Billur, DenizKızıl, ŞuleAydın, SevimÜnlü, Ağahan2023-03-142023-03-142015-06-18Taşkapılıoğlu, M. Ö. vd. (2016). "Targeting apoptosis through FOXP1, and N-cadherin with glatiramer acetate in chick embryos during neural tube development". Turkish Neurosurgery, 26(4), 586-594.1019-5149https://doi.org/10.5137/1019-5149.JTN.14518-15.3http://www.turkishneurosurgery.org.tr/abstract.php?id=1726http://hdl.handle.net/11452/31550AIM: To demonstrate the effect of glatiramer acetate (GA) in chick embryos on neural tube (NT) development, and to explore its effects of FOXP1, apoptosis, and N-cadherin. MATERIAL and METHODS: One hundred fertile, specific pathogen free eggs were divided into 5 groups for this study. The eggshell was windowed specifically at 24 hours of incubation. The embryos in Group 1 (n=20) were treated with 10 mu l physiological saline; in Group 2 the embryos (n=20) were given 10 mu l GA (equal to daily human therapeutic dose); 20 mu l GA (equal to twice daily human therapeutic dose) was injected to embryos in Group 3 (n=20); in Group 4 and 5, 30 mu l and 40 mu l GA were administered to the embryos (n=20) (equal to x3 and x4 daily human therapeutic dose, respectively). Each egg was re-incubated for 24 hours more. Then, histological and immunohistochemical evaluation of the subjects were done. RESULTS: The embryos with NT defect showed FOXP1 expression without N-cadherin or staining with N-cadherin in another location in our study. We interpreted this result as GA leading to an NT closure defect by increasing FOXP expression. Moreover, we also showed the reverse relation between FOXP1 and N-cadherin at the immunohistochemical level for the first time. CONCLUSION: GA affects the spinal cord development through FOXP in the chick embryo model at high doses.eninfo:eu-repo/semantics/openAccessNeurosciences & neurologySurgeryChick embryoGlatiramer acetateFOXPN-CadherinSpinal cord developmentTranscription factor foxp3B-cell lymphomaMultiple-sclerosisImmune-responsesPregnant-womenFork headT-cellsDefectsExpressionGenesAnimalsApoptosisCadherinsChick embryoChickensEmbryonic developmentForkhead transcription factorsGlatiramer acetateNeural tubeNeural tube defectsRepressor proteinsTargeting apoptosis through FOXP1, and N-cadherin with glatiramer acetate in chick embryos during neural tube developmentArticle0003815916000182-s2.0-8502185564158659426427400107Clinical neurologySurgeryCadmium; Head Circumference; EutheriaCadherinForkhead transcription factorFOXP1 protein, humanGlatiramerRepressor proteinAnimalApoptosisBiosynthesisChemically inducedChick embryoChickenDrug effectsEmbryo developmentEmbryologyMetabolismNeural tubeNeural tube defectPathologyPhysiology