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result(s) for
"Amino Acid Metabolism, Inborn Errors - complications"
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Rationale and design of the Pemafibrate to Reduce Cardiovascular Outcomes by Reducing Triglycerides in Patients with Diabetes (PROMINENT) study
by
Glynn, Robert J.
,
Amarenco, Pierre
,
Everett, Brendan M.
in
Alcoholic beverages
,
Alcoholism
,
Angina
2018
Observational, genetic, and experimental data indicate that triglyceride rich lipoproteins (TRLs) likely participate causally in atherothrombosis. Yet, robust clinical trial evidence that triglyceride (TG) lowering therapy reduces cardiovascular events remains elusive. The selective peroxisome proliferator-activated receptor alpha modulator (SPPARM-α), pemafibrate, will be used to target residual cardiovascular risk remaining after treatment to reduce low-density lipoprotein cholesterol (LDL-C) in individuals with the dyslipidemia of type 2 diabetes mellitus (T2). The PROMINENT study will randomly allocate approximately 10,000 participants with T2D, mild-to-moderate hypertriglyceridemia (TG: 200–499 mg/dl; 2.26–5.64 mmol/l) and low high-density lipoprotein cholesterol levels (HDL-C: ≤40 mg/dl; 1.03 mmol/l) to either pemafibrate (0.2 mg twice daily) or matching placebo with an average expected follow-up period of 3.75 years (total treatment phase 5 years; 24 countries). At study entry, participants must be receiving either moderate-to-high intensity statin therapy or meet specified LDL-C criteria. The study population will be one-third primary and two-thirds secondary prevention (established cardiovascular disease). The primary endpoint is a composite of nonfatal myocardial infarction, nonfatal ischemic stroke, hospitalization for unstable angina requiring urgent coronary revascularization, and cardiovascular death. This event-driven study will complete when 1092 adjudicated primary endpoints have accrued with at least 200 occurring in women. Statistical power is at least 90% to detect an 18% reduction in the primary endpoint. Pre-specified secondary and tertiary endpoints include all-cause mortality, hospitalization for heart failure, new or worsening peripheral artery disease, new or worsening diabetic retinopathy and nephropathy, and change in biomarkers including select lipid and non-lipid biomarkers, inflammatory and glycemic parameters.
Journal Article
Follow-up of fatty acid β-oxidation disorders in expanded newborn screening era
by
Florindo, Cristina
,
Tavares de Almeida, Isabel
,
Ventura, Fátima V
in
Acyl-CoA dehydrogenase
,
Cardiac arrhythmia
,
Carnitine palmitoyltransferase
2019
Fatty acid β-oxidation (FAO) disorders have a wide variety of symptoms, not usually evident between episodes of acute decompensations. Cardiac involvement is frequent, and severe ventricular arrhythmias are suspected of causing sudden death. Expanded newborn screening (ENS) for these disorders, hopefully, contribute to prevent potentially acute life-threatening events. In order to characterize acute decompensations observed in FAO-deficient cases identified by ENS, a retrospective analysis was performed, covering a period of 9 years. Demographic data, number/type of acute decompensations, treatment, and follow-up were considered. Eighty-three clinical charts, including 66 medium-chain acyl-CoA dehydrogenase deficiency (MCADD), 5 carnitine-uptake deficiency (CUD), 3 carnitine palmitoyltransferase I and II (CPT I/II) deficiency, 5 very long-chain acyl-CoA dehydrogenase deficiency (VLCADD), and 4 multiple acyl-CoA dehydrogenase deficiency (MADD) cases were reviewed. Nineteen patients had acute decompensations (1 CPT I, 1 CPT II, 3 MADD, 14 MCADD). Six patients developed symptoms previously to ENS diagnosis. Severe clinical manifestations included multiple organ failure, liver failure, heart failure, and sudden death. Long-chain FAO disorders had the highest number of decompensations per patient.Conclusion: Despite earlier diagnosis by ENS, sudden deaths were not avoided and acute decompensations with severe clinical manifestations still occur as well.What is Known: • Severe ventricular arrhythmias are suspected to cause unexpected death in FAO disorders. • Neonatal screening intends to reduce the incidence of severe metabolic crisis and death.What is New: • Acute severe decompensations occurred in FAO disorders diagnosed through neonatal screening. • Sudden deaths were not avoided by starting treatment precociously.
Journal Article
The biochemical subtype is a predictor for cognitive function in glutaric aciduria type 1: a national prospective follow-up study
2021
The aim of the study was a systematic evaluation of cognitive development in individuals with glutaric aciduria type 1 (GA1), a rare neurometabolic disorder, identified by newborn screening in Germany. This national, prospective, observational, multi-centre study includes 107 individuals with confirmed GA1 identified by newborn screening between 1999 and 2020 in Germany. Clinical status, development, and IQ were assessed using standardized tests. Impact of interventional and non-interventional parameters on cognitive outcome was evaluated. The majority of tested individuals (n = 72) showed stable IQ values with age (n = 56 with IQ test; median test age 11 years) but a significantly lower performance (median [IQR] IQ 87 [78–98]) than in general population, particularly in individuals with a biochemical high excreter phenotype (84 [75–96]) compared to the low excreter group (98 [92–105]; p = 0.0164). For all patients, IQ results were homogenous on subscale levels. Sex, clinical motor phenotype and quality of metabolic treatment had no impact on cognitive functions. Long-term neurologic outcome in GA1 involves both motor and cognitive functions. The biochemical high excreter phenotype is the major risk factor for cognitive impairment while cognitive functions do not appear to be impacted by current therapy and striatal damage. These findings implicate the necessity of new treatment concepts.
Journal Article
Ocular manifestations in patients with inborn errors of intracellular cobalamin metabolism: a systematic review
2022
Inherited disorders of cobalamin (cbl) metabolism (cblA-J) result in accumulation of methylmalonic acid (MMA) and/or homocystinuria (HCU). Clinical presentation includes ophthalmological manifestations related to retina, optic nerve and posterior visual alterations, mainly reported in cblC and sporadically in other cbl inborn errors.We searched MEDLINE EMBASE and Cochrane Library, and analyzed articles reporting ocular manifestations in cbl inborn errors. Out of 166 studies a total of 52 studies reporting 163 cbl and 24 mut cases were included. Ocular manifestations were found in all cbl defects except for cblB and cblD-MMA; cblC was the most frequent disorder affecting 137 (84.0%) patients. The c.271dupA was the most common pathogenic variant, accounting for 70/105 (66.7%) cases. One hundred and thirty-seven out of 154 (88.9%) patients presented with early-onset disease (0–12 months). Nystagmus and strabismus were observed in all groups with the exception of MMA patients while maculopathy and peripheral retinal degeneration were almost exclusively found in MMA-HCU patients. Optic nerve damage ranging from mild temporal disc pallor to complete atrophy was prevalent in MMA-HCU.and MMA groups. Nystagmus was frequent in early-onset patients. Retinal and macular degeneration worsened despite early treatment and stabilized systemic function in these patients. The functional prognosis remains poor with final visual acuity < 20/200 in 55.6% (25/45) of cases. In conclusion, the spectrum of eye disease in Cbl patients depends on metabolic severity and age of onset. The development of visual manifestations over time despite early metabolic treatment point out the need for specific innovative therapies.
Journal Article
Long-Term Treatment of Girls with Ornithine Transcarbamylase Deficiency
by
Clissold, David B
,
Brusilow, Saul W
,
Bassett, Susan S
in
Adolescent
,
Amino Acid Metabolism, Inborn Errors - complications
,
Amino Acid Metabolism, Inborn Errors - drug therapy
1996
Ornithine transcarbamylase (ornithine carbamoyltransferase) deficiency is an X-linked disorder in which the synthesis of citrulline, and hence urea, from carbamoyl phosphate and ornithine is impaired. The consequences include hyperammonemia, hyperglutaminemia, hypoargininemia, hypocitrullinemia, and episodic encephalopathy that, if uncontrolled, results in brain injury and death. The most dramatic form of the disease occurs in newborn boys as catastrophic hyperammonemic encephalopathy; hemizygous males who survive the neonatal period have a poor neurologic outcome, with a high incidence of mental retardation, cerebral palsy, and seizures.
1
It is now apparent, however, that the disease may occur in males from the neonatal period through adulthood, . . .
Journal Article
Clinical and molecular spectrum of patients with methylmalonic acidemia and homocysteinemia complicated by cardiovascular manifestations
by
Zhang, Huifeng
,
Zhang, Yanan
,
Pi, Yalei
in
Amino Acid Metabolism, Inborn Errors - complications
,
Amino Acid Metabolism, Inborn Errors - genetics
,
Amino Acid Metabolism, Inborn Errors - pathology
2025
Background
To investigate the clinical characteristics, treatment response, and prognosis of patients with methylmalonic acidemia (MMA) and homocysteinemia complicated by cardiovascular manifestations and to raise awareness regarding MMA and homocysteinemia.
Methods
A total of 16 children diagnosed with MMA and homocysteinemia with cardiovascular manifestations who were admitted to the Department of Pediatrics of the Second Hospital of Hebei Medical University from June 2018 to October 2024 were retrospectively analyzed.
Results
All 16 patients had varying degrees of neurological manifestations, and all had cardiovascular manifestations, 3 patients were diagnosed with MMA and homocysteinemia by newborn screening and received conventional treatment, the remaining 13 patients had nausea, vomiting, anemia, recurrent pneumonitis, respiratory distress, and lethargy as their first symptoms. Cardiovascular complications were found between the ages of 2 months and 12 years, with 9 patients having pulmonary hypertension, 7 having hypertension, and 5 having non-compaction of ventricular myocardium. Fourteen of these cases were confirmed to have CblC-type methylmalonic acidemia caused by mutations in the MMACHC gene by genetic testing. The most common mutations were c.80A > G (p.Q27R) (8 cases) and c.609G > A (p.W203X) (8 cases).
Conclusion
Cardiovascular manifestation is uncommon in patients with MMA and homocysteinemia, but it is usually critical cause of death. When unexplained pulmonary hypertension or hypertension occurs, MMA and homocysteinemia should be suspected, especially when accompanied by manifestations of other systems.
Journal Article
Diagnosis and management of glutaric aciduria type I – revised recommendations
by
Müller, Edith
,
Greenberg, Cheryl R.
,
Leonard, James V.
in
Algorithms
,
Amino Acid Metabolism, Inborn Errors - complications
,
Amino Acid Metabolism, Inborn Errors - diagnosis
2011
Glutaric aciduria type I (synonym, glutaric acidemia type I) is a rare organic aciduria. Untreated patients characteristically develop dystonia during infancy resulting in a high morbidity and mortality. The neuropathological correlate is striatal injury which results from encephalopathic crises precipitated by infectious diseases, immunizations and surgery during a finite period of brain development, or develops insidiously without clinically apparent crises. Glutaric aciduria type I is caused by inherited deficiency of glutaryl-CoA dehydrogenase which is involved in the catabolic pathways of L-lysine, L-hydroxylysine and L-tryptophan. This defect gives rise to elevated glutaric acid, 3-hydroxyglutaric acid, glutaconic acid, and glutarylcarnitine which can be detected by gas chromatography/mass spectrometry (organic acids) or tandem mass spectrometry (acylcarnitines). Glutaric aciduria type I is included in the panel of diseases that are identified by expanded newborn screening in some countries. It has been shown that in the majority of neonatally diagnosed patients striatal injury can be prevented by combined metabolic treatment. Metabolic treatment that includes a low lysine diet, carnitine supplementation and intensified emergency treatment during acute episodes of intercurrent illness should be introduced and monitored by an experienced interdisciplinary team. However, initiation of treatment after the onset of symptoms is generally not effective in preventing permanent damage. Secondary dystonia is often difficult to treat, and the efficacy of available drugs cannot be predicted precisely in individual patients. The major aim of this revision is to re-evaluate the previous diagnostic and therapeutic recommendations for patients with this disease and incorporate new research findings into the guideline.
Journal Article
Acetaminophen induced high anion gap metabolic acidosis: a potentially under-recognized consequence from a common medication
by
Michalopulos, Michael G.
,
Gattineni, Jyothsna
,
Drake, Keri A.
in
Abdomen
,
Acetaminophen
,
Acetaminophen - adverse effects
2025
While metabolic acidosis is one of the most common complications in patients with chronic kidney disease (CKD), there are several uncommon etiologies that are challenging to diagnose. Here, we describe a patient on peritoneal dialysis who developed high anion gap metabolic acidosis secondary to acquired 5-oxoprolinemia from acetaminophen use. While CKD is a known risk factor for developing this potentially serious complication, this case further highlights how 5-oxoproline accumulation can occur, even with therapeutic dosing of acetaminophen.
Journal Article
Metabolic toxicity and neurological dysfunction in methylmalonic acidemia: from mechanisms to therapeutics
by
Li, Miaomiao
,
Chen, Yongxing
,
Du, Mengmeng
in
Amino Acid Metabolism, Inborn Errors - complications
,
Amino Acid Metabolism, Inborn Errors - metabolism
,
Amino Acid Metabolism, Inborn Errors - therapy
2025
Methylmalonic acidemia (MMAemia) is an inborn error of organic acid metabolism characterized by the accumulation of toxic metabolites—including methylmalonic acid (MMA), 2-methylcitric acid (2-MCA), propionic acid (PA), homocysteine (Hcy), ammonia, and lactate—due to defects in methylmalonyl-CoA mutase or impaired cobalamin metabolism. These metabolites exert profound effects on the central nervous system, contributing to neurological injury through tightly interconnected mechanisms, including mitochondrial dysfunction, neuroinflammation, and excitotoxicity. This review synthesizes current evidence on how these metabolites trigger neurological dysfunction, integrating findings from clinical studies, animal models, and cellular systems. We also highlight the increasingly recognized role of aberrant post-translational modifications (e.g., methylmalonylation, propionylation, lactylation) in disrupting metabolic network architecture and reprogramming cellular metabolism. Despite advances in supportive therapies, intracerebral metabolite accumulation remains a therapeutic challenge. We discuss emerging strategies targeting mitochondrial protection, redox homeostasis, and inflammation—including enzyme replacement, gene therapy, antioxidant regimens, and exosome-based delivery. A deeper mechanistic understanding of metabolite-driven neurotoxicity is critical to the development of targeted interventions that can improve neurological outcomes in MMAemia.
Journal Article
Clinical and molecular outcomes from the 5-Year natural history study of SSADH Deficiency, a model metabolic neurodevelopmental disorder
by
McGinty, Gabrielle E.
,
Roullet, Jean-Baptiste
,
Afshar-Saber, Wardiya
in
Adolescent
,
Amino Acid Metabolism, Inborn Errors - complications
,
Amino Acid Metabolism, Inborn Errors - genetics
2024
Background
Succinic semialdehyde dehydrogenase deficiency (SSADHD) represents a model neurometabolic disease at the fulcrum of translational research within the Boston Children’s Hospital Intellectual and Developmental Disabilities Research Centers (IDDRC), including the NIH-sponsored natural history study of clinical, neurophysiological, neuroimaging, and molecular markers, patient-derived induced pluripotent stem cells (iPSC) characterization, and development of a murine model for tightly regulated, cell-specific gene therapy.
Methods
SSADHD subjects underwent clinical evaluations, neuropsychological assessments, biochemical quantification of γ-aminobutyrate (GABA) and related metabolites, electroencephalography (standard and high density), magnetoencephalography, transcranial magnetic stimulation, magnetic resonance imaging and spectroscopy, and genetic tests. This was parallel to laboratory molecular investigations of in vitro GABAergic neurons derived from induced human pluripotent stem cells (hiPSCs) of SSADHD subjects and biochemical analyses performed on a versatile murine model that uses an inducible and reversible rescue strategy allowing on-demand and cell-specific gene therapy.
Results
The 62 SSADHD subjects [53% females, median (IQR) age of 9.6 (5.4–14.5) years] included in the study had a reported symptom onset at ∼ 6 months and were diagnosed at a median age of 4 years. Language developmental delays were more prominent than motor. Autism, epilepsy, movement disorders, sleep disturbances, and various psychiatric behaviors constituted the core of the disorder’s clinical phenotype. Lower clinical severity scores, indicating worst severity, coincided with older age (
R
= -0.302,
p
= 0.03), as well as age-adjusted lower values of plasma γ-aminobutyrate (GABA) (
R
= 0.337,
p
= 0.02) and γ-hydroxybutyrate (GHB) (
R
= 0.360,
p
= 0.05). While epilepsy and psychiatric behaviors increase in severity with age, communication abilities and motor function tend to improve. iPSCs, which were differentiated into GABAergic neurons, represent the first in vitro neuronal model of SSADHD and express the neuronal marker microtubule-associated protein 2 (MAP2), as well as GABA. GABA-metabolism in induced GABAergic neurons could be reversed using CRISPR correction of the pathogenic variants or mRNA transfection and SSADHD iPSCs were associated with excessive glutamatergic activity and related synaptic excitation.
Conclusions
Findings from the SSADHD Natural History Study converge with iPSC and animal model work focused on a common disorder within our IDDRC, deepening our knowledge of the pathophysiology and longitudinal clinical course of a complex neurodevelopmental disorder. This further enables the identification of biomarkers and changes throughout development that will be essential for upcoming targeted trials of enzyme replacement and gene therapy.
Journal Article