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1.
Orphanet J Rare Dis ; 19(1): 161, 2024 Apr 13.
Article in English | MEDLINE | ID: mdl-38615062

ABSTRACT

BACKGROUND: Acid sphingomyelinase deficiency (ASMD) is a rare, progressive, potentially fatal lysosomal storage disease that exhibits a broad spectrum of clinical phenotypes. There is a need to expand the knowledge of disease mortality and morbidity in Germany because of limited information on survival analysis in patients with chronic ASMD (type B or type A/B). METHODS: This observational, multicentre, retrospective cohort study was conducted using medical records of patients with the first symptom onset/diagnosis of ASMD type B or type A/B between 1st January 1990 and 31st July 2021 from four German medical centres. Eligible medical records were abstracted to collect data on demographic characteristics, medical history, hospitalisation, mortality, and causes of death from disease onset to the last follow-up/death. Survival outcomes were estimated using the Kaplan-Meier analysis. Standardised mortality ratio (SMR) was also explored. RESULTS: This study included 33 chart records of patients with ASMD type B (n = 24) and type A/B (n = 9), with a median (interquartile range [IQR]) age of 8.0 [3.0-20.0] years and 1.0 [1.0-2.0] years, respectively, at diagnosis. The commonly reported manifestations were related to spleen (100.0%), liver (93.9%), and respiratory (77.4%) abnormalities. Nine deaths were reported at a median [IQR] age of 17.0 [5.0-25.0] years, with 66.7% of overall patients deceased at less than 18 years of age; the median [IQR] age at death for patients with ASMD type B (n = 4) and type A/B (n = 5) was 31.0 [11.0-55.0] and 9.0 [4.0-18.0] years, respectively. All deaths were ASMD-related and primarily caused by liver or respiratory failures or severe progressive neurodegeneration (two patients with ASMD type A/B). The median (95% confidence interval [CI]) overall survival age since birth was 45.4 (17.5-65.0) years. Additionally, an SMR [95% CI] analysis (21.6 [9.8-38.0]) showed that age-specific deaths in the ASMD population were 21.6 times more frequent than that in the general German population. CONCLUSIONS: This study highlights considerable morbidity and mortality associated with ASMD type B and type A/B in Germany. It further emphasises the importance of effective therapy for chronic ASMD to reduce disease complications.


Subject(s)
Niemann-Pick Disease, Type A , Niemann-Pick Diseases , Adolescent , Adult , Child , Humans , Middle Aged , Young Adult , Germany/epidemiology , Morbidity , Niemann-Pick Disease, Type A/epidemiology , Niemann-Pick Disease, Type A/genetics , Niemann-Pick Diseases/epidemiology , Niemann-Pick Diseases/genetics , Retrospective Studies
2.
Biomolecules ; 14(2)2024 Feb 11.
Article in English | MEDLINE | ID: mdl-38397448

ABSTRACT

Niemann-Pick Disease (NPD) is a rare autosomal recessive disease belonging to lysosomal storage disorders. Three types of NPD have been described: NPD type A, B, and C. NPD type A and B are caused by mutations in the gene SMPD1 coding for sphingomyelin phosphodiesterase 1, with a consequent lack of acid sphingomyelinase activity. These diseases have been thus classified as acid sphingomyelinase deficiencies (ASMDs). NPD type C is a neurologic disorder due to mutations in the genes NPC1 or NPC2, causing a defect of cholesterol trafficking and esterification. Although all three types of NPD can manifest with pulmonary involvement, lung disease occurs more frequently in NPD type B, typically with interstitial lung disease, recurrent pulmonary infections, and respiratory failure. In this sense, bronchoscopy with broncho-alveolar lavage or biopsy together with high-resolution computed tomography are fundamental diagnostic tools. Although several efforts have been made to find an effective therapy for NPD, to date, only limited therapeutic options are available. Enzyme replacement therapy with Olipudase α is the first and only approved disease-modifying therapy for patients with ASMD. A lung transplant and hematopoietic stem cell transplantation are also described for ASMD in the literature. The only approved disease-modifying therapy in NPD type C is miglustat, a substrate-reduction treatment. The aim of this review was to delineate a state of the art on the genetic basis and lung involvement in NPD, focusing on clinical manifestations, radiologic and histopathologic characteristics of the disease, and available therapeutic options, with a gaze on future therapeutic strategies.


Subject(s)
Lung Diseases , Niemann-Pick Disease, Type A , Niemann-Pick Disease, Type B , Niemann-Pick Diseases , Humans , Niemann-Pick Disease, Type A/genetics , Niemann-Pick Disease, Type A/metabolism , Niemann-Pick Disease, Type A/therapy , Niemann-Pick Disease, Type B/genetics , Niemann-Pick Disease, Type B/therapy , Niemann-Pick Diseases/genetics , Niemann-Pick Diseases/therapy , Lung Diseases/genetics , Lung Diseases/therapy , Mutation , Rare Diseases , Lung/metabolism
3.
Article in English | MEDLINE | ID: mdl-37956788

ABSTRACT

Acid sphingomyelinase deficiency is a neurodegenerative lysosomal storage disorder caused by mutations in the sphingomyelin-degrading enzyme acid sphingomyelinase (ASM) gene. Upregulated neuroinflammation has been well-characterized in an ASM knockout mouse model of acid sphingomyelinase deficiency disease, but lipid mediator pathways involved in 'mediating' inflammation and inflammation-resolution have yet to be characterized. In this study, we 1) measured free (bioactive) and esterified (inactive) lipid mediators involved in inflammation and inflammation resolution in cerebellum and neuronal cultures of ASM knockout (ASMko) mice and wildtype (WT) controls, and 2) quantified the esterification of labeled pro-resolving free d11-14(15)-epoxyeicosatrienoic acid in cultured neurons from ASMko and WT mice. We found elevated concentrations of esterified pro-resolving lipid mediators and hydroxyeicosatrienoic acids typically destined for pro-resolving lipid mediator synthesis (e.g. lipoxins) in the cerebellum and neurons of ASMko mice compared to controls. Free d11-14(15)-epoxyeicosatrienoic acid esterification within neurons of ASMko mice was significantly elevated compared to WT. Our findings show evidence of increased inactivation of free pro-resolving lipid mediators through esterification in ASMko mice, suggesting impaired resolution as a new pathway underlying ASM deficiency pathogenesis.


Subject(s)
Niemann-Pick Disease, Type A , Niemann-Pick Diseases , Animals , Mice , Brain/metabolism , Esterification , Inflammation/metabolism , Mice, Knockout , Neurons/metabolism , Niemann-Pick Disease, Type A/genetics , Niemann-Pick Disease, Type A/metabolism , Niemann-Pick Disease, Type A/pathology , Niemann-Pick Diseases/metabolism , Niemann-Pick Diseases/pathology , Sphingomyelin Phosphodiesterase/genetics , Sphingomyelin Phosphodiesterase/metabolism , Sphingomyelins/metabolism
4.
In Vivo ; 38(1): 437-444, 2024.
Article in English | MEDLINE | ID: mdl-38148059

ABSTRACT

BACKGROUND/AIM: Acid sphingomyelinase deficiency (ASMD) is a rare lysosomal storage disorder characterized by sphingomyelin accumulation causing progressive lung disease, respiratory failure, and death. PATIENTS AND METHODS: This retrospective observational study used the TriNetX database of electronic health records for 15,108 patients with ASMD from 2000-2020. After exclusions, 8,980 individuals were followed for 10 or 20 years. Outcomes included incidence and prevalence of respiratory disorders. Associations of age, sex and race were assessed. RESULTS: Nearly all respiratory outcomes increased significantly over 20 versus 10 years. Other respiratory disorders, specified respiratory disorders and secondary pulmonary hypertension exhibited the greatest increases, reflecting progressive lung damage in ASMD. While outcomes were poor overall, older age, male sex, and racial minority status associated with greater risks, indicating differences in disease progression or care. CONCLUSION: This study confirms the progressive nature of ASMD and need for close monitoring and treatment of pulmonary complications to reduce long-term morbidity and mortality. Genetic testing enabling diagnosis even for milder, adult-onset forms is critical to optimize outcomes.


Subject(s)
Niemann-Pick Disease, Type A , Niemann-Pick Diseases , Adult , Humans , Male , Follow-Up Studies , Sphingomyelin Phosphodiesterase/genetics , Niemann-Pick Disease, Type A/diagnosis , Niemann-Pick Disease, Type A/genetics , Lung
5.
Int J Mol Sci ; 24(16)2023 Aug 10.
Article in English | MEDLINE | ID: mdl-37628828

ABSTRACT

Acid sphingomyelinase deficiency (ASMD) or Niemann-Pick disease type A (NPA), type B (NPB) and type A/B (NPA/B), is a rare lysosomal storage disease characterized by progressive accumulation of sphingomyelin (SM) in the liver, lungs, bone marrow and, in severe cases, neurons. A disease model was established by generating liver organoids from a NPB patient carrying the p.Arg610del variant in the SMPD1 gene. Liver organoids were characterized by transcriptomic and lipidomic analysis. We observed altered lipid homeostasis in the patient-derived organoids showing the predictable increase in sphingomyelin (SM), together with cholesterol esters (CE) and triacylglycerides (TAG), and a reduction in phosphatidylcholine (PC) and cardiolipins (CL). Analysis of lysosomal gene expression pointed to 24 downregulated genes, including SMPD1, and 26 upregulated genes that reflect the lysosomal stress typical of the disease. Altered genes revealed reduced expression of enzymes that could be involved in the accumulation in the hepatocytes of sphyngoglycolipids and glycoproteins, as well as upregulated genes coding for different glycosidases and cathepsins. Lipidic and transcriptome changes support the use of hepatic organoids as ideal models for ASMD investigation.


Subject(s)
Niemann-Pick Disease, Type A , Niemann-Pick Diseases , Humans , Niemann-Pick Disease, Type A/genetics , Sphingomyelins , Liver , Gene Expression
6.
Int J Mol Sci ; 24(11)2023 Jun 05.
Article in English | MEDLINE | ID: mdl-37298714

ABSTRACT

Acid sphingomyelinase deficiency (ASMD) is a lysosomal storage disorder caused by mutations in the gene-encoding acid sphingomyelinase (ASM). ASMD impacts peripheral organs in all patients, including the liver and spleen. The infantile and chronic neurovisceral forms of the disease also lead to neuroinflammation and neurodegeneration for which there is no effective treatment. Cellular accumulation of sphingomyelin (SM) is a pathological hallmark in all tissues. SM is the only sphingolipid comprised of a phosphocholine group linked to ceramide. Choline is an essential nutrient that must be obtained from the diet and its deficiency promotes fatty liver disease in a process dependent on ASM activity. We thus hypothesized that choline deprivation could reduce SM production and have beneficial effects in ASMD. Using acid sphingomyelinase knock-out (ASMko) mice, which mimic neurovisceral ASMD, we have assessed the safety of a choline-free diet and its effects on liver and brain pathological features such as altered sphingolipid and glycerophospholipid composition, inflammation and neurodegeneration. We found that the choline-free diet was safe in our experimental conditions and reduced activation of macrophages and microglia in the liver and brain, respectively. However, there was no significant impact on sphingolipid levels and neurodegeneration was not prevented, arguing against the potential of this nutritional strategy to assist in the management of neurovisceral ASMD patients.


Subject(s)
Niemann-Pick Disease, Type A , Niemann-Pick Diseases , Mice , Animals , Niemann-Pick Disease, Type A/genetics , Sphingomyelin Phosphodiesterase/genetics , Choline , Sphingolipids , Sphingomyelins , Diet , Mice, Knockout , Disease Models, Animal
7.
Cell Death Dis ; 14(4): 248, 2023 04 06.
Article in English | MEDLINE | ID: mdl-37024473

ABSTRACT

Acid sphingomyelinase deficiency (ASMD) is a lysosomal storage disorder caused by mutations in the SMPD1 gene encoding for the acid sphingomyelinase (ASM). While intravenous infusion of recombinant ASM is an effective treatment for the peripheral disease, the neurological complications of ASMD remain unaddressed. It has been shown that aberrantly high level of total brain sphingomyelin (SM) is a key pathological event leading to neurodegeneration. Using mice lacking ASM (ASMko), which mimic the disease, we here demonstrate that among the SM species, SM16:0 shows the highest accumulation and toxicity in ASMko neurons. By targeting lysosomes, SM16:0 causes permeabilization and exocytosis of these organelles and induces oxidative stress and cell death. We also show that genetic silencing of Ceramide Synthase 5, which is involved in SM16:0 synthesis and overexpressed in the ASMko brain, prevents disease phenotypes in ASMko cultured neurons and mice. The levels of SM16:0 in plasma also show a strong correlation with those in brain that is higher than in liver, even at early stages of the disease. These results identify SM16:0 both as a novel therapeutic target and potential biomarker of brain pathology in ASMD.


Subject(s)
Niemann-Pick Disease, Type A , Mice , Animals , Niemann-Pick Disease, Type A/genetics , Niemann-Pick Disease, Type A/metabolism , Niemann-Pick Disease, Type A/pathology , Sphingomyelins/metabolism , Mice, Knockout , Sphingomyelin Phosphodiesterase/metabolism , Brain/metabolism , Lysosomes/metabolism
8.
Mol Genet Metab ; 139(1): 107563, 2023 05.
Article in English | MEDLINE | ID: mdl-37086570

ABSTRACT

The clinical manifestation of sphingolipidosis leads often to misclassification between acid sphingomyelinase deficiency (ASMD) and Gaucher disease. In this multicenter, prospective study, we investigated a cohort of 31,838 individuals suspected to have Gaucher disease, due to clinical presentation, from 61 countries between 2017 and 2022. For all samples, both Acid-ß-glucocerebrosidase and acid sphingomyelinase enzyme activities were measured in dried blood spot specimens by tandem mass spectrometry followed by genetic confirmatory testing in potential positive cases. In total, 5933 symptomatic cases showed decreased enzyme activities and were submitted for genetic confirmatory testing. 1411/5933 (24%) cases were finally identified with Gaucher disease and 550/5933 (9%) with ASMD. Most of the confirmed ASMD cases were newborns and children below 2 years of age (63%). This study reveals that one in four cases suspected for Gaucher disease is diagnosed with ASMD. An early appropriate diagnostic work-up is essential because of the availability of a recently approved enzyme replacement therapy for ASMD. In conclusion, a diagnostic strategy using differential biochemical testing including genetic confirmatory testing in clinically suspected cases for sphingolipidosis is highly recommended.


Subject(s)
Gaucher Disease , Niemann-Pick Disease, Type A , Niemann-Pick Diseases , Child , Humans , Infant, Newborn , Niemann-Pick Disease, Type A/diagnosis , Niemann-Pick Disease, Type A/genetics , Gaucher Disease/diagnosis , Gaucher Disease/genetics , Prospective Studies , Niemann-Pick Diseases/diagnosis , Niemann-Pick Diseases/genetics , Sphingomyelin Phosphodiesterase/genetics , Tandem Mass Spectrometry/methods
9.
Neurobiol Dis ; 182: 106141, 2023 06 15.
Article in English | MEDLINE | ID: mdl-37121555

ABSTRACT

Niemann Pick diseases types A (NPDA) and C (NPDC) are lysosomal storage disorders (LSDs) leading to cognitive impairment, neurodegeneration, and early death. NPDA and NPDC have different genetic origins, being caused by mutations in the acid sphingomyelinase (ASM) or the cholesterol transport protein NPC1, respectively. However, they share a common pathological hallmark in the accumulation of lipids in the endolysosomal compartment. Here, we tested the hypothesis that polyphenols reduce lipid overload in NPD cells by enhancing the secretion of extracellular vesicles (ECVs). We show that among the polyphenols tested, the ellagic acid metabolites, urolithin A and B, were the safest and most efficient in increasing ECV secretion. They reduced levels of accumulating lipids and lysosomal size and permeabilization in cultured bone marrow-derived macrophages and neurons from ASMko and NPC1 mutant mice, which mimic NPDA and NPDC, respectively. Moreover, oral treatment with ellagic acid reduced lipid levels, ameliorated lysosomal alterations, and diminished microglia activation in the brain of NPD mice. These results support the therapeutic value of ECV secretion and polyphenols for NPDs, which may also help treat other LSDs characterized by intracellular lipid overload.


Subject(s)
Extracellular Vesicles , Lysosomal Storage Diseases , Niemann-Pick Disease, Type A , Mice , Animals , Ellagic Acid/pharmacology , Ellagic Acid/metabolism , Sphingomyelin Phosphodiesterase/genetics , Lysosomal Storage Diseases/pathology , Niemann-Pick Disease, Type A/genetics , Lysosomes/metabolism , Phenotype , Extracellular Vesicles/metabolism , Lipids
10.
Orphanet J Rare Dis ; 18(1): 85, 2023 04 17.
Article in English | MEDLINE | ID: mdl-37069638

ABSTRACT

BACKGROUND: Acid Sphingomyelinase Deficiency (ASMD) is a rare autosomal recessive disorder caused by mutations in the SMPD1 gene. This rarity contributes to misdiagnosis, delayed diagnosis and barriers to good care. There are no published national or international consensus guidelines for the diagnosis and management of patients with ASMD. For these reasons, we have developed clinical guidelines that defines standard of care for ASMD patients. METHODS: The information contained in these guidelines was obtained through a systematic literature review and the experiences of the authors in their care of patients with ASMD. We adopted the Appraisal of Guidelines for Research and Evaluation (AGREE II) system as method of choice for the guideline development process. RESULTS: The clinical spectrum of ASMD, although a continuum, varies substantially with subtypes ranging from a fatal infantile neurovisceral disorder to an adult-onset chronic visceral disease. We produced 39 conclusive statements and scored them according to level of evidence, strengths of recommendations and expert opinions. In addition, these guidelines have identified knowledge gaps that must be filled by future research. CONCLUSION: These guidelines can inform care providers, care funders, patients and their carers about best clinical practice and leads to a step change in the quality of care for patients with ASMD with or without enzyme replacement therapy (ERT).


Subject(s)
Niemann-Pick Disease, Type A , Niemann-Pick Diseases , Adult , Humans , Consensus , Mutation , Niemann-Pick Disease, Type A/genetics , Sphingomyelin Phosphodiesterase/genetics , Systematic Reviews as Topic
11.
Hereditas ; 160(1): 11, 2023 Mar 13.
Article in English | MEDLINE | ID: mdl-36907956

ABSTRACT

BACKGROUND: Acid sphingomyelinase deficiency (ASMD) disorder, also known as Niemann-Pick disease (NPD) is a rare genetic disease caused by mutations in SMPD1 gene, which encodes sphingomyelin phosphodiesterase (ASM). Except for liver and spleen enlargement and lung disease, two subtypes (Type A and B) of NDP have different onset times, survival times, ASM activities, and neurological abnormalities. To comprehensively explore NPD's genotype-phenotype association and pathophysiological characteristics, we collected 144 NPD cases with strict quality control through literature mining. RESULTS: The difference in ASM activity can differentiate NPD type A from other subtypes, with the ratio of ASM activity to the reference values being lower in type A (threshold 0.045 (4.45%)). Severe variations, such as deletion and insertion, can cause complete loss of ASM function, leading to type A, whereas relatively mild missense mutations generally result in type B. Among reported mutations, the p.Arg3AlafsX76 mutation is highly prevalent in the Chinese population, and the p.R608del mutation is common in Mediterranean countries. The expression profiles of SMPD1 from GTEx and single-cell RNA sequencing data of multiple fetal tissues showed that high expressions of SMPD1 can be observed in the liver, spleen, and brain tissues of adults and hepatoblasts, hematopoietic stem cells, STC2_TLX1-positive cells, mesothelial cells of the spleen, vascular endothelial cells of the cerebellum and the cerebrum of fetuses, indicating that SMPD1 dysfunction is highly likely to have a significant effect on the function of those cell types during development and the clinicians need pay attention to these organs or tissues as well during diagnosis. In addition, we also predicted 21 new pathogenic mutations in the SMPD1 gene that potentially cause the NPD, signifying that more rare cases will be detected with those mutations in SMPD1. Finally, we also analysed the function of the NPD type A cells following the extracellular milieu. CONCLUSIONS: Our study is the first to elucidate the effects of SMPD1 mutation on cell types and at the tissue level, which provides new insights into the genotype-phenotype association and can help in the precise diagnosis of NPD.


Subject(s)
Niemann-Pick Disease, Type A , Niemann-Pick Diseases , Sphingomyelin Phosphodiesterase , Humans , Endothelial Cells/metabolism , Endothelial Cells/pathology , Genetic Association Studies , Mutation , Niemann-Pick Disease, Type A/diagnosis , Niemann-Pick Disease, Type A/genetics , Niemann-Pick Disease, Type A/pathology , Niemann-Pick Diseases/diagnosis , Niemann-Pick Diseases/genetics , Sphingomyelin Phosphodiesterase/genetics , Sphingomyelin Phosphodiesterase/metabolism
12.
Eur J Intern Med ; 108: 81-84, 2023 02.
Article in English | MEDLINE | ID: mdl-36443133

ABSTRACT

Lysosomal storage disorders are a group of inborn errors of metabolism due to defects in proteins crucial for lysosomal function. Gaucher disease is the most common autosomal recessive lysosomal storage disorder due to mutations in the GBA1 gene, resulting in the lysosomal deficiency of glucocerebrosidase activity. Gaucher disease is characterized by the toxic accumulation of glucosylceramide in the reticuloendothelial system. Acid sphingomyelinase deficiency (ASMD), previously known as Niemann Pick A/B disease, is also an autosomal recessive lysosomal storage disorder due to mutations in the SMPD1 gene, which result in acid sphingomyelinase deficiency and the accumulation of sphingomyelin in mononuclear phagocytic system and hepatocytes. The phenotypic expression of Gaucher disease type 1 (GD1), the most common type, and chronic visceral ASMD may overlap for several signs or symptoms. Splenomegaly is detectable in approximately 90% of the patients in both conditions; however, since GD1 is more frequent than ASMD, clinicians are more prone to suspect it, often neglecting the diagnosis of ASMD. Based on previous experience, a group of experts in the clinical and laboratory diagnosis, management, and treatment of lysosomal storage disorders developed an algorithm for both GD1 and ASMD to support physicians, including primary care providers, internists, and specialists (e.g., hepatologists, hematologists, and pulmonologists) to suspect and differentiate GD1 and ASMD and to provide the appropriate referral.


Subject(s)
Gaucher Disease , Niemann-Pick Disease, Type A , Niemann-Pick Disease, Type B , Humans , Niemann-Pick Disease, Type A/diagnosis , Niemann-Pick Disease, Type A/genetics , Niemann-Pick Disease, Type A/metabolism , Gaucher Disease/diagnosis , Gaucher Disease/genetics , Sphingomyelin Phosphodiesterase/genetics , Sphingomyelin Phosphodiesterase/metabolism , Niemann-Pick Disease, Type B/diagnosis , Niemann-Pick Disease, Type B/genetics , Algorithms
13.
Am J Case Rep ; 23: e937220, 2022 Nov 05.
Article in English | MEDLINE | ID: mdl-36333862

ABSTRACT

BACKGROUND Niemann-Pick disease (NPD) type A is an autosomal recessive lipid storage disorder caused by acid sphingomyelinase deficiency due to a mutation in the SMPD1 gene. Type A is the most severe phenotype of NPD, with early onset in infancy and unfavorable outcome in early childhood. CASE REPORT An 11-month-old boy with hepatosplenomegaly, elevated liver transaminases, and faltering growth was admitted to our hospital for further assessment of potential liver disease. He had severe generalized muscular hypotonia, muscular hypotrophy, reduced muscular strenght, joint laxity, weak deep tendon reflexes, and severe motor developmental delay. Leukodystrophy was seen on the brain MRI, and brainstem auditory evoked potentials were characteristic for auditory neuropathy. A chest X-ray showed signs of interstitial lung disease, which was not further evaluated due to absence of respiratory distress. Liver biopsy histopathologic findings were indicative for lipid storage disease. Genetic analysis showed that the patient is a compound heterozygote in the SMPD1 gene - (NM_000543.5): c.573delT p.(Ser192Alafs*65), which was inherited from the mother and c.1267C>T p.(His423Tyr) was inherited from the father. Both variants were previously individually reported in NPD type A and B. The clinical phenotype in our patient was characteristic of NPD type A, with an early onset and a rapidly progresive neurodegeneration. The patient was included in multidisciplinary follow-up, providing him symptomatic treatment and support. CONCLUSIONS We present a case of NPD type A caused by a rare compound heterozygote mutation in the SMPD1 gene. Most clinical findings and the disease course were typical for NPD type A, except for bilateral auditory neuropathy, which seems to be an uncommon finding in this phenotype and could be underestimated due to infrequent testing for auditory dysfunction.


Subject(s)
Niemann-Pick Disease, Type A , Niemann-Pick Diseases , Pick Disease of the Brain , Child, Preschool , Humans , Male , Heterozygote , Lipids , Mutation , Niemann-Pick Disease, Type A/genetics , Niemann-Pick Diseases/diagnosis , Niemann-Pick Diseases/genetics , Sphingomyelin Phosphodiesterase/genetics
14.
J Mol Neurosci ; 72(7): 1482-1499, 2022 Jul.
Article in English | MEDLINE | ID: mdl-35727525

ABSTRACT

Niemann-Pick type A disease (NPA) is a rare lysosomal storage disorder caused by mutations in the gene coding for the lysosomal enzyme acid sphingomyelinase (ASM). ASM deficiency leads to the consequent accumulation of its uncatabolized substrate, the sphingolipid sphingomyelin (SM), causing severe progressive brain disease. To study the effect of the aberrant lysosomal accumulation of SM on cell homeostasis, we loaded skin fibroblasts derived from a NPA patient with exogenous SM to mimic the levels of accumulation characteristic of the pathological neurons. In SM-loaded NPA fibroblasts, we found the blockage of the autophagy flux and the impairment of the mitochondrial compartment paralleled by the altered transcription of several genes, mainly belonging to the electron transport chain machinery and to the cholesterol biosynthesis pathway. In addition, SM loading induces the nuclear translocation of the transcription factor EB that promotes the lysosomal biogenesis and exocytosis. Interestingly, we obtained similar biochemical findings in the brain of the NPA mouse model lacking ASM (ASMKO mouse) at the neurodegenerative stage. Our work provides a new in vitro model to study NPA etiopathology and suggests the existence of a pathogenic lysosome-plasma membrane axis that with an impairment in the mitochondrial activity is responsible for the cell death.


Subject(s)
Niemann-Pick Disease, Type A , Niemann-Pick Diseases , Animals , Apoptosis , Lysosomes/metabolism , Mice , Mitochondria/metabolism , Niemann-Pick Disease, Type A/genetics , Niemann-Pick Disease, Type A/pathology , Niemann-Pick Diseases/metabolism , Niemann-Pick Diseases/pathology , Sphingomyelins/metabolism , Sphingomyelins/pharmacology
15.
J Pediatr Endocrinol Metab ; 35(8): 1113-1116, 2022 Aug 26.
Article in English | MEDLINE | ID: mdl-35617710

ABSTRACT

OBJECTIVES: Niemann-Pick disease type A (NPDA, MIM: 257200) is an autosomal recessive sphingolipidosis caused by lysosomal acid sphingomyelinase (ASM) deficiency. A cluster of genes located at chromosome 11p15 have been reported to be imprinted genes, such as TSSC5, TSSC3, and ZNF215 that flanking SMPD1 gene. It was reported by a few recent studies that SMPD1 gene was paternally imprinted and maternally preferentially expressed. CASE PRESENTATION: A five-month-old boy with severe anemia, hepatosplenomegly and bone marrow foam cells was recruited from a complete cousin couple. To determine whether boy suffered from NPDA, ASM activity and SMPD1 gene sequencing were performed on available individuals of this pedigree including the proband, his parents and sister. The ASM activities of proband and parents showed deficiency (17.7 nmol/h/g-protein) and about 50% decreased (83.3 nmol/h/g-protein), respectively, compared with normal controls (204.5 nmol/h/g-protein). SMPD1 gene sequencing in the proband revealed a homozygous mutation c.1420_1421del, which leads to an open reading frameshift and a premature stop codon. The parents and some individuals of this family demonstrated heterozygous mutation at this locus. To investigate whether SMPD1 gene is imprinted as reported previously, the expression of RNA level was studied in the whole family members available. The members with heterozygous mutation for c.1420_1421del showed that both paternal and maternal inherited alleles were expressed. CONCLUSIONS: This study reported a c.1420_1421del mutation in SMPD1 gene which caused ASM activity decrease and this locus was biallelically expressed in heterozygous subjects implicating SMPD1 is not imprinted in this family.


Subject(s)
Niemann-Pick Disease, Type A , Niemann-Pick Diseases , China , Consanguinity , Humans , Infant , Lysosomes , Male , Mutation , Niemann-Pick Disease, Type A/genetics , Niemann-Pick Diseases/genetics , Pedigree , Sequence Deletion
16.
J Med Case Rep ; 16(1): 23, 2022 Jan 12.
Article in English | MEDLINE | ID: mdl-35016719

ABSTRACT

BACKGROUND: Niemann-Pick is a rare metabolic disease distinguished by lysosomal storage defects. This disease is characterized by sphingomyelinase acid deficiency, causing its accumulation in various organs such as the kidneys, spleen, liver, brain, and nerves. Niemann-Pick disease is categorized into four groups: A, B, C, and D. Peripheral neuropathy is an extremely rare complication in patients with Niemann-Pick type C, which certainly leads to neurologic deterioration. CASE PRESENTATION: We report a case of Niemann-Pick type C disease in a 3-year-old Iranian Azeri female patient who was hospitalized twice. The first time was at 1 month of age with symptoms of splenomegaly, jaundice, and elevated liver enzymes, and the second time was at around age 2 for loss of mental and physical abilities. The patient presented with failure to thrive. According to paraclinical examinations, mildly delayed myelination along with a nonspecific periventricular hypersignal intensity was seen. Interestingly, the patient's Niemann-Pick type C enzymatic function was evaluated twice and was negative on both occasions, while she was positive for NPC1 and NPC2 gene examinations. CONCLUSIONS: In this study, despite the enzymatic study being negative, Niemann-Pick type C disease was finally confirmed, revealing the importance of mutations in Niemann-Pick type C pathogenesis. Besides, peripheral neuropathy was diagnosed in this patient as a very rare symptom of Niemann-Pick type C.


Subject(s)
Niemann-Pick Disease, Type A , Niemann-Pick Disease, Type C , Peripheral Nervous System Diseases , Child, Preschool , Female , Humans , Iran , Mutation , Niemann-Pick Disease, Type A/complications , Niemann-Pick Disease, Type A/diagnosis , Niemann-Pick Disease, Type A/genetics , Niemann-Pick Disease, Type C/complications , Niemann-Pick Disease, Type C/diagnosis
17.
Hum Mutat ; 42(10): 1336-1350, 2021 10.
Article in English | MEDLINE | ID: mdl-34273913

ABSTRACT

Pathogenic variations in SMPD1 lead to acid sphingomyelinase deficiency (ASMD), that is, Niemann-Pick disease (NPD) type A and B (NPA, NPB), which is a recessive lysosomal storage disease. The knowledge of variant spectrum in Indian patients is crucial for early and accurate NPD diagnosis and genetic counseling of families. In this study, we recruited 40 unrelated pediatric patients manifesting symptoms of ASMD and subnormal ASM enzyme activity. Variations in SMPD1 were studied using Sanger sequencing for all exons, followed by interpretation of variants based on American College of Medical Genetics and Genomics & Association for Molecular Pathology (ACMG/AMP) criteria. We identified 18 previously unreported variants and 21 known variants, including missense, nonsense, deletions, duplications, and splice site variations with disease-causing potential. Eight missense variants were functionally characterized using in silico molecular dynamic simulation and in vitro transient transfection in HEK293T cells, followed by ASM enzyme assay, immunoblot, and immunofluorescence studies. All the variants showed reduced ASM activity in transfected cells confirming their disease-causing potential. The study provides data for efficient prenatal diagnosis and genetic counseling of families with NPD type A and B.


Subject(s)
Niemann-Pick Disease, Type A , Niemann-Pick Diseases , Sphingomyelin Phosphodiesterase/genetics , Child , Exons , Female , HEK293 Cells , Humans , Mutation , Niemann-Pick Disease, Type A/genetics , Niemann-Pick Disease, Type A/pathology , Niemann-Pick Diseases/diagnosis , Niemann-Pick Diseases/genetics , Pregnancy
18.
Genet Med ; 23(8): 1543-1550, 2021 08.
Article in English | MEDLINE | ID: mdl-33875845

ABSTRACT

PURPOSE: To assess olipudase alfa enzyme replacement therapy for non-central nervous system manifestations of acid sphingomyelinase deficiency (ASMD) in children. METHODS: This phase 1/2, international, multicenter, open-label trial (ASCEND-Peds/NCT02292654) administered intravenous olipudase alfa every 2 weeks with intrapatient dose escalation to 3 mg/kg. Primary outcome was safety through week 64. Secondary outcomes included pharmacokinetics, spleen and liver volumes, lung diffusing capacity (DLCO), lipid profiles, and height through week 52. RESULTS: Twenty patients were enrolled: four adolescents (12-17 years), nine children (6-11 years), and seven infants/early child (1-5 years). Most adverse events were mild or moderate, including infusion-associated reactions (primarily urticaria, pyrexia, and/or vomiting) in 11 patients. Three patients had serious treatment-related events: one with transient asymptomatic alanine aminotransferase increases, another with urticaria and rash (antidrug antibody positive [ADA+]), and a third with an anaphylactic reaction (ADA+) who underwent desensitization and reached the 3 mg/kg maintenance dose. Mean splenomegaly and hepatomegaly improved by >40% (p < 0.0001). Mean % predicted DLCO improved by 32.9% (p = 0.0053) in patients able to perform the test. Lipid profiles and elevated liver transaminase levels normalized. Mean height Z-scores improved by 0.56 (p < 0.0001). CONCLUSION: In this study in children with chronic ASMD, olipudase alfa was generally well-tolerated with significant, comprehensive improvements in disease pathology across a range of clinically relevant endpoints.


Subject(s)
Niemann-Pick Disease, Type A , Adolescent , Child , Child, Preschool , Enzyme Replacement Therapy , Humans , Infant , Liver , Niemann-Pick Disease, Type A/drug therapy , Niemann-Pick Disease, Type A/genetics , Recombinant Proteins/therapeutic use , Sphingomyelin Phosphodiesterase/genetics
19.
Hum Mutat ; 42(5): 614-625, 2021 05.
Article in English | MEDLINE | ID: mdl-33675270

ABSTRACT

Niemann-Pick disease Types A and B (NPA/B) are autosomal recessive disorders caused by variants in the sphingomyelin phosphodiesterase-1 (SMPD1) gene. This study aimed to describe and characterize a cohort of 118 patients diagnosed with NPA/B based on clinical, biochemical, and molecular findings, and to identify sound correlations between laboratory findings and clinical presentations. Decreased peripheral leukocyte acid sphingomyelinase activity levels and increased plasma 7-ketocholesterol levels were significantly correlated with disease onset and severity of the clinical course. We identified 92 different sequence SMPD1 variants, including 41 novel variants, in 118 NPA/B patients (19 NPA, 24 intermediate type, 75 NPB). The most prevalent mutation was p.Arg602His, which accounted for 9.3% of the alleles. Patients homozygous for p.Arg602His or p.Asn522Ser showed a late-onset form of the NPB phenotype. The homozygous SMPD1 variant p.Tyr500His correlated with the early-onset NPB clinical form. Additionally, homozygous variants p.His284SerfsX18, p.Phe465Ser, and p.Ser486Arg were associated with the neuronopathic NPA clinical form. The homozygous variant p.Arg3AlafsX74 was associated with the intermediate clinical form. Our study contributes to the understanding of the natural history of NPA/B and assists in the development of efficacious treatments for patients afflicted with this devastating lysosomal storage disorder.


Subject(s)
Niemann-Pick Disease, Type A , Sphingomyelin Phosphodiesterase , Genetic Association Studies , Humans , Mutation , Niemann-Pick Disease, Type A/genetics , Phenotype , Sphingomyelin Phosphodiesterase/chemistry , Sphingomyelin Phosphodiesterase/genetics
20.
Am J Respir Cell Mol Biol ; 64(5): 629-640, 2021 05.
Article in English | MEDLINE | ID: mdl-33662226

ABSTRACT

Deficiency of ASM (acid sphingomyelinase) causes the lysosomal storage Niemann-Pick disease (NPD). Patients with NPD type B may develop progressive interstitial lung disease with frequent respiratory infections. Although several investigations using the ASM-deficient (ASMKO) mouse NPD model revealed inflammation and foamy macrophages, there is little insight into the pathogenesis of NPD-associated lung disease. Using ASMKO mice, we report that ASM deficiency is associated with a complex inflammatory phenotype characterized by marked accumulation of monocyte-derived CD11b+ macrophages and expansion of airspace/alveolar CD11c+ CD11b- macrophages, both with increased size, granularity, and foaminess. Both the alternative and classical pathways were activated, with decreased in situ phagocytosis of opsonized (Fc-coated) targets, preserved clearance of apoptotic cells (efferocytosis), secretion of Th2 cytokines, increased CD11c+/CD11b+ cells, and more than a twofold increase in lung and plasma proinflammatory cytokines. Macrophages, neutrophils, eosinophils, and noninflammatory lung cells of ASMKO lungs also exhibited marked accumulation of chitinase-like protein Ym1/2, which formed large eosinophilic polygonal Charcot-Leyden-like crystals. In addition to providing insight into novel features of lung inflammation that may be associated with NPD, our report provides a novel connection between ASM and the development of crystal-associated lung inflammation with alterations in macrophage biology.


Subject(s)
Glycoproteins/immunology , Lysophospholipase/immunology , Macrophages, Alveolar/immunology , Macrophages/immunology , Niemann-Pick Disease, Type A/immunology , Niemann-Pick Disease, Type B/immunology , Pneumonia/immunology , Sphingomyelin Phosphodiesterase/immunology , Animals , CD11 Antigens/genetics , CD11 Antigens/immunology , CD11b Antigen/genetics , CD11b Antigen/immunology , Cell Size , Chitinases/genetics , Chitinases/immunology , Disease Models, Animal , Eosinophils/immunology , Eosinophils/pathology , Female , Gene Expression , Glycoproteins/genetics , Humans , Lectins/genetics , Lectins/immunology , Lung/immunology , Lung/pathology , Lysophospholipase/genetics , Macrophages/pathology , Macrophages, Alveolar/pathology , Male , Mice , Mice, Knockout , Neutrophils/immunology , Neutrophils/pathology , Niemann-Pick Disease, Type A/enzymology , Niemann-Pick Disease, Type A/genetics , Niemann-Pick Disease, Type A/pathology , Niemann-Pick Disease, Type B/enzymology , Niemann-Pick Disease, Type B/genetics , Niemann-Pick Disease, Type B/pathology , Phagocytosis , Pneumonia/enzymology , Pneumonia/genetics , Pneumonia/pathology , Sphingomyelin Phosphodiesterase/deficiency , Sphingomyelin Phosphodiesterase/genetics , Th1-Th2 Balance/genetics , beta-N-Acetylhexosaminidases/genetics , beta-N-Acetylhexosaminidases/immunology
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