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Iontophoretic Transdermal Delivery of Human Growth Hormone (hGH) and the Combination Effect of a New Type Microneedle, Tappy Tok Tok®open access

Authors
Noh, GyubinKeum, TaekwangSeo, Jo-EunBashyal, SantoshEum, Nyeon-SikKweon, Min JungLee, SooyeunSohn, Dong HwanLee, Sangkil
Issue Date
Sep-2018
Publisher
MDPI
Keywords
recombinant human growth hormone; transdermal delivery; microneedle; iontophoresis
Citation
PHARMACEUTICS, v.10, no.3
Journal Title
PHARMACEUTICS
Volume
10
Number
3
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/69423
DOI
10.3390/pharmaceutics10030153
ISSN
1999-4923
Abstract
Transdermal drug administration presents several advantages and it is therefore favorable as an alternative drug delivery route. However, transdermal delivery of biopharmaceutical drugs is made difficult by the skin barrier. Microneedle application and iontophoresis are strategies which can be used to overcome this barrier. Therefore, recombinant human growth hormone (rhGH) was used as a model macromolecular drug and was transdermally delivered using microneedle application and iontophoresis. Methylene blue staining, stereomicroscopy and scanning electron microscope (SEM) imaging were used to characterize the microchannels produced. To optimize the iontophoresis protocol, the effects of molecular charge and current density on transdermal delivery were evaluated in an in vitro permeation study using excised rat skin tissues. Using the optimized iontophoresis protocol, the combination effects of iontophoretic delivery via microchannels were evaluated in three different experimental designs. The flux obtained with anodal iontophoresis in citrate buffer was approximately 10-fold higher that that with cathodal iontophoresis in phosphate buffered saline (PBS). Flux also increased with current density in anodal iontophoresis. The combination of iontophoresis and microneedle application produced higher flux than single application. These results suggest that anodal iontophoresis with higher current density enhances the permeation of macromolecules through microchannels created by microneedles. In conclusion, the combination of iontophoresis and microneedles is a potential strategy for the enhancement of transdermal delivery of macromolecular drugs.
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