Try a new search

Format these results:

Searched for:

person:kaufmh06 or norcll01 or palmaj02

Total Results:

429


A Comprehensive NMR Analysis of Serum and Fecal Metabolites in Familial Dysautonomia Patients Reveals Significant Metabolic Perturbations

Costello, Stephanann M.; Cheney, Alexandra M.; Waldum, Annie; Tripet, Brian; Cotrina-Vidal, Maria; Kaufmann, Horacio; Norcliffe-Kaufmann, Lucy; Lefcort, Frances; Copié, Valérie
Central metabolism has a profound impact on the clinical phenotypes and penetrance of neurological diseases such as Alzheimer"™s (AD) and Parkinson"™s (PD) diseases, Amyotrophic Lateral Sclerosis (ALS) and Autism Spectrum Disorder (ASD). In contrast to the multifactorial origin of these neurological diseases, neurodevelopmental impairment and neurodegeneration in Familial Dysautonomia (FD) results from a single point mutation in the ELP1 gene. FD patients represent a well-defined population who can help us better understand the cellular networks underlying neurodegeneration, and how disease traits are affected by metabolic dysfunction, which in turn may contribute to dysregulation of the gut"“brain axis of FD. Here, 1H NMR spectroscopy was employed to characterize the serum and fecal metabolomes of FD patients, and to assess similarities and differences in the polar metabolite profiles between FD patients and healthy relative controls. Findings from this work revealed noteworthy metabolic alterations reflected in energy (ATP) production, mitochondrial function, amino acid and nucleotide catabolism, neurosignaling molecules, and gut-microbial metabolism. These results provide further evidence for a close interconnection between metabolism, neurodegeneration, and gut microbiome dysbiosis in FD, and create an opportunity to explore whether metabolic interventions targeting the gut"“brain"“metabolism axis of FD could be used to redress or slow down the progressive neurodegeneration observed in FD patients.
SCOPUS:85151916624
ISSN: 2218-1989
CID: 5460752

Cutaneous α-Synuclein Signatures in Patients With Multiple System Atrophy and Parkinson Disease

Gibbons, Christopher; Wang, Ningshan; Rajan, Sharika; Kern, Drew; Palma, Jose-Alberto; Kaufmann, Horacio; Freeman, Roy
BACKGROUND AND OBJECTIVES:Multiple system atrophy (MSA) is a progressive neurodegenerative disorder caused by the abnormal accumulation of α-synuclein in the nervous system. Clinical features include autonomic and motor dysfunction, which overlap with those of Parkinson disease (PD), particularly at early disease stages. There is an unmet need for accurate diagnostic and prognostic biomarkers for MSA and, specifically, a critical need to distinguish MSA from other synucleinopathies, particularly PD. The purpose of the study was to develop a unique cutaneous pathologic signature of phosphorylated α-synuclein that could distinguish patients with MSA from patients with PD and healthy controls. METHODS:We studied 31 patients with MSA and 54 patients with PD diagnosed according to current clinical consensus criteria. We also included 24 matched controls. All participants underwent neurologic examinations, autonomic testing, and skin biopsies at 3 locations. The density of intraepidermal, sudomotor, and pilomotor nerve fibers was measured. The deposition of phosphorylated α-synuclein was quantified. Results were compared with clinical rating assessments and autonomic function test results. RESULTS:< 0.0001) than patients with PD. These results provided >90% sensitivity and specificity in distinguishing between the 2 disorders. DISCUSSION:α-synuclein is present in the peripheral autonomic nerves of patients with MSA and when combined with synuclein distribution accurately distinguishes MSA from PD. CLASSIFICATION OF EVIDENCE:This study provides Class II evidence that measurement of phosphorylated α-synuclein in skin biopsies can differentiate patients with MSA from those with PD.
PMID: 36657992
ISSN: 1526-632x
CID: 5466502

Gastrointestinal bleeding in children with familial dysautonomia: a case-control study

Ramprasad, Chethan; Palma, Jose-Alberto; Norcliffe-Kaufmann, Lucy; Levy, Joseph; Chen, Lea Ann; Kaufmann, Horacio
OBJECTIVE:Familial dysautonomia (FD) is a rare inherited autosomal recessive disorder with abnormal somatosensory, enteric, and afferent autonomic neurons. We aimed to define the incidence of gastrointestinal bleeding and its associated risk factors in patients with FD. METHODS:In this retrospective case-control study, we identified all episodes of gastrointestinal bleeding in patients with FD, occurring over four decades (January 1980-December 2017), using the New York University FD registry. RESULTS:We identified 104 episodes of gastrointestinal bleeding occurring in 60 patients with FD. The estimated incidence rate of gastrointestinal bleeds in the FD population rate was 4.20 episodes per 1000 person-years. We compared the 60 cases with 94 age-matched controls. Bleeding in the upper gastrointestinal tract from gastric and duodenal ulcers occurred most frequently (64 bleeds, 75.6%). Patients were more likely to have a gastrostomy (G)-tube and a Nissen fundoplication [odds ratio (OR) 3.73, 95% confidence interval (CI) 1.303-13.565] than controls. The mean time from G-tube placement to first gastrointestinal bleed was 7.01 years. The mean time from Nissen fundoplication to bleed was 7.01 years. Cases and controls had similar frequency of intake of nonsteroidal antiinflammatory drugs (NSAID) and selective serotonin reuptake inhibitors (SSRI). CONCLUSION/CONCLUSIONS:The incidence of gastrointestinal bleeding in the pediatric FD population was estimated to be 4.20 per 1000 person-years, 21 times higher than in the general pediatric population (0.2 per 1000 person-years). Patients with FD with a G-tube and a Nissen fundoplication had a higher risk of a subsequent gastrointestinal bleeding.
PMID: 36735101
ISSN: 1619-1560
CID: 5426782

Life after acute pandysautonomia: a 40-year journey [Letter]

Wieling, Wouter; Damgrave, Marian; Riksen, Niels P; Kaufmann, Horacio
PMID: 36574076
ISSN: 1619-1560
CID: 5409562

The Clinical Autonomic Research journal 2022 and onward [Editorial]

Lamotte, Guillaume; Kaufmann, Horacio; Jordan, Jens
PMID: 36580219
ISSN: 1619-1560
CID: 5409682

Gut microbiome dysbiosis drives metabolic dysfunction in Familial dysautonomia

Cheney, Alexandra M; Costello, Stephanann M; Pinkham, Nicholas V; Waldum, Annie; Broadaway, Susan C; Cotrina-Vidal, Maria; Mergy, Marc; Tripet, Brian; Kominsky, Douglas J; Grifka-Walk, Heather M; Kaufmann, Horacio; Norcliffe-Kaufmann, Lucy; Peach, Jesse T; Bothner, Brian; Lefcort, Frances; Copié, Valérie; Walk, Seth T
Familial dysautonomia (FD) is a rare genetic neurologic disorder caused by impaired neuronal development and progressive degeneration of both the peripheral and central nervous systems. FD is monogenic, with >99.4% of patients sharing an identical point mutation in the elongator acetyltransferase complex subunit 1 (ELP1) gene, providing a relatively simple genetic background in which to identify modifiable factors that influence pathology. Gastrointestinal symptoms and metabolic deficits are common among FD patients, which supports the hypothesis that the gut microbiome and metabolome are altered and dysfunctional compared to healthy individuals. Here we show significant differences in gut microbiome composition (16 S rRNA gene sequencing of stool samples) and NMR-based stool and serum metabolomes between a cohort of FD patients (~14% of patients worldwide) and their cohabitating, healthy relatives. We show that key observations in human subjects are recapitulated in a neuron-specific Elp1-deficient mouse model, and that cohousing mutant and littermate control mice ameliorates gut microbiome dysbiosis, improves deficits in gut transit, and reduces disease severity. Our results provide evidence that neurologic deficits in FD alter the structure and function of the gut microbiome, which shifts overall host metabolism to perpetuate further neurodegeneration.
PMCID:9839693
PMID: 36639365
ISSN: 2041-1723
CID: 5410572

Blood Pressure and Risk of Dementia in Parkinson Disease and Multiple System Atrophy: Should You Buy the Dip in Such a Volatile Market? [Editorial]

Palma, Jose-Alberto; Cortelli, Pietro
PMID: 36526430
ISSN: 1526-632x
CID: 5382582

Midodrine

Chapter by: Palma, Jose Alberto; Kaufmann, Horacio
in: Primer on the Autonomic Nervous System, Fourth Edition by
[S.l.] : Elsevier, 2022
pp. 717-720
ISBN: 9780323854931
CID: 5447102

Pure autonomic failure

Chapter by: Kaufmann, Horacio; Goldstein, David S.
in: Primer on the Autonomic Nervous System, Fourth Edition by
[S.l.] : Elsevier, 2022
pp. 559-561
ISBN: 9780323854931
CID: 5447082

Myocardial stunning and takotsubo cardiomyopathy

Chapter by: Norcliffe-Kaufmann, Lucy
in: Primer on the Autonomic Nervous System, Fourth Edition by
[S.l.] : Elsevier, 2022
pp. 489-494
ISBN: 9780323854931
CID: 5447122