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Semi-interpenetrating network (Sipn) co-electrospun gelatin/insulin fiber formulation for transbuccal insulin delivery

  • Leyuan Xu(corresponding author)
    ,
  • Natasha Sheybani
    ,
  • Shunlin Ren
    ,
  • Gary L. Bowlin
    ,
  • ,
  • Hu Yang
*Corresponding author for this work
  • Virginia Commonwealth University
    ,
  • University of Memphis
Scholary Output:
Contribution to journal
Article
Peer-review

Abstract

Purpose: This work was aimed at developing a semi-interpenetrating network (sIPN) co-electrospun gelatin/insulin fiber scaffold (GIF) formulation for transbuccal insulin delivery. Methods: Gelatin was electrospun into fibers and converted into an sIPN following eosin Y-initiated polymerization of polyethylene glycol diacrylate (PEG-DA). The cytocompatibility, degradation rate and mechanical properties were examined in the resulting sIPNs with various ratios of PEG-DA to eosin Y to find a suitable formulation for transbuccal drug delivery. Insulin was co-electrospun with gelatin into fibers and converted into an sIPN-GIF using this suitable formulation. The in vitro release kinetics of insulin was evaluated using ELISA. The bioactivity of released insulin was analyzed in 3T3-L1 preadipocytes using Western blotting and Oil Red O staining. The transbuccal permeability of released insulin was determined using an in vitro porcine oral mucosa model. Results: The sIPN-GF formulation of GF cross-linked by PEG-DA (1% w/v) with eosin Y (5% v/v) possessed no cytotoxic effect, a moderate degradation rate with degradation half-life of 49 min, and a significant enhancement in mechanical properties. This formulation was used to fabricate sIPN-GIF. Insulin release was extended up to 4 h by sIPN-GIF. The released insulin successfully triggered intracellular AKT phosphorylation and induced adipocyte differentiation in 3T3-L1 preadipocytes. The transbuccal permeability of released insulin was determined on the order of 10-7 cm/s. Conclusions: Insulin can be fabricated into an sIPN-GIF formulation following co-electrospinning and cross-linking without losing bioactivity. It proved the potential of this new formulation for transbuccal insulin delivery.

Publication Information

Output type

Scholary Output:
Contribution to journal
Article
Peer-review

Original language

English (US)

Pages from-to (Number of pages)

Pages 275-285 (11 pages)

Journal (Volume, Issue Number)

Pharmaceutical Research (Volume 32, Issue 1)

Publication milestones

  • Published - 01/2015

Publication status

Published - 01/2015

ISSN

0724-8741

Publication IDs

  • Scopus: 84934759151
  • PubMed: 25030186

Publication metrics

Metrics

SciVal
FWCI
2.38
SciVal
Author count
6
SciVal
citations
26
SciVal
Paper percentile
87
Scopus
citations
Fractional count
1
Fractional count
0.17
Fractional count
5
Fractional count
0.83
Fractional count
1
Fractional count
1

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Captures
60
Usage
12
Citation count
32

Funding Details

This work was supported, in part, by the National Science Foundation CAREER award (CBET0954957). The authors acknowledge the technical advice of the Franz diffusion cell system provided by Dr. Quan Yuan (Department of Internal Medicine, Virginia Commonwealth University).