Introduction: Percutaneous drug delivery systems are attractive not only as a therapeutic strategy but also for cosmetic treatment. Iontophoresis is a well-recognized method for promoting transdermal absorption of ionized compounds. Franz cells are generally used to estimate drug permeation of skin by iontophoresis. However, methods using Franz cells are less versatile; for instance, the method is unsuited for use with a portable electric facial care device having a working probe of a certain size and weight. In this study, we constructed a semi-dry apparatus for use with an electric facial care device. Methods: The apparatus has a multilayer structure consisting of mouse skin and 3 filter papers, modeled after the Franz cell. The skin permeation of the drug edaravone (3-methyl-1-phenyl-2-pyrazolin-5-one) was then measured using this apparatus. Results: Edaravone permeation depended on working time, drug concentration, and ionization ratio of edaravone when iontophoresis was carried out with an electric facial care device. Furthermore, glycyrrhizic acid, α-tocopheryl phosphate, retinoic acid, and ascorbyl palmitate, which are recognized as functional cosmetic materials, also permeated the skin by applying iontophoresis with the device. Conclusion: These results suggest that the developed measuring apparatus is applicable for use with a portable electric facial care device and that iontophoresis using a portable electric facial care device is potentially useful in the cosmetic field.

1.
Alyoussef Alkrad
J
,
Neubert
RHH
.
Dermal and transdermal peptide delivery using enhancer molecules and colloidal carrier systems. Part V: transdermal administration of insulin
.
Int J Pharm
.
2022
;
616
:
121511
. .
2.
Alyoussef Alkrad
J
,
Almalki
YA
,
Dahmash
EZ
,
Hassouneh
LK
,
Neubert
RHH
.
Dermal and transdermal macromolecule delivery using enhancer molecules and colloidal carrier systems - Part 2: percutaneous administration of heparin
.
Skin Pharmacol Physiol
.
2023
;
36
(
1
):
16
26
. .
3.
Stephen
RL
,
Petelenz
TJ
,
Jacobsen
SC
.
Potential novel methods for insulin administration: I. Iontophoresis
.
Biomed Biochim Acta
.
1984
;
43
(
5
):
553
8
.
4.
Kari
B
.
Control of blood glucose levels in alloxan-diabetic rabbits by iontophoresis of insulin
.
Diabetes
.
1986
;
35
(
2
):
217
21
. .
5.
Elkhatib
MM
,
Ali
AI
,
Al-Badrawy
AS
.
In vitro and in vivo comparative study of oral nanoparticles and gut iontophoresis as oral delivery systems for insulin
.
Biol Pharm Bull
.
2021
;
44
(
2
):
251
8
. .
6.
Morris
SJ
,
Shore
AC
.
Skin blood flow responses to the iontophoresis of acetylcholine and sodium nitroprusside in man: possible mechanisms
.
J Physiol
.
1996
;
496
(
Pt 2
):
531
42
. .
7.
Gardner-Medwin
JM
,
Taylor
JY
,
Macdonald
IA
,
Powell
RJ
.
An investigation into variability in microvascular skin blood flow and the responses to transdermal delivery of acetylcholine at different sites in the forearm and hand
.
Br J Clin Pharmacol
.
1997
;
43
(
4
):
391
7
. .
8.
Puissant
C
,
Abraham
P
,
Durand
S
,
Humeau-Heurtier
A
,
Faure
S
,
Lefthériotis
G
, et al
.
Reproducibility of non-invasive assessment of skin endothelial function using laser Doppler flowmetry and laser speckle contrast imaging
.
PLoS One
.
2013
;
8
(
4
):
e61320
. .
9.
Tashiro
Y
,
Shichibe
S
,
Kato
Y
,
Hayakawa
E
,
Itoh
K
.
Effect of lipophilicity on in vivo iontophoretic delivery. I. NSAIDs
.
Biol Pharm Bull
.
2001
;
24
(
3
):
278
83
. .
10.
Kanebako
M
,
Inagi
T
,
Takayama
K
.
Transdermal delivery of indomethacin by iontophoresis
.
Biol Pharm Bull
.
2002
;
25
(
6
):
779
82
. .
11.
Kigasawa
K
,
Kajimoto
K
,
Watanabe
M
,
Kanamura
K
,
Saito
A
,
Kogure
K
.
In vivo transdermal delivery of diclofenac by ion-exchange iontophoresis with geraniol
.
Biol Pharm Bull
.
2009
;
32
(
4
):
684
7
. .
12.
Srinivasa
A
,
Marshall
JM
.
Effects of cyclooxygenase inhibition on vascular responses evoked in fingers of men and women by iontophoresis of 1- and 2-adrenoceptor agonists
.
J Physiol
.
2011
;
589
(
Pt 18
):
4555
64
. .
13.
Shiota
K
,
Hama
S
,
Yoshitomi
T
,
Nagasaki
Y
,
Kogure
K
.
Prevention of UV-induced melanin production by accumulation of redox nanoparticles in the epidermal layer via iontophoresis
.
Biol Pharm Bull
.
2017
;
40
(
6
):
941
4
. .
14.
Taylor
MB
,
Yanaki
JS
,
Draper
DO
,
Shurtz
JC
,
Coglianese
M
.
Successful short-term and long-term treatment of melasma and postinflammatory hyperpigmentation using vitamin C with a full-face iontophoresis mask and a mandelic/malic acid skin care regimen
.
J Drugs Dermatol
.
2013
;
12
(
1
):
45
50
.
15.
Watanabe
K
,
Tanaka
M
,
Yuki
S
,
Hirai
M
,
Yamamoto
Y
.
How is edaravone effective against acute ischemic stroke and amyotrophic lateral sclerosis
.
J Clin Biochem Nutr
.
2018
;
62
(
1
):
20
38
. .
16.
Fujisawa
A
,
Yamamoto
Y
.
Edaravone, a potent free radical scavenger, reacts with peroxynitrite to produce predominantly 4-NO-edaravone
.
Redox Rep
.
2016
;
21
(
3
):
98
103
. .
17.
Nagase
M
,
Yamamoto
Y
,
Miyazaki
Y
,
Yoshino
H
.
Increased oxidative stress in patients with amyotrophic lateral sclerosis and the effect of edaravone administration
.
Redox Rep
.
2016
;
21
(
3
):
104
12
. .
18.
Yamamoto
Y
,
Kuwahara
T
,
Watanabe
K
,
Watanabe
K
.
Antioxidant activity of 3-methyl-1-phenyl-2-pyrazolin-5-one
.
Redox Rep
.
1996
;
2
(
5
):
333
8
. .
19.
Niu
G
,
Xie
YC
,
Lou
JF
,
Liu
H
.
Isolation and purification of glycyrrhizic acid with solvent extraction
.
Sep Purif Technol
.
2005
;
44
(
3
):
189
96
. .
20.
Saleh
MM
,
Woods
A
,
Harvey
R
,
Young
A
,
Jones
S
.
Nanomaterials fusing with the skin: alpha-tocopherol phosphate delivery into the viable epidermis to protect against ultraviolet radiation damage
.
Int J Pharm
.
2021
;
594
:
120000
. .
21.
Steele
CE
,
Marlow
R
,
Turton
J
,
Hicks
RM
.
In-vitro teratogenicity of retinoids
.
Br J Exp Pathol
.
1987
;
68
(
2
):
215
23
.
22.
Mottola
M
,
Wilke
N
,
Benedini
L
,
Oliveira
RG
,
Fanani
ML
.
Ascorbyl palmitate interaction with phospholipid monolayers: electrostatic and rheological preponderancy
.
Biochim Biophys Acta
.
2013
;
1828
(
11
):
2496
505
. .
You do not currently have access to this content.