Background:Thymidine kinase 2 deficiency (TK2d) is an ultra-rare autosomal recessive mitochondrial disease characterized by progressive myopathy. Objectives:To understand patient experiences and the impact of TK2d on patient quality of life (QoL), and to explore support needs. Design:A cross-sectional international online survey. Methods:The survey for the Assessment of TK2d Patient Perspectives (ATP) study, co-created with patient advocates, included multiple-choice questions, verbal rating scales, and open free-text questions. Patients of all ages with a self-reported genetic diagnosis of TK2d were eligible to participate, either directly or through a caregiver proxy. The patient, caregiver proxy, or bereaved caregiver proxy answered questions on demographics, signs/symptoms, impacts on health-related QoL (HRQoL), support needs, healthcare resource use, and overall experience of living with TK2d. Quantitative data were summarized with descriptive statistics. Qualitative data were analyzed using inductive thematic analysis. Results:Responses for 32 patients (24 patient and 8 caregiver proxy responses) were collected between September 2023 and February 2024. All patients experienced myopathic symptoms. The most frequently reported impact of TK2d was on patients' ability to perform basic activities of daily living (26/32), including difficulties in walking (22/32), eating/swallowing (19/32), and breathing (25/32). The proportions of patients reporting a moderate or severe impact of breathing and walking difficulties on HRQoL, and the proportions requiring medical devices, were higher for those with an earlier age of TK2d symptom onset (⩽2, vs >2 to ⩽12, or >12 years). For most patients, TK2d also had a negative impact on mood, social and leisure activities, and employment/education. Progressive loss of abilities, increasing dependency on others, and medical equipment use contributed to mental and emotional burdens. Conclusion:These quantitative and qualitative analyses of patients' lived experiences highlight the substantial, progressive, and wide-ranging burden of TK2d.
Fatigue is frequently reported and clinically significant in m.3243A > G primary mitochondrial disease (PMD) patients, hereafter PMD. This study aimed to understand the lived experience of PMD from the patient’s perspective with a particular focus on fatigue, and to explore the content validity of an existing measure of fatigue, the Neuro-QoL short form version 1 – Fatigue (Neuro-QoL SFv1-F). Genetically confirmed PMD patients were recruited from the USA and the Netherlands. Eighteen participants took part in concept elicitation (CE) interviews. Seventeen participants, three of whom had not taken part in the CE interviews, took part in cognitive debrief (CD) interviews. Some participants took part in both interviews, whilst others participated in only a CE or CD interview. CE interviews explored participants’ lived experience of symptoms and impacts, with a focus on fatigue, while CD interviews explored participants’ understanding of the measures. Interview transcripts were analyzed using thematic analysis. Following CE interviews, characteristics of fatigue were mapped to the Neuro-QoL SFv1-F items to assess whether the measure comprehensively captured the lived experience of PMD-related fatigue. This study included 21 adult PMD participants (age 46.3 ± 9.3 years, 81
The Reagan-Udall Foundation for the FDA (Foundation) in collaboration with the Food and Drug Administration (FDA) hosted a workshop titled “Primary Mitochondrial Diseases: A Rare Disease Virtual Workshop” on 22 May 2025, to explore opportunities to optimize therapeutic development for primary mitochondrial diseases (PMD). The event brought together a diverse group of experts including FDA regulators, regulated industries, health care professionals, scientists, patients and their families and caregivers, and patient organizations. The presentations and panels discussed existing challenges and proposed strategies to improve enrollment and optimize clinical trial design elements (e.g., outcome measures, endpoint and patient population selection, and statistical analysis) that may support clinical trial innovations for PMD therapeutics in alignment with regulatory standards. Meeting purpose Primary mitochondrial diseases (PMDs) are rare, often debilitating genetic disorders caused by variants in nuclear or mitochondrial DNA. There are approximately 70,000 PMD patients in the U.S. and 1 in 200 carry a pathogenic mtDNA variant.([1,2]) The multisystemic and heterogenous clinical presentations of PMDs present unique challenges for the development of targeted therapies.There have been ongoing collaborations between the PMD community and FDA to discuss the challenges and align on solutions for successful PMD drug development. For example, in 2019 the FDA hosted a scientific symposium titled Developing Therapies for Primary Mitochondrial Diseases: Bridging the Gap, where multiple stakeholders discussed ways to integrate mitochondrial biology into drug development, the value of registries, the refinement of patient-focused outcomes, and additional regulatory and scientific considerations for clinical trial designs in PMD [3]. Building on the foundation laid, FDA and the PMD community continued to engage on approaches to clinical trial design and endpoint selection for PMD treatments and most recently, these discussions culminated in the 2025 “Primary Mitochondrial Diseases: A Rare Disease Virtual Workshop” [4]. This workshop focused on specific clinical development and design approaches, engagement with patients and other disease experts, analytic strategies for managing heterogeneity, and leveraging lessons learned for future success. PMD patients, families, advocates, academic clinical experts, FDA representatives, and others from the PMD community participated in the workshop.This paper provides summaries of the presentations and reactor panels included in the workshop and concludes with key learnings and future directions for drug development for PMD identified during this meeting.
Background and Purpose Mitochondrial Encephalomyopathy, Lactic acidosis and Stroke-like episodes (MELAS) is a rare multisystem mitochondrial disorder with clinical heterogeneity. Diagnostic criteria and management strategies for MELAS and mitochondrial stroke-like episodes (SLE) remain inconsistent. This work provides international consensus recommendations on the definition, diagnosis, and management of MELAS and SLE in pediatric and adult populations.Methods An international Delphi consensus process was conducted within the European Reference Network for Neuromuscular Diseases (ERN EURO-NMD), in collaboration with the US Mitochondrial Medicine Society, the ERN for Hereditary Metabolic Disorders (MetabERN), and patient representatives. Following a systematic literature review, 54 statements addressing diagnostic definitions and management of MELAS were evaluated. Statements not reaching consensus were revised and re-evaluated during a face-to-face meeting.Results Consensus supported defining MELAS as a clinical syndrome characterized by one or more SLE in the context of mitochondrial dysfunction caused by a pathogenic mitochondrial DNA variant, particularly m.3243A>G in MT-TL1. The use of terms such as "MELAS-like" or "MELAS spectrum" was discouraged. The panel agreed that the efficacy of L-arginine, L-taurine, L-citrulline, coenzyme Q10, vitamins, and other supplements remains unproven and requires validation in clinical trials. Antiseizure medications should be initiated promptly when seizures are suspected during SLE, and intravenous corticosteroids may be beneficial acutely. Multidisciplinary management of neurological, neuropsychiatric, and systemic complications was endorsed.Conclusions This international consensus provides updated definitions and practical guidance for the diagnosis and management of MELAS and SLE, aiming to harmonize clinical practice and inform future evidence-based research.
This retrospective study on X-linked PDHA1-related pyruvate dehydrogenase complex (PDHc) deficiency combined a systematic literature review with a multicentre survey exploring genotypes, phenotypes and survival. Data from 891 individuals (45% unpublished) were included. Of note, 53% of cases were females. Median age at last assessment was 6 years (range 0-80 years, n = 622). We detected 331 different (118 unpublished) PDHA1 variants, of which 75% (305/405) had occurred de novo. Variants in this study were uploaded to ClinVar (SCV006297015-SCV006297345). The 10 most frequent variants accounted for 36% of the diagnoses. Sixty-nine per cent of the variants were private; missense (50%) and frameshift (20%) variants were most common. Frameshift/nonsense (FS/N) variants in males (44/401, 11%) were confined to regions escaping nonsense-mediated decay (NMD) and were significantly less frequent than in females (151/461, 33%). Neonatal or infantile (405/529, 77%) presentations were most frequent, with pre/perinatal abnormalities reported in 47% (159/342). FS/N variants in the NMD-predicted region 3.9 [95% confidence interval (CI) 1.54-11.04] times increased the odds of fetal findings. Females presented significantly earlier [2 months, interquartile range (IQR) 7.0, n = 224] than males (8 months, IQR 16.6, n = 233), with increased risk of neonatal presentation [odds ratio (OR) 3.01 (95% CI 1.279-7.616)] when harbouring FS/N variants in the NMD-predicted region. The overall (n = 242) mean survival time was 10.9 (95% CI 9.9-11.9) years. On average, females survived 4.5 (95% CI 2.62-6.40) years longer than males despite presenting more severe phenotypes. Poor survival was associated with male sex [hazard ratio (HR) 3.3 (95% CI 1.95-5.62)], neonatal presentation [HR 5.5 (95% CI 2.17-14.09)], FS/N variants in the NMD-predicted region [HR 4.0 (95% CI 1.78, 9.16)] and splice variants [HR 2.3 (95% CI 1.15, 4.59)]. More severe clinical phenotypes were predicted by neonatal or infantile presentations and by female sex. Developmental delay (DD), intellectual disability (ID), muscle hypotonia, abnormal movements, seizures, feeding difficulties and microcephaly were the most frequent phenotypes, all occurring in more than half. Corpus callosum or basal ganglia alterations and cerebral atrophy were common. Four per cent (36/891) were reported to have mild phenotypes with no DD nor ID (25/36 males). This is the largest dataset on a nuclear-encoded defect of mitochondrial energy metabolism. The genotypic and phenotypic details further defines the disease landscape and can be used for variant interpretation. The correlations between genotypes, sex, phenotypes and survival, adds substantial improvement to counselling.
Background and ObjectivesTwinkle, encoded by the TWNK gene, is a mitochondrial DNA helicase that unwinds the double helix of DNA during replication, playing a pivotal role in mitochondrial function. Twinkle-related disorders encompass a variety of genetic disorders characterized by mitochondrial dysfunction. Although several phenotypes have been described, the full clinical and molecular spectrum remains poorly defined. The aim of this study was to characterize the phenotypic and genotypic variability among multinational patients diagnosed with Twinkle-related disorders.MethodsA retrospective cohort study was conducted in patients with Twinkle-related disorders at several specialized centers in Italy, France, Germany, Spain, Denmark, Hungary, and the United States, establishing the Twinkle-Related Disorders International Consortium for Trial Readiness (TReDIC). Data were collected from medical records, including clinical features, age at onset, disease progression, and results from genetic testing. Phenotypic categories included infantile-onset cerebellar ataxia, parkinsonism, primary mitochondrial myopathy (PMM), multisystem involvement, asymptomatic carriers, undetermined phenotypes, and other phenotypes. All patients' diagnoses were confirmed by genetic analysis, and their genetic variants were noted. Outcomes included prevalence of phenotypes, symptom chronology, and mutational patterns.ResultsThe study included a total of 189 patients (116 female), with a mean age at symptom onset of 40.3 years. At the time of analysis, 70.4% were alive. PMM was the predominant syndrome (85.2%), and most common features were progressive external ophthalmoplegia (84.7%) and skeletal myopathy (55.6%), followed by hearing loss (17.5%) and psychiatric symptoms (15.3%). Most patients (76.8%) presented with neuromuscular symptoms, with fewer showing CNS (19.6%) or multiorgan (3.6%) features at onset; by more than 8 years from onset, these proportions shifted to 54.4%, 23.3%, and 23.3%, respectively. A total of 73 TWNK variants (16 novel) were found, mostly missense, clustered in functionally critical regions.DiscussionThis large multinational cohort analysis advances our understanding of Twinkle-related disorders by identifying mutational hotspots with clinical relevance and illustrating the broad phenotypic spectrum and progression patterns. In the context of such rare diseases, the formation of international collaborations, such as TReDIC, can enhance our understanding and support the design of upcoming clinical trials.
BACKGROUND AND OBJECTIVES:Twinkle, encoded by the TWNK gene, is a mitochondrial DNA helicase that unwinds the double helix of DNA during replication, playing a pivotal role in mitochondrial function. Twinkle-related disorders encompass a variety of genetic disorders characterized by mitochondrial dysfunction. Although several phenotypes have been described, the full clinical and molecular spectrum remains poorly defined. The aim of this study was to characterize the phenotypic and genotypic variability among multinational patients diagnosed with Twinkle-related disorders. METHODS:A retrospective cohort study was conducted in patients with Twinkle-related disorders at several specialized centers in Italy, France, Germany, Spain, Denmark, Hungary, and the United States, establishing the Twinkle-Related Disorders International Consortium for Trial Readiness (TReDIC). Data were collected from medical records, including clinical features, age at onset, disease progression, and results from genetic testing. Phenotypic categories included infantile-onset cerebellar ataxia, parkinsonism, primary mitochondrial myopathy (PMM), multisystem involvement, asymptomatic carriers, undetermined phenotypes, and other phenotypes. All patients' diagnoses were confirmed by genetic analysis, and their genetic variants were noted. Outcomes included prevalence of phenotypes, symptom chronology, and mutational patterns. RESULTS:The study included a total of 189 patients (116 female), with a mean age at symptom onset of 40.3 years. At the time of analysis, 70.4% were alive. PMM was the predominant syndrome (85.2%), and most common features were progressive external ophthalmoplegia (84.7%) and skeletal myopathy (55.6%), followed by hearing loss (17.5%) and psychiatric symptoms (15.3%). Most patients (76.8%) presented with neuromuscular symptoms, with fewer showing CNS (19.6%) or multiorgan (3.6%) features at onset; by more than 8 years from onset, these proportions shifted to 54.4%, 23.3%, and 23.3%, respectively. A total of 73 TWNK variants (16 novel) were found, mostly missense, clustered in functionally critical regions. DISCUSSION:This large multinational cohort analysis advances our understanding of Twinkle-related disorders by identifying mutational hotspots with clinical relevance and illustrating the broad phenotypic spectrum and progression patterns. In the context of such rare diseases, the formation of international collaborations, such as TReDIC, can enhance our understanding and support the design of upcoming clinical trials.
Primary mitochondrial diseases (PMD) are ultra-rare, genetically diverse disorders that impair cellular energy metabolism and typically present with multisystemic symptoms. Over the past decades, the therapeutic landscape of PMD has evolved substantially. Early trials of non-specific antioxidant and metabolic therapies produced largely negative or mixed results, providing important methodological lessons for the field. More recent studies have adopted improved outcome measures, natural history-informed designs, and precision therapeutic approaches, including gene therapy and nucleoside therapy, which have shown encouraging clinical and regulatory progress. Regulatory agencies have only recently begun approving disease-modifying therapies for selected mitochondrial disorders. The European Medicines Agency (EMA) approved idebenone for Leber Hereditary Optic Neuropathy (LHON) in 2015 but only recently, in 2025 did the Food and Drug Administration (FDA) in the US approve a treatment for Barth syndrome and thymidine kinase 2 deficiency (TK2d). Friedreich’s ataxia received regulatory approval in 2023 from both the EMA and FDA, marking another milestone in mitochondria-related disorders. To comprehensively review clinical and regulatory developments in PMD over the past two decades, we conducted a structured scoping review and horizon scan of published clinical trials and regulatory approvals in PMD from January 2000 to November 2025. Data sources included PubMed, Embase, https://ClinicalTrials.gov , and regulatory agency websites. Recent accelerated and full FDA approvals validate the feasibility of tailored evidence packages, but sustaining this momentum will require more rigorous alignment of trial design with molecular biology, strengthening of natural history infrastructure, deployment of sensitive biomarkers, and adoption of innovative statistical approaches. Early regulatory engagement and robust patient-community partnerships will be key.
The inaugural United Mitochondrial Disease Foundation (UMDF) Mitochondrial Medicine 2025 Masterclass focused on primary mitochondrial diseases (PMDs) especially primary mitochondrial myopathies (PMMs) and thymidine kinase 2 deficiency (TK2d). The Masterclass featured leading US experts in the field, providing the latest scientific and clinical knowledge, as well as patients and caregivers sharing their lived experience of mitochondrial diseases. In this report, we summarize the key highlights of each presentation. An overview of PMM featuring the etiologies of different PMMs and key features of notable PMMs, was followed by a presentation discussing the practical clinical processes of diagnosing PMM, how the roles of clinicians have evolved as diagnostic technology has improved, and actions clinicians can take to maximize the chances of an early, accurate diagnosis. Real-world case studies highlighted variations in disease presentation among the wide range of PMMs, which was followed by an in-depth review of clinical assessments and symptom management for PMM across organ systems. Multisystemic disorders like PMM require multidisciplinary management, in both a chronic and acute setting, and two experts discussed the practical workflow for clinicians to build a multidisciplinary model of care at their hospitals, the roles and responsibilities of the lead coordinator and each subspecialist, and practical steps that clinicians can take to manage acute care coordination and decrease acute care utilization. A hypothetical case study of TK2d (based on real patients) brought together the different aspects of PMM discussed during the Masterclass, while the patient perspective presentations allowed patients and caregivers to discuss the real-world impact that the diagnostic and care journey had on them and their families. This Educational Masterclass provided detailed knowledge of PMM designed to provide the next generation of clinicians and investigators with practical, actionable guidance and resources they could utilize to make a difference in the lives of patients with PMM.
Mitochondrial disorders are multiorgan disorders resulting in significant morbidity and mortality. We aimed to characterize death-associated factors in an international cohort of deceased individuals with mitochondrial disorders. This cross-sectional multicenter observational study used data provided by 26 mitochondrial disease centers from 8 countries from January 2022 to March 2023. Individuals with genetically confirmed mitochondrial disorders were included, along with patients with clinically or genetically diagnosed Leigh syndrome. Collected data included demographic and genetic diagnosis variables, clinical phenotype, involvement of organs and systems, conditions leading to death, and supportive care. We defined pediatric and adult groups based on age at death before or after 18 years, respectively. We used Kruskal-Wallis with post hoc Dunn test with Bonferroni correction and Fisher exact test for comparisons, Spearman rank test for correlations, and multiple linear regression for multivariable analysis. Data from 330 deceased individuals with mitochondrial disorders (191 [57.9%] pediatric) were analyzed. The shortest survival times were observed in hepatocerebral syndrome (median 0.3, interquartile range [IQR] 0.2-0.6 years) and mitochondrial cardiomyopathy (median 0.3, IQR 0.2-5.2 years) and the longest in chronic progressive external ophthalmoplegia plus (median 26.5, IQR 22.8-40.2 years) and sensory ataxic neuropathy, dysarthria, and ophthalmoparesis (median 21.0, IQR 13.8-28.5 years). Respiratory failure and pulmonary infections were the most common conditions associated with death (52/330, 15.7% and 46/330, 13.9%, respectively). Noninvasive ventilation was required more often in children (57/191, 29.8%) than adults (12/139, 8.6%, p < 0.001), as was nasogastric or gastric tube (131/191, 68.6% in children and 39/139, 28.1% in adults, p < 0.001). On multivariate analysis, individuals with movement disorders and nuclear gene involvement had increased odds of any respiratory support use (OR 2.42 (95% CI 1.17-5.22) and OR 2.39 (95% CI 1.16-5.07), respectively). This international collaboration highlights the importance of respiratory care and infection management and provides a reference for prognostication across different mitochondrial disorders.
Primary mitochondrial myopathies (PMMs), a group of genetic mitochondrial oxidative phosphorylation disorders, primarily affect skeletal muscle function. No approved treatments for PMM exist, and patient information is limited. The international RePOWER registry (NCT03048617) assessed genotypic and phenotypic relationships in PMM and identified patients for MMPOWER-3 (elamipretide Phase 3 study). RePOWER enrolled screened and ambulatory patients aged 16-80 years. With signs and/or symptoms of PMM (N = 376; 60.4% female; mean [SD] age 42.6 [14.4] years; ~75% with an mtDNA variant and ~25% with an nDNA variant). Baseline information, current symptoms, qualityoflife, and functional assessments (6-Minute Walk Test [6MWT], Triple-Timed Up-and-Go [3TUG] Test, and 5-Times Sit-to-Stand Test [5XSST]) were captured. Accredited laboratory and genetic testing methods were available to most patients. The majority of enrolled PMM patients presented with progressive external ophthalmoplegia and fatigue. US patients were observed to use more medical interventions. Compared to non-US patients, US patients did not perform as well on the 6MWT (mean 364.6 vs. 375.2 m) and 5XSST (mean 21.6 vs. 18.6 s); US patients performed better on the 3TUG test (mean 40.2 vs. 45.0 s). The RePOWER registry provided data on patients with genetically confirmed PMM, thereby improving our understanding of PMM diagnosis and treatment and the differences in global mitochondrial clinical practice.
BACKGROUND:Fatigue is a debilitating symptom in patients with primary mitochondrial disease nPMD). Developing new treatments that improve fatigue is a patient priority but is hampered by a lack of fit-for-purpose patient-reported outcome measures (PROMs). We aimed to understand the impact of fatigue on the lives of people with PMD and develop a brief PMD-specific PROM to evaluate fatigue in clinical trials. METHODS:Adults with genetically confirmed PMD and self-reported moderate-to-severe fatigue and myopathy/exercise intolerance participated in a concept elicitation interview to explore their experiences of fatigue. Interview transcripts were coded thematically using MAXQDA™. Characteristics and impacts that emerged from the interviews were mapped to items in the PROMIS® Fatigue item bank. Participants then engaged in a cognitive interview to assess relevance and understandability of PROMIS Fatigue items considered for the PROM. RESULTS:Twelve adults with PMD (n = 8 women, age 20-75 years) were interviewed. The most frequently reported characteristics of fatigue included tiredness, muscle weakness/fatigue, exhaustion, lack of energy, and mental fatigue. Fatigue affected patients' ability to perform daily life activities, including household chores, leisure activities, physical activity/exercise, and work/school, and negatively affected mood and relationships. Nine items were included in the final PROM based on level of endorsement of underlying concepts elicited by the concept elicitation interviews and relevance, clarity, and ease of answering, as assessed in the cognitive interviews. CONCLUSION:The nine-item PROMIS Fatigue Mitochondrial Disease Short Form is the first PROM designed specifically to assess fatigue in PMD. This study demonstrates the content validity of the short form, and future longitudinal studies will assess its psychometric properties.
BACKGROUND AND OBJECTIVES:Mitochondrial disorders are multiorgan disorders resulting in significant morbidity and mortality. We aimed to characterize death-associated factors in an international cohort of deceased individuals with mitochondrial disorders. METHODS:This cross-sectional multicenter observational study used data provided by 26 mitochondrial disease centers from 8 countries from January 2022 to March 2023. Individuals with genetically confirmed mitochondrial disorders were included, along with patients with clinically or genetically diagnosed Leigh syndrome. Collected data included demographic and genetic diagnosis variables, clinical phenotype, involvement of organs and systems, conditions leading to death, and supportive care. We defined pediatric and adult groups based on age at death before or after 18 years, respectively. We used Kruskal-Wallis with post hoc Dunn test with Bonferroni correction and Fisher exact test for comparisons, Spearman rank test for correlations, and multiple linear regression for multivariable analysis. RESULTS:Data from 330 deceased individuals with mitochondrial disorders (191 [57.9%] pediatric) were analyzed. The shortest survival times were observed in hepatocerebral syndrome (median 0.3, interquartile range [IQR] 0.2-0.6 years) and mitochondrial cardiomyopathy (median 0.3, IQR 0.2-5.2 years) and the longest in chronic progressive external ophthalmoplegia plus (median 26.5, IQR 22.8-40.2 years) and sensory ataxic neuropathy, dysarthria, and ophthalmoparesis (median 21.0, IQR 13.8-28.5 years). Respiratory failure and pulmonary infections were the most common conditions associated with death (52/330, 15.7% and 46/330, 13.9%, respectively). Noninvasive ventilation was required more often in children (57/191, 29.8%) than adults (12/139, 8.6%, p < 0.001), as was nasogastric or gastric tube (131/191, 68.6% in children and 39/139, 28.1% in adults, p < 0.001). On multivariate analysis, individuals with movement disorders and nuclear gene involvement had increased odds of any respiratory support use (OR 2.42 (95% CI 1.17-5.22) and OR 2.39 (95% CI 1.16-5.07), respectively). DISCUSSION:This international collaboration highlights the importance of respiratory care and infection management and provides a reference for prognostication across different mitochondrial disorders.
Mitochondrial encephalomyopathy with lactic acidosis and stroke-like episodes (MELAS) is a rare genetic syndrome mostly associated with pathogenic variants in mitochondrial DNA. As there is limited research on the life experience of patients with MELAS, this study aimed to develop an understanding of the patient experience of MELAS through qualitative interviews to identify, describe, and substantiate important and relevant signs, symptoms, and health-related quality-of-life (HRQoL) impact (S/S/I) concepts. Clinician and patient interviews were conducted virtually using semi-structured interview guides. During 60-minute interviews with five experts in the United States, clinicians were asked for their perspective on S/S/I of patients with MELAS, patient experience of fatigue and cognitive impairment, and whether patients would be able to accurately report and rate their symptoms and complete a 90-minute patient experience interview. During a 45-minute interview conducted with 16 adults with confirmed pathogenic variant and clinical diagnosis of MELAS, patients were asked about S/S/I. Interviews were recorded, transcribed, anonymized, coded, and analyzed for saturation and concept frequency and clarification (e.g., severity, frequency, duration). Experts reported 44 distinct S/S and 36 HRQoL impact concepts. All five experts confirmed that cognitive impairment would not inhibit a typical patient’s ability to report on their own experiences; three reported that patients with MELAS would not be able to complete a 90-minute interview. Sixteen patient interviews (mean age: 42.3 [11.1], n = 10 women) were conducted. Interviews with patients with MELAS achieved saturation of concept and yielded 35 S/S concepts and 68 HRQoL impacts across 15 domains. The most frequently reported S/S concepts were physical fatigue (n = 15, 93.8
T cells have been shown to maintain a lower percentage (heteroplasmy) of the pathogenic m.3243A>G variant (MT-TL1, associated with maternally inherited diabetes and deafness [MIDD] and mitochondrial encephalomyopathy with lactic acidosis and stroke-like episodes [MELAS]). The mechanism(s) underlying this purifying selection, however, remain unknown. Here we report that purified patient memory CD4+ T cells have lower bulk m.3243A>G heteroplasmy compared to naïve CD4+ T cells. In vitro activation of naïve CD4+ m.3243A>G patient T cells results in lower bulk m.3243A>G heteroplasmy after proliferation. Finally, m.3243A>G patient T cell receptor repertoire sequencing reveals relative oligoclonality compared to controls. These data support a role for T cell activation in peripheral, purifying selection against high m.3243A>G heteroplasmy T cells at the level of the cell, in a likely cell-autonomous fashion.
Background Pegunigalsidase alfa is a PEGylated α-galactosidase A enzyme replacement therapy. BALANCE (NCT02795676) assessed non-inferiority of pegunigalsidase alfa versus agalsidase beta in adults with Fabry disease with an annualised estimated glomerular filtration rate (eGFR) slope more negative than −2 mL/min/1.73 m2/year who had received agalsidase beta for ≥1 year. Methods Patients were randomly assigned 2:1 to receive 1 mg/kg pegunigalsidase alfa or agalsidase beta every 2 weeks for 2 years. The primary efficacy analysis assessed non-inferiority based on median annualised eGFR slope differences between treatment arms. Results Seventy-seven patients received either pegunigalsidase alfa (n=52) or agalsidase beta (n=25). At baseline, mean (range) age was 44 (18–60) years, 47 (61%) patients were male, median eGFR was 74.5 mL/min/1.73 m2 and median (range) eGFR slope was −7.3 (−30.5, 6.3) mL/min/1.73 m2/year. At 2 years, the difference between median eGFR slopes was −0.36 mL/min/1.73 m2/year, meeting the prespecified non-inferiority margin. Minimal changes were observed in lyso-Gb3 concentrations in both treatment arms at 2 years. Proportions of patients experiencing treatment-related adverse events and mild or moderate infusion-related reactions were similar in both groups, yet exposure-adjusted rates were 3.6-fold and 7.8-fold higher, respectively, with agalsidase beta than pegunigalsidase alfa. At the end of the study, neutralising antibodies were detected in 7 out of 47 (15%) pegunigalsidase alfa-treated patients and 6 out of 23 (26%) agalsidase beta-treated patients. There were no deaths. Conclusions Based on rate of eGFR decline over 2 years, pegunigalsidase alfa was non-inferior to agalsidase beta. Pegunigalsidase alfa had lower rates of treatment-emergent adverse events and mild or moderate infusion-related reactions. Trial registration number NCT02795676.
Mucopolysaccharidosis type I (MPS I), a lysosomal disorder caused by variants in IDUA, was added to the Recommended Uniform Screening Panel for newborn screening in 2016. Positive screening results for MPS I are commonly due to variants known as "pseudodeficiency alleles," which decrease in vitro alpha-L-iduronidase enzyme activity but are thought to provide sufficient in vivo activity. Despite the historic assumption that these variants are biologically benign, the possibility that they could give rise to complex, multigenic, or attenuated phenotypes has not been systemically evaluated in adults. We completed a retrospective matched cohort study using a hospital-based biorepository with data from 65,309 participants, we identified 1803 individuals harboring homozygous IDUA pseudodeficiency alleles. Using electronic medical records (EMR), we compared the prevalence of features of MPS I in participants with homozygous pseudodeficiency alleles to a cohort of matched control participants. We found no clinically relevant significant differences between cases and controls nor genotype-phenotype associations across four alleles. These findings provide empiric support that adults with homozygous IDUA pseudodeficiency alleles are unlikely to develop mild symptoms of disease compared with controls. This study provides a proof-of-concept model for other nonclassical disease variants related to other inherited metabolic disorders, which is necessary as newborn screening expands.