Delivery of Methotrexate and Characterization of Skin Treated by Fabricated PLGA Microneedles and Fractional Ablative Laser

被引:86
作者
Nguyen, Hiep X. [1 ]
Banga, Ajay K. [1 ]
机构
[1] Mercer Univ, Coll Pharm, Dept Pharmaceut Sci, Atlanta, GA 30341 USA
关键词
characterization; fractional ablative laser; methotrexate; polymeric biodegradable microneedles; skin delivery; ASSISTED DRUG-DELIVERY; ERBIUM-YAG LASER; TRANSDERMAL DELIVERY; TOPICAL DELIVERY; BIODISTRIBUTION; MICROCHANNELS; IONTOPHORESIS; TOXICITY;
D O I
10.1007/s11095-018-2369-6
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Purpose This study investigated in vitro transdermal delivery of methotrexate through dermatomed porcine ear and cadaver human skin treated with poly (D, L-lactide-co-glycolide) acid microneedles or fractional ablative laser. Methods PLGA microneedles were fabricated and characterized using scanning electron microscopy and mechanical assessment techniques. The integrity of treated skin was evaluated by rheometer, transepidermal water loss, and skin electrical resistance measurements. Successful skin microporation was demonstrated by dye binding, histology, pore uniformity, confocal laser microscopy, and DermaScan studies. In vitro permeation experiment was performed on Franz diffusion cells to determine drug delivery into and across the skin. Results Both physical treatments resulted in a considerable decrease in skin resistance and an increase in transepidermal water loss value. The laser-created microchannels were significantly larger than those formed by microneedles (p < 0.05). An effective force of 41.04 +/- 18.33 N was required to achieve 100% penetration efficiency of the microneedles. For both porcine ear and human skin, laser ablation provided a significantly higher methotrexate permeability into the receptor chamber and skin layers compared to microneedle poration and untreated skin (p < 0.05). Conclusions Both fractional ablative laser and polymeric microneedles markedly enhanced in vitro transdermal delivery of methotrexate into and across skin.
引用
收藏
页数:20
相关论文
共 40 条
[1]  
Abla MJ, 2013, THER DELIV, V4, P543, DOI [10.4155/tde.13.24, 10.4155/TDE.13.24]
[2]  
Ali MFM, 2008, MED SCI MONITOR, V14, pPI66
[3]   Transdermal delivery of methotrexate:: iontophoretic delivery from hydrogels and passive delivery from microemulsions [J].
Alvarez-Figueroa, MJ ;
Blanco-Méndez, J .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2001, 215 (1-2) :57-65
[4]  
Banga AK, 2009, EXPERT OPIN DRUG DEL, V6, P343, DOI [10.1517/17425240902841935 , 10.1517/17425240902841935]
[5]   Treatment of children and adolescents with methotrexate, cyclosporine, and etanercept: Review of the dermatologic and rheumatologic literature [J].
Dadlani, C ;
Orlow, SJ .
JOURNAL OF THE AMERICAN ACADEMY OF DERMATOLOGY, 2005, 52 (02) :316-340
[6]   Insertion of microneedles into skin: measurement and prediction of insertion force and needle fracture force [J].
Davis, SP ;
Landis, BJ ;
Adams, ZH ;
Allen, MG ;
Prausnitz, MR .
JOURNAL OF BIOMECHANICS, 2004, 37 (08) :1155-1163
[7]   Hydrogel-Forming Microneedles Prepared from "Super Swelling'' Polymers Combined with Lyophilised Wafers for Transdermal Drug Delivery [J].
Donnelly, Ryan F. ;
McCrudden, Maeliosa T. C. ;
Alkilani, Ahlam Zaid ;
Larraneta, Eneko ;
McAlister, Emma ;
Courtenay, Aaron J. ;
Kearney, Mary-Carmel ;
Singh, Thakur Raghu Raj ;
McCarthy, Helen O. ;
Kett, Victoria L. ;
Caffarel-Salvador, Ester ;
Al-Zahrani, Sharifa ;
Woolfson, A. David .
PLOS ONE, 2014, 9 (10)
[8]   In-vivo dynamic characterization of microneedle skin penetration using optical coherence tomography [J].
Enfield, Joey ;
O'Connell, Marie-Louise ;
Lawlor, Kate ;
Jonathan, Enock ;
O'Mahony, Conor ;
Leahy, Martin .
JOURNAL OF BIOMEDICAL OPTICS, 2010, 15 (04)
[9]   Ablative fractional laser alters biodistribution of ingenol mebutate in the skin [J].
Erlendsson, A. M. ;
Taudorf, E. H. ;
Eriksson, A. H. ;
Haak, C. S. ;
Zibert, J. R. ;
Paasch, U. ;
Anderson, R. R. ;
Haedersdal, M. .
ARCHIVES OF DERMATOLOGICAL RESEARCH, 2015, 307 (06) :515-522
[10]   Decreasing systemic toxicity via transdermal delivery of anticancer drugs [J].
Fang, Jia-You ;
Liu, Pei-Feng ;
Huang, Chun-Ming .
CURRENT DRUG METABOLISM, 2008, 9 (07) :592-597