Pentoxifylline/Chitosan Films on Wound Healing: In Vitro/In Vivo Evaluation

Author:

Moreira Vandiara Martins12ORCID,Leite Joandra Maísa da Silva12,Medeiros Kaline de Araújo12,Assis Karoll Moangella Andrade de12,Borges Joyce Cordeiro12ORCID,Santana Lucas Matheus Barreto12ORCID,Moreira Lívia Maria Coelho de Carvalho12,Alves Larissa Pereira12ORCID,Oliveira Tharcia Kiara Beserra de3,Silveira João Walter de Souza da12,Silva Dayanne Tomaz Casimiro da12ORCID,Damasceno Bolívar Ponciano Goulart de Lima12ORCID

Affiliation:

1. Graduate Program fo Pharmaceutical Science (PPGCF), State University of Paraíba (UEPB), Campina Grande 58429-500, PB, Brazil

2. Laboratory of Development and Characterization of Pharmaceutical Products (LDCPF), Department of Pharmacy, UEPB, Campina Grande 58429-500, PB, Brazil

3. Medical Sciences Faculty, University Center UniFacisa, Campina Grande 58411-020, PB, Brazil

Abstract

This study aimed to develop films of chitosan (CSF) associated with pentoxifylline (PTX) for healing cutaneous wounds. These films were prepared at two concentrations, F1 (2.0 mg/mL) and F2 (4.0 mg/mL), and the interactions between the materials, structural characteristics, in vitro release, and morphometric aspects of skin wounds in vivo were evaluated. The formation of the CSF film with acetic acid modifies the polymeric structure, and the PTX demonstrates interaction with the CSF, in a semi-crystalline structure, for all concentrations. The release for all films was proportional to the concentration, with two phases: a fast one of ≤2 h and a slow one of >2 h, releasing 82.72 and 88.46% of the drug after 72 h, being governed by the Fickian diffusion mechanism. The wounds of the mice demonstrate a reduction of up to 60% in the area on day 2 for F2 when compared to CSF, F1, and positive control, and this characteristic of faster healing speed for F2 continues until the ninth day with wound reduction of 85%, 82%, and 90% for CSF, F1, and F2, respectively. Therefore, the combination of CSF and PTX is effective in their formation and incorporation, demonstrating that a higher concentration of PTX accelerates skin-wound reduction.

Funder

Research Support Foundation of the State of Paraiba

State University of Paraiba

Publisher

MDPI AG

Subject

Pharmaceutical Science

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