. Here, we report data from the SMArtCARE registry of ambulant patients under nusinersen treatment with a follow-up period of up to 38 months.METHODS:SMArtCARE is a disease-specific registry in Germany, Austria and Switzerland. Data are collected as real-world data during routine patient visits. Our analysis included all patients under treatment with nusinersen able to walk independently before start of treatment with focus on changes in motor function.RESULTS:Data from 231 ambulant patients were included in the analysis. During the observation period, 31 pediatric walkers (27.2%) and 31 adult walkers (26.5%) experienced a clinically meaningful improvement of≥30 m in the 6-Minute-Walk-Test. In contrast, only five adult walkers (7.7%) showed a decline in walking distance≥30 m, and two pediatric walkers (1.8%) lost the ability to walk unassisted under treatment with nusinersen. HFMSE and RULM scores improved in pediatric and remained stable in adult patients.CONCLUSION:Our data demonstrate a positive effect of nusinersen treatment in most ambulant pediatric and adult SMA patients. We not only observed a stabilization of disease progression or lack of deterioration, but clinically meaningful improvements in walking distance.
The primary objective of this study was to compare the availability and implementation of disease-modifying treatment for spinal muscular atrophy (SMA) from different regions of the world.
5q-associated spinal muscular atrophy is a rare neuromuscular disorder with the leading symptom of a proximal muscle weakness. Three different drugs have been approved by the European Medicines Agency and Food and Drug Administration for the treatment of spinal muscular atrophy patients, however, long-term experience is still scarce. In contrast to clinical trial data with restricted patient populations and short observation periods, we report here real-world evidence on a broad spectrum of patients with early-onset spinal muscular atrophy treated with nusinersen focusing on effects regarding motor milestones, and respiratory and bulbar insufficiency during the first years of treatment. Within the SMArtCARE registry, all patients under treatment with nusinersen who never had the ability to sit independently before the start of treatment were identified for data analysis. The primary outcome of this analysis was the change in motor function evaluated with the Children’s Hospital of Philadelphia Infant Test of Neuromuscular Disorders and motor milestones considering World Health Organization criteria. Further, we evaluated data on the need for ventilator support and tube feeding, and mortality. In total, 143 patients with early-onset spinal muscular atrophy were included in the data analysis with a follow-up period of up to 38 months. We observed major improvements in motor function evaluated with the Children’s Hospital of Philadelphia Infant Test of Neuromuscular Disorders. Improvements were greater in children >2 years of age at start of treatment than in older children. 24.5% of children gained the ability to sit independently. Major improvements were observed during the first 14 months of treatment. The need for intermittent ventilator support and tube feeding increased despite treatment with nusinersen. Our findings confirm the increasing real-world evidence that treatment with nusinersen has a dramatic influence on disease progression and survival in patients with early-onset spinal muscular atrophy. Major improvements in motor function are seen in children younger than 2 years at the start of treatment. Bulbar and respiratory function needs to be closely monitored, as these functions do not improve equivalent to motor function.
Three different drugs have been approved by EMA and FDA for the treatment of patients with spinal muscular atrophy (SMA) in the past few years. In contrast to clinical trial data with restricted patient populations and short observation periods, SMArtCARE collects longitudinal real-world data on a broad spectrum of SMA patients as a disease-specific registry. For this data analysis, all patients under treatment with nusinersen were identified within the SMArtCARE registry. Inclusion criterion for the data analysis was that patients never had the ability to sit independently before start of treatment. Changes in motor function were evaluated with the CHOP INTEND score and motor milestones considering WHO criteria. Further, data on the need for ventilator support, tube feeding, and mortality were analyzed. In total, 143 children with SMA type 1 were included in the data analysis with a follow-up period of up to 38 months. Major improvements were observed in motor function, especially in children younger than two years of age at start of treatment. 24.5% of children gained the ability to sit independently. The need for non-invasive ventilator support and tube feeding increased despite treatment with nusinersen. Our findings confirm the increasing real-world evidence that treatment with nusinersen has a dramatic influence on disease progression in patients with SMA type 1 - especially regarding motor function and survival. Bulbar and respiratory function needs to be closely monitored, as these functions do not improve equivalent to motor function. Three different drugs have been approved by EMA and FDA for the treatment of patients with spinal muscular atrophy (SMA) in the past few years. In contrast to clinical trial data with restricted patient populations and short observation periods, SMArtCARE collects longitudinal real-world data on a broad spectrum of SMA patients as a disease-specific registry. For this data analysis, all patients under treatment with nusinersen were identified within the SMArtCARE registry. Inclusion criterion for the data analysis was that patients never had the ability to sit independently before start of treatment. Changes in motor function were evaluated with the CHOP INTEND score and motor milestones considering WHO criteria. Further, data on the need for ventilator support, tube feeding, and mortality were analyzed. In total, 143 children with SMA type 1 were included in the data analysis with a follow-up period of up to 38 months. Major improvements were observed in motor function, especially in children younger than two years of age at start of treatment. 24.5% of children gained the ability to sit independently. The need for non-invasive ventilator support and tube feeding increased despite treatment with nusinersen. Our findings confirm the increasing real-world evidence that treatment with nusinersen has a dramatic influence on disease progression in patients with SMA type 1 - especially regarding motor function and survival. Bulbar and respiratory function needs to be closely monitored, as these functions do not improve equivalent to motor function.
Background The development and approval of disease modifying treatments have dramatically changed disease progression in patients with spinal muscular atrophy (SMA). Nusinersen was approved in Europe in 2017 for the treatment of SMA patients irrespective of age and disease severity. Most data on therapeutic efficacy are available for the infantile-onset SMA. For patients with SMA type 2 and type 3, there is still a lack of sufficient evidence and long-term experience for nusinersen treatment. Here, we report data from the SMArtCARE registry of non-ambulant children with SMA type 2 and typen 3 under nusinersen treatment with a follow-up period of up to 38 months. Methods SMArtCARE is a disease-specific registry with data on patients with SMA irrespective of age, treatment regime or disease severity. Data are collected during routine patient visits as real-world outcome data. This analysis included all non-ambulant patients with SMA type 2 or 3 below 18 years of age before initiation of treatment. Primary outcomes were changes in motor function evaluated with the Hammersmith Functional Motor Scale Expanded (HFMSE) and the Revised Upper Limb Module (RULM). Results Data from 256 non-ambulant, pediatric patients with SMA were included in the data analysis. Improvements in motor function were more prominent in upper limb: 32.4% of patients experienced clinically meaningful improvements in RULM and 24.6% in HFMSE. 8.6% of patients gained a new motor milestone, whereas no motor milestones were lost. Only 4.3% of patients showed a clinically meaningful worsening in HFMSE and 1.2% in RULM score. Conclusion Our results demonstrate clinically meaningful improvements or stabilization of disease progression in non-ambulant, pediatric patients with SMA under nusinersen treatment. Changes were most evident in upper limb function and were observed continuously over the follow-up period. Our data confirm clinical trial data, while providing longer follow-up, an increased number of treated patients, and a wider range of age and disease severity.
Background Given the novelty of gene replacement therapy with onasemnogene abeparvovec in spinal muscular atrophy, efficacy and safety data are limited, especially for children older than 24 months, those weighing more than 8.5 kg, and those who have received nusinersen. We aimed to provide real-world data on motor function and safety after gene replacement therapy in different patient subgroups. Methods We did a protocol-based, multicentre prospective observational study between Sept 21,2019, and April 20,2021, in 18 paediatric neuromuscular centres in Germany and Austria. All children with spinal muscular atrophy types 1 and 2 receiving onasemnogene abeparvovec were included in our cohort, and there were no specific exclusion criteria. Motor function was assessed at the time of gene replacement therapy and 6 months afterwards, using the Children's Hospital of Philadelphia Infant Test of Neuromuscular Disorders (CHOP INTEND) and Hammersmith Functional Motor Scale-Expanded (HFMSE) scores. Additionally, in children pretreated with nusinersen, motor function was assessed before and after treatment switch. Off-target adverse events were analysed with a focus on liver function, thrombocytopaenia, and potential cardiotoxicity. Findings 76 children (58 pretreated with nusinersen and 18 who were nusinersen naive) with spinal muscular atrophy were treated with onasemnogene abeparvovec at a mean age of 16.8 months (range 0.8-59.0, IQR 9-23) and a mean weight of 9.1 kg (range 4.0-15.0, IQR 7.4-10.6). In 60 patients with available data, 49 had a significant improvement on the CHOP-INTEND score (>= 4 points) and HFMSE score (>= 3 points). Mean CHOP INTEND scores increased significantly in the 6 months after therapy in children younger than 8 months (n=16; mean change 13.8 [SD 8.5]; p<0.0001) and children aged between 8 and 24 months (n=34; 7.7 [SD 5.2]; p<0.0001), but not in children older than 24 months (n=6; 2.5 [SD 5.2]; p=1.00). In the 45 children pretreated with nusinersen and had available data, CHOP INTEND score increased by 8.8 points (p=0.0003) at 6 months after gene replacement therapy. No acute complications occurred during infusion of onasemnogene abeparvovec, but 56 (74%) patients had treatment-related side-effects. Serious adverse events occurred in eight (11%) children. Liver enzyme elevation significantly increased with age and weight at treatment. Six (8%) patients developed acute liver dysfunction. Other adverse events included pyrexia (n=47 [62%]), vomiting or loss of appetite (41 [54%]), and thrombocytopenia (n=59 [78%]). Prednisotone treatment was significantly prolonged with a mean duration of 15.7 weeks (IQR 9-19), mainly due to liver enzyme elevation. Cardiac adverse events were rare; only two patients had abnormal echocardiogram and echocardiography findings. Interpretation This study provides class IV evidence that children with spinal muscular atrophy aged 24 months or younger and patients pretreated with nusinersen significantly benefit from gene replacement therapy, but adverse events can be severe and need to be closely monitored. Copyright (C) 2021 Published by Elsevier Ltd. All rights reserved.
The primary diseases of the muscle (myopathies) in childhood are predominantly genetic and mostly require rapid clarification as a precise diagnosis is a prerequisite for assessing the prognosis, the optimal individual counselling and increasingly also for initiating an effective treatment. This article summarizes diagnostically relevant aspects of the anamnesis, indicative clinical and laboratory findings as well as the current diagnostic pipeline to establish the exact diagnosis on the molecular genetic level. An algorithm for the selection and sequence of diagnostic steps is proposed in order to enable selection of a resource-saving and time-saving approach.
In December 2020 the Federal Joint Committee in Germany decided that screening for spinal muscular atrophy (SMA) should be included in the general newborn screening. This decision was based on the fact that targeted treatment options had become available for patients with SMA and that the time at which treatment is started is crucial for the success of the therapy. Newborn screening for SMA is based on the detection of a homozygous deletion of exon 7 in the SMN1 gene by molecular genetic analysis from the dried blood card. In all cases confirmatory diagnostics from a second blood sample must be performed as part of confirmation diagnostics with determination of the SMN2 copy number. Further consultation and treatment should be carried out in a neuropediatric outpatient center with experience in the treatment of children with SMA.
Based on a better understanding of the molecular genetics of spinal muscular atrophy (SMA), targeted treatments for SMA have been developed in preclinical and clinical studies. To date, three different drugs are available in Germany for the treatment of patients with SMA. Approval of orphan drugs often occurs with limited evidence. Therefore, post-market surveillance and data capture are crucial to evaluate outcomes and the effect of treatment after prolonged treatment periods and in a broad spectrum of patients. SMArtCARE is a disease-specific registry to collect longitudinal data on all available SMA patients in German speaking countries. Data are collected during routine patient visits as real-world-outcome data. To evaluate motor function, standardized outcome measures are performed. Further, data on respiratory function, nutrition, orthopedic symptoms and genetic test results are collected in detail. Thus, data from the SMArtCARE registry may also contribute to regulatory purposes.
Zusammenfassung Im Dezember 2020 hat der Gemeinsame Bundesausschuss beschlossen, dass das Screening auf spinale Muskelatrophie (SMA) in das allgemeine Neugeborenenscreening aufgenommen werden soll. Grundlage dieser Entscheidung war die Tatsache, dass inzwischen gezielte Behandlungsmöglichkeiten für die Patienten mit SMA zur Verfügung stehen und der Zeitpunkt, zu dem die Behandlung begonnen wird, entscheidend für den Erfolg der Therapie ist. Das Neugeborenenscreening auf eine SMA basiert auf dem Nachweis einer homozygoten Deletion von Exon 7 im SMN1 -Gen durch eine molekulargenetische Analyse aus der Trockenblutkarte. In allen Fällen muss eine Bestätigungsdiagnostik aus einer zweiten Blutprobe im Rahmen der Konfirmationsdiagnostik mit Bestimmung der SMN2 -Kopien-Zahl durchgeführt werden. Die weitere Beratung und Therapie sollten in einer neuropädiatrischen Ambulanz mit Erfahrung in der Betreuung von Kindern mit SMA erfolgen.