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result(s) for
"alpha-Galactosidase - blood"
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One SQ HEDGES DNA vector only dose produces durable hGLA or anti-SARS-CoV-2 mAb therapeutic serum protein levels
by
Debs, Robert
,
Steiner, Robert D.
,
Mack, Marissa
in
Adipocytes
,
Alpha galactosidases
,
alpha-Galactosidase - blood
2025
It is estimated that ~2 billion people worldwide cannot afford even basic medicines. B ioreactor-produced r ecombinant p rotein t herapies (BRPTs), among the world’s most-expensive medicines, have revolutionized treatment of a wide-spectrum of human-diseases, particularly the ~ 7,000 incurable, rare human single-protein, monogenic-deficiency diseases. Currently, BRPT are limited by toxicity, immunogenicity, short protein T 1 / 2 s and high-cost, creating a worldwide access-gap between those who can afford BRPTs versus those who cannot. Fabry disease (FD) is a monogenic deficiency disease caused by pathogenic-variants of the galactosidase-a (GLA) gene. FD damages heart, kidneys, CNS, gastrointestinal tract, and eyes. State-of-the-art anti-FD therapy, hGLA enzyme-replacement-therapy (ERT), requires bi-weekly IV infusions lifelong, costing ~ $200,000 per-patient per-year. High-lifetime costs can cause significant numbers of FD patients to permanently discontinue hGLA-ERT, thereby accelerating FD progression, which can lead to premature-death. Subcutaneously administered plasmid DNA alone has not been previously reported to transfect subcutaneous fat. Here we show one S ubcutaneous A dministration of H EDGES D NA vectors A lone ( SAHDA ) encoding the wildtype hGLA protein safely produces durable hGLA serum protein levels in the 1–10 ng/mL normal human hGLA range in immunocompetent mice. Unexpectedly, one administration of a highly-optimized SAHDA version encoding hGLA produced durable, ~ 100-fold higher hGLA serum protein levels than the 10 ng/mL high-normal human level. Importantly, components of the SADHA platform can be simply-modified to control the level and duration of hGLA serum protein-levels produced over a broad temporal-range in mice. Furthermore, one SAHDA-based administration of a HEDGES DNA-vector encoding a highly-neutralizing anti-SARS-CoV-2 monoclonal antibody (mAb) safely produces long-term protective serum mAb levels in immunocompetent-mice. SAHDA offers multiple advantages over BRPT, including not requiring an intact cold-chain and being readily freeze-dried. This combination enables SAHDA’s rapid deployment, then prolonged storage at ambient temperatures, even in equatorial-areas worldwide. SAHDA can readily be self-administered worldwide. It also obviates severe intravenous-infusion reactions. Taken-together, SAHDA may more effectively-, safely-, durably-, and cost-effectively-treat a spectrum of now poorly-treatable diseases worldwide.
Journal Article
Neonatal screening for lysosomal storage disorders: feasibility and incidence from a nationwide study in Austria
by
Herkner, Kurt R
,
Greber-Platzer, Susanne
,
Stary, Susanne
in
alpha-galactosidase
,
alpha-Galactosidase - blood
,
alpha-Galactosidase - genetics
2012
The interest in neonatal screening for lysosomal storage disorders has increased substantially because of newly developed enzyme replacement therapies, the need for early diagnosis, and technical advances. We tested for Gaucher's disease, Pompe's disease, Fabry's disease, and Niemann-Pick disease types A and B in an anonymous prospective nationwide screening study that included genetic mutation analysis to assess the practicality and appropriateness of including these disorders in neonatal screening panels.
Specimens from dried blood spots of 34 736 newborn babies were collected consecutively from January, 2010 to July, 2010, as part of the national routine Austrian newborn screening programme. Anonymised samples were analysed for enzyme activities of acid β-glucocerebrosidase, α-galactosidase, α-glucosidase, and acid sphingomyelinase by electrospray ionisation tandem mass spectrometry. Genetic mutation analyses were done in samples with suspected enzyme deficiency.
All 34 736 samples were analysed successfully by the multiplex screening assay. Low enzyme activities were detected in 38 babies. Mutation analysis confirmed lysosomal storage disorders in 15 of them. The most frequent mutations were found for Fabry's disease (1 per 3859 births), followed by Pompe's disease (1 per 8684), and Gaucher's disease (1 per 17 368). The positive predictive values were 32% (95% CI 16–52), 80% (28–99), and 50% (7–93), respectively. Mutational analysis detected predominantly missense mutations associated with a late-onset phenotype.
The combined overall proportion of infants carrying a mutation for lysosomal storage disorders was higher than expected. Neonatal screening for lysosomal storage disorders is likely to raise challenges for primary health-care providers. Furthermore, the high frequency of late-onset mutations makes lysosomal storage disorders a broad health problem beyond childhood.
Austrian Ministry of Health, Family, and Women.
Journal Article
Enzyme replacement therapy administered during hemodialysis in patients with Fabry disease
by
Breuning, Frank
,
Kosch, Markus
,
Koch, Hans-Georg
in
agalsidase beta
,
alpha-Galactosidase - administration & dosage
,
alpha-Galactosidase - blood
2004
Enzyme replacement therapy administered during hemodialysis in patients with Fabry disease.
Enzyme replacement treatment with recombinant human α-galactosidase A (r-hαGalA) is now available for patients with Fabry disease, many of whom are on maintenance hemodialysis. Because r-hαGalA must be infused over several hours, administering the enzyme during dialysis would save a day of treatment for patients receiving both therapies. However, these procedures have never been combined due to concerns about possible loss of enzyme in the dialysate.
Ten Fabry patients received r-hαGalA (1 mg/kg body weight continuously infused over 4 hours) during dialysis and separately in the interval between dialysis treatments. Plasma activity of r-hαGalA was measured at baseline and then every hour for both procedures. In two patients, a third r-hαGalA infusion during dialysis with a high-flux membrane was followed.
The rise in plasma concentrations of r-hαGalA during infusion and the steady-state levels reached were comparable for enzyme administrations with or without dialysis. The trend for the somewhat higher activities during hemodialysis was explained by volume contraction due to ultrafiltration. With the use of a high-flux dialyzer, the plasma r-hαGalA activities were identical to those that were observed during low-flux dialysis.
Administration of r-hαGalA during hemodialysis is not associated with a reduced activity of r-hαGalA therapy in patients with Fabry disease. Replacement therapy with r-hαGalA may therefore be performed during hemodialysis without apparent loss of enzyme into the dialysate.
Journal Article
Oral Migalastat HCl Leads to Greater Systemic Exposure and Tissue Levels of Active α-Galactosidase A in Fabry Patients when Co-Administered with Infused Agalsidase
by
Sitaraman, Sheela
,
Wustman, Brandon A.
,
Bichet, Daniel G.
in
1-Deoxynojirimycin - administration & dosage
,
1-Deoxynojirimycin - analogs & derivatives
,
1-Deoxynojirimycin - blood
2015
Migalastat HCl (AT1001, 1-Deoxygalactonojirimycin) is an investigational pharmacological chaperone for the treatment of α-galactosidase A (α-Gal A) deficiency, which leads to Fabry disease, an X-linked, lysosomal storage disorder. The currently approved, biologics-based therapy for Fabry disease is enzyme replacement therapy (ERT) with either agalsidase alfa (Replagal) or agalsidase beta (Fabrazyme). Based on preclinical data, migalastat HCl in combination with agalsidase is expected to result in the pharmacokinetic (PK) enhancement of agalsidase in plasma by increasing the systemic exposure of active agalsidase, thereby leading to increased cellular levels in disease-relevant tissues. This Phase 2a study design consisted of an open-label, fixed-treatment sequence that evaluated the effects of single oral doses of 150 mg or 450 mg migalastat HCl on the PK and tissue levels of intravenously infused agalsidase (0.2, 0.5, or 1.0 mg/kg) in male Fabry patients. As expected, intravenous administration of agalsidase alone resulted in increased α-Gal A activity in plasma, skin, and peripheral blood mononuclear cells (PBMCs) compared to baseline. Following co-administration of migalastat HCl and agalsidase, α-Gal A activity in plasma was further significantly increased 1.2- to 5.1-fold compared to agalsidase administration alone, in 22 of 23 patients (95.6%). Importantly, similar increases in skin and PBMC α-Gal A activity were seen following co-administration of migalastat HCl and agalsidase. The effects were not related to the administered migalastat HCl dose, as the 150 mg dose of migalastat HCl increased α-Gal A activity to the same extent as the 450 mg dose. Conversely, agalsidase had no effect on the plasma PK of migalastat. No migalastat HCl-related adverse events or drug-related tolerability issues were identified.
ClinicalTrials.gov NCT01196871.
Journal Article
Diagnosis of Fabry Disease Using Alpha-Galactosidase A Activity or LysoGb3 in Blood Fails to Identify Up to Two Thirds of Female Patients
2024
Anderson–Fabry disease is a lysosomal storage disorder caused by mutations in the GLA gene, which encodes the enzyme α-galactosidase A. The GLA gene is located on the X-chromosome, causing an X-linked pathology: due to lyonization, female patients usually manifest a variable symptomatology, ranging from asymptomatic to severe phenotypes. The confirmation of the clinical diagnosis of Fabry disease, achieved by measuring α-galactosidase A activity, which is usually the first test used, shows differences between male and female patients. This assay is reliable in male patients with causative mutations in the GLA gene, in whom the enzymatic activity is lower than normal values; on the other hand, in female Fabry patients, the enzymatic activity is extremely variable between normal and pathological values. These fluctuations are also found in female patients’ blood levels of globotriaosylsphingosine (LysoGb3) for the same reason. In this paper, we present a retrospective study conducted in our laboratories on 827 Fabry patients with causative mutations in the GLA gene. Our results show that 100% of male patients had α-galactosidase A activity below the reference value, while more than 70% of female patients had normal values. It can also be observed that almost half of the female patients with pathogenic mutations in the GLA gene showed normal values of LysoGb3 in blood. Furthermore, in women, blood LysoGb3 values can vary over time, as we show in a clinical case presented in this paper. Both these tests could lead to missed diagnoses of Fabry disease in female patients, so the analysis of the GLA gene represents the main diagnostic test for Fabry disease in women to date.
Journal Article
Plasma globotriaosylsphingosine in relation to phenotypes of Fabry disease
2015
Background Fabry disease (FD), a lysosomal storage disorder caused by α-galactosidase A (GLA) gene variants, has a heterogeneous phenotype. GLA variants can lead to classical FD, an attenuated non-classical phenotype, or no disease at all. This study investigates the value of plasma globotriaosylsphingosine (lysoGb3) to distinguish between these groups. This is of particular importance in the diagnosis of individuals with a GLA variant and an uncertain diagnosis of FD, lacking characteristic features of classical FD. Methods Subjects with GLA variants were grouped as classical, non-classical, uncertain or no FD, using strict phenotypical, biochemical and histological criteria. Plasma lysoGb3 was assessed by LC/MS/MS (normal ≤0.6 nmol/L). Results 154 subjects were grouped into classical (38 males (M), 66 females (F)), non-classical (13M, 14F), uncertain (5M, 9F) or no FD (6M, 3F). All subjects with a classical phenotype had elevated lysoGb3 values (M: range 45–150, F: 1.5–41.5). LysoGb3 values in patients with a non-classical phenotype (M: 1.3–35.7, F: 0.5–2.0) were different from healthy controls (M: p<0.01, F: p<0.05), but females overlapped with controls. In the no-FD group, lysoGb3 was normal. Conclusions LysoGb3 is a reliable diagnostic tool to discern classical FD from subjects without FD. This study suggests that the same applies to patients with a non-classical phenotype. LysoGb3 values of female patients overlap with controls. Consequently, in uncertain cases, increased lysoGb3 values are very suggestive for FD, but normal values cannot exclude FD. Confirmation in larger cohorts and data on the specificity of small lysoGb3 increases are necessary.
Journal Article
Nationwide screening for Fabry disease in unselected stroke patients
by
Havlíková, Hana
,
Černíková, Irena
,
Dostálová, Gabriela
in
a-Galactosidase
,
Aged
,
alpha-Galactosidase - blood
2021
Fabry disease (FD) is a rare X-linked lysosomal storage disorder caused by disease-associated variants in the alpha-galactosidase A gene (GLA). FD is a known cause of stroke in younger patients. There are limited data on prevalence of FD and stroke risk in unselected stroke patients.
A prospective nationwide study including 35 (78%) of all 45 stroke centers and all consecutive stroke patients admitted during three months. Clinical data were collected in the RES-Q database. FD was diagnosed using dried blood spots in a stepwise manner: in males-enzymatic activity, globotriaosylsphingosine (lyso-Gb3) quantification, if positive followed by GLA gene sequencing; and in females GLA sequencing followed by lyso-Gb3.
986 consecutive patients (54% men, mean age 70 years) were included. Observed stroke type was ischemic 79%, transient ischemic attack (TIA) 14%, intracerebral hemorrhage (ICH) 7%, subarachnoid hemorrhage 1% and cerebral venous thrombosis 0.1%. Two (0.2%, 95% CI 0.02-0.7) patients had a pathogenic variant associated with the classical FD phenotype (c.1235_1236delCT and p.G325S). Another fourteen (1.4%, 95% CI 0.08-2.4) patients had a variant of GLA gene considered benign (9 with p.D313Y, one p.A143T, one p.R118C, one p.V199A, one p.R30K and one p.R38G). The index stroke in two carriers of disease-associated variant was ischemic lacunar. In 14 carriers of GLA gene variants 11 strokes were ischemic, two TIA, and one ICH. Patients with positive as compared to negative GLA gene screening were younger (mean 60±SD, min, max, vs 70±SD, min, max, P = 0.02), otherwise there were no differences in other baseline variables.
The prevalence of FD in unselected adult patients with acute stroke is 0.2%. Both patients who had a pathogenic GLA gene variant were younger than 50 years. Our results support FD screening in patients that had a stroke event before 50 years of age.
Journal Article
One IV HEDGES DNA vector administration encoding hGLA or hGH produces durable hGLA and hGH serum lvels in immunocompetent mice
by
Debs, Robert
,
Mack, Marissa
,
Ye, Alice
in
alpha-Galactosidase - blood
,
alpha-Galactosidase - genetics
,
Animals
2025
The great majority of human monogenic, single protein deficiency disease patients, who comprise ~ 0.5% of the population, are incurable. When available, Enzyme Replacement Therapy (ERT) is current state-of-the art therapy for the vast majority of the subset of these diseases caused by enzyme deficiencies. For example, Fabry disease, caused by hemizygous- or heterozygous-pathogenic variants in GLA encoding human-galactocersbrosidase-α (hGLA), is a rare, single protein-deficiency disease. Fabry patients require intravenous-administration of hGLA Enzyme Replacement Therapy (ERT) every two-weeks for-life. ERT costs ~ $300,000 per-year and can cause frequent infusion reactions, which can be life-threatening. The very-high yearly GLA ERT costs, as well as the recurrent, life-threatening hGLA IV infusion-reactions experienced by some patients, can cause them to permanently-discontinue ERT. This can accelerate Fabry-disease progression, leading to premature-death. Therefore, new, more effective-, safe-, durable-, cost-effective, single deficient-protein replacement platforms are urgently-needed to more-effectively treat a wide-spectrum of these rare, monogenic single protein deficiency diseases. Here we demonstrate that one intravenous-administration of our 1 st -generation HEDGES DNA-vector encoding wildtype-hGLA (T 1 / 2 < 20-minutes) produced hGLA serum-protein levels in the normal human 1,000-10,000 pg/ml range for only < 14 days. We then-created our 2 nd -generation HEDGES hGLA DNA-vector. One intravenous-administration of this DNA-vector produced durable (>550 days) serum hGLA serum levels in the 1–10 ng/ml, thus increasing the duration of hGLA serum-protein levels produced by > 38,100 fold versus administering bioreactor-produced, wildtype hGLA-protein. We also showed one intravenous-administration of our 1 st -generation HEDGES DNA-vector encoding the wildtype human growth hormone (hGH) protein, (T 1 / 2 < 20-minutes), produced serum hGH levels in the 1–10 ng/ml for > 330 days, thus increasing the duration of hGLA serum-protein levels by > 22,860 fold versus administering wildtype hGH-protein. Last, one intravenous-administration of our 2 nd -generation HEDGES hGLA DNA-vector produced serum hGLA levels in the normal human 1–10 ng/ml range for > 160 days in GLA knockout-mice, a 2,800-fold increase versus wildtype hGLA-protein. hGLA-ERT produces major therapeutic-responses in GLA knockout-mice. These substantial ERT-responses in GLA knockout-mice have been shown to be accurately-recapitulated in Fabry patients. Thus, Fabry disease appears a promising-target for subsequent phase-1 HEDGES-based human clinical trials.
Journal Article
Exploring the diagnostic potential of miRNA signatures in the Fabry disease serum: A comparative study of automated and manual sample isolations
by
Ayyadurai, Saravanan
,
Sugimoto, Hiroshi
,
Fang, Josephine Y.
in
Adult
,
alpha-Galactosidase - blood
,
alpha-Galactosidase - genetics
2024
Fabry disease, an X-linked lysosomal storage disorder caused by galactosidase α (GLA) gene mutations, exhibits diverse clinical manifestations, and poses significant diagnostic challenges. Early diagnosis and treatment are crucial for improved patient outcomes, pressing the need for reliable biomarkers. In this study, we aimed to identify miRNA candidates as potential biomarkers for Fabry disease using the KingFisher™ automated isolation method and NanoString nCounter® miRNA detection assay. Clinical serum samples were collected from both healthy subjects and Fabry disease patients. RNA extraction from the samples was performed using the KingFisher™ automated isolation method with the MagMAX mirVana TM kit or manually using the Qiagen miRNeasy kit. The subsequent NanoString nCounter® miRNA detection assay showed consistent performance and no correlation between RNA input concentration and raw count, ensuring reliable and reproducible results. Interestingly, the detection range and highly differential miRNA between the control and disease groups were found to be distinct depending on the isolation method employed. Nevertheless, enrichment analysis of miRNA-targeting genes consistently revealed significant associations with angiogenesis pathways in both isolation methods. Additionally, our investigation into the impact of enzyme replacement therapy on miRNA expression indicated that some differential miRNAs may be sensitive to treatment. Our study provides valuable insights to identify miRNA biomarkers for Fabry disease. While different isolation methods yielded various detection ranges and highly differential miRNAs, the consistent association with angiogenesis pathways suggests their significance in disease progression. These findings lay the groundwork for further investigations and validation studies, ultimately leading to the development of non-invasive and reliable biomarkers to aid in early diagnosis and treatment monitoring for Fabry disease.
Journal Article
Expanded screening for Fabry disease in patients with chronic kidney disease not on dialysis: a multicenter Italian experience
2025
Fabry disease (FD) is a progressive, multisystemic X-linked disorder caused by mutations in the GLA gene, often leading to renal failure. Although several screening programs have been conducted, the prevalence of FD in patients with chronic kidney patients who are not dependent on dialysis (NDD-CKD) is likely underestimated due to restrictive inclusion criteria and methodological shortcomings. This study aims to assess the prevalence of FD in NDD-CKD patients using an expanded screening approach. Ongoing outpatients attending Italian nephrology clinics were screened by assay of plasma α-galactosidase A (α-Gal A) activity. Genetic testing was also performed in all females and males with low α-Gal A activity. Inclusion criteria were: (1) females ≥18 years old; (2) males aged between 18 and 70 years; (3) NDD-CKD stages 1-5. Patients with histological diagnosis of glomerulonephritis or diagnosis of autosomal dominant polycystic kidney disease (ADPKD) were excluded. Demographic data and laboratory results were also collected. Among 385 NDD-CKD outpatients, 173 underwent screening. One patient with three family members carrying a novel mutation (c.320 A > G, p.Q107R); one patient with three family members carrying a silent mutation (c.48 T > G, p.L16L) and two patients with a missense mutation (c.376A > G, p.S126G), were identified. Overall, the prevalence of FD was 2.3%, increasing to 5.4% (10 in 183) with family screening. FD may be more common than previously believed, particularly within NDD-CKD populations. FD screening should be expanded to include NDD-CKD patients with known causes of CKD, such as hypertension and diabetes mellitus, and genetic testing should be routinely used for female patients.
Journal Article