Novel in situ forming hydrogel microneedles for transdermal drug delivery

被引:0
作者
Arunprasad Sivaraman
Ajay K. Banga
机构
[1] Mercer University,College of Pharmacy, Department of Pharmaceutical Sciences
来源
Drug Delivery and Translational Research | 2017年 / 7卷
关键词
Microneedle; biocompatible; poloxamer; In situ hydrogel; transdermal drug delivery; methotrexate;
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学科分类号
摘要
Novel in situ forming hydrogel microneedles were evaluated for transdermal drug delivery using a biocompatible non-ionic triblock amphiphilic thermosensitive copolymer. The transition property of poloxamer from solution at room temperature to gel at skin temperature (32 °C) was utilized in preparation of in situ forming hydrogel microneedles. Methotrexate has been used to treat solid tumors, but because of its narrow safety margin, it requires sustained delivery within the therapeutic window. Formulations with and without poloxamer at different methotrexate concentrations were prepared and evaluated for drug permeation across skin using vertical Franz diffusion cell for 72 h. Sol-gel transition, skin resistance and thickness, microneedles geometry, microchannel depth, shape, formation and uniformity, viscoelasticity of skin, and in vitro drug permeation were characterized and tested. An average cumulative drug amount of 32.2 ± 15.76 and 114.54 ± 40.89 μg/cm2 for porcine ear skin and 3.89 ± 0.60 and 10.27 ± 6.98 μg/cm2 for dermatomed human skin from 0.2 % w/w and 0.4 % w/w methotrexate formulations was delivered by the in situ forming hydrogel microneedles. These in situ hydrogel microneedles embedded within the porated site of the skin provided a steady and sustained drug delivery.
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页码:16 / 26
页数:10
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  • [1] Abla MJ(2013)Transdermal delivery of methotrexate for pediatrics using silicon microneedles Ther Deliv. 4 543-551
  • [2] Chaturvedula A(2013)Microneedles for intradermal and transdermal drug delivery Eur J Pharm Sci Off J Eur Fed Pharm Sci. 50 623-637
  • [3] O’Mahony C(2008)Synergistic effect of iontophoresis and soluble microneedles for transdermal delivery of methotrexate J Pharm Pharmacol. 60 27-33
  • [4] Banga AK(2014)Hydrogel-forming microneedles prepared from “super swelling” polymers combined with lyophilised wafers for transdermal drug delivery PloS One. 9 e111547-587
  • [5] Tuan-Mahmood T-M(2004)Microneedles for transdermal drug delivery Adv Drug Deliv Rev. 56 581-204
  • [6] McCrudden MTC(2009)Microneedle arrays permit enhanced intradermal delivery of a preformed photosensitizer Photochem Photobiol. 85 195-129
  • [7] Torrisi BM(2010)Super-short solid silicon microneedles for transdermal drug delivery applications Int J Pharm. 389 122-1045
  • [8] McAlister E(2008)Influence of the delivery systems using a microneedle array on the permeation of a hydrophilic molecule, calcein Eur J Pharm Biopharm Off J Arbeitsgemeinschaft Für Pharm Verfahrenstechnik EV. 69 1040-105
  • [9] Garland MJ(2015)Transdermal delivery of drugs with microneedles-potential and challenges Pharmaceutics. 7 90-237
  • [10] Singh TRR(2007)Coated microneedles for transdermal delivery J Control Release Off J Control Release Soc. 117 227-28