Lysosomal Newborn Screening in a Cohort in Mexican Population-

Blood ◽  
2015 ◽  
Vol 126 (23) ◽  
pp. 5581-5581
Author(s):  
Juana Ines Navarrete

Abstract INTRODUCTION: The goal of newborn screening is an early detection of inborn erros of metabolism diseases. In Mexico we began newborn screening since 1977 with very few inborn errors of metabolism such as phenylketonuria, galactosemia, congenital hypothyroidism, sickle cell anemia and cytic fibrosis (1). Since that date we have been increasing our newborn screening our newborn screening slowly and now a days we screen in most states of the country 15 inborn errors of metabolism(2). In 2012 we started with some patients through out the country a wider neonatal screening that include 5 lysosomal storage diseases. MATERIAL AND METHODS: Petróleos Mexicanos is a big governmental institution with approximately 10,000 workers and their families. Since 2005 a larger newborn screening has been done to all newborns in this institution through all the country. We test for most aminoacidopathies, including acidurias, hemoglobinopathies, G6PD deficiency, adrenal hyperplasia, cystic fibrosis and biotinidase deficiency; since August 2012 we included 6 lysosomal storage diseases; Gaucher disease, Fabry disease, Hurler disease, Pompe disease, Niemann-Pick type A and B disease and Krabbe disease. RESULTS: Up to date we have screened 10,853 newborns, we have found 9 patients with lysosomal storage diseases. We found 4 newborns with mutations for Fabry disease, 4 newborns with Pompe disease, three were pseudodeficiencies and one was combined heterozygous for a late onset presentation and pseudodeficiencies and 1 patient with Hurler disease (Table 2). We present here our clinical correlation between genotype-phenotype in these patients. We found a frequency in our population of 1 in 2713 newborns for both Fabry and Pompe disease. DISCUSSION: Newborn screening is a major public health achievement that has improve the morbidity and mortality of inborn errors of metabolism. The introduction of newborn screening for lysosomal storage diseases presents new challenges. This is the first latinamerican study of early detection of lysosomal storage diseases made by neonatal screening there are about 11 similar international studies. It is important point out that the most common lysosomal storage disease found in our study was Pompe diseases the pseudodeficiency type and Fabry disease type II with a frequency of 1 in 2713 newborns for both diseases. Spada et al; and Hwu et al; have reported frequencies of 1 in 1250 to 3100 male newborns. The mutation most commonly found was c.1088G>A, (p.R363H) for Fabry disease and c.1726G>A(p.G576S) for Pompe disease. References: 1. Nakamura K, Am J Med Genet Part C, 2011; 157, 63-71. 2. Zhou et al, J. Pediatr 2011 159 1 7-13. 3. Alterescu GM, Clin. Genet 2001:60:46-51. 2001. 4. Desnick R. J.: Enzyme Replacement Therapy and Enhancement therapies for Lysosomal Storage Diseases. J. Inher Metab Dis 2004; 27:385-4013. Disclosures No relevant conflicts of interest to declare.

2018 ◽  
Vol 21 (3) ◽  
pp. 631-640 ◽  
Author(s):  
Melissa P. Wasserstein ◽  
Michele Caggana ◽  
Sean M. Bailey ◽  
Robert J. Desnick ◽  
Lisa Edelmann ◽  
...  

2018 ◽  
Vol 41 (2) ◽  
pp. 414-416 ◽  
Author(s):  
Eurico Camargo Neto ◽  
Jaqueline Schulte ◽  
Jamile Pereira ◽  
Heydy Bravo ◽  
Claudio Sampaio-Filho ◽  
...  

2019 ◽  
Vol 5 (2) ◽  
pp. 24 ◽  
Author(s):  
Alberto B. Burlina ◽  
Giulia Polo ◽  
Laura Rubert ◽  
Daniela Gueraldi ◽  
Chiara Cazzorla ◽  
...  

The increasing availability of treatments and the importance of early intervention have stimulated interest in newborn screening for lysosomal storage diseases. Since 2015, 112,446 newborns in North Eastern Italy have been screened for four lysosomal disorders—mucopolysaccharidosis type I and Pompe, Fabry and Gaucher diseases—using a multiplexed tandem mass spectrometry (MS/MS) assay system. We recalled 138 neonates (0.12%) for collection of a second dried blood spot. Low activity was confirmed in 62 (0.06%), who underwent confirmatory testing. Twenty-five neonates (0.02%) were true positive: eight with Pompe disease; seven with Gaucher disease; eight with Fabry disease; and two with Mucopolysaccharidosis type I. The combined incidence of the four disorders was 1 in 4497 births. Except for Pompe disease, a second-tier test was implemented. We conclude that newborn screening for multiple lysosomal storage diseases combined with a second-tier test can largely eliminate false-positives and achieve rapid diagnosis.


2019 ◽  
Vol 20 (3) ◽  
pp. 751 ◽  
Author(s):  
Angela McCall ◽  
Mai ElMallah

The authors of the recently published, “Molecular Pathways and Respiratory Involvement in Lysosomal Storage Diseases”, provide an important review of the various mechanisms of lysosomal storage diseases (LSD) and how they culminate in similar clinical pathologies [...]


2015 ◽  
Vol 61 (11) ◽  
pp. 1363-1371 ◽  
Author(s):  
Arun Babu Kumar ◽  
Sophia Masi ◽  
Farideh Ghomashchi ◽  
Naveen Kumar Chennamaneni ◽  
Makoto Ito ◽  
...  

Abstract BACKGROUND There is interest in newborn screening and diagnosis of lysosomal storage diseases because of the development of treatment options that improve clinical outcome. Assays of lysosomal enzymes with high analytical range (ratio of assay response from the enzymatic reaction divided by the assay response due to nonenzymatic processes) are desirable because they are predicted to lead to a lower rate of false positives in population screening and to more accurate diagnoses. METHODS We designed new tandem mass spectrometry (MS/MS) assays that give the largest analytical ranges reported to date for the use of dried blood spots (DBS) for detection of mucopolysaccharidoses type II (MPS-II), MPS-IVA, and MPS-VI. For comparison, we carried out fluorometric assays of 6 lysosomal enzymes using 4-methylumbelliferyl (4MU)-substrate conjugates. RESULTS The MS/MS assays for MPS-II, -IVA, and -VI displayed analytical ranges that are 1–2 orders of magnitude higher than those for the corresponding fluorometric assays. The relatively small analytical ranges of the 4MU assays are due to the intrinsic fluorescence of the 4MU substrates, which cause high background in the assay response. CONCLUSIONS These highly reproducible MS/MS assays for MPS-II, -IVA, and -VI can support multiplex newborn screening of these lysosomal storage diseases. MS/MS assays of lysosomal enzymes outperform 4MU fluorometric assays in terms of analytical range. Ongoing pilot studies will allow us to gauge the impact of the increased analytical range on newborn screening performance.


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