Hydrogel-forming microneedle arrays exhibit antimicrobial properties: potential for enhanced patient safety

Ryan F Donnelly1, Thakur Raghu Raj Singh, Ahlam Zaid Alkilani

  • 1School of Pharmacy, Queens University Belfast, Medical Biology Centre, 97 Lisburn Road, Belfast BT9 7BL, Northern Ireland, UK. r.donnelly@qub.ac.uk

Insights

Microbial characterization of hydrogel-forming polymeric microneedles shows potential for skin penetration but no epidermal crossing. Storage stability is good, and human studies indicate low infection risk for transdermal drug delivery.

Area of Science:

  • Biomaterials Science
  • Microbiology
  • Dermatology

Background:

  • Hydrogel-forming polymeric microneedle arrays are novel drug delivery systems.
  • Assessing microbial risks associated with microneedle use is crucial for safety.

Purpose of the Study:

  • To microbiologically characterize hydrogel-forming microneedles.
  • To evaluate the potential for microorganism passage into skin.
  • To assess storage stability and clinical safety in humans.

Main Methods:

  • Experiments using excised porcine skin with radiolabelled microorganisms.
  • Microbial characterization of microneedle materials.
  • Storage stability tests under varying humidity.
  • Clinical safety and performance evaluation in human volunteers.

Main Results:

  • Microorganisms penetrated skin beyond the stratum corneum (>10⁵ cfu) but not the epidermis after microneedle puncture.
  • Hydrogel materials were initially sterile and showed no microbial growth during storage (except at 86% RH).
  • No microbial penetration through swelling microneedles was detected; human studies showed low risk of infection.

Conclusions:

  • Hydrogel-forming microneedles demonstrate microbiological safety for transdermal drug delivery.
  • Further standardization is needed for microneedle-based product specifications.
  • The study provides insights into the physical and microbiological stability of these novel devices.

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