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Oxidative DNA Damage, Inflammatory Signature, and Altered Erythrocytes Properties in Diamond-Blackfan Anemia
K. Kapralova, O. Jahoda, P. Koralkova, J. Gursky, L. Lanikova, D. Pospisilova, V. Divoky, M. Horvathova
Language English Country Switzerland
Document type Journal Article
Grant support
AZV 16-32105A
Ministerstvo Zdravotnictví Ceské Republiky
8F20005
Ministerstvo Školství, Mládeže a Tělovýchovy
IGA_LF_2020_005
Univerzita Palackého v Olomouci
NV16-32105A
MZ0
CEP Register
Digital library NLK
Full text - Article
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PubMed
33348919
DOI
10.3390/ijms21249652
Knihovny.cz E-resources
- MeSH
- Anemia, Diamond-Blackfan immunology metabolism pathology MeSH
- Child MeSH
- Adult MeSH
- Erythrocytes metabolism pathology MeSH
- Middle Aged MeSH
- Humans MeSH
- Inflammation Mediators metabolism MeSH
- Young Adult MeSH
- Mice MeSH
- Follow-Up Studies MeSH
- Oxidative Stress * MeSH
- DNA Damage * MeSH
- Prognosis MeSH
- Case-Control Studies MeSH
- Inflammation immunology metabolism pathology MeSH
- Animals MeSH
- Check Tag
- Child MeSH
- Adult MeSH
- Middle Aged MeSH
- Humans MeSH
- Young Adult MeSH
- Male MeSH
- Mice MeSH
- Female MeSH
- Animals MeSH
- Publication type
- Journal Article MeSH
Molecular pathophysiology of Diamond-Blackfan anemia (DBA) involves disrupted erythroid-lineage proliferation, differentiation and apoptosis; with the activation of p53 considered as a key component. Recently, oxidative stress was proposed to play an important role in DBA pathophysiology as well. CRISPR/Cas9-created Rpl5- and Rps19-deficient murine erythroleukemia (MEL) cells and DBA patients' samples were used to evaluate proinflammatory cytokines, oxidative stress, DNA damage and DNA damage response. We demonstrated that the antioxidant defense capacity of Rp-mutant cells is insufficient to meet the greater reactive oxygen species (ROS) production which leads to oxidative DNA damage, cellular senescence and activation of DNA damage response signaling in the developing erythroblasts and altered characteristics of mature erythrocytes. We also showed that the disturbed balance between ROS formation and antioxidant defense is accompanied by the upregulation of proinflammatory cytokines. Finally, the alterations detected in the membrane of DBA erythrocytes may cause their enhanced recognition and destruction by reticuloendothelial macrophages, especially during infections. We propose that the extent of oxidative stress and the ability to activate antioxidant defense systems may contribute to high heterogeneity of clinical symptoms and response to therapy observed in DBA patients.
References provided by Crossref.org
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