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Full-Text Articles in Genetic Processes
Pcsk9–Dyslipidemia Interplay In Children And Adolescents With Type 1 Diabetes: A Potential Modulator Of Vasculopathy, Eman Ramadan
Pcsk9–Dyslipidemia Interplay In Children And Adolescents With Type 1 Diabetes: A Potential Modulator Of Vasculopathy, Eman Ramadan
Pharmacy
BACKGROUND: Proprotein convertase subtilisin/kexin type-9 (PCSK9) has recently emerged as an important vasculopathy modulator. However, limited data exist on its level and expression in children and adolescents with type 1 diabetes (T1D). AIM: To assess serum PCSK9 and gene expression among children and adolescents with T1D and correlate them with glycemia, dyslipidemia, and microvascular complications. METHODS: Fifty children and adolescents with T1D were compared to 50 matched healthy controls. Serum PCSK9 enzyme-linked immunosorbent assay (ELISA) and reverse transcription polymerase chain reaction (RT-PCR) gene expression, glycated-hemoglobin, fundus, urinary albumin-to-creatinine ratio (uACR) and fasting lipids were assessed with calculation of the estimated-glucose …
Correlation Between Clinical Classification And Genetic Analysis Of Familial Hypercholesterolemia In Premature Coronary Artery Disease In A Cohort Of Egyptian Patients, Eman Ramadan
Pharmacy
Background: Familial Hypercholesterolemia (FH) is a major risk factor for premature Coronary Artery Disease (CAD). Genetic testing is the gold standard for FH diagnosis. The purpose of this Observational Analytical Cross-sectional study was to estimate the proportion of genetically confirmed Familial Hypercholesterolemia in Patients with premature Coronary Artery Disease in a cohort of Egyptian patients.
Methods: Next generation sequencing (NGS) was conducted for 7 genes (LDLR, PCSK9, APOB, APOE, ABCG5, ABCG8 and LDLRAP1) commonly associated with FH in 94 patients with Premature CAD from 2 tertiary hospitals in Cairo and Alexandria, Egypt. Individuals were clinically assessed using the Dutch Lipid …
Whole Genome Sequencing Identifies Monogenic Disease In 56.1% Of Families With Early-Onset Steroid-Resistant Nephrotic Syndrome, Eman Ramadan
Pharmacy
Genetic causes of steroid-resistant-nephrotic-syndrome (SRNS) represent a rapidly growing number of monogenic diseases. The reported diagnostic yield of various studies applying genetic panels and exome-sequencing to diagnose SRNS is usually < 30%. We performed genome-sequencing in a cohort of Egyptian SRNS patients. We recruited 47 SRNS patients belonging to 41 unrelated families [28 males/19 females; median (range): 6 (0.5-22 years)]. We established a pipeline for genome sequencing, bioinformatics analysis, variant curation and protein modeling at the Egypt Center for Research and Regenerative Medicine (ECRRM). Disease-causing variants were detected in 27/47 patients (57.4%) belonging to 23/41 families (56.1%), including nine novel variants in NPHS1, NPHS2, COL4A3, MYO1E, NUP93, PLCE1, PODXL, SMARCAL1 and WT1. Novel variants were confirmed by Sanger sequencing and were segregated in families of affected patients. NPHS2 was the most common causative gene in 8/23 (34.8%) of confirmed families, followed by NPHS1, WT1, and SMARCAL1 in 2/23 families (8.7%) each. All detected missense variants were evaluated through protein modeling and were predicted deleterious. Our study expanded the spectrum of SRNS disease-causing variants and revealed a monogenic cause in 56.1% of investigated families. In our cohort, no deep intronic or regulatory variants were detected by genome-sequencing. Pursuing genetic diagnosis in SRNS patients is crucial to inform clinical decision making, genetic counseling, transplantation strategy and prenatal diagnosis thus improving clinical outcome of affected patients.
Genetic Profile Of Premature Coronary Artery Disease Associated With Dyslipidemia: A Preliminary Study In Tertiary Hospitals, Eman Ramadan
Genetic Profile Of Premature Coronary Artery Disease Associated With Dyslipidemia: A Preliminary Study In Tertiary Hospitals, Eman Ramadan
Pharmacy
Background Familial Hypercholesteolemia (FH) represents significant risk for premature Coronary Artery Disease (CAD) development. Testing for causative mutations is the gold standard diagnostic test for FH. This study aimed to estimate the prevalence of genetically-confirmed Familial Hypercholesterolemia in premature Coronary Artery Disease patients in an Egyptian cohort. Methods: An Observational Analytical Cross-sectional study was conducted at Kobri Alqoba military hospital in Egypt in 2022, including 47 participants. All participants underwent Next generation sequencing for 7 genes linked with FH development in 47 patients with Premature CAD. Results: 9 Variants of Uncertain Significance (VUS) were found in LDLR, APOB, and APOE …