Literature DB >> 26799505

Transport efficiency in transdermal drug delivery: What is the role of fluid microstructure?

Roberta Liuzzi1, Antonio Carciati1, Stefano Guido2, Sergio Caserta3.   

Abstract

Interaction of microstructured fluids with skin is ubiquitous in everyday life, from the use of cosmetics, lotions, and drugs, to personal care with detergents or soaps. The formulation of microstructured fluids is crucial for the control of the transdermal transport. In biomedical applications transdermal delivery is an efficient approach, alternative to traditional routes like oral and parenteral administration, for local release of drugs. Poor skin permeability, mainly due to its outer layer, which acts as the first barrier against the entry of external compounds, greatly limits the applicability of transdermal delivery. In this review, we focus on recent studies on the improvement of skin transport efficiency by using microemulsions (ME). Quantitative techniques, which are able to investigate both skin morphology and penetration processes, are also reviewed. ME are increasingly used as transdermal systems due to their low preparation cost, stability and high bioavailability. ME may act as penetration enhancers for many active principles, but ME microstructure should be chosen appropriately considering several factors such as ratio and type of ingredients and physic-chemical properties of the active components. ME microstructure is strongly affected by the flow conditions applied during processing, or during spreading and rubbing onto skin. Although the role played by ME microstructure has been generally recognized, the skin transport mechanisms associated with different ME microstructures are still to be elucidated and further investigations are required to fully exploit the potential of ME in transdermal delivery.
Copyright © 2015 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Fluid microstructure; Microemulsions; Skin; Transdermal drug delivery; Transport phenomena

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Year:  2015        PMID: 26799505     DOI: 10.1016/j.colsurfb.2015.11.064

Source DB:  PubMed          Journal:  Colloids Surf B Biointerfaces        ISSN: 0927-7765            Impact factor:   5.268


  2 in total

1.  Size-dependent penetration of nanoemulsions into epidermis and hair follicles: implications for transdermal delivery and immunization.

Authors:  Rui Su; Wufa Fan; Qin Yu; Xiaochun Dong; Jianping Qi; Quangang Zhu; Weili Zhao; Wei Wu; Zhongjian Chen; Ye Li; Yi Lu
Journal:  Oncotarget       Date:  2017-06-13

2.  Evaluation of EGFR inhibitor-mediated acneiform skin toxicity within the double-blind randomized EVITA trial: A thorough gender-specific analysis using the WoMo score.

Authors:  Maria R Gaiser; Sylvie Lorenzen; Kirsten Merx; Jörg Trojan; Janja Ocvirk; Thomas J Ettrich; Salah-Eddin Al-Batran; Holger Schulz; Nils Homann; Hans-Peter Feustel; Michael Schatz; Melanie Kripp; Nadine Schulte; Steffen Heeger; Soetkin Vlassak; Winfried Koch; Ralf-Dieter Hofheinz
Journal:  Cancer Med       Date:  2019-06-14       Impact factor: 4.452

  2 in total

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