Nail Can Öztürk
Mersin University
21 Papers
145 Citations
Nail Can Öztürk is an academic researcher from Mersin University. The author has contributed to research in topics: Medicine & DNA methylation. The author has an hindex of 10, co-authored 18 publications. Previous affiliations of Nail Can Öztürk include Indiana University.
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Papers
DNA Methylation Program in Developing Hippocampus and Its Alteration by Alcohol
TL;DR: It is demonstrated that DNA methylation program (DMP) proceeded along with hippocampal neuronal differentiation and maturation, and how this DMP was affected by fetal alcohol exposure.
Anatomical variations of the foramen magnum, occipital condyle and jugular tubercle.
Emel Avci,Ahmet Dağtekin,A Hakan Ozturk,Engin Kara,Nail Can Öztürk,Kutluay Uluc,Erinc Akture,Mustafa K. Baskaya +7 more
TL;DR: The OC and JT are the main bony prominences obstructing the anterolateral surface of the brainstem and neurosurgeons should be familiar with variations of the structures surrounding the FM in order to perform the safest and widest exposure possible.
Epigenetic medicine and fetal alcohol spectrum disorders.
TL;DR: This review discusses the normal course of DNA methylation during development, taking alcohol as a demonstrator of the epigenetic impact of environmental factors in disease etiology, particularly the growth retardation and neurodevelopmental deficits of fetal alcohol spectrum disorders.
Strain differences in developmental vulnerability to alcohol exposure via embryo culture in mice.
Yuanyuan Chen,Nail Can Öztürk,Nail Can Öztürk,Lijun Ni,Charles R. Goodlett,Charles R. Goodlett,Feng C. Zhou +6 more
TL;DR: It is found that fetal genotype is an important factor that can contribute to the variation in fetal alcohol spectrum disorder and the degree of growth retardation and the extent and type of neurodevelopmental teratogenesis varied significantly across strains.
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DNA Methylation program in normal and alcohol-induced thinning cortex.
TL;DR: Cortical thickness, neuroepithelial proliferation, and neuronal migration and maturity were found to be deterred by alcohol at E17, and this findings point to a significant question for future exploration: whether epigenetics guides neurodevelopment or whether developmental conditions dictate epigenetic dynamics in the context of alcohol-induced cortical teratogenesis.
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