Transdermal delivery of methotrexate for pediatrics using silicon microneedles

Author:

Abla Mehtab J1,Chaturvedula Ayyappa1,O’Mahony Conor2,Banga Ajay K3

Affiliation:

1. College of Pharmacy & Health Sciences, Mercer University, Atlanta, GA 30341, USA

2. Tyndall National Institute, Lee Maltings, University College Cork, Cork, Ireland

3. College of Pharmacy & Health Sciences, Mercer University, Atlanta, GA 30341, USA.

Abstract

Background: The objective of this work was to study transdermal delivery of methotrexate using silicon microneedles and simulate plasma concentrations using a population pharmacokinetic model. Results: Characterization of silicon microneedles was carried out by scanning electron microscopy, transepidermal water loss, methylene blue staining, calcein imaging, pore permeability index and confocal microscopy, which confirmed the formation of microchannels. In vitro permeation studies were performed to study the enhancement in transdermal delivery following microporation. Conclusion: Simulation data demonstrated that with 16, 64, 128 and 192 microneedles, mean plasma concentrations of 0.3, 1.4, 2.8 and 4.2 ng/ml, respectively, can be achieved. Thus, therapeutically relevant doses could be delivered in pediatrics by increasing the number of microneedles and patch area.

Publisher

Future Science Ltd

Subject

Pharmaceutical Science

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