Chlorhexidine (CLX) is a wide spectrum cationic antimicrobial used for prevention and treatment of infections of buccal and vaginal cavities. To increase the residence time of CLX-based formulations at the application site and consequently reduce the daily dose frequency, new formulations composed of mucoadhesive polymers should be designed. The objective of this work was the development of matrices based on polyanionic polymers, such as sodium alginate, carboxymethylcellulose, xanthan gum and sodium hyaluronate, aimed to prolong the local release of CLX into the buccal or vaginal cavity. Matrices were prepared by freeze-drying and comply with 2 different preparative methods and characterized in terms of resistance to compression, water uptake ability, mucoadhesion, in vitro drug release behavior and antimicrobial activity toward representative pathogens of buccal and vaginal cavities. Results showed that the selection of suitable polymers associated to the adequate preparative method allowed to modulate matrix ability to hydrate, adhere to the mucosa and release the drug as well as to exert antimicrobial activity. In particular, matrix based on sodium hyaluronate was found to be the best performing formulation and could represent a versatile system for local release of CLX with potential application in both buccal and vaginal cavities.

Freeze-Dried Matrices Based on Polyanion Polymers for Chlorhexidine Local Release in the Buccal and Vaginal Cavities / B. Giordani, A. Abruzzo, U.M. Musazzi, F. Cilurzo, F.P. Nicoletta, F. Dalena, C. Parolin, B. Vitali, T. Cerchiara, B. Luppi, F. Bigucci. - In: JOURNAL OF PHARMACEUTICAL SCIENCES. - ISSN 0022-3549. - 108:7(2019 Jul), pp. 2447-2457. [10.1016/j.xphs.2019.02.026]

Freeze-Dried Matrices Based on Polyanion Polymers for Chlorhexidine Local Release in the Buccal and Vaginal Cavities

U.M. Musazzi;F. Cilurzo;
2019

Abstract

Chlorhexidine (CLX) is a wide spectrum cationic antimicrobial used for prevention and treatment of infections of buccal and vaginal cavities. To increase the residence time of CLX-based formulations at the application site and consequently reduce the daily dose frequency, new formulations composed of mucoadhesive polymers should be designed. The objective of this work was the development of matrices based on polyanionic polymers, such as sodium alginate, carboxymethylcellulose, xanthan gum and sodium hyaluronate, aimed to prolong the local release of CLX into the buccal or vaginal cavity. Matrices were prepared by freeze-drying and comply with 2 different preparative methods and characterized in terms of resistance to compression, water uptake ability, mucoadhesion, in vitro drug release behavior and antimicrobial activity toward representative pathogens of buccal and vaginal cavities. Results showed that the selection of suitable polymers associated to the adequate preparative method allowed to modulate matrix ability to hydrate, adhere to the mucosa and release the drug as well as to exert antimicrobial activity. In particular, matrix based on sodium hyaluronate was found to be the best performing formulation and could represent a versatile system for local release of CLX with potential application in both buccal and vaginal cavities.
No
English
drug-excipient interaction(s); hydrogel(s); lyophilization; mucoadhesive; polymeric drug delivery system(s); solid dosage form(s); mucosal drug delivery
Settore CHIM/09 - Farmaceutico Tecnologico Applicativo
Articolo
Esperti anonimi
Pubblicazione scientifica
lug-2019
7-mar-2019
Wiley Blackwell Science
108
7
2447
2457
11
Pubblicato
Periodico con rilevanza internazionale
crossref
Aderisco
info:eu-repo/semantics/article
Freeze-Dried Matrices Based on Polyanion Polymers for Chlorhexidine Local Release in the Buccal and Vaginal Cavities / B. Giordani, A. Abruzzo, U.M. Musazzi, F. Cilurzo, F.P. Nicoletta, F. Dalena, C. Parolin, B. Vitali, T. Cerchiara, B. Luppi, F. Bigucci. - In: JOURNAL OF PHARMACEUTICAL SCIENCES. - ISSN 0022-3549. - 108:7(2019 Jul), pp. 2447-2457. [10.1016/j.xphs.2019.02.026]
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Prodotti della ricerca::01 - Articolo su periodico
11
262
Article (author)
Periodico con Impact Factor
B. Giordani, A. Abruzzo, U.M. Musazzi, F. Cilurzo, F.P. Nicoletta, F. Dalena, C. Parolin, B. Vitali, T. Cerchiara, B. Luppi, F. Bigucci
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/675142
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