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Leukotriene B4 promotes neovascularization and macrophage recruitment in murine wet-type AMD models
Fumiyuki Sasaki, Tomoaki Koga, Mai Ohba, Kazuko Saeki, Toshiaki Okuno, Keijiro Ishikawa, Takahito Nakama, Shintaro Nakao, Shigeo Yoshida, Tatsuro Ishibashi, Hamid Ahmadieh, Mozhgan Rezaei Kanavi, Ali Hafezi-Moghadam, Josef M. Penninger, Koh-Hei Sonoda, Takehiko Yokomizo
Fumiyuki Sasaki, Tomoaki Koga, Mai Ohba, Kazuko Saeki, Toshiaki Okuno, Keijiro Ishikawa, Takahito Nakama, Shintaro Nakao, Shigeo Yoshida, Tatsuro Ishibashi, Hamid Ahmadieh, Mozhgan Rezaei Kanavi, Ali Hafezi-Moghadam, Josef M. Penninger, Koh-Hei Sonoda, Takehiko Yokomizo
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Research Article Angiogenesis Inflammation

Leukotriene B4 promotes neovascularization and macrophage recruitment in murine wet-type AMD models

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Abstract

Age-related macular degeneration (AMD), a progressive chronic disease of the central retina, is associated with aging and is a leading cause of blindness worldwide. Here, we demonstrate that leukotriene B4 (LTB4) receptor 1 (BLT1) promotes laser-induced choroidal neovascularization (CNV) in a mouse model for wet-type AMD. CNV was significantly less in BLT1-deficient (BLT1-KO) mice compared with BLT1-WT controls. Expression of several proangiogenic and profibrotic factors was lower in BLT1-KO eyes than in BLT1-WT eyes. LTB4 production in the eyes was substantially increased in the early phase after laser injury. BLT1 was highly expressed in M2 macrophages in vitro and in vivo, and ocular BLT1+ M2 macrophages were increased in the aged eyes after laser injury. Furthermore, M2 macrophages were rapidly attracted by LTB4 and subsequently produced VEGF-A– through BLT1-mediated signaling. Consequently, intravitreal injection of M2 macrophages augmented CNV formation, which was attenuated by BLT1 deficiency. Thus, laser-induced injury to the retina triggered LTB4 production and attracted M2 macrophages via BLT1, leading to development of CNV. A selective BLT1 antagonist (CP105696) and 3 LTB4 inhibitors (zileuton, MK-886, and bestatin) reduced CNV in a dose-dependent manner. CP105696 also inhibited the accumulation of BLT1+ M2 macrophages in the laser-injured eyes of aged mice. Together, these results indicate that the LTB4-BLT1 axis is a potentially novel therapeutic target for CNV of wet-type AMD.

Authors

Fumiyuki Sasaki, Tomoaki Koga, Mai Ohba, Kazuko Saeki, Toshiaki Okuno, Keijiro Ishikawa, Takahito Nakama, Shintaro Nakao, Shigeo Yoshida, Tatsuro Ishibashi, Hamid Ahmadieh, Mozhgan Rezaei Kanavi, Ali Hafezi-Moghadam, Josef M. Penninger, Koh-Hei Sonoda, Takehiko Yokomizo

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Figure 3

BLT1-expressing macrophages are recruited to the periphery of laser-induced CNV.

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BLT1-expressing macrophages are recruited to the periphery of laser-indu...
Images of iB4 staining (A) and CNV volume (B) in the RPE-choroid of chimeric mice receiving BM cells from aged BLT1-WT (white) or BLT1-KO (black) mice (>20 weeks old). n = 6–8 mice per group. (C and D) Flow cytometry analysis of cells isolated from the laser-injured eyes of aged WT mice (>20 weeks old). The populations of the leukocytes are gated as follows: total leukocytes, CD45+; neutrophils, CD11bhiF4/80–Ly6G+; inflammatory monocyte, CD11bhiF4/80–Ly6C+; macrophages, CD11bhiF4/80hi. The numbers (C) and percentages (D) of the leukocyte populations were analyzed on days 1, 3, and 5 after laser injury. Day 0 refers to a sample taken from uninjured eyes. n = 3–4 per group. (E) Immunofluorescence staining of the laser-injured RPE-choroids from WT mice (young, 8 weeks old; old, >20 weeks old) with anti-F4/80 (red) and -BLT1 (green) mAbs. Nuclei were visualized with DAPI (blue). LI (white dotted lines) denotes the location of laser injury. White arrows show F4/80-negative and BLT1-positive cells. White arrowheads show F4/80– and BLT1–double positive cells. Scale bar: 100 μm (A) or 50 μm (E). (B) *P < 0.05 (Student’s t test). (C and D) *P < 0.05; **P < 0.01; ***P < 0.005 versus Day 0 (1-way ANOVA with Dunnett’s post hoc test). Results are representative of at least 2 independent experiments.

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