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Targeting tie-2 receptor with rebastinib (DCC-2036) for angiogenesis Inhibition in early-stage arthritis : enhanced
Minuk Jeong1, Heung-Myong Woo1, Jang-Hyuk Yun2
1Department of Veterinary Medicine, Kangwon National University, Chuncheon-si, Gangwon-do, 24341, Republic of Korea.
Abstract:
The prevalence of arthritis continues to increase, which has driven research on new therapeutic approaches. However, existing treatments often have limitations. Angiogenesis and pathological changes in the synovium are the key contributors to the early development of arthritis. Rebastinib, a tie-2 receptor inhibitor, blocks the activation of tie2-expressing macrophages, which are involved in angiogenesis. Although previous studies have highlighted the importance of angiogenesis in early arthritis, few have focused on targeting the tie-2 receptor to slow disease progression. In this study, we evaluated the effects of rebastinib encapsulated in pH-dependent liposomes in a rabbit model of surgically induced arthritis. Additionally, we investigated the efficacy of a pH-dependent liposomal formulation, developed using microfluidic technology for sustained drug release. The results demonstrated that rebastinib-loaded pH-dependent liposomes were stable and provided controlled release and rebastinib effectively inhibited the progression of early stage arthritis in this model. Statistical analyses were performed using SPSS software (IBM Corp., Armonk, NY, USA), and significance was assessed using one-way ANOVA. In conclusion, rebastinib encapsulated in pH-dependent liposomes holds promise as a potential therapeutic strategy for the treatment of early arthritis, offering both stability and efficacy in disease suppression.
Insights
Rebastinib, delivered via pH-dependent liposomes, effectively inhibits early arthritis progression. This novel drug delivery system shows promise for treating arthritis by targeting angiogenesis and improving drug stability and release.
Area of Science:
- Rheumatology
- Nanomedicine
- Pharmacology
Background:
- Arthritis prevalence is rising, necessitating novel therapeutic strategies.
- Angiogenesis and synovial changes drive early arthritis development.
- Existing arthritis treatments have limitations.
Purpose of the Study:
- To evaluate rebastinib encapsulated in pH-dependent liposomes for early arthritis treatment.
- To assess a microfluidic-based pH-dependent liposomal formulation for sustained drug release.
- To investigate the therapeutic potential of targeting tie-2 receptor in arthritis.
Main Methods:
- A rabbit model of surgically induced arthritis was used.
- Rebastinib was encapsulated in pH-dependent liposomes.
- Liposomal formulation efficacy and drug release kinetics were analyzed.
- Statistical significance was determined using one-way ANOVA.
Main Results:
- Rebastinib-loaded pH-dependent liposomes exhibited stability and controlled drug release.
- The formulation effectively inhibited the progression of early-stage arthritis in the rabbit model.
- Tie-2 receptor inhibition by rebastinib impacted angiogenesis.
Conclusions:
- Rebastinib in pH-dependent liposomes is a promising therapeutic strategy for early arthritis.
- This approach offers stability and efficacy in suppressing arthritis progression.
- Targeting tie-2 receptor with rebastinib presents a viable treatment avenue.

