Lamotrigine-Loaded Poloxamer-Based Thermo-Responsive Sol–Gel: Formulation, In Vitro Assessment, Ex Vivo Permeation, and Toxicology Study

Author:

Riaz Maria1,Zaman Muhammad1,Hameed Huma1ORCID,Sarwar Hafiz Shoaib1,Khan Mahtab Ahmad1,Irfan Ali2ORCID,Shazly Gamal A.3,Paiva-Santos Ana Cláudia45ORCID,Jardan Yousef A. Bin3ORCID

Affiliation:

1. Faculty of Pharmaceutical Sciences, University of Central Punjab, Lahore 54000, Pakistan

2. Department of Chemistry, Government College University Faisalabad, Faisalabad 38000, Pakistan

3. Department of Pharmaceutics, College of Pharmacy, King Saud University, Riyadh 11451, Saudi Arabia

4. Department of Pharmaceutical Technology, Faculty of Pharmacy of the University of Coimbra, University of Coimbra, 3000-548 Coimbra, Portugal

5. REQUIMTE/LAQV, Group of Pharmaceutical Technology, Faculty of Pharmacy, University of Coimbra, 3000-548 Coimbra, Portugal

Abstract

The present study aimed to prepare, characterize, and evaluate a thermo-responsive sol–gel for intranasal delivery of lamotrigine (LTG), which was designed for sustained drug delivery to treat epilepsy. LTG sol–gel was prepared using the cold method by changing the concentrations of poloxamer 407 and poloxamer 188, which were used as thermo-reversible polymers. The optimized formulations of sol–gel were analyzed for clarity, pH, viscosity, gelation temperature, gelation time, spreadability, drug content, in vitro drug release studies, ex vivo permeation studies, and in vivo toxicological studies. FTIR, XRD, and DSC were performed to determine the thermal stability of the drug and polymers. The prepared formulations had a clear appearance in sol form; they were liquid at room temperature and became gel at temperatures between 31 °C and 36 °C. The pH was within the range of the nasal pH, between 6.2 and 6.4. The drug content was found to be between 92% and 94%. In vitro drug release studies indicated that the formulations released up to 92% of the drug within 24 h. The FTIR, DSC, and XRD analyses showed no interaction between the drug and the polymer. A short-term stability study indicated that the formulation was stable at room temperature and at 4–8 °C. There was a slight increase in viscosity at room temperature, which may be due to the evaporation of the vehicle. A histological study indicated that there were no signs of toxicity seen in vital organs, such as the brain, kidney, liver, heart, and spleen. It can be concluded from the above results that the prepared intranasal sol–gel for the delivery of LTG is safe for direct nose-to-brain delivery to overcome the first-pass effect and thus enhance bioavailability. It can be considered an effective alternative to conventional drug delivery for the treatment of epilepsy.

Funder

King Saud University

Publisher

MDPI AG

Subject

Polymers and Plastics,Organic Chemistry,Biomaterials,Bioengineering

Reference54 articles.

1. Development and characterization of in-situ gel for ophthalmic formulation containing ciprofloxacin hydrochloride;Makwana;Results in Pharma Sci.,2015

2. Nasal systemic drug delivery;Chien;Drugs Pharm. Sci.,1989

3. Environment-sensitive hydrogels for drug delivery;Qiu;Adv. Drug Deliv. Rev.,2001

4. In-situ gel: New trends in controlled and sustained drug delivery system;Nirmal;Int. J. PharmTech Res.,2010

5. In vitro assessment of new embolic liquids prepared from preformed polymers and water-miscible solvents for aneurysm treatment;Mottu;Biomaterials,2000

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