Answering the Cell Stress Call: Satellite Non-Coding Transcription as a Response Mechanism DOI Creative Commons
Marisa Fonseca-Carvalho, Gabriela Veríssimo, Mariana Lopes

et al.

Biomolecules, Journal Year: 2024, Volume and Issue: 14(1), P. 124 - 124

Published: Jan. 17, 2024

Organisms are often subjected to conditions that promote cellular stress. Cell responses stress include the activation of pathways defend against and recover from stress, or initiation programmed cell death eliminate damaged cells. One processes can be triggered under is transcription variation in number copies satellite DNA sequences (satDNA), which involved response mechanisms. Satellite DNAs highly repetitive tandem sequences, mainly located centromeric pericentromeric regions eukaryotic chromosomes, where they form constitutive heterochromatin. non-coding RNAs (satncRNAs) important regulators processes, their deregulation has been associated with disease. Also, these transcripts have stress-response mechanisms varied species. This review intends explore role satncRNAs when cells adverse conditions. Studying satDNA various deepening our understanding how could a key factor uncovering facts about functions sequences.

Language: Английский

The differential impact of iron on ferroptosis, oxidative stress, and inflammatory reaction in head-kidney macrophages of yellow catfish (Pelteobagrus fulvidraco) with and without ammonia stress DOI

Kewei He,

Xinran Long,

Haibo Jiang

et al.

Developmental & Comparative Immunology, Journal Year: 2024, Volume and Issue: 157, P. 105184 - 105184

Published: April 20, 2024

Language: Английский

Citations

2

Challenges and Pitfalls of Research Designs involving Magnesium-Based Biomaterials: An Overview DOI Open Access
Nourhan Hassan, Thomas Krieg, Alexander Kopp

et al.

International Journal of Molecular Sciences, Journal Year: 2024, Volume and Issue: 25(11), P. 6242 - 6242

Published: June 5, 2024

Magnesium-based biomaterials hold remarkable promise for various clinical applications, offering advantages such as reduced stress-shielding and enhanced bone strengthening vascular remodeling compared to traditional materials. However, ensuring the quality of preclinical research is crucial development these implants. To achieve implant success, an understanding cellular responses post-implantation, proper model selection, good study design are crucial. There several challenges reaching a safe effective translation laboratory findings into practice. The utilization Mg-based biomedical devices eliminates need biomaterial removal surgery post-healing mitigates adverse effects associated with permanent implantation. high corrosion rate implants poses unexpected degradation, structural failure, hydrogen evolution, alkalization, cytotoxicity. biocompatibility degradability materials based on magnesium have been studied by many researchers in vitro; however, evaluations addressing impact material vivo still be improved. Several animal models, including rats, rabbits, dogs, pigs, explored assess potential magnesium-based Moreover, strategies alloying coating identified enhance degradation transform opportunities. This review aims explore Mg across applications within (in vitro) vivo) models.

Language: Английский

Citations

2

Garcinia flavonoids for healthy aging: Anti-senescence mechanisms and cosmeceutical applications in skin care DOI
Idris Adewale Ahmed, Nor Hisam Zamakshshari, Maryam Abimbola Mikail

et al.

Fitoterapia, Journal Year: 2024, Volume and Issue: 180, P. 106282 - 106282

Published: Nov. 1, 2024

Language: Английский

Citations

2

Selective pks+ Escherichia coli strains induce cell cycle arrest and apoptosis in colon cancer cell line DOI
Ahmad Khusairy Zulpa, Muttiah Barathan, Thevambiga Iyadorai

et al.

World Journal of Microbiology and Biotechnology, Journal Year: 2023, Volume and Issue: 39(12)

Published: Oct. 6, 2023

Language: Английский

Citations

4

Answering the Cell Stress Call: Satellite Non-Coding Transcription as a Response Mechanism DOI Creative Commons
Marisa Fonseca-Carvalho, Gabriela Veríssimo, Mariana Lopes

et al.

Biomolecules, Journal Year: 2024, Volume and Issue: 14(1), P. 124 - 124

Published: Jan. 17, 2024

Organisms are often subjected to conditions that promote cellular stress. Cell responses stress include the activation of pathways defend against and recover from stress, or initiation programmed cell death eliminate damaged cells. One processes can be triggered under is transcription variation in number copies satellite DNA sequences (satDNA), which involved response mechanisms. Satellite DNAs highly repetitive tandem sequences, mainly located centromeric pericentromeric regions eukaryotic chromosomes, where they form constitutive heterochromatin. non-coding RNAs (satncRNAs) important regulators processes, their deregulation has been associated with disease. Also, these transcripts have stress-response mechanisms varied species. This review intends explore role satncRNAs when cells adverse conditions. Studying satDNA various deepening our understanding how could a key factor uncovering facts about functions sequences.

Language: Английский

Citations

1