4.5 Article

Microneedle-mediated transdermal delivery of nanostructured lipid carriers for alkaloids from Aconitum sinomontanum

Journal

ARTIFICIAL CELLS NANOMEDICINE AND BIOTECHNOLOGY
Volume 46, Issue 8, Pages 1541-1551

Publisher

TAYLOR & FRANCIS LTD
DOI: 10.1080/21691401.2017.1376676

Keywords

Nanostructured lipid carriers; microneedle; transdermal delivery; anti-inflammatory and analgesic effects; cardiotoxicity

Funding

  1. State Education Ministry of China [NCET08-0898]
  2. National Natural Science Foundation of China [81573619]

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A combination method using microneedle (MN) pretreatment and nanostructured lipid carriers (NLCs) was developed to improve the transdermal delivery of therapeutics. The MN treatment of the skin and co-administration of NLCs loaded with total alkaloids isolated from Aconitum sinomontanum (AAS-NLCs) significantly increased the skin permeation of the drugs. Fluorescence imaging confirmed that MNs could provide microchannels penetrating the stratum corneum, and delivery of NLCs through the channels led to their deeper permeation. In vivo studies showed that combination of AAS-NLCs with MNs (AAS-NLCs-MN) in transdermal delivery could improve the bioavailability and maintain stable drug concentrations in the blood. Moreover, AAS-NLCs-MN showed benefits in eliminating paw swelling, decreasing inflammation and pain, and regulating immune function in adjuvant arthritis rats. After administration of AAS-NLCs-MN, no skin irritation was observed in rabbits, and electrocardiograms of rats showed improved arrhythmia. These results indicated that the dual approach combining MN insertion and NLCs has the potential to provide safe transdermal delivery and to improve the therapeutic efficacy through sustained release of AAS.

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