A new line method; A direct test in spinal muscular atrophy screening for DBS

Author:

Kubar Ayhan1ORCID,Temel Sehime Gülsüm23,Beken Serdar4,Onder Gizem5,Hatirnaz Ozden6,Korkmaz Ayse4,Alanay Yasemin4,Ozbek Ugur7,Sag Sebnem Ozemri2,Ergoren Mahmut Cerkez8,Kubar Elif9,Sonmezalp Candan Zeynep1,Doğan Ozlem1

Affiliation:

1. SNP Biotechnology Ltd. Ankara Turkey

2. Department of Medical Genetics, Faculty of Medicine Bursa Uludag University Bursa Turkey

3. Department of Translational Medicine, Institute of Health Sciences Bursa Uludag University Bursa Turkey

4. Department of Pediatrics, School of Medicine Acibadem Mehmet Ali Aydınlar University Istanbul Turkey

5. Department of Biochemistry and Molecular Biology, Institute of of Health Sciences Acibadem Mehmet Ali Aydınlar University Istanbul Turkey

6. Department of Basic Sciences, Medical Biology, School of Medicine Acibadem Mehmet Ali Aydınlar University Istanbul Turkey

7. Department of Medical Sciences, Medical Genetics, School of Medicine Acibadem Mehmet Ali Aydınlar University Istanbul Turkey

8. Near East University Nicosia Cyprus

9. Ege University Faculty of Medicine Department of Medical Genetics Izmir Turkey

Abstract

AbstractBackgroundNucleic acid‐based assays provide an opportunity to screen for genetically encoded diseases like spinal muscular atrophy (SMA), before the onset of symptoms. Nowadays, such assays could be easily utilized as high‐throughputs in SMA to detect a homozygous deletion of exon 7 of the survival motor neuron 1 gene (SMN1) that is responsible for >95% of SMA patients.MethodsWe developed a new line method (NLM) as a direct real time PCR test procedure without nucleic acid extraction in dried blood spots (DBS) to screen for homozygous deletion of exon 7 of the SMN1 gene. Performance of this setup was evaluated on 580 DBS newborn samples and air dried 50 DBS from whole blood including 20 samples for homozygous deletion of the SMN1 gene detected earlier with MLPA.ResultsWe found all 580 newborn DBS samples as wild type. DBS prepared from 50 whole blood samples also including 20 affected people were correctly identified as homozygous deletions and 30 wild types of exon 7 of SMN1 as before with MLPA. When the MLPA method was taken as the gold standard, the sensitivity and specificity of the NLM test were found 100% for the detection of SMN1 exon 7 homozygous deletion.ConclusionIn the NLM, the total test duration has been reduced to less than 75 min without requiring any extra process such as DNA extraction step and sample plate preparation after the punching step. Thereby, newborn SMA screening with the NLM has gained an environmentally friendly feature with not requiring additional tedious steps.

Publisher

Wiley

Subject

Genetics (clinical),Genetics,Molecular Biology

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