Turgay Dalkara

Affiliations: 
Hacettepe Medical School 
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"Turgay Dalkara"
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Publications

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Uzay B, Bahadır-Varol A, Hökelekli FÖ, et al. (2024) FGF2 gene's antisense protein, NUDT6, plays a depressogenic role by promoting inflammation and suppressing neurogenesis without altering FGF2 signalling. The Journal of Physiology
Erk EE, Demir BN, Kurşun HK, et al. (2024) The Effect of Inhibition of Perisynaptic Astrocyte Glycogen Utilization on Depression-Like Behavior. Turk Psikiyatri Dergisi = Turkish Journal of Psychiatry. 34: 272-281
Kaya Z, Belder N, Sever-Bahcekapili M, et al. (2023) Vesicular HMGB1 release from neurons stressed with spreading depolarization enables confined inflammatory signaling to astrocytes. Journal of Neuroinflammation. 20: 295
Hanalioglu S, Taskiran-Sag A, Karatas H, et al. (2022) Cortical spreading depression can be triggered by sensory stimulation in primed wild type mouse brain: a mechanistic insight to migraine aura generation. The Journal of Headache and Pain. 23: 107
Dehghani A, Phisonkunkasem T, Yilmaz Ozcan S, et al. (2021) Widespread brain parenchymal HMGB1 and NF-κB neuroinflammatory responses upon cortical spreading depolarization in familial hemiplegic migraine type 1 mice. Neurobiology of Disease. 156: 105424
Donmez-Demir B, Erdener ŞE, Karatas H, et al. (2020) KCl-induced cortical spreading depression waves more heterogeneously propagate than optogenetically-induced waves in lissencephalic brain: an analysis with optical flow tools. Scientific Reports. 10: 12793
Kureli G, Yilmaz-Ozcan S, Erdener SE, et al. (2020) F-actin polymerization contributes to pericyte contractility in retinal capillaries. Experimental Neurology. 332: 113392
Karatas H, Yemisci M, Eren-Kocak E, et al. (2019) Brain Peptides for the Treatment of Neuropsychiatric Disorders. Current Pharmaceutical Design. 24: 3905-3917
Dehghani A, Karatas H, Can A, et al. (2018) Nuclear expansion and pore opening are instant signs of neuronal hypoxia and can identify poorly fixed brains. Scientific Reports. 8: 14770
Taskiran-Sag A, Yemisci M, Gursoy-Ozdemir Y, et al. (2018) Improving Microcirculatory Reperfusion Reduces Parenchymal Oxygen Radical Formation and Provides Neuroprotection. Stroke. 49: 1267-1275
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