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Ikeda, S.-i.

Publications and source records attributed to Ikeda, S.-i..

2 recordsLinked to original sources

Tight junction component protein claudin-1 deficiency in retinal pigment epithelium leads to early and intermediate age-related macular degeneration phenotypes in mice.

The early and intermediate age-related macular degeneration (AMD) is characterized by the presence of drusen and pigmentary abnormalities in the retinal pigment epithelial (RPE) cells which form the outer blood retinal barrier (oBRB). Fluid leakage through the disrupted oBRB from the choroid to the neural retina has been implicated in the pathogenesis of AMD, however; the molecular mechanisms still remain unclear. The family of four transmembrane proteins, claudins are known to form tight junctions (TJs) in the oBRB. Nonetheless, there are few reports showing how they function in the oBRB in vivo. We found that claudin-1 is dominantly expressed in TJs of the mouse RPE. To investigate the role of claudin-1 in the RPE, we generated RPE-specific Cldn1 conditional knockout mice (Best1-Cre+/- Cldn1flox/flox mice: Cldn1 cKO mice). Deficiency of Cldn1 led to age-related lipid deposits such as subretinal drusenoid deposits (SDD), increased lipid droplets in the RPE, basal lamellar deposits (BlamD) and membranous debris in the Bruchs membrane. In addition, pigmentary abnormalities such as RPE hypertrophy, multilayered-RPE cells, and ectopic pigment granules outside the RPE were observed in Cldn1 cKO mice. Our study provides new insights into the possible association of the TJ protein claudin-1 with lipid metabolism and cellular ageing in the RPE contributing to the early onset of AMD.

molecular biology↗

The orientation of choroidal macrophage polarization significantly influences the development of myopia in murine models

Myopia is a primary contributor to visual impairment and has emerged as a global public health concern. Evidence indicates that one of the main structural features of myopia is the corresponding decrease in choroidal thickness, and choroidal macrophages play an important role in maintaining the choroidal thickness. Nevertheless, the effect of choroidal macrophages on myopia remains unclear. Here, we discovered that the continuous intraperitoneal injection of clodronate liposomes depleted choroidal macrophages and leads to myopia, which confirmed that the presence of choroidal macrophages plays an important role in myopia development. Subsequently, based on the phenotypic characteristics of macrophages, experiments were designed to study the effects of different polarization directions of macrophages on myopia development. We found that lipopolysaccharides (LPS) injection can induce the polarization of choroidal M1 macrophages, thinning the choroidal thickness and resulting in myopia. Conversely, IL-4 or IL-13 injection causes choroidal M2 macrophage polarization, thickens the choroid, and suppresses the progression of myopia. Additionally, we demonstrated that the opposite effects of M1 and M2 macrophages on myopia development may be related to their impacts on choroidal thickness, inflammation, and oxidative stress response. These findings establish that choroidal macrophages are critically important in the development of myopia and provide new strategies for the development of myopic therapies.

immunology↗