Laboratory of Pathology, Faculty of Pharmaceutical Sciences, Setsunan University, Osaka, Japan.
Experimental Animal Division, RIKEN BioResource Center, Tsukuba, Ibaraki, Japan.
Invest Ophthalmol Vis Sci. 2018 Mar 1;59(3):1368-1373. doi: 10.1167/iovs.17-21841.
Basement membrane degradation and macrophage aggregation at the optic fissure margins are crucial to optic fissure closure during normal murine eye development. Basement membrane degradation is also an essential step in cancer development, and matrix metalloproteinases (MMPs) play an important role. In this study, we investigated MMP alteration at the degrading basement membrane of optic fissure margins in mice and attempted to clarify the relationship between MMP activity and macrophages.
Serial coronal frozen sections of eyes from BALB/c fetuses were prepared and gelatinase activity was examined using in situ zymography techniques. The frozen sections were immunohistochemically stained with anti-F4/80, anti-MMP 2, and anti-MMP 9 antibodies. Serial coronal paraffin sections were also immunohistochemically stained with anti-type IV collagen and anti-F4/80, and basement membrane disintegration and macrophage aggregation at the optic fissure margins were examined.
The basement membrane of optic fissure margins was rapidly degraded during gestational days (GDs) 12.0 to 12.5. Meanwhile, gelatinase activity at F4/80-positive macrophages significantly increased during GDs 11.5 to 12.0 and declined thereafter; some of those were also positive for MMP2. The number of macrophages was also increased and decreased at nearly the same time.
Intramacrophage MMPs may be responsible for basement membrane degradation at the optic fissure margins during normal eye development in mice.
在正常的小鼠眼发育过程中,视神经裂缘基底膜的降解和巨噬细胞聚集对于视神经裂的闭合至关重要。基底膜的降解也是癌症发展的一个重要步骤,而基质金属蛋白酶(MMPs)则起着重要的作用。在这项研究中,我们研究了在小鼠视神经裂缘降解基底膜中 MMP 的变化,并试图阐明 MMP 活性与巨噬细胞之间的关系。
制备 BALB/c 胎鼠的连续冠状冷冻切片,并使用原位酶谱技术检查明胶酶活性。用抗 F4/80、抗 MMP2 和抗 MMP9 抗体对冷冻切片进行免疫组织化学染色。还对连续的冠状石蜡切片进行免疫组织化学染色,用抗 IV 型胶原和抗 F4/80 染色,并检查视神经裂缘的基底膜解体和巨噬细胞聚集。
在妊娠第 12.0 天至 12.5 天,视神经裂缘的基底膜迅速降解。与此同时,在第 11.5 天至 12.0 天,F4/80 阳性巨噬细胞中的明胶酶活性显著增加,此后则下降;其中一些也呈 MMP2 阳性。巨噬细胞的数量也几乎在同一时间增加和减少。
在正常的小鼠眼发育过程中,巨噬细胞内的 MMP 可能负责视神经裂缘基底膜的降解。