Berberine chloride loaded nano‐PEGylated liposomes attenuates imidacloprid‐induced neurotoxicity by inhibiting NLRP3/Caspase‐1/GSDMD‐mediated pyroptosis

Author:

El Gazzar Walaa Bayoumie12ORCID,Farag Amina A.3ORCID,Samir Mohamed45ORCID,Bayoumi Heba6ORCID,Youssef Heba S.7ORCID,Marei Yasmin Mohammed2,Mohamed Shimaa K.8ORCID,Marei Azza M.9ORCID,Abdelfatah Reham M.10ORCID,Mahmoud Manal Moustafa11ORCID,Aboelkomsan Elshaimaa Ahmed Fahmy12ORCID,Khalfallah Eman Kamel M.13,Anwer Hala Magdy7ORCID

Affiliation:

1. Department of Anatomy, Physiology and Biochemistry, Faculty of Medicine The Hashemite University Zarqa Jordan

2. Department of Medical Biochemistry and Molecular biology, Faculty of Medicine Benha University Benha City Qalyubia Egypt

3. Department of Forensic Medicine and Clinical Toxicology, Faculty of Medicine Benha University Benha City Qalyubia Egypt

4. Department of Zoonoses, Faculty of Veterinary Medicine Zagazig University Zagazig Sharqia Egypt

5. School of Science, Faculty of Engineering and Science University of Greenwich Kent UK

6. Department of Histology and Cell Biology, Faculty of Medicine Benha University Benha City Egypt

7. Department of Physiology, Faculty of Medicine Benha University Benha City Qalyubia Egypt

8. Department of Pharmacology and Toxicology, Faculty of Pharmacy Helwan University Cairo Egypt

9. Department of Zoology, Faculty of Science Benha University Benha City Qalyubia Egypt

10. Department of Pesticides, Faculty of Agriculture Mansoura University Mansoura Egypt

11. Department of Medical Physiology, Faculty of Medicine Cairo University Cairo Egypt

12. Department of Pathology, School of Medicine New Giza University (NGU) Giza Egypt

13. Department of Biochemistry, Toxicology and Feed Deficiency, Animal Health Research Institute (AHRI) Agricultural Research Center (ARC) Dokki Giza Egypt

Abstract

AbstractConcerns have been expressed about imidacloprid (IMI), one of the most often used pesticides, and its potential neurotoxicity to non‐target organisms. Chronic neuroinflammation is central to the pathology of several neurodegenerative disorders. Hence, exploring the molecular mechanism by which IMI would trigger neuroinflammation is particularly important. This study examined the neurotoxic effects of oral administration of IMI (45 mg/kg/day for 30 days) and the potential neuroprotective effect of berberine (Ber) chloride loaded nano‐PEGylated liposomes (Ber‐Lip) (10 mg/kg, intravenously every other day for 30 days) using laboratory rat. The histopathological changes, anti‐oxidant and oxidative stress markers (GSH, SOD, and MDA), proinflammatory cytokines (IL1β and TNF‐α), microglia phenotype markers (CD86 and iNOS for M1; CD163 for M2), the canonical pyroptotic pathway markers (NLRP3, caspase‐1, GSDMD, and IL‐18) and Alzheimer's disease markers (Neprilysin and beta amyloid [Aβ] deposits) were assessed. Oral administration of IMI resulted in apparent cerebellar histopathological alterations, oxidative stress, predominance of M1 microglia phenotype, significantly upregulated NLRP3, caspase‐1, GSDMD, IL‐18 and Aβ deposits and significantly decreased Neprilysin expression. Berberine reduced the IMI‐induced aberrations in the measured parameters and improved the IMI‐induced histopathological and ultrastructure alterations brought on by IMI. This study highlights the IMI neurotoxic effect and its potential contribution to the development of Alzheimer's disease and displayed the neuroprotective effect of Ber‐Lip.

Publisher

Wiley

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