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The Corneal Micropocket Assay: A Model of Angiogenesis in the Mouse Eye
Published on: August 16, 2014
Doxycycline inhibits inflammation-induced lymphangiogenesis in mouse cornea by multiple mechanisms
Longhui Han1, Wenru Su2, Jingwen Huang2
1State Key Laboratory of Ophthalmology, Zhongshan Ophthalmic Center, Sun Yat-sen University, Guangzhou, China; Hebei Provincial Key Laboratory of Ophthalmology, Hebei Provincial Eye institute, Hebei Eye Hospital, Xingtai, China.
Abstract:
Lymphangiogenesis is significantly involved in the pathogenesis of diseases, including graft rejection, cancer metastasis and various inflammatory conditions. The inhibition of lymphangiogenesis has become a new therapeutic target for the treatment of these diseases. Here, we explored the anti-lymphangiogenic effects of doxycycline in inflammation-induced lymphangiogenesis (ILA) in the cornea and the underlying mechanisms. In the present study, mice with ILA of the cornea were treated with topical doxycycline (0.1%) or vehicle control. Lymphangiogenesis was quantified using corneal immunostaining of lymphatic vessel endothelial hyaluronan receptor-1 (LYVE-1). Human dermal lymphatic endothelial cells (HDLECs) and a murine macrophage cell line (RAW264.7) were used to further explore the underlying mechanisms of doxycycline-mediated anti-lymphangiogenesis in vitro. Our results showed that doxycycline treatment dramatically inhibited ILA in the mouse cornea (p<0.001), with a significant decrease in vascular endothelial growth factor (VEGF)-C/VEGF receptor 3 signalling, macrophage infiltration and inflammatory cytokine expression. Doxycycline also significantly inhibited VEGF-C-induced HDLEC proliferation in vitro by modulating the PI3K/Akt/endothelial nitric oxide (NO) synthase (eNOS) pathway and significantly suppressed interleukin-1β (IL-1β), TNF-α and VEGF-C production in the RAW264.7 cell line by modulating the PI3K/Akt/nuclear factor-kappaB (NF-κB) pathway. Additionally, doxycycline treatment dramatically reduced the phosphorylation of NF-κBp65, Akt and eNOS in ILA and significantly inhibited matrix metalloproteinases (MMPs) activity in vitro and in ILA. In conclusion, doxycycline inhibited ILA, possibly through suppression of VEGF-C signalling, macrophage function and MMPs activity. This observation suggests that doxycycline is a potential therapeutic agent for lymphangiogenesis-related diseases.
Insights
Doxycycline effectively inhibits inflammation-induced lymphangiogenesis in the cornea by suppressing key signaling pathways and reducing inflammatory markers. This suggests doxycycline
Area of Science:
- Ophthalmology
- Immunology
- Vascular Biology
Background:
- Lymphangiogenesis, the formation of new lymphatic vessels, is implicated in diseases like cancer metastasis and graft rejection.
- Inhibiting lymphangiogenesis presents a therapeutic strategy for managing these conditions.
Purpose of the Study:
- To investigate the anti-lymphangiogenic effects of doxycycline on inflammation-induced lymphangiogenesis (ILA) in the cornea.
- To elucidate the underlying molecular mechanisms of doxycycline's action.
Main Methods:
- Topical doxycycline treatment in a mouse model of corneal ILA.
- Quantification of lymphangiogenesis using corneal immunostaining (LYVE-1).
- In vitro studies using human dermal lymphatic endothelial cells (HDLECs) and RAW264.7 macrophages.
Main Results:
- Doxycycline significantly inhibited corneal ILA, decreasing vascular endothelial growth factor (VEGF)-C/VEGF receptor 3 signaling, macrophage infiltration, and inflammatory cytokine expression.
- Doxycycline suppressed VEGF-C-induced HDLEC proliferation via the PI3K/Akt/eNOS pathway.
- Doxycycline reduced inflammatory cytokine and VEGF-C production in macrophages via the PI3K/Akt/NF-κB pathway.
- Doxycycline inhibited matrix metalloproteinases (MMPs) activity.
Conclusions:
- Doxycycline demonstrates significant anti-lymphangiogenic properties in the cornea.
- Mechanisms include suppression of VEGF-C signaling, macrophage activity, and MMPs.
- Doxycycline shows potential as a therapeutic agent for lymphangiogenesis-related diseases.

