DNA damage and its cellular response in mother and fetus exposed to hyperglycemic environment

37Citations
Citations of this article
84Readers
Mendeley users who have this article in their library.

This article is free to access.

Abstract

The increased production of reactive oxygen species (ROS) plays a key role in pathogenesis of diabetic complications. ROS are generated by exogenous and endogenous factors such as during hyperglycemia.When ROS production exceeds the detoxification and scavenging capacity of the cell, oxidative stress ensues. Oxidative stress induces DNA damage and when DNA damage exceeds the cellular capacity to repair it, the accumulation of errors can overwhelm the cell resulting in cell death or fixation of genome mutations that can be transmitted to future cell generations.These mutations can lead to and/or play a role in cancer development. This reviewaims at (i) understanding the types and consequences ofDNAdamage during hyperglycemic pregnancy; (ii) identifying the biological role of DNA repair during pregnancy, and (iii) proposing clinical interventions to maintain genome integrity.While hyperglycemia can damage the maternal genetic material, the impact of hyperglycemia on fetal cells is still unclear. DNA repair mechanisms may be important to prevent the deleterious effects of hyperglycemia both in mother and in fetus DNA and, as such, prevent the development of diseases in adulthood.Hence, in clinical practice,maternal glycemic controlmay represent an important point of intervention to prevent the deleterious effects of maternal hyperglycemia to DNA.

Cite

CITATION STYLE

APA

Moreli, J. B., Santos, J. H., Rocha, C. R., Damasceno, D. C., Morceli, G., Rudge, M. V., … Calderon, I. M. P. (2014). DNA damage and its cellular response in mother and fetus exposed to hyperglycemic environment. BioMed Research International. Hindawi Limited. https://doi.org/10.1155/2014/676758

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free