⭐ High Impact

Two Photon Polymerization-Micromolding of Polyethylene Glycol-Gentamicin Sulfate Microneedles.

Gittard Shaun D, Ovsianikov Aleksandr, Akar Hasan, Chichkov Boris, Monteiro-Riviere Nancy A, Stafslien Shane, Chisholm Bret, Shin Chun-Che, Shih Chun-Ming, Lin Shing-Jong, Su Yea-Yang, Narayan Roger J

📰 Advanced engineering materials 📅 2010 📊 75 citations

Abstract

AbstractThe use of microneedles for transdermal drug delivery is limited due to the risk of infection associated with formation of channels through the stratum corneum layer of the epidermis. The risk of infection associated with use of microneedles may be reduced by imparting these devices with antimicrobial properties. In this study, a photopolymerization‐micromolding technique was used to fabricate microneedle arrays from a photosensitive material containing polyethylene glycol 600 diacrylate, gentamicin sulfate, and a photoinitiator. Scanning electron microscopy indicated that the photopolymerization‐micromolding process produced microneedle arrays that exhibited good microneedle‐to‐microneedle uniformity. An agar plating assay revealed that microneedles fabricated with polyethylene glycol 600 diacrylate containing 2 mg mL−1 gentamicin sulfate inhibited growth of Staphylococcus aureus bacteria. Scanning electron microscopy revealed no platelet aggregation on the surfaces of platelet rich plasma‐exposed undoped polyethylene glycol 600 diacrylate microneedles and gentamicin‐doped polyethylene glycol 600 diacrylate microneedles. These efforts will enable wider adoption of microneedles for transdermal delivery of pharmacologic agents.

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✨ Fluorophores

DiD

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Thorlabs Thermo Fisher

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📊 Figures

Fig. 1

Scanning electron micrographs of microneedle arrays. (a) Microneedle array fabricated with undoped polyethylene glycol 600 diacrylate. (b) Microneedle array fabricated with gentamicin-doped polyethyle...

Fig. 2

Fourier transform infrared spectrum of gentamicin-doped polyethylene glycol 600 diacrylate.

Fig. 3

Scanning electron micrographs of microneedle arrays after exposure to platelet rich plasma. (a) Microneedle array fabricated with undoped polyethylene glycol 600 diacrylate. (b) Microneedle array fabr...

Fig. 4

Agar plating assay results. (a) Microneedle array fabricated with undoped polyethylene glycol 600 diacrylate against Staphylococcus aureus. (b) Microneedle array fabricated with gentamicin-doped polye...

Figure images are served from the NIH/NLM PubMed Central Open Access Subset or Europe PMC; copyright remains with the publishers and authors.

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🏛️ University of North Carolina

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