In Vitro Release and In Vivo Pharmacokinetics of Praziquantel Loaded in Different Polymer Particles

Author:

Pereira Emiliane Daher1,da Silva Dutra Luciana1ORCID,Paiva Thamiris Franckini2,de Almeida Carvalho Larissa Leite3,Rocha Helvécio Vinícius Antunes4,Pinto José Carlos13ORCID

Affiliation:

1. Programa de Engenharia Química/COPPE, Universidade Federal do Rio de Janeiro, Cidade Universitária, CP: 68502, Rio de Janeiro 21941-972, RJ, Brazil

2. SENAI CETIQT, Instituto SENAI de Inovação em Biossintéticos e Fibras, Cidade Universitária, Rua Fernando de Souza Barros, Rio de Janeiro 21941-857, RJ, Brazil

3. Programa de Engenharia de Processos Químicos e Bioquímicos/EQ, Universidade Federal do Rio de Janeiro, Cidade Universitária, Rio de Janeiro 21949-900, RJ, Brazil

4. Laboratório de Micro e Nanotecnologia, Instituto de Tecnologia de Fármacos—Farmanguinhos, Fundação Oswaldo Cruz, Rio de Janeiro 21040-361, RJ, Brazil

Abstract

Approximately 1 billion people are affected by neglected diseases around the world. Among these diseases, schistosomiasis constitutes one of the most important public health problems, being caused by Schistosoma mansoni and treated through the oral administration of praziquantel (PZQ). Despite being a common disease in children, the medication is delivered in the form of large, bitter-tasting tablets, which makes it difficult for patients to comply with the treatment. In order to mask the taste of the drug, allow more appropriate doses for children, and enhance the absorption by the body, different polymer matrices based on poly(methyl methacrylate) (PMMA) were developed and used to encapsulate PZQ. Polymer matrices included PMMA nano- and microparticles, PMMA-co-DEAEMA (2-(diethylamino)ethyl methacrylate), and PMMA-co-DMAEMA (2-(dimethylamino)ethyl methacrylate) microparticles. The performances of the drug-loaded particles were characterized in vitro through dissolution tests and in vivo through pharmacokinetic analyses in rats for the first time. The in vitro dissolution studies were carried out in accordance with the Brazilian Pharmacopeia and revealed a good PZQ release profile in an acidic medium for the PMMA-DEAEMA copolymer, reaching values close to 100 % in less than 3 h. The in vivo pharmacokinetic analyses were conducted using free PZQ as the control group that was compared with the investigated matrices. The drug was administered orally at doses of 60 mg/kg, and the PMMA-co-DEAEMA copolymer microparticles were found to be the most efficient release system among the investigated ones, reaching a Cmax value of 1007 ± 83 ng/mL, even higher than that observed for free PZQ, which displayed a Cmax value of 432 ± 98 ng/mL.

Funder

Banco Nacional de Desenvolvimento Econômico e Social

Publisher

MDPI AG

Subject

General Materials Science

Reference54 articles.

1. Neglected Diseases;Nature,2007

2. (2023, February 02). WHO Schistosomiasis. Available online: https://www.who.int/news-room/fact-sheets/detail/schistosomiasis.

3. Sex- and Stage-Related Sensitivity of Schistosoma Mansoni to in Vivo and in Vitro Praziquantel Treatment;Cioli;Int. J. Parasitol.,2004

4. Schistosomiasis: Drugs Used and Treatment Strategies;Fontes;Acta Trop.,2017

5. Unexpected Solvent Impact in the Crystallinity of Praziquantel/Poly(Vinylpyrrolidone) Formulations. A Solubility, DSC and Solid-State NMR Study;Costa;Int. J. Pharm.,2016

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