Targeting Nrf2/HO-1, NF-κB, and Apoptotic Pathways: Mechanistic Evaluation of Phlorizin Nanoparticles in Diabetic

Ahmed M S Hegazy1, Nasser S Alqahtani2, Ayat B Al-Ghafari3,4,5

  • 1Department of Anatomy, Faculty of Medicine, Northern Border University, Arar, Saudi Arabia.

Insights

Phlorizin chitosan nanoparticles (PHL-CSNPs) significantly improved outcomes in diabetic rats by enhancing phlorizin

Area of Science:

  • Pharmacology and Toxicology
  • Biochemistry and Metabolism
  • Nanomedicine and Drug Delivery

Background:

  • Diabetes mellitus (DM) is a chronic metabolic disorder characterized by hyperglycemia, dyslipidemia, oxidative stress, inflammation, and renal dysfunction.
  • Phlorizin (PHL) has demonstrated antidiabetic properties, but its clinical use is limited by poor bioavailability and rapid metabolism.
  • Developing effective delivery systems is crucial to enhance PHL's therapeutic efficacy for managing diabetes complications.

Purpose of the Study:

  • To evaluate the therapeutic potential of phlorizin (PHL) and its chitosan nanoparticle formulation (PHL-CSNPs) in streptozotocin (STZ)-induced type 1 diabetic rats.
  • To compare the efficacy of PHL-CSNPs against crude PHL in ameliorating metabolic and renal complications of type 1 diabetes.
  • To assess the safety and nephroprotective effects of PHL-CSNPs.

Main Methods:

  • Induction of type 1 diabetes in adult male albino rats using streptozotocin (STZ).
  • Administration of crude phlorizin (PHL) or phlorizin chitosan nanoparticles (PHL-CSNPs) to diabetic and non-diabetic rat groups.
  • Assessment of metabolic parameters (blood glucose, insulin, lipids), oxidative stress markers, inflammatory cytokines, apoptotic markers, renal function, and histopathology.

Main Results:

  • PHL-CSNPs significantly improved glucose homeostasis, insulin levels, and body weight in diabetic rats compared to crude PHL.
  • PHL-CSNPs demonstrated superior antioxidant, anti-inflammatory, and anti-apoptotic effects, restoring renal function and mitigating fibrosis.
  • Nanoencapsulation enhanced PHL's stability, bioavailability, and tissue delivery, leading to greater therapeutic benefits and nephroprotection.

Conclusions:

  • Nanoencapsulation with chitosan significantly potentiates the biological activity and therapeutic efficacy of phlorizin.
  • PHL-CSNPs offer a promising therapeutic strategy for managing type 1 diabetes-induced metabolic disturbances and renal complications.
  • The study highlights the advantage of PHL-CSNPs over crude PHL, showing superior nephroprotective, antioxidant, and anti-inflammatory benefits.