Symbiotic Antidiabetic Effect of Lactobacillus casei and the Bioactive Extract of Cleome droserifolia (Forssk.) Del. on Mice with Type 2 Diabetes Induced by Alloxan

Author:

El Maksoud Ahmed I. Abd1,Al‐Karmalawy Ahmed A.23ORCID,ElEbeedy Dalia4,Ghanem Aml5,Rasheed Yasmin6,Ibrahim Ibrahim A.7,Elghaish Reem A.8,Belal Amany9,Raslan Mona A.10,Taher Rehab F.11

Affiliation:

1. Industrial Biotechnology Department Genetic Engineering and Biotechnology Research Institute University of Sadat City Sadat City Egypt

2. Department of Pharmaceutical Chemistry Faculty of Pharmacy Horus University-Egypt New Damietta 34518 Egypt

3. Pharmaceutical Chemistry Department Faculty of Pharmacy Ahram Canadian University 6th of October City Giza 12566 Egypt

4. Department of Microbiology and Immunology, Faculty of Biotechnology Misr University for Science and Technology 6th of October City Giza Egypt

5. School of Biotechnology Badr University in Cairo, Badr City Cairo 11829 Egypt

6. College of Biotechnology Misr University for Science and Technology 6th of October City Egypt

7. Plant Biotechnology Department Genetic Engineering and Biotechnology Research Institute University of Sadat City Sadat City Egypt

8. Zewail City for Science and Technology Giza Egypt

9. Medicinal Chemistry Department Faculty of Pharmacy Beni-Suef University Beni-Suef 62514 Egypt

10. Pharmacognosy Department National Research Centre 33 El Bohouth St., Dokki Giza 12622 Egypt

11. Department of Natural Compounds Chemistry National Research Center 33 El Bohouth St., Dokki Giza 12622 Egypt

Abstract

AbstractThe consumption of probiotics protects pancreatic β‐cells from oxidative damage, delaying the onset of type 2 diabetes mellitus (T2DM) and preventing microvascular and macrovascular complications. This study aimed to evaluate the antidiabetic activity of CDE fermented by Lactobacillus casei (ATCC 39539) (LC) in alloxan‐induced diabetic rats. The oxidative stress identified by catalase (CAT), serum AST, ALT, ALP, creatinine, urea, and uric acid were measured. The chemical profiles of the plant extract and the fermented extract were studied using HPLC/MS. The potential of the compounds towards the binding pockets of aldose reductase and PPAR was discovered by molecular docking. A significant reduction in fasting blood glucose in alloxan‐treated rats. The CAT showed a significant decrease in diabetic rats. Also, serum AST, ALT, ALP, creatinine, urea, and uric acid were significantly decreased in the mixture group. Mild histological changes of pancreatic and kidney tissues suggested that the mixture of probiotics and cleome possesses a marked anti‐diabetic effect. Overall, the study suggests that the combination of Cleome droserifolia fermented by Lactobacillus casei exhibits significant antidiabetic activity (p‐value=0.05), reduces oxidative stress, improves lipid profiles, and shows potential for the treatment of diabetes.

Publisher

Wiley

Subject

Molecular Biology,Molecular Medicine,General Chemistry,Biochemistry,General Medicine,Bioengineering

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