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Published on: March 3, 2023
A Drug Eluting Scaffold for the Treatment of Arthrofibrosis
William H Trousdale1, Christopher G Salib1, Nicolas Reina1
11 Department of Orthopedic Surgery, Mayo Clinic , Rochester, Minnesota.
Introduction:
The inflammatory cascade and production of prostaglandins may play a role in the pathogenesis of arthrofibrosis, a debilitating condition after joint replacement and other orthopedic procedures. Cyclooxygenase 2 (COX-2) inhibitors may mitigate the inflammatory response and formation of arthrofibrosis, but oral delivery is associated with risk of systemic side effects in many patients. The nonsteroidal anti-inflammatory drug, celecoxib, may have therapeutic benefits for arthrofibrosis, but current methods for its local delivery (e.g., biologically derived microspheres) are not translatable to immediate clinical use. Therefore, we investigated the use of a drug scaffold for sustainable intra-articular delivery of therapeutic doses of celecoxib.
Materials And Methods:
Celecoxib was eluted from clinically approved biodegradable collagen membranes over 7 days as measured by UV spectroscopy and high-performance liquid chromatography/mass spectroscopy. Eluted concentrations of celecoxib were examined for toxicity (live/dead staining) and profibrotic gene expression (real-time-quantitative polymerase chain reaction) in rabbit knee capsular fibroblasts in vitro.
Results:
Sustained concentrations of celecoxib eluted from the membrane over 7 days from both a wet and dry scaffold, with a burst release (30-45%) of celecoxib in the first 2 h. Rabbit cells treated with eluted concentrations experienced a toxic response to the burst release doses, and inhibitory effects on profibrotic genes were seen in response to the sustained doses eluted from the scaffold.
Conclusions:
This study characterized the novel use of collagen scaffolds for intra-articular drug delivery to treat arthrofibrosis. Scaffolds exhibit celecoxib release through an initial burst release followed by sustained release of antifibrotic doses over 7 days. Thus, collagen scaffolds are promising for clinician-directed treatment of arthrofibrosis.
Insights
This study developed a collagen scaffold for sustained intra-articular delivery of celecoxib to treat arthrofibrosis, showing promising antifibrotic effects with reduced systemic risks.
Area of Science:
- Biomaterials Science
- Orthopedic Surgery
- Pharmacology
Background:
- Arthrofibrosis, a complication of joint replacement, involves inflammation and prostaglandin production.
- Cyclooxygenase 2 (COX-2) inhibitors like celecoxib may treat arthrofibrosis, but oral delivery poses systemic risks.
- Current local delivery methods for celecoxib are not clinically applicable.
Purpose of the Study:
- To investigate collagen scaffolds for sustained intra-articular delivery of celecoxib.
- To evaluate the therapeutic potential of locally delivered celecoxib for arthrofibrosis treatment.
Main Methods:
- Celecoxib was eluted from biodegradable collagen membranes over 7 days.
- Eluted celecoxib concentrations were tested for toxicity and effects on profibrotic genes in rabbit fibroblasts in vitro.
Main Results:
- Collagen scaffolds demonstrated an initial burst release (30-45%) followed by sustained celecoxib elution over 7 days.
- High initial concentrations were toxic to cells, while sustained doses inhibited profibrotic gene expression.
Conclusions:
- Collagen scaffolds enable controlled intra-articular delivery of celecoxib.
- This approach shows potential for treating arthrofibrosis with a favorable risk profile.
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