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From the outside views of the whole-mount retina, the tissue transparency of the whole-mount retina was increased using the tissue-clearing treatment compared to that of the retina without tissue-clearing (Figure 1).
For the histological examination on the whole-mount retina, the retinal vasculature was labeled in red with fluorescent tomato lectin through the retro-orbital injection, and retinal pericytes are shown in green with PDGFR-β (Figure 2, Figure 3, and Figure 4). Although this labeling could be observed on the sample before and after tissue clearing, as a comparison, the background noise of the retinal sample was reduced by the tissue-clearing treatment (Figure 2). The treatment also made the labeled retinal pericytes and vasculature clearer under the panoramic tissue slice scanner (Figure 2) and laser scanning confocal microscope (Figure 3).
The gradational distribution of retinal pericytes is also demonstrated here along the retinal vascular tree (Figure 3). From the central part of the retina to its peripheral region, pericytes are located on the basement membrane of the retinal vasculature, including the vascular trunk and branches and the capillaries (Figure 3).
Based on the above observation, the spatial correlation of pericytes and retinal vasculature was further assessed with the higher-magnified Z-stack images from the cleared retinal sample (Figure 4). With the aid of the image processing system, we further provided the 3D views to demonstrate that pericytes were tightly wrapped around the retinal vasculature in different diameters (Figure 4). Figure 4A0-D0 represents the hierarchical branching of retinal vessels from highest to lowest. Since pericytes are more abundantly distributed in capillaries, the PDGFRβ staining in Figure 4D0 shows stronger intensity and signal compared to Figure 4A0-C0.
In contrast to the mouse retina without tissue-clearing treatment (Figure 1A, Figure 2A, Figure 3A0-D0), the present approach has effectively reduced the retinal background signals for demonstrating the spatial relationship between pericytes and blood vessels from the whole-mount retina (Figure 1B, Figure 2B, Figure 3A1-D1).

Figure 1: Comparison of optical transparency of the whole mount retina without and with tissue clearing treatment. (A, B) The outside views of the whole mount retina before (A) and after (B) tissue clearing treatment. Please click here to view a larger version of this figure.

Figure 2: Comparison of labeling features of retinal pericytes and vasculature from the whole mount retina without and with tissue clearing treatment. (A, B) Representative montage views of the whole mount retina before (A) and after (B) tissue clearing treatment were taken under the Virtual Slide System. The vasculature is in red (fluorescent tomato lectin), pericytes are in green (PDGFR-β), and the cellular nucleus is in blue (DAPI). Please click here to view a larger version of this figure.

Figure 3: Comparison of the imaging resolution of the retinal pericytes gradationally along the retinal vascular tree before and after tissue-clearing treatment. (A-D) The representative images from the labeled retina before tissue clearing treatment (A0-D0) and after tissue clearing treatment (A1-D1) show the distribution of pericytes surrounding the retinal vasculature in order of vascular trunk (A0, A1), the first order branches (B0, B1), the second order branches (C0, C1), and the capillary (D0, D1). The vasculature is in red (fluorescent tomato lectin), pericytes are in green (PDGFR-β), and the cellular nucleus is in blue (DAPI). Please click here to view a larger version of this figure.

Figure 4: Spatial correlation of pericytes with retinal vasculature in different diameters. (A-D) Representative high-resolution images from the labeled retina along the retinal vascular tree showing the distribution of pericytes surrounding the retinal vasculature in different diameters, including vascular trunk (A0, A1), the first order branches (B0, B1), the second order branches (C0, C1), and the capillary (D0, D1). A1-D1: Corresponding images of panels A0-D0 were reconstructed to show the spatial correlation of pericytes with retinal vasculature in different diameters in the three-dimensional views and further demonstrate the magnified views of local regions in panels A1-D1 (arrows) with insets. The vasculature is in red (fluorescent tomato lectin), pericytes are in green (PDGFR-β), and the cellular nucleus is in blue (DAPI). Please click here to view a larger version of this figure.