Mucoadhesive Particles: A Novel, Prolonged-Release Nanocarrier of Sitagliptin for the Treatment of Diabetics

Author:

SreeHarsha Nagaraja12ORCID,Ramnarayanan Chandramouli3ORCID,Al-Dhubiab Bandar E.1ORCID,Nair Anroop B.1ORCID,Hiremath Jagadeesh G.2,Venugopala Katharigatta N.14ORCID,Satish Roopashree T.5ORCID,Attimarad Mahesh1ORCID,Shariff Arshia6ORCID

Affiliation:

1. Department of Pharmaceutical Sciences, College of Clinical Pharmacy, King Faisal University, Al-Ahsa, Saudi Arabia

2. Department of Pharmaceutics, Vidya Siri College of Pharmacy, Bengaluru, India

3. Department of Quality Assurance, Krupanidhi College of Pharmacy, Bengaluru, India

4. Department of Biotechnology and Food Technology, Durban University of Technology, Durban 4001, South Africa

5. Department of Pharmacognosy, Government College of Pharmacy, Bengaluru, India

6. Department of Pharmaceutics, Alard College of Pharmacy, Savitribai Phule, Pune University, Pune, India

Abstract

Sitagliptin (MK–0431) is a widely and commonly used oral hypoglycemic drug in the treatment of type 2 diabetes mellitus; patients typically take higher doses of this drug (50 mg, twice daily). One drawback is that only 38% of the drug is bound reversibly to plasma proteins and 79% is excreted in urine without being metabolized. To overcome this issue, there is a need for a better drug-delivery method to improve its efficacy in patients. It has been found that in existing formulations, the drug content is 72.5% ± 5% and the percentage yield is 84.9% ± 3%. In this study, sitagliptin nanoparticles (sizes ranging from 210 to 618 nm) were developed. The bioadhesion properties of the nanoparticles, as well as the swelling of the nanoparticles on the mucus membrane aided in sustained drug release. The pattern of drug release was in accordance with the Peppas model. Fourier-transform infrared (FTIR) spectroscopy demonstrated that there were no significant interactions between sitagliptin and chitosan. Differential scanning calorimetry (DSC) results showed an absence of drug peaks due to the fact that the drug was present in an amorphous state. Mucoadhesive nanoparticles were formulated using sitagliptin and were effective for about 12 hours in the gastrointestinal tract. When compared to conventional sitagliptin administration, use of a nanoparticle delivery system demonstrated greater benefits for use in oral delivery applications. This is the first time that a drug-delivery method based on the mucoadhesive properties of nanoparticles could prolong the drug-release time of sitagliptin.

Funder

Deanship of Scientific Research, King Faisal University

Publisher

Hindawi Limited

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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