Search PubMed⌕ Search

Biomedical subjects

Marni J Falk

Publications and source records attributed to Marni J Falk.

10 recordsLinked to original sources

Evaluation of muscle microvascular perfusion in primary mitochondrial disease by contrast-enhanced ultrasound: Feasibility study.

BACKGROUND: Primary mitochondrial disease (PMD) are genetic disorders characterized by impaired oxidative metabolism and microvascular abnormalities that contribute to the myopathy. OBJECTIVES: This study evaluates the feasibility and utility of contrast-enhanced ultrasound (CEUS) for quantifying skeletal muscle perfusion in patients with PMD. In addition, we assessed exercise-induced changes following cardiopulmonary exercise testing (CPET) to characterize dynamic vascular responses. DESIGN: Prospective pilot feasibility study. METHODS: We enrolled genetically confirmed PMD and healthy control participants with ability to complete the CPET protocol. CEUS of the vastus lateralis muscle was performed at rest and following CPET. Imaging parameters were standardized across all CEUS scans, with a fixed mechanical index of 0.13. Perfusion parameters, including perfusion index (PI), peak enhancement (PE), and area under the curve (AUC) were quantified using delta projection analysis, and compared between PMD and control participants, and within each group, pre- and post-exercise. RESULTS: A total of 5 PMD and 5 control participants were evaluated. At rest, CEUS demonstrated a trend in higher muscle perfusion in PMD as compared to control participants on comparing PI (13.7 ± 2.7 vs. 10.7 ± 3.2; p = 0.42), PE (24.9 ± 11.5 vs. 14.3 ± 6.8; p = 0.22), and AUC (95,253.4 ± 35,072.8 vs. 73,591.2 ± 32,820.6; p = 0.31), which did not reach statistical significance, likely in part due to the small cohort size. Following CPET, PMD participants demonstrated exaggerated percentage increases in PI (+21.1% vs. +16.0%), PE (+11.2% vs. +7.6%), and AUC (+20.2% vs. +12.5%) as compared to control participants. Within group analysis revealed a significant post-exercise increase in AUC among PMD participants (p = 0.01) but did not reach significance in control participants. CONCLUSION: This is the first study to demonstrate the feasibility and utility of conducting CEUS to assess skeletal muscle perfusion in ambulatory PMD patients. The distinct perfusion patterns and exaggerated exercise-induced responses observed in PMD as compared to control participants suggest that reactive hyperemia occurs in PMD at rest and is further exaggerated by exercise. CEUS may serve as a sensitive tool for detecting microvascular alterations in PMD.

cardiopulmonary exercise testing (CPET)↗

Endothelial-mitochondrial coupling in mitochondrial disease: A systematic review and quantitative synthesis of vascular, biochemical, and oxidative bioenergetic dysfunction.

INTRODUCTION: Mitochondrial diseases are multisystem disorders in which defects in oxidative phosphorylation disrupt cellular bioenergetics and redox signaling across the vasculature and heart. Because mitochondrial function is closely linked to endothelial nitric oxide (NO) production, we hypothesized that mitochondrial diseases manifest as a NO-deficiency endotheliopathy affecting conduit and microvascular function. To evaluate this, we performed a systematic review with quantitative synthesis of human studies reporting vascular reactivity, biochemical NO production, or myocardial metabolic imaging, aiming to define the magnitude of impairment and responsiveness to NO-precursor therapy (l-arginine or l-citrulline). METHODS: Following PRISMA 2020 guidelines, we conducted a comprehensive search (inception-October 2025) identifying clinical studies of genetically or clinically confirmed mitochondrial disease with quantitative endothelial or bioenergetic endpoints. Eligible measures included flow-mediated dilation (FMD), reactive hyperemia index (RHI), passive-leg-movement (PLM) hyperemia, absolute synthesis rate of NO metabolites (ASR NOm), and positron emission tomography (PET)-derived myocardial oxidative indices (k mono , DP/k mono ). Quantitative synthesis used Hedges g for between-group comparisons and standardized mean change (SMC) for within-subject responses. Risk of bias was evaluated using ROBINS-I and a modified Newcastle-Ottawa Scale. RESULTS: Seven studies met these inclusion criteria, comprising 76 mitochondrial-disease subjects and 81 controls (ages 8-63 years). Across all vascular and metabolic domains, mitochondrial disease was associated with marked endothelial and bioenergetic impairment. Macro- and microvascular dysfunction, reflected by reduced FMD, RHI, and PLM hyperemia, demonstrated severe endothelium-specific abnormalities. Biochemical assays showed diminished NO synthesis. Myocardial PET imaging revealed reduced oxidative rate constants and increased energetic inefficiency despite preserved perfusion. Nitric oxide synthesis-precursor therapy was associated with improved endothelial reactivity (increased FMD, RHI, and ASR NOm) and significant, modest improvements in myocardial oxidative metabolism, consistent with partial restoration of endothelial NO signaling. Effect sizes collectively supported a reversible NO-deficiency endotheliopathy. The risk-of-bias assessment indicated moderate-to-good methodological quality, with limitations primarily related to small sample sizes and nonrandomized designs. CONCLUSIONS: Mitochondrial disease is characterized by significant impairments in vascular reactivity, NO signaling, and myocardial bioenergetics. Improvements in endothelial function and NO synthesis following l-arginine or l-citrulline supplementation are consistent with a role for impaired endothelial NO signaling in the vascular manifestations of mitochondrial disease. These findings highlight the vascular endothelium as a potential therapeutic target and underscore the need for future clinical intervention trials that use standardized vascular and bioenergetic endpoints.

and stroke-like episodes (MELAS)↗

Trans-Mitochondrial Cybrid Generation from mtDNA Patient Platelets: An Efficient Protocol Optimizing Colony Selection and Functional Validation.

Trans-mitochondrial cybrid cell line generation represents the gold-standard method for determining pathogenicity by enabling biochemical analyses of a specific mitochondrial DNA (mtDNA) variant of interest at high and low percentages (heteroplasmy levels) within an otherwise identical mtDNA and nuclear genome background. Historically, the cybrid generation process has been tedious and poorly efficient. Here, we describe a highly efficient and effective protocol for generating trans-mitochondrial cybrid cell lines by fusing human platelets with a standard osteosarcoma 143B cell line to provide an isogenic nuclear background depleted of mtDNA (Rho0 cells). Cell isolates capture a given mtDNA genome of interest to establish stable cell lines harboring different degrees of heteroplasmy, or to compare divergent effects of distinct mitochondrial haplogroups. Because cybrids from mitochondrial patients may be more difficult to establish with standard protocols, this current methodology focuses on isolating mtDNA variants where the electron transport chain activity is affected. We here demonstrate that colony selection techniques reduce time and improve the yield of generating high-level heteroplasmy mtDNA mutant cybrid lines. A case study is provided of cybrid generation for a variant of unknown significance in MT-ND1, m.3985G>A (p.E227K). We analyze the efficiency of the cybrid generation process using this protocol and run functional studies performed by high-resolution respirometry. High-level heteroplasmy MT-ND1 m.3985G>A cybrid mutants generated by this protocol are shown to have impaired complex I-dependent mitochondrial respiration relative to wild-type control, demonstrating m.3985G>A is likely pathogenic.

Humans↗

Recognizing the evolution of clinical syndrome spectrum progression in individuals with single large-scale mitochondrial DNA deletion syndromes (SLSMDS).

PURPOSE: Single large-scale mtDNA deletions (SLSMD) result in single large-scale deletion syndromes (SLSMDS). SLSMDS presentations have classically been recognized to encompass at least 3 distinct clinical phenotypes: Pearson syndrome (PS), Kearns-Sayre syndrome (KSS), and chronic progressive ophthalmoplegia. METHODS: A facilitated review of electronic medical records, manual charts, and Research Electronic Data Capture research databases was performed to complete a retrospective natural history study of 30 participants with SLSMDS in a single health system between 2002 and 2020. The evaluated characteristics included genetic and clinical laboratory test values, growth parameters, signs and symptoms, demographics, and patient-reported outcome measures of fatigue, quality of life, and overall function. RESULTS: Detailed cohort characterization highlighted that a recurrent deleted region involving MT-ND5 (HGNC:7641) occurs in 96% of participants with SLSMDS regardless of the clinical phenotype, which tends to evolve over time. Higher blood heteroplasmy correlated with an earlier age of onset. Growth differentiation factor 15 levels were elevated in all participants with SLSMDS. A history of PS was associated with poor survival prognosis. Furthermore, increased fatigue and decreased quality of life have been reported in patients with SLSMD with advanced age. CONCLUSION: A retrospective natural history study of patients with SLSMDS demonstrated the evolution of classically considered PS, Kearns-Sayre syndrome, and chronic progressive ophthalmoplegia clinical presentations in affected individuals, which may inform future clinical trial developments.

Humans↗

Mitochondrial complex I function modulates volatile anesthetic sensitivity in C. elegans.

Despite the widespread clinical use of volatile anesthetics, their mechanisms of action remain unknown [1-6]. An unbiased genetic screen in the nematode C. elegans for animals with altered volatile anesthetic sensitivity identified a mutant in a nuclear-encoded subunit of mitochondrial complex I [7,8]. This raised the question of whether mitochondrial dysfunction might be the primary mechanism by which volatile anesthetics act, rather than an untoward secondary effect [9,10]. We report here analysis of additional C. elegans mutations in orthologs of human genes that contribute to the formation of complex I, complex II, complex III, and coenzyme Q [11-14]. To further characterize the specific contribution of complex I, we generated four hypomorphic C. elegans mutants encoding different complex I subunits [15]. Our main finding is the identification of a clear correlation between complex I-dependent oxidative phosphorylation capacity and volatile anesthetic sensitivity. These extended data link a physiologic determinant of anesthetic action in a tractable animal model to similar clinical observations in children with mitochondrial myopathies [16]. This work is the first to specifically implicate complex I-dependent oxidative phosphorylation function as a primary mediator of volatile anesthetic effect.

Anesthetics↗

Maternal uniparental disomy chromosome 14: case report and literature review.

Uniparental disomy is a genetic cause of disease implicated in a wide variety of neurologic disorders. A recently identified condition is maternal uniparental disomy for chromosome 14 (mUPD14) syndrome. A child with hypotonia and developmental delay was found to have mUPD14 after identification of a balanced karyotypic rearrangement involving both chromosomes 14. We explore the genetic mechanisms by which uniparental disomy can cause clinical abnormalities and karyotypic findings that should raise suspicion for uniparental disomy, review the literature on the mUPD14, and discuss clinical indications on which to suspect this diagnosis. Although it is more difficult to establish a diagnosis in the absence of visible karyotypic abnormalities involving chromosome 14, a distinct phenotype exists in mUPD14 syndrome: in utero growth restriction, congenital hypotonia, gross motor delay, arrested hydrocephalus, mild to moderate mental retardation, joint hyperextensibility, short stature, and precocious puberty. Testing for mUPD14 should be considered in infants with generalized hypotonia who have a history of in utero growth restriction.

Chromosomes, Human, Pair 14↗

Cohen syndrome in the Ohio Amish.

We describe eight members from two large Amish kindreds who share a phenotype characterized by early-onset pigmentary retinopathy and myopia, global developmental delay and mental retardation, microcephaly, short stature, hypotonia, joint hyperextensibility, small hands and feet, common facial appearance, and friendly disposition. Several of the children had intermittent granulocytopenia. The phenotypic occurrence in three siblings coupled with the increased coefficient of inbreeding in the Amish suggested that this disorder is autosomal recessive and due to a single founder allele. Despite similarity to the clinical features of Cohen syndrome, experienced dysmorphologists attending the 23rd David W. Smith Workshop suggested the facial gestalt of the Amish children was inconsistent with this diagnosis. We mapped the locus responsible for these individuals' phenotype to chromosome 8q22-q23, which contains the recently discovered Cohen syndrome gene, COH1. Complete sequencing of the COH1 gene identified a likely disease-causing frameshift mutation and a missense mutation in the Amish patients. A comparison of features among different Cohen syndrome populations with shared linkage to the COH1 locus or known COH1 gene mutations may allow for the determination of improved clinical criteria on which to suspect the diagnosis of Cohen syndrome. We conclude that facial gestalt seems to be an unreliable indicator of Cohen syndrome between ethnic populations, although it is quite consistent among affected individuals within a particular ethnic group. Other features common to almost all individuals with proven COH1 mutations, such as retinal dystrophy, myopia, microcephaly, mental retardation, global developmental delay, hypotonia, and joint hyperextensibility appear to be better clinical indicators of this disorder.

Abnormalities, Multiple↗

The primary care physician's approach to congenital anomalies.

Children with congenital anomalies often represent a special diagnostic and management challenge. To provide optimal care for these children, one must employ a systematic approach to identify the likely pathogenic mechanism leading to the birth defects present. Determining how distinct anomalies relate to one another may lead to elucidation of a specific genetic etiology for the patient's condition. Genetic testing is increasingly available to allow for diagnostic confirmation. Using this systematic approach to a child with congenital anomalies permits accurate prognostic and recurrence risk counseling, informed management decisions, and the appropriate allocation of social support and medical resources.

Abnormalities, Multiple↗

Medical Geneticists' duty to warn at-risk relatives for genetic disease.

A patient who refuses to notify their relatives of potential at-risk status brings a genetics provider to face conflicting ethical principles and ill-defined legal precedent. Genetics professionals' views on the disclosure of patient information to at-risk relatives have remained largely unexamined. Prior analyses have been limited to identifying factors contributing to genetics providers' self-predicted responses in hypothetical scenarios. Our group was the first to examine the clinical experience of genetic counselors with this issue [Dugan et al., 2003]. We report here results from our follow-up survey of medical geneticists who are members of either the American Society of Human Genetics and/or American College of Medical Genetics in an effort to identify their experiences in warning at-risk relatives and the factors driving their decision-making processes. Over two-thirds of medical geneticists surveyed (69%, 143/206) believe they do bear responsibility to warn their patients' relatives when found to be at-risk for genetic disease. One-quarter (25%, 31/123) of medical geneticists who faced the dilemma of a patient refusing to notify their at-risk relatives seriously considered disclosure to those at-risk relatives without patient consent. Only four respondents proceeded to warn at-risk relatives of their status. Whereas genetic counselors cited emotional issues as playing a primary role in their decision not to warn, medical geneticists identified patient confidentiality, eventual case resolution by other means, and legal liability as the major factors leading to non-disclosure in 76% of actual scenarios. Responsibilities of medical geneticists, genetic counselors, and non-genetics healthcare professionals facing this issue will need to be more clearly defined to provide optimal medical care within the bounds of acceptable practice.

Confidentiality↗

Intravenous bisphosphonate therapy in children with osteogenesis imperfecta.

OBJECTIVE: Several studies have reported beneficial effects of bisphosphonates in children with osteogenesis imperfecta (OI); however, these studies have differed in the protocols they used, and none has been independently replicated. We intended to confirm the efficacy of a specific intravenous bisphosphonate protocol in children with moderate to severe OI. METHODS: We used the protocol described by Glorieux et al and performed a prospective clinical trial in 6 children who were aged 22 months to 14 years. Each patient received intravenous pamidronate therapy for a minimum of 2 years in cycles of 1 mg/kg daily over 3 consecutive days at a mean cycle interval of 3.8 months. Outcome measures included lumbar spine areal bone mineral density (BMD) and z score, fracture rate, and occupational therapy functional assessment with serial Pediatric Evaluation of Disability Inventory. RESULTS: While on therapy, the average annual increase in areal BMD was 48% and the average annual increase in BMD z score was 1.0. This increase in z score is statistically significant. There was no clear correlation between changes in BMD and fracture rate. All patients experienced functional improvement in mobility. CONCLUSIONS: Our results support the findings of Glorieux et al that cyclic administration of intravenous pamidronate in children with OI has beneficial effects with respect to BMD z scores and physical disability. Long-term follow-up will be required to determine whether bisphosphonate therapy will decrease fracture rates and increase mobility in children with moderate to severe OI.

Adolescent↗