Skin electroporation for transdermal drug delivery: Electrical measurements, numerical model and molecule delivery

被引:6
作者
Kougkolos, Georgios [1 ,2 ]
Laudebat, Lionel [2 ,3 ]
Dinculescu, Sorin [2 ]
Simon, Juliette [1 ,4 ]
Golzio, Muriel [4 ]
Valdez-Nava, Zarel [2 ]
Flahaut, Emmanuel [1 ]
机构
[1] UPS, Univ Toulouse, CIRIMAT, INPT,CNRS, F-31062 Toulouse 9, France
[2] UPS, Univ Toulouse, INPT, LAPLACE,CNRS, F-31062 Toulouse 9, France
[3] Univ Toulouse, INU Champoll, F-81012 Albi, France
[4] UPS, Univ Toulouse, IPBS, CNRS UMR, F-31077 Toulouse 4, France
关键词
Skin electroporation; Drug delivery; Hydrogel; FEM simulation; Electrical properties; Stratum corneum; HUMAN STRATUM-CORNEUM; MEMBRANE ELECTROPORATION; PERMEABILITY STATE; TRANSPORT; CELL; ELECTROPERMEABILIZATION; TEMPERATURE; PH; DEVICE; PORE;
D O I
10.1016/j.jconrel.2024.01.036
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Skin electroporation for drug delivery involves the application of Pulsed Electric Fields (PEFs) on the skin to disrupt its barrier function in a temporary and non-invasive manner, increasing the uptake of drugs. It represents a potential alternative to delivery methods that are invasive (e.g. injections) or limited. We have developed a drug delivery system comprising nanocomposite hydrogels which act as a reservoir for the drug and an electrode for applying electric pulses on the skin. In this study, we employed a multi-scale approach to investigate the drug delivery system on a mouse skin model, through electrical measurements, numerical modeling and fluorescence microscopy. The Electrical properties indicated a highly non-linear skin conductivity behavior and were used to fine-tune the simulations and study skin recovery after electroporation. Simulation of electric field distribution in the skin showed amplitudes in the range of reversible tissue electroporation (400-1200 V/cm), for 300 V PEF. Fluorescence microscopy revealed increased uptake of fluorescent molecules compared to the non-pulsed control. We reported two reversible electroporation domains for our configuration: (1) at 100 V PEF the first local transport regions appear in the extracellular lipids of the stratum corneum, demonstrated by a rapid increase in the skin's conductivity and an increased uptake of lucifer yellow, a small hydrophilic fluorophore and (2) at 300 V PEF, the first permeabilization of nucleated cells occurred, evidenced by the increased fluorescence of propidium iodide, a membrane-impermeable, DNA intercalating agent.
引用
收藏
页码:235 / 247
页数:13
相关论文
共 70 条
[11]   From Cell to Tissue Properties-Modeling Skin Electroporation With Pore and Local Transport Region Formation [J].
Dermol-Cerne, Janja ;
Miklavcic, Damijan .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 2018, 65 (02) :458-468
[12]   Depth Penetration of Light into Skin as a Function of Wavelength from 200 to 1000 nm [J].
Finlayson, Louise ;
Barnard, Isla R. M. ;
McMillan, Lewis ;
Ibbotson, Sally H. ;
Brown, C. Tom A. ;
Eadie, Ewan ;
Wood, Kenneth .
PHOTOCHEMISTRY AND PHOTOBIOLOGY, 2022, 98 (04) :974-981
[13]   Electroporation-Induced Stress Response and Its Effect on Gene Electrotransfer Efficacy: In Vivo Imaging and Numerical Modeling [J].
Forjanic, Tadeja ;
Markelc, Bostjan ;
Marcan, Marija ;
Bellard, Elisabeth ;
Couillaud, Franck ;
Golzio, Muriel ;
Miklavcic, Damijan .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 2019, 66 (09) :2671-2683
[14]  
Gilaberte Y, 2016, NANOSCIENCE IN DERMATOLOGY, P1, DOI 10.1016/B978-0-12-802926-8.00001-X
[15]   Electrical properties of double-wall carbon nanotubes nanocomposite hydrogels [J].
Guillet, Jean-Francois ;
Valdez-Nava, Zarel ;
Golzio, Muriel ;
Flahaut, Emmanuel .
CARBON, 2019, 146 :542-548
[16]   A Hydrogel/Carbon-Nanotube Needle-Free Device for Electrostimulated Skin Drug Delivery [J].
Guillet, Jean-Francois ;
Flahaut, Emmanuel ;
Golzio, Muriel .
CHEMPHYSCHEM, 2017, 18 (19) :2715-2723
[17]   Electro-gene transfer to skin using a noninvasive multielectrode array [J].
Guo, Siqi ;
Donate, Amy ;
Basu, Gaurav ;
Lundberg, Cathryn ;
Heller, Loree ;
Heller, Richard .
JOURNAL OF CONTROLLED RELEASE, 2011, 151 (03) :256-262
[18]   Electroporation of Skin Stratum Corneum Lipid Bilayer and Molecular Mechanism of Drug Transport: A Molecular Dynamics Study [J].
Gupta, Rakesh ;
Rai, Beena .
LANGMUIR, 2018, 34 (20) :5860-5870
[19]   ELECTRO-INCORPORATION OF MICROCARRIERS AS A METHOD FOR THE TRANSDERMAL DELIVERY OF LARGE MOLECULES [J].
HOFMANN, GA ;
RUSTRUM, WV ;
SUDER, KS .
BIOELECTROCHEMISTRY AND BIOENERGETICS, 1995, 38 (01) :209-222
[20]   Transdermal alniditan delivery by skin electroporation [J].
Jadoul, A ;
Lecouturier, N ;
Mesens, J ;
Caers, W ;
Preat, V .
JOURNAL OF CONTROLLED RELEASE, 1998, 54 (03) :265-272