Aleksandra Dyczko
Overview
Explore the profile of Aleksandra Dyczko including associated specialties, affiliations and a list of published articles.
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Articles
6
Citations
40
Followers
0
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Recent Articles
1.
Cardilli A, Hamad I, Dyczko A, Thijs S, Vangronsveld J, Muller D, et al.
Nutrients
. 2023 Apr;
15(7).
PMID: 37049406
The mammalian holobiont harbors a complex and interdependent mutualistic gut bacterial community. Shifts in the composition of this bacterial consortium are known to be a key element in host health,...
2.
Corte-Real B, Hamad I, Arroyo Hornero R, Geisberger S, Roels J, Van Zeebroeck L, et al.
Cell Metab
. 2023 Feb;
35(2):299-315.e8.
PMID: 36754020
FOXP3 regulatory T cells (Tregs) are central for peripheral tolerance, and their deregulation is associated with autoimmunity. Dysfunctional autoimmune Tregs display pro-inflammatory features and altered mitochondrial metabolism, but contributing factors...
3.
Corte-Real B, Arroyo Hornero R, Dyczko A, Hamad I, Kleinewietfeld M
Front Immunol
. 2022 Dec;
13:1005965.
PMID: 36532080
Colony stimulating factor 2 receptor subunit beta (; CD131) is the common subunit of the type I cytokine receptors for granulocyte-macrophage colony-stimulating factor (GM-CSF), interleukin (IL)-3 and IL-5. Interestingly, FOXP3...
4.
Peeters J, Thas O, Shkedy Z, Kodalci L, Musisi C, Owokotomo O, et al.
Front Bioinform
. 2022 Oct;
1:774631.
PMID: 36303773
Research on the microbiome has boomed recently, which resulted in a wide range of tools, packages, and algorithms to analyze microbiome data. Here we investigate and map currently existing tools...
5.
Hamad I, Cardilli A, Corte-Real B, Dyczko A, Vangronsveld J, Kleinewietfeld M
Nutrients
. 2022 Mar;
14(6).
PMID: 35334825
Dietary habits are amongst the main factors that influence the gut microbiome. Accumulating evidence points to the impact of a high-salt diet (HSD) on the composition and function of the...
6.
Bordignon C, Canu A, Dyczko A, Leone S, Monti P
Curr Diab Rep
. 2017 Mar;
17(5):24.
PMID: 28303386
Purpose Of Review: An increasing body of evidence indicates that bio-energetic metabolism of activated T cells is a potential target to control the autoimmune response in type 1 diabetes (T1D)....