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Published on: September 17, 2013
Engineered Neutrophil Nanovesicles for Inhibiting Corneal Neovascularization by Synergistic Anti-Inflammatory,
Xiaoxue Liu1,2,3, Yingxuan Bi1,2,3, Chaoqun Wei1,2,3
1State Key Laboratory Cultivation Base, Shandong Provincial Key Laboratory of Ophthalmology, Eye Institute of Shandong First Medical University, Qingdao, 266071, China.
Abstract:
Corneal neovascularization (CorNV) develops under various pathological conditions and is one of the main causes of blindness. Due to that CorNV progression involves multiple steps, anti-vascular endothelial growth factor (VEGF) drugs alone could not sufficiently suppress this process, highlighting an urgent need for an efficient delivery system for the multi-step management of CorNV. In this study, a neutrophil nanovesicle-based eye drop (NCCR) is developed for CorNV therapy that simultaneously inhibits angiogenesis and inflammation, while eliminating pathological cells through chemoexcited photodynamic therapy (PDT). NCCR targets inflammatory lesions by leveraging the expression of chemokine receptors from the source cells. Then, NCCR exerts inhibitory effects on the sequential steps of neovascularization. First, it acts as a decoy and exerts an anti-inflammatory effect by neutralizing cytokines via its receptors on the surface of nanovesicles. Second, thioketals bond-linked ranibizumab is released in the high reactive oxygen species microenvironment of CorNV sites to bind VEGF, inhibiting vascular endothelial cell activation and proliferation. Finally, chemoexcited PDT eliminates preformed corneal blood vessels, disrupting tube formation and pericyte recruitment. The synergistic effects of NCCR on angiogenesis and inflammation, combined with the induction of apoptosis in neovessels via chemoexcited PDT, offer a novel and efficient strategy for CorNV treatment.
Insights
A novel neutrophil nanovesicle-based eye drop (NCCR) effectively treats corneal neovascularization (CorNV) by inhibiting angiogenesis and inflammation. This therapy targets pathological cells using chemoexcited photodynamic therapy (PDT) for a multi-step CorNV management approach.
Area of Science:
- Ophthalmology
- Nanomedicine
- Biotechnology
Background:
- Corneal neovascularization (CorNV) is a significant cause of blindness, driven by complex pathological processes.
- Current anti-vascular endothelial growth factor (VEGF) therapies are insufficient for multi-step CorNV management.
- An efficient delivery system is crucial for comprehensive CorNV treatment.
Purpose of the Study:
- To develop a neutrophil nanovesicle-based eye drop (NCCR) for multi-step CorNV therapy.
- To simultaneously inhibit angiogenesis and inflammation in CorNV.
- To eliminate pathological cells via chemoexcited photodynamic therapy (PDT).
Main Methods:
- NCCR targets inflammatory lesions using chemokine receptor expression.
- NCCR neutralizes cytokines, acting as an anti-inflammatory decoy.
- Ranibizumab is released to inhibit VEGF, and chemoexcited PDT eliminates neovessels.
Main Results:
- NCCR demonstrates synergistic effects on angiogenesis and inflammation.
- Chemoexcited PDT induces apoptosis in neovessels.
- The developed eye drop offers a novel strategy for CorNV treatment.
Conclusions:
- Neutrophil nanovesicle-based eye drops (NCCR) provide an efficient, multi-step approach to CorNV therapy.
- The combination of anti-angiogenic, anti-inflammatory, and PDT effects is highly effective.
- This strategy holds promise for treating corneal neovascularization and preventing blindness.
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