Details

Title

Multiple emulsions for simultaneous active agents delivery in a skin topical application

Journal title

Chemical and Process Engineering

Yearbook

2021

Volume

vol. 42

Issue

No 3

Affiliation

Markowska-Radomska, Agnieszka : Warsaw University of Technology, Faculty of Chemical and Process Engineering, Warynskiego 1, 00-645 Warsaw, Poland ; Dluska, Ewa : Warsaw University of Technology, Faculty of Chemical and Process Engineering, Warynskiego 1, 00-645 Warsaw, Poland ; Metera, Agata : Warsaw University of Technology, Faculty of Chemical and Process Engineering, Warynskiego 1, 00-645 Warsaw, Poland ; Wojcieszak, Maria : Warsaw University of Technology, Faculty of Chemical and Process Engineering, Warynskiego 1, 00-645 Warsaw, Poland

Authors

Keywords

multiple emulsions ; antiseptic agent ; simultaneous release ; co-encapsulation

Divisions of PAS

Nauki Techniczne

Coverage

263-273

Publisher

Polish Academy of Sciences Committee of Chemical and Process Engineering

Bibliography

Chan R.J., Keller J., Cheuk R., Blades R., Tripcony L., Keogh S., 2012. A double-blind randomised controlled trial of a natural oil-based emulsion (Moogoo Udder Cream®) containing allantoin versus aqueous cream for managing radiation-induced skin reactions in patients with cancer. Radiat. Oncol., 7, 121. DOI: 10.1186/1748-717X-7-121.
Chan R.J., Mann J., Tripcony L., Keller J., Cheuk R., Blades R., Keogh S., Poole C., Walsh C., 2014. Natural oil-based emulsion containing allantoin versus aqueous cream for managing radiation-induced skin reactions in patients with cancer: A phase 3, double-blind, randomized, controlled trial. Int. J. Radiat. Oncol. Biol. Phys., 90, 756–764. DOI: 10.1016/j.ijrobp.2014.06.034.
Cohen J.L., Jorizzo J.L., Kircik L.H., 2007. Use of a topical emulsion for wound healing. J. Support Oncol., 5(10 Suppl 5): 1–9.
Dluska E., Cui Z., Markowska-Radomska A., Metera A., Kosicki K., 2017a. Cryoprotection and banking of living cells in a 3D multiple emulsion-based carrier. Biotechnol. J., 12, 1600692. DOI: 10.1002/biot.201600692.
Dluska E., Hubacz R., Wronski S., Kamienski J., Dylag M., Wojtowicz R., 2007. The influence of helical flow on water fuel emulsion preparation. Chem. Eng. Commun., 194, 1271–1286. DOI: 10.1080/00986440701293959.
Dłuska E., Hubacz, R., 2000. Mass transfer in the two-phase helicoidal contactor. Chem. Process Eng., 21, 103–113. Dluska E., Markowska-Radomska A., 2010. Regimes of multiple emulsions ofW1/O/W2 and O1/W/O2 type in the continuous Couette–Taylor flow contactor. Chem. Eng. Technol., 33, 113–120. DOI: 10.1002/ceat.200900278.
Dluska E., Markowska-Radomska A., Metera A., Tudek B., Kosicki K., 2017b. Multiple emulsions as effective platforms for controlled anti-cancer drug delivery. Nanomed., 12, 2183–2197. DOI: 10.2217/nnm-2017-0112.
Durand L., Habran N., Henschel V., Amighi K., 2009. In vitro evaluation of the cutaneous penetration of sprayable sunscreen emulsions with high concentrations ofUVfilters. Int. J. Cosmet. Sci., 31, 279–292. DOI: 10.1111/j.1468-2494.2009.00498.x.
Fabbrocini G., CameliN.,Romano M.C., Mariano M., Panariello L., Bianca D., Monfrecola G., 2012. Chemotherapy and skin reactions. J. Exp. Clin. Cancer Res., 31, 50. DOI: 10.1186/1756-9966-31-50.
Goldstein D., Gofrit O., Nyska A., Benita, S., 2007. Anti-HER2 cationic immunoemulsion as a potential targeted drug delivery system for the treatment of prostate cancer. Cancer Res., 67, 269–275. DOI: 10.1158/0008-5472.CAN-06-2731.
Hymes S.R., Strom E.A., Fife C., 2006. Radiation dermatitis: Clinical presentation, pathophysiology, and treatment 2006. J. Am. Acad. Dermatol., 54, 28–46. DOI: 10.1016/j.jaad.2005.08.054.
Lam P.L., Gambari R., 2014. Advanced progress of microencapsulation technologies: In vivo and in vitro models for studying oral and transdermal drug deliveries. J. Controlled Release, 178, 25–45. DOI: 10.1016/j.jconrel.2013.12.028.
Ma Y., Liu D., Wang D., Wang Y., Fu Q., Fallon J. K., Liu, F., 2014. Combinational delivery of hydrophobic and hydrophilic anticancer drugs in single nanoemulsions to treat MDR in cancer. Mol. Pharmaceutics, 11, 2623–2630. DOI: 10.1021/mp400778r.
Markowska-Radomska A., Dluska E., 2012. The multiple emulsion entrapping active agent produced via one-step preparation method in the liquid-liquid helical flow for drug release study and modelling, In: Starov V., Griffiths P. (Eds.), UK Colloids 2011. Progress in Colloid and Polymer Science, Vol 139. Springer, Berlin, Heidelberg, 29–34. DOI: 10.1007/978-3-642-28974-3_6.
Markowska-Radomska A., Dluska E., 2016. An evaluation of a mass transfer rate at the boundary of different release mechanisms in complex liquid dispersion. Chem. Eng. Process. Process Intensif., 101, 56–71. DOI: 10.1016/j.cep.2015.12.006.
Montenegro L., Carbone C., Paolino D., Drago R., Stancampiano A.H., Puglisi G., 2008. In vitro skin permeation of sunscreen agents from O/W emulsions. Int. J. Cosmet. Sci., 30, 57–65. DOI: 10.1111/j.1468-2494.2008.00417.x.
Otto A., du Plessis J., Wiechers J.W., 2009. Formulation effects of topical emulsions on transdermal and dermal delivery. Int. J. Cosmet. Sci., 31, 1–19. DOI: 10.1111/j.1468-2494.2008.00467.x.
Özer Ö., Özyazici M., Tedajo M., Taner M. S., Köseoglu K., 2007. W/O/W multiple emulsions containing nitroimidazole derivates for vaginal delivery. Drug Delivery, 14, 139–145. DOI: 10.1080/10717540601067463.
Perrie Y., Rades T., 2012. Pharmaceutics – Drug delivery and targeting. 2nd Ed. Pharmaceutical Press, London.
Priyadarshini C., Mohapatra J., Kumar Sahoo T., Sekhar Pattnaik S., 2016. Chemotherapy induced skin toxicities and review of literature. J. Cancer Tumor Int., 3, 1–16. DOI: 10.9734/JCTI/2016/22651.
PubChem CID 243, Benzoic acid. National Institutes of Health. Available at: https://pubchem.ncbi.nlm.nih.gov/compound/Benzoic-acid.
PubChem CID 8361, Phenyl salicylate.National Institutes of Health.Available at: https://pubchem.ncbi.nlm.nih.gov/compound/Phenyl-salicylate.
Purnamawati S., Indrastuti N., Danarti R., Saefudin T., 2017. The role of moisturizers in addressing various kinds of dermatitis: A review. Clin. Med. Res., 15, 75–87. DOI: 10.3121/cmr.2017.1363.
Raynal S., Grossiord J.L., Seiller M., Clausse, D., 1993. A topical W/O/W multiple emulsion containing several active substances: formulation, characterization and study of release. J. Controlled Release, 26, 129–140. DOI: 10.1016/0168-3659(93)90112-I.
Siegel R.A., Rathbone M.J., 2012. Overview of controlled release mechanisms. In: Siepmann J., Siegel R.A., Rathbone M.J. (Eds.). Fundamentals and applications of controlled release drug delivery. Advances in Delivery Science and Technology. Springer, Boston, MA, 19–43. DOI: 10.1007/978-1-4614-0881-9_2.
Spałek M., 2016. Chronic radiation-induced dermatitis: challenges and solutions. Clin. Cosmet. Invest. Dermatol., 9, 473–482. DOI: 10.2147/CCID.S94320.
Wilson C.G., 2012. The need for drugs and drug delivery systems. In: Siepmann J., Siegel R.A., Rathbone M.J. (Eds.). Fundamentals and applications of controlled release drug delivery. Advances in Delivery Science and Technology. Springer, Boston, MA, 3–18. DOI: 10.1007/978-1-4614-0881-9_1.

Date

2022.01.13

Type

Article

Identifier

DOI: 10.24425/cpe.2021.138930

Editorial Board

Editorial Board

Ali Mesbah, UC Berkeley, USA ORCID logo0000-0002-1700-0600

Anna Gancarczyk, Institute of Chemical Engineering, Polish Academy of Sciences, Poland ORCID logo0000-0002-2847-8992

Anna Trusek, Wrocław University of Science and Technology, Poland ORCID logo0000-0002-3886-7166

Bettina Muster-Slawitsch, AAE Intec, Austria ORCID logo0000-0002-5944-0831

Daria Camilla Boffito, Polytechnique Montreal, Canada ORCID logo0000-0002-5252-5752

Donata Konopacka-Łyskawa, Gdańsk University of Technology, Poland ORCID logo0000-0002-2924-7360

Dorota Antos, Rzeszów University of Technology, Poland ORCID logo0000-0001-8246-5052

Evgeny Rebrov, University of Warwick, UK ORCID logo0000-0001-6056-9520

Georgios Stefanidis, National Technical University of Athens, Greece ORCID logo0000-0002-4347-1350

Ireneusz Grubecki, Bydgoszcz Univeristy of Science and Technology, Poland ORCID logo0000-0001-5378-3115

Johan Tinge, Fibrant B.V., The Netherlands ORCID logo0000-0003-1776-9580

Katarzyna Bizon, Cracow University of Technology, Poland ORCID logo0000-0001-7600-4452

Katarzyna Szymańska, Silesian University of Technology, Poland ORCID logo0000-0002-1653-9540

Marcin Bizukojć, Łódź University of Technology, Poland ORCID logo0000-0003-1641-9917

Marek Ochowiak, Poznań University of Technology, Poland ORCID logo0000-0003-1543-9967

Mirko Skiborowski, Hamburg University of Technology, Germany ORCID logo0000-0001-9694-963X

Nikola Nikacevic, University of Belgrade, Serbia ORCID logo0000-0003-1135-5336

Rafał Rakoczy, West Pomeranian University of Technology, Poland ORCID logo0000-0002-5770-926X

Richard Lakerveld, Hong Kong University of Science and Technology, Hong Kong ORCID logo0000-0001-7444-2678

Tom van Gerven, KU Leuven, Belgium ORCID logo0000-0003-2051-5696

Tomasz Sosnowski, Warsaw University of Technology, Poland ORCID logo0000-0002-6775-3766



×