Synergistic effect of electric field and ultrasound on transdermal transport
Synergistic effect of electric field and ultrasound on transdermal transport
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DOI:
10.1023/a:1016070710397
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发表时间:
1996-04-01
影响因子:
3.7
通讯作者:
Weaver, J
中科院分区:
文献类型:
--
作者:
Kost, J;Pliquett, U;Weaver, J
Transdermal drug delivery offers a substitute method to oral drug delivery and injections for drug administration (1). However, its applications are currently limited to only a few drugs due to the low permeability of the stratum comeum (SC), the outermost layer of the skin. The SC consists of flat dead cells (keratinocytes) surrounded by lipid bilayers, whose highly ordered structure confers an impermeable nature to the SC. Various approaches including chemical enhancers (2), ultra-sound (3-4) and electrical enhancement (5-8) have been suggested to enhance transdermal drug transport. In some cases, high strengths of the physico-chemical forces (for example, electricity, ultrasound) are required to deliver a given drug dose transdermally. However, the highest strength of these physicochemical forces that can be used is likely to be limited by their adverse physiological effects. It is possible that simultaneous application of more than one physico-chemical force may decrease the required strength of these forces to achieve a given transderrnal transport enhancement. Electroporation involves application of electric field pulses that create transient aqueous pathways in lipid bilayer membranes, causing a temporary alteration of skin structure. While occurrence of aqueous pores may allow transderrnal permeation of neutral molecules by diffusion, the transport of charged molecules during pulsing occurs predominantly by electrophoresis and electrosmosis (5-7). On the other hand, application of ultrasound has been suggested to enhance skin permeability due to cavitation which induces disorganization of the stratum comeum lipid bilayers (4). In addition, occurrence of convective transport during sonophoresis has also been suggested (3). Because the mechanism by which ultrasound and electric field enhance transdermal transport are different, we hypothesized that their combination might result in a synergistic effect. In this note, we examine whether the transdermal transport enhancement induced by simultaneous application of ultrasound and electric pulses is higher than that due to electric pulses or