Pusan National University Develops Injectable Microgels for Targeted Keloid Radiotherapy
Injectable hyaluronic acid microgels offer a promising new strategy for targeted, minimally invasive keloid radiotherapy
Keloids are abnormal, fibroproliferative scars that form when overactive fibroblasts produce excessive collagen after skin injury. Unlike ordinary scars, they can extend beyond the original wound and cause itching, pain, and tenderness. Current treatments, including surgery, corticosteroid injections, lasers, and radiotherapy, may require prolonged treatment and can be associated with recurrence. Although radiotherapy can suppress keloid growth, conventional external-beam approaches struggle to precisely target small, irregular lesions while sparing surrounding healthy tissue.
To address this challenge, researchers from Pusan National University, led by Prof.
The researchers fabricated uniform, biodegradable HA microgels using microfluidic technology and freeze-drying, creating a porous structure that could rapidly absorb radioactive solution. The microgels were then labeled with ¹³¹I and evaluated using patient-derived keloid fibroblasts to assess cytotoxicity and apoptosis. Their therapeutic efficacy, radioactive retention, biodistribution, and safety were subsequently evaluated in mice carrying patient-derived keloid tissue.
The microgels enabled rapid and efficient radiolabeling. "Through absorption-mediated rapid radiolabeling, our freeze-dried microgels achieve high labeling efficiency (>90%) of iodine-131 in less than 10 minutes," shares
The team believes the platform could simplify the preparation and delivery of localized brachytherapy. On-site radiolabeling may reduce radioactive waste and logistical demands while allowing treatment to be tailored to individual lesions. The approach could potentially be adapted for other localized tumors, although further studies are needed to assess its broader applications.
Finally,
Reference
Title of original paper: Off-the-shelf microbrachytherapy using on-site fast radiolabeling for keloid treatment
Journal: Journal of Controlled Release
DOI: 10.1016/j.jconrel.2026.115239
About Pusan National University
Website: https://www.pusan.ac.kr/eng/Main.do
Media Contact:
Goon-Soo Kim
82 51 510 7928
[email protected]
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SOURCE Pusan National University
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