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Embryonic Flubendiamide Exposure Alters Expression of OTX2 and Other Early Regulators in Domestic Chick Leading to
Dhanush Danes1,2, Bhaval Parmar1, Juhi Vaishnav3
1Department of Zoology, Faculty of Science, The Maharaja Sayajirao University of Baroda, Lokmanya Tilak Road, Vadodara, Gujarat, India.
Abstract:
Flubendiamide, a phthalic acid diamide insecticide, has been implicated in potential teratogenic effects on non-target organisms, especially during embryonic development. This study examines the impact of flubendiamide on eye development in chick embryos, a well-established model for vertebrate development. Exposure to 0.5 µg/µL of flubendiamide significantly impaired early ocular morphogenesis, resulting in severe defects such as underdeveloped optic cups and the absence of lens and corneal structures. Histopathological analysis demonstrated disrupted optic cup differentiation, while in silico docking studies revealed strong interactions between flubendiamide and key oculogenic proteins, including OTX2, PAX6, and SOX2. These interactions were associated with altered expression patterns of these critical regulators, alongside overexpression of SHH and downregulation of BMP4, BMP7, and FGF8, which are essential for optic vesicle formation and lens differentiation. Additionally, increased CASPASE-3 expression indicated enhanced apoptosis, contributing to the observed ocular anomalies. These findings suggest that flubendiamide disrupts key signaling pathways necessary for proper eye development, potentially leading to congenital eye defects. The study highlights the need for a thorough evaluation of the molecular mechanisms driving flubendiamide-induced teratogenicity to ensure safer pesticide use and protect environmental and human health.
Insights
Flubendiamide insecticide exposure caused severe eye development defects in chick embryos by disrupting key molecular pathways. This insecticide may lead to congenital eye anomalies, underscoring the need for safety evaluations.
Area of Science:
- Developmental toxicology
- Molecular biology
- Ophthalmology
Background:
- Flubendiamide, a phthalic acid diamide insecticide, is suspected of causing teratogenic effects.
- Embryonic development, particularly eye formation, is vulnerable to environmental toxins.
Purpose of the Study:
- To investigate the impact of flubendiamide on chick embryo eye development.
- To elucidate the molecular mechanisms underlying flubendiamide-induced ocular teratogenicity.
Main Methods:
- Chick embryos were exposed to flubendiamide (0.5 µg/µL).
- Ocular morphogenesis was assessed via histopathology.
- In silico docking was performed with key oculogenic proteins.
- Gene expression analysis (OTX2, PAX6, SOX2, SHH, BMP4, BMP7, FGF8, CASPASE-3) was conducted.
Main Results:
- Flubendiamide exposure led to underdeveloped optic cups and absent lens/corneal structures.
- In silico studies showed flubendiamide binding to OTX2, PAX6, and SOX2.
- Altered expression of key developmental genes (SHH, BMPs, FGF8) and increased apoptosis (CASPASE-3) were observed.
Conclusions:
- Flubendiamide disrupts critical signaling pathways essential for eye development.
- The insecticide's teratogenic effects on ocular morphogenesis are linked to molecular pathway interference.
- Further research into flubendiamide's mechanisms is crucial for pesticide safety and health protection.
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