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Published on: August 16, 2014
Bim Expression Promotes the Clearance of Mononuclear Phagocytes during Choroidal Neovascularization, Mitigating Scar
Shoujian Wang1, Ismail S Zaitoun1,2, Soesiawati R Darjatmoko1
1Department of Ophthalmology and Visual Sciences, University of Wisconsin School of Medicine and Public Health, Madison, WI 53705, USA.
Abstract:
Inflammation is increasingly recognized as an important modulator in the pathogenesis of neovascular age-related macular degeneration (nAMD). Although significant progress has been made in delineating the pathways that contribute to the recruitment of inflammatory cells and their contribution to nAMD, we know little about what drives the resolution of these inflammatory responses. Gaining a better understanding of how immune cells are cleared in the choroid will give a novel insight into how sustained inflammation could influence the pathogenesis of nAMD. The pro-apoptotic Bcl-2 family member Bim is a master regulator of immune cell homeostasis. In its absence, immune cell lifespan and numbers increase. Most therapeutic regimes that squelch inflammation do so by enhancing immune cell apoptosis through enhanced Bim expression and activity. To test the hypothesis that Bim expression tempers inflammation during the pathogenesis of nAMD, we used the mouse laser-induced choroidal neovascularization (CNV) model in which inflammation acts as a facilitator of CNV. Here, we showed minimal to no change in the recruitment of F4/80-, CD80-, CD11b-, and Iba1-positive myeloid-derived mononuclear phagocytes to the site of laser photocoagulation in the absence of Bim expression. However, the resolution of these cells from the choroid of Bim-deficient (Bim -/-) mice was significantly diminished following laser photocoagulation. With time, we noted increased scar formation, demonstrated by collagen I staining, in Bim -/- mice with no change in the resolution of neovascularization compared to wild-type littermates. We also noted that mice lacking Bim expression in mononuclear phagocytes (BimFlox/Flox; Lyz2-Cre (BimMP) mice) had delayed resolution of F4/80-, CD80-, CD11b-, and Iba1-positive cells, while those lacking Bim expression in endothelial cells (BimFlox/Flox; Cad5-Cre (BimEC) mice) had delayed resolution of only CD11b- and Iba1-positive cells. Both BimMP and BimEC mice demonstrated increased scar formation, albeit to differing degrees. Thus, our studies show that resolving inflammation plays an important role in moderating scar formation in nAMD, and it is impacted by Bim expression in both the endothelium and mononuclear phagocyte lineages.
Insights
The Bcl-2 family member Bim regulates immune cell clearance in neovascular age-related macular degeneration (nAMD). Its absence impairs inflammation resolution, leading to increased scarring in the choroid, highlighting Bim
Area of Science:
- Ophthalmology and Immunology
- Molecular and Cellular Biology
Background:
- Inflammation is a key factor in neovascular age-related macular degeneration (nAMD) pathogenesis.
- Understanding inflammatory resolution is crucial for nAMD, but current knowledge is limited.
- The Bcl-2 family member Bim is vital for immune cell homeostasis and apoptosis.
Purpose of the Study:
- To investigate the role of Bim in regulating inflammatory cell resolution in nAMD.
- To test the hypothesis that Bim expression tempers inflammation during nAMD pathogenesis.
Main Methods:
- Utilized a mouse laser-induced choroidal neovascularization (CNV) model.
- Examined myeloid-derived mononuclear phagocyte recruitment and resolution in wild-type and Bim-deficient mice (Bim-/-).
- Assessed Bim's role in mononuclear phagocytes (BimMP) and endothelial cells (BimEC) using conditional knockout models.
Main Results:
- Bim deficiency (Bim-/-) diminished the resolution of inflammatory cells post-laser injury.
- Bim-/- mice exhibited increased collagen I-positive scar formation.
- Conditional knockouts (BimMP and BimEC) showed delayed inflammatory cell resolution and increased scarring.
Conclusions:
- Resolution of inflammation is critical for moderating scar formation in nAMD.
- Bim expression in both endothelial cells and mononuclear phagocytes influences inflammatory resolution and scarring.
- Targeting Bim may offer novel therapeutic strategies for nAMD by modulating inflammatory responses.

