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The Rheolaser Master™ and Kinexus Rotational Rheometer(®) to Evaluate the Influence of Topical Drug Delivery Systems on Rheological Features of Topical Poloxamer Gel

Poloxamer 407 copolymer is a versatile and widely used thermo-reversible material. Its use has many advantages, such as bio-adhesion, enhanced solubilization of poorly water-soluble drugs and many applications fields like oral, rectal, topical, nasal drug administration. Hydrogels made up of Poloxam...

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Autores principales: Cristiano, Maria Chiara, Froiio, Francesca, Mancuso, Antonia, De Gaetano, Federica, Ventura, Cinzia Anna, Fresta, Massimo, Paolino, Donatella
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7221562/
https://www.ncbi.nlm.nih.gov/pubmed/32340329
http://dx.doi.org/10.3390/molecules25081979
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author Cristiano, Maria Chiara
Froiio, Francesca
Mancuso, Antonia
De Gaetano, Federica
Ventura, Cinzia Anna
Fresta, Massimo
Paolino, Donatella
author_facet Cristiano, Maria Chiara
Froiio, Francesca
Mancuso, Antonia
De Gaetano, Federica
Ventura, Cinzia Anna
Fresta, Massimo
Paolino, Donatella
author_sort Cristiano, Maria Chiara
collection PubMed
description Poloxamer 407 copolymer is a versatile and widely used thermo-reversible material. Its use has many advantages, such as bio-adhesion, enhanced solubilization of poorly water-soluble drugs and many applications fields like oral, rectal, topical, nasal drug administration. Hydrogels made up of Poloxamer 407 are characterized by specific rheological features, which are affected by temperature, concentration and presence of other compounds. A strategic approach in topical therapeutic treatments may be the inclusion of drug delivery systems, such as ethosomes, transfersomes and niosomes, into hydrogel poloxamer formulation. The evaluation of the interaction between colloidal carriers and the Poloxamer 407 hydrogel network is essential for a suitable design of an innovative topical dosage form. For this reason, the Rheolaser Master™, based on diffusing wave spectroscopy, and a Kinexus Rotational Rheometer were used to evaluate the influence of nanocarriers on the microrheological features of hydrogels. The advantages of the Rheolaser Master™ analyzer are: (i) its ability to determine viscoelastic parameter, without altering or destroying the sample and at rest (zero shear); (ii) possibility of aging analysis on the same sample. This study provide evidence that vesicular systems do not influence the rheological features of the gel, supporting the possibility to encapsulate an innovative system into a three-dimensional network.
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spelling pubmed-72215622020-05-22 The Rheolaser Master™ and Kinexus Rotational Rheometer(®) to Evaluate the Influence of Topical Drug Delivery Systems on Rheological Features of Topical Poloxamer Gel Cristiano, Maria Chiara Froiio, Francesca Mancuso, Antonia De Gaetano, Federica Ventura, Cinzia Anna Fresta, Massimo Paolino, Donatella Molecules Article Poloxamer 407 copolymer is a versatile and widely used thermo-reversible material. Its use has many advantages, such as bio-adhesion, enhanced solubilization of poorly water-soluble drugs and many applications fields like oral, rectal, topical, nasal drug administration. Hydrogels made up of Poloxamer 407 are characterized by specific rheological features, which are affected by temperature, concentration and presence of other compounds. A strategic approach in topical therapeutic treatments may be the inclusion of drug delivery systems, such as ethosomes, transfersomes and niosomes, into hydrogel poloxamer formulation. The evaluation of the interaction between colloidal carriers and the Poloxamer 407 hydrogel network is essential for a suitable design of an innovative topical dosage form. For this reason, the Rheolaser Master™, based on diffusing wave spectroscopy, and a Kinexus Rotational Rheometer were used to evaluate the influence of nanocarriers on the microrheological features of hydrogels. The advantages of the Rheolaser Master™ analyzer are: (i) its ability to determine viscoelastic parameter, without altering or destroying the sample and at rest (zero shear); (ii) possibility of aging analysis on the same sample. This study provide evidence that vesicular systems do not influence the rheological features of the gel, supporting the possibility to encapsulate an innovative system into a three-dimensional network. MDPI 2020-04-23 /pmc/articles/PMC7221562/ /pubmed/32340329 http://dx.doi.org/10.3390/molecules25081979 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cristiano, Maria Chiara
Froiio, Francesca
Mancuso, Antonia
De Gaetano, Federica
Ventura, Cinzia Anna
Fresta, Massimo
Paolino, Donatella
The Rheolaser Master™ and Kinexus Rotational Rheometer(®) to Evaluate the Influence of Topical Drug Delivery Systems on Rheological Features of Topical Poloxamer Gel
title The Rheolaser Master™ and Kinexus Rotational Rheometer(®) to Evaluate the Influence of Topical Drug Delivery Systems on Rheological Features of Topical Poloxamer Gel
title_full The Rheolaser Master™ and Kinexus Rotational Rheometer(®) to Evaluate the Influence of Topical Drug Delivery Systems on Rheological Features of Topical Poloxamer Gel
title_fullStr The Rheolaser Master™ and Kinexus Rotational Rheometer(®) to Evaluate the Influence of Topical Drug Delivery Systems on Rheological Features of Topical Poloxamer Gel
title_full_unstemmed The Rheolaser Master™ and Kinexus Rotational Rheometer(®) to Evaluate the Influence of Topical Drug Delivery Systems on Rheological Features of Topical Poloxamer Gel
title_short The Rheolaser Master™ and Kinexus Rotational Rheometer(®) to Evaluate the Influence of Topical Drug Delivery Systems on Rheological Features of Topical Poloxamer Gel
title_sort rheolaser master™ and kinexus rotational rheometer(®) to evaluate the influence of topical drug delivery systems on rheological features of topical poloxamer gel
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7221562/
https://www.ncbi.nlm.nih.gov/pubmed/32340329
http://dx.doi.org/10.3390/molecules25081979
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