Publications by authors named "Ewa Matczynska"

We present the results of the first study of a large cohort of patients with inherited retinal dystrophies (IRD) performed for the Polish population using whole-exome sequencing (WES) in the years 2016-2019. Moreover, to facilitate such diagnostic analyses and enable future application of gene therapy and genome editing for IRD patients, a Polish genomic reference database (POLGENOM) was created based on whole-genome sequences of healthy Polish Caucasian nonagenarians and centenarians. The newly constructed database served as a control, providing a comparison for variant frequencies in the Polish population.

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Advances in gene therapy and genome editing give hope that new treatments will soon be available for inherited eye diseases that together affect a significant proportion of the adult population. New solutions are needed to make genetic diagnosis fast and affordable. This is the first study of such a large group of patients with inherited retinal dystrophies (IRD) and inherited optic neuropathies (ION) in the Polish population.

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Article Synopsis
  • The study aimed to investigate how age-related macular degeneration (AMD) progression is linked to clinical traits, demographic backgrounds, and environmental risk factors, as well as the impact of three genetic polymorphisms on this progression.
  • Out of 94 AMD patients re-evaluated after three years, 48 showed progression, with a significant association found between worsening visual acuity, the presence of wet AMD in fellow eyes, and higher risk from active thyroxine supplementation.
  • The research highlights that genetic factors, such as the CC variant of CFH Y402H, may also influence AMD advancement, emphasizing the importance of identifying risk factors for better prevention and intervention strategies.
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Age-related macular degeneration (AMD) is a common retina degenerative disease with a complex genetic and environmental background. This study aimed to determine the polygenic risk score (PRS) stratification between the AMD case and control patients. The PRS model was established on the targeted sequencing data of a cohort of 471 patients diagnosed with AMD and 167 healthy controls without symptoms of retinal degeneration.

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Purpose: We aimed to investigate the reactivity of retinal vessels to a flickering stimulus in patients with age-related macular degeneration (AMD) and healthy participants. We also assessed whether the parameters of retinal vessels are dependent on genetic predisposition.

Methods: A total of 354 patients with AMD and 121 controls were recruited for the study.

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Article Synopsis
  • The study investigates the genetic factors contributing to age-related macular degeneration (AMD), focusing on variants in the CFH and ARMS2/HTRA1 genes among over 2000 genetic variants in AMD patients compared to controls.
  • A total of 296 AMD patients and 100 controls were analyzed using high-throughput sequencing, identifying three specific single nucleotide polymorphisms (SNPs) that significantly increase the odds of developing AMD.
  • The findings indicate that certain genotypes of CFH Y402H, ARMS A69S, and PRPH2 c.582-67T>A are strong risk factors for AMD, with the PRPH2 variant being a novel discovery linked to increased risk, warranting further investigation.
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Bursaphelenchus xylophilus is an emerging pathogenic nematode that is responsible for a devastating epidemic of pine wilt disease worldwide, causing severe ecological damage and economic losses to forestry. Two forms of this nematode have been reported, i.e.

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Age-related macular degeneration (AMD) remains the leading cause of blindness in elderly people, but the pathophysiology of this disease is still largely unknown. We investigated the systemic expression of angiogenesis-regulating growth factors and selected miRNAs known to regulate angiogenesis in AMD patients. We also focused on possible correlations of their expression with the presence of CFH Y402H or ARMS A69S risk variants.

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Background: Rhizobium leguminosarum bv. trifolii is a soil bacterium capable of establishing a symbiotic relationship with red clover (Trifolium pratense). The presence of surface polysaccharides and other extracellular components as well as motility and competitiveness are essential traits for both adaptation of this bacterium to changing environmental conditions and successful infection of host plant roots.

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The three-dimensional structures of a set of 'never born proteins' (NBP, random amino acid sequence proteins with no significant homology with known proteins) were predicted using two methods: Rosetta and the one based on the 'fuzzy-oil-drop' (FOD) model. More than 3000 different random amino acid sequences have been generated, filtered against the non redundant protein sequence data base, to remove sequences with significant homology with known proteins, and subjected to three-dimensional structure prediction. Comparison between Rosetta and FOD predictions allowed to select the ten top (highest structural similarity) and the ten bottom (the lowest structural similarity) structures from the ranking list organized according to the RMS-D value.

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The number of natural proteins although large is significantly smaller than the theoretical number of proteins that can be obtained combining the 20 natural amino acids, the so-called "never born proteins" (NBPs). The study of the structure and properties of these proteins allows to investigate the sources of the natural proteins being of unique characteristics or special properties. However the structural study of NPBs can also been intended as an ideal test for evaluating the efficiency of software packages for the ab initio protein structure prediction.

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