Improved bioavailability of raloxifene hydrochloride through nasal administration of poly (methyl vinyl ether-co-maleic acid) nanoparticles in ovariectomized rats

نویسندگان

1 Novel Drug Delivery Systems Research Center, Department of Pharmaceutics, School of Pharmacy, Isfahan University of Medical Sciences, Isfahan, Iran

2 Department of Pharmacology, School of Pharmacy and Pharmaceutical Sciences, Isfahan University of Medical Sciences, Isfahan, Iran

3 Novel Drug Delivery Systems Research Center, Department of Pharmaceutics, School of Pharmacy, Isfahan University of Medical Sciences, Isfahan, Iran

doi
10.22038/ijbms.2025.90740.19566
چکیده

Objective(s): To improve the low bioavailability of Raloxifene hydrochloride (RH), which is just 2% through oral administration, an in situ mucoadhesive thermoreversible gel loaded with RH nanoparticles was formulated using Pluronic F127. Materials and Methods: Mucoadhesion of the gels was modulated using Carbopol 934, Xanthan gum, and HPMC K4M as mucoadhesive polymers. The formulations containing 18% Pluronic and 0.2% Xanthan gum or 0.5% HPMC were considered as the optimized formulation based on their pH, gelation temperature, mucoadhesive strength, gel strength, viscosity, drug content, histopathological, and pharmacodynamic studies in ovariectomized rats. Results: The gelation temperatures were 33.63±0.38 °C for Xanthan gum (0.2%) and 37.18±0.71 °C for HPMC (0.5%). Also, the 51758.67±62.17 dyn/cm2 mucoadhesive strength was seen in HPMC 0.5% and 14867.33±192.60 dyn/cm2 in Xanthan gum 0.2%. The drug released from the gel containing HPMC (0.5%) and Xanthan gum (0.2%) at 180 min was 98.2 ± 0.9% and 92.2 ± 5.6%, respectively. Serum calcium, phosphorus, and alkaline phosphatase significantly decreased in ovariectomized rats treated with oral estradiol valerate (as the standard treatment), and ovariectomized rats received nasal gels containing RH nanoparticles in comparison to the group with no treatment (P<0.05). Histopathological results indicated no adverse effects on the nasal mucosa following the administration of RH nanoparticle gels. Also, compared with the untreated drug, the nasal gel of RH nanoparticles showed an AUC0-24 that was 5.5-fold higher, indicating a significant improvement in RH relative bioavailability (P<0.05). Conclusion: These results suggest that the thermoreversible nasal gel formulation of RH can be used as a safe drug-delivery system.