Dose-dependent neurotoxic effects of monosodium glutamate on neural tube development in chicken embryos
Neurochirurgie, cilt.72, sa.5, 2026 (SCI-Expanded, Scopus)
- Yayın Türü: Makale / Tam Makale
- Cilt numarası: 72 Sayı: 5
- Basım Tarihi: 2026
- Doi Numarası: 10.1016/j.neuchi.2026.101856
- Dergi Adı: Neurochirurgie
- Derginin Tarandığı İndeksler: Science Citation Index Expanded (SCI-EXPANDED), Scopus, EMBASE, MEDLINE
- Anahtar Kelimeler: Chicken embryo, Monosodium glutamate, Neural tube, Defect, Neurotoxicity, Embryogenesis
- Sağlık Bilimleri Üniversitesi Adresli: Evet
Özet
Background: Considering the excitatory neurotransmitter role of glutamate in the central nervous system and the widespread use of monosodium glutamate (MSG) as a food additive, this study aimed to evaluate the effects of MSG on neural tube defect formation in chicken embryos. Materials and methods: In this study, fertile, specific pathogen free eggs were used. Dosage calculation was based on the provisional tolerable intake of MSG of 30 mg/kg body weight per day reported in the literature. Doses were calculated as Group A: saline, Group B: 30 mg/kg, Group C: 60 mg/kg. Monosodium glutamate was dissolved in sterile distilled water to the desired concentrations. Results: The effects of MSG on neural tube development were evaluated in chicken embryos. In the control and low-dose (30 mg/kg) groups, the neural tube and notochord were largely intact, with only minor irregularities and a single neural tube defect observed. In contrast, embryos in the high-dose group (60 mg/kg) displayed neuroectodermal separation, luminal irregularities, and multiple neural tube defects with prominent openings. The difference in the incidence of neural tube defects between the groups was statistically significant (p = 0.021), indicating a dose-dependent adverse effect of MSG on neural tube development. Conclusions: MSG, a commonly used food additive, was found to impair neural tube development in chicken embryos in a dose-dependent manner, suggesting a potential risk during early embryogenesis.