Polymer-filled microcontainers for oral delivery loaded using supercritical impregnation

Research output: Contribution to journalJournal articleResearchpeer-review

Standard

Polymer-filled microcontainers for oral delivery loaded using supercritical impregnation. / Marizza, Paolo; Keller, Stephan S; Müllertz, Anette; Boisen, Anja.

In: Journal of controlled release : official journal of the Controlled Release Society, Vol. 173, 10.01.2014, p. 1-9.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Marizza, P, Keller, SS, Müllertz, A & Boisen, A 2014, 'Polymer-filled microcontainers for oral delivery loaded using supercritical impregnation', Journal of controlled release : official journal of the Controlled Release Society, vol. 173, pp. 1-9. https://doi.org/10.1016/j.jconrel.2013.09.022

APA

Marizza, P., Keller, S. S., Müllertz, A., & Boisen, A. (2014). Polymer-filled microcontainers for oral delivery loaded using supercritical impregnation. Journal of controlled release : official journal of the Controlled Release Society, 173, 1-9. https://doi.org/10.1016/j.jconrel.2013.09.022

Vancouver

Marizza P, Keller SS, Müllertz A, Boisen A. Polymer-filled microcontainers for oral delivery loaded using supercritical impregnation. Journal of controlled release : official journal of the Controlled Release Society. 2014 Jan 10;173:1-9. https://doi.org/10.1016/j.jconrel.2013.09.022

Author

Marizza, Paolo ; Keller, Stephan S ; Müllertz, Anette ; Boisen, Anja. / Polymer-filled microcontainers for oral delivery loaded using supercritical impregnation. In: Journal of controlled release : official journal of the Controlled Release Society. 2014 ; Vol. 173. pp. 1-9.

Bibtex

@article{93caa0d22f48418c9b6bb6fd121e03a3,
title = "Polymer-filled microcontainers for oral delivery loaded using supercritical impregnation",
abstract = "In the last years a large variety of drug delivery systems have been developed to improve bioavailability of therapeutics in oral administration. An increasing interest has arisen in reservoir-based microdevices designed for active ingredients like water insoluble compounds and fragile biomolecules. Such microdevices are designed to protect the active ingredient against degradation and deactivation, and to allow cytoadhesion and unidirectional drug release. There are few works which optimize the drug loading step and often therapeutics are dosed in the microdevices through laborious and time consuming procedures. This work proposes an effective loading technique for a poorly soluble model drug in microcontainers, by combining inkjet printing and supercritical fluid impregnation. Well defined quantities of poly(vinyl pyrrolidone) (PVP) solutions are dispensed into microcontainers by inkjet printing with a quasi-no-waste performance. Then ketoprofen is impregnated in the polymer matrix by using supercritical carbon dioxide (scCO2) as loading medium. The amount of polymer is controlled by the volume and the number of droplets of dispensed polymer and drug loading is tuned by varying the impregnation parameters. Compared to solid dispersions of the same drug and polymer, scCO2-impregnated microcontainers exhibit a more reproducible drug loading and a faster dissolution rate of the active compound which allows drug release to be modulated. The combination of these loading techniques potentially allows the high throughput fabrication of microdevices for oral drug delivery with a safe and solvent-free solution.",
author = "Paolo Marizza and Keller, {Stephan S} and Anette M{\"u}llertz and Anja Boisen",
note = "{\textcopyright} 2013.",
year = "2014",
month = jan,
day = "10",
doi = "10.1016/j.jconrel.2013.09.022",
language = "English",
volume = "173",
pages = "1--9",
journal = "Journal of Controlled Release",
issn = "0168-3659",
publisher = "Elsevier",

}

RIS

TY - JOUR

T1 - Polymer-filled microcontainers for oral delivery loaded using supercritical impregnation

AU - Marizza, Paolo

AU - Keller, Stephan S

AU - Müllertz, Anette

AU - Boisen, Anja

N1 - © 2013.

PY - 2014/1/10

Y1 - 2014/1/10

N2 - In the last years a large variety of drug delivery systems have been developed to improve bioavailability of therapeutics in oral administration. An increasing interest has arisen in reservoir-based microdevices designed for active ingredients like water insoluble compounds and fragile biomolecules. Such microdevices are designed to protect the active ingredient against degradation and deactivation, and to allow cytoadhesion and unidirectional drug release. There are few works which optimize the drug loading step and often therapeutics are dosed in the microdevices through laborious and time consuming procedures. This work proposes an effective loading technique for a poorly soluble model drug in microcontainers, by combining inkjet printing and supercritical fluid impregnation. Well defined quantities of poly(vinyl pyrrolidone) (PVP) solutions are dispensed into microcontainers by inkjet printing with a quasi-no-waste performance. Then ketoprofen is impregnated in the polymer matrix by using supercritical carbon dioxide (scCO2) as loading medium. The amount of polymer is controlled by the volume and the number of droplets of dispensed polymer and drug loading is tuned by varying the impregnation parameters. Compared to solid dispersions of the same drug and polymer, scCO2-impregnated microcontainers exhibit a more reproducible drug loading and a faster dissolution rate of the active compound which allows drug release to be modulated. The combination of these loading techniques potentially allows the high throughput fabrication of microdevices for oral drug delivery with a safe and solvent-free solution.

AB - In the last years a large variety of drug delivery systems have been developed to improve bioavailability of therapeutics in oral administration. An increasing interest has arisen in reservoir-based microdevices designed for active ingredients like water insoluble compounds and fragile biomolecules. Such microdevices are designed to protect the active ingredient against degradation and deactivation, and to allow cytoadhesion and unidirectional drug release. There are few works which optimize the drug loading step and often therapeutics are dosed in the microdevices through laborious and time consuming procedures. This work proposes an effective loading technique for a poorly soluble model drug in microcontainers, by combining inkjet printing and supercritical fluid impregnation. Well defined quantities of poly(vinyl pyrrolidone) (PVP) solutions are dispensed into microcontainers by inkjet printing with a quasi-no-waste performance. Then ketoprofen is impregnated in the polymer matrix by using supercritical carbon dioxide (scCO2) as loading medium. The amount of polymer is controlled by the volume and the number of droplets of dispensed polymer and drug loading is tuned by varying the impregnation parameters. Compared to solid dispersions of the same drug and polymer, scCO2-impregnated microcontainers exhibit a more reproducible drug loading and a faster dissolution rate of the active compound which allows drug release to be modulated. The combination of these loading techniques potentially allows the high throughput fabrication of microdevices for oral drug delivery with a safe and solvent-free solution.

U2 - 10.1016/j.jconrel.2013.09.022

DO - 10.1016/j.jconrel.2013.09.022

M3 - Journal article

C2 - 24096018

VL - 173

SP - 1

EP - 9

JO - Journal of Controlled Release

JF - Journal of Controlled Release

SN - 0168-3659

ER -

ID: 117197673