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CD44 expression in endothelial colony-forming cells regulates neurovascular trophic effect
Susumu Sakimoto, Valentina Marchetti, Edith Aguilar, Kelsey Lee, Yoshihiko Usui, Salome Murinello, Felicitas Bucher, Jennifer K. Trombley, Regis Fallon, Ravenska Wagey, Carrie Peters, Elizabeth L. Scheppke, Peter D. Westenskow, Martin Friedlander
Susumu Sakimoto, Valentina Marchetti, Edith Aguilar, Kelsey Lee, Yoshihiko Usui, Salome Murinello, Felicitas Bucher, Jennifer K. Trombley, Regis Fallon, Ravenska Wagey, Carrie Peters, Elizabeth L. Scheppke, Peter D. Westenskow, Martin Friedlander
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Research Article Angiogenesis Stem cells

CD44 expression in endothelial colony-forming cells regulates neurovascular trophic effect

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Abstract

Vascular abnormalities are a common component of eye diseases that often lead to vision loss. Vaso-obliteration is associated with inherited retinal degenerations, since photoreceptor atrophy lowers local metabolic demands and vascular support to those regions is no longer required. Given the degree of neurovascular crosstalk in the retina, it may be possible to use one cell type to rescue another cell type in the face of severe stress, such as hypoxia or genetically encoded cell-specific degenerations. Here, we show that intravitreally injected human endothelial colony-forming cells (ECFCs) that can be isolated and differentiated from cord blood in xeno-free media collect in the vitreous cavity and rescue vaso-obliteration and neurodegeneration in animal models of retinal disease. Furthermore, we determined that a subset of the ECFCs was more effective at anatomically and functionally preventing retinopathy; these cells expressed high levels of CD44, the hyaluronic acid receptor, and IGFBPs (insulin-like growth factor–binding proteins). Injection of cultured media from ECFCs or only recombinant human IGFBPs also rescued the ischemia phenotype. These results help us to understand the mechanism of ECFC-based therapies for ischemic insults and retinal neurodegenerative diseases.

Authors

Susumu Sakimoto, Valentina Marchetti, Edith Aguilar, Kelsey Lee, Yoshihiko Usui, Salome Murinello, Felicitas Bucher, Jennifer K. Trombley, Regis Fallon, Ravenska Wagey, Carrie Peters, Elizabeth L. Scheppke, Peter D. Westenskow, Martin Friedlander

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Figure 4

ECFCs promote transient neurovascular protection in inherited retinal degeneration mice.

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ECFCs promote transient neurovascular protection in inherited retinal de...
(A and B) Representative images (A) and quantification (B) of staining for deep plexus of retinal vasculature with GS lectin on P32 RD10 retinas show rescue of vascular atrophy with CD44hi ECFCs. n = 8. (C and D) Immunohistochemistry of retinal sections harvested at P28 after injection on P14 in RD10 mice shows a highly efficient neuroprotective role of CD44hi ECFCs. (C) Red, arrestin; green, rhodopsin; blue, Hoechst33342. (D) Red, opsin (red/green); blue, Hoechst33342. (E) Quantification for outer nuclear layer thickness. n = 5. (F and G) TUNEL staining on P21 RD10 mouse retinas shows fewer apoptotic cells in CD44hi ECFC–injected eyes. (G) Quantification of TUNEL staining in F. n = 5. *P < 0.05, **P < 0.01, Student’s t test. Scale bar: 50 μm. Error bars represent SD.

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