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Perlecan domain V is neuroprotective and proangiogenic following ischemic stroke in rodents
Boyeon Lee, Douglas Clarke, Abraham Al Ahmad, Michael Kahle, Christi Parham, Lisa Auckland, Courtney Shaw, Mehmet Fidanboylu, Anthony Wayne Orr, Omolara Ogunshola, Andrzej Fertala, Sarah A. Thomas, Gregory J. Bix
Boyeon Lee, Douglas Clarke, Abraham Al Ahmad, Michael Kahle, Christi Parham, Lisa Auckland, Courtney Shaw, Mehmet Fidanboylu, Anthony Wayne Orr, Omolara Ogunshola, Andrzej Fertala, Sarah A. Thomas, Gregory J. Bix
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Research Article Angiogenesis

Perlecan domain V is neuroprotective and proangiogenic following ischemic stroke in rodents

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Abstract

Stroke is the leading cause of long-term disability and the third leading cause of death in the United States. While most research thus far has focused on acute stroke treatment and neuroprotection, the exploitation of endogenous brain self-repair mechanisms may also yield therapeutic strategies. Here, we describe a distinct type of stroke treatment, the naturally occurring extracellular matrix fragment of perlecan, domain V, which we found had neuroprotective properties and enhanced post-stroke angiogenesis, a key component of brain repair, in rodent models of stroke. In both rat and mouse models, Western blot analysis revealed elevated levels of perlecan domain V. When systemically administered 24 hours after stroke, domain V was well tolerated, reached infarct and peri-infarct brain vasculature, and restored stroke-affected motor function to baseline pre-stroke levels in these multiple stroke models in both mice and rats. Post-stroke domain V administration increased VEGF levels via a mechanism involving brain endothelial cell α5β1 integrin, and the subsequent neuroprotective and angiogenic actions of domain V were in turn mediated via VEGFR. These results suggest that perlecan domain V represents a promising approach for stroke treatment.

Authors

Boyeon Lee, Douglas Clarke, Abraham Al Ahmad, Michael Kahle, Christi Parham, Lisa Auckland, Courtney Shaw, Mehmet Fidanboylu, Anthony Wayne Orr, Omolara Ogunshola, Andrzej Fertala, Sarah A. Thomas, Gregory J. Bix

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Figure 2

Administered DV reaches stroke brain tissue.

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Administered DV reaches stroke brain tissue.
(A) PSD 5 rat brain immunos...
(A) PSD 5 rat brain immunostained for administered DV (anti-HIS antibody, red) and DAPI nuclear stain (blue). Scale bar: 1 mm. (B) Von Willebrand factor (green) and HIS (red) co-immunohistochemistry of stroke, peri-infarct, and contralateral brain tissue as labeled. Scale bar: 10 μm. (C) Higher-magnification images of von Willebrand factor, DV (anti-His), and DAPI co-immunohistochemistry of stroke and peri-infarct brain tissue (as in B). Scale bar: 10 μm. (D) DV (detects both endogenous and administered DV) and HIS (detects only administered DV) Western blot analysis of stroke ipsilateral (I) brain tissue or corresponding contralateral (C) non-stroke tissue from PBS- or DV-treated animals. (E) X-ray and IR-800 image overlay (with corresponding signal intensity color spectrum scale) of stroke mice treated with IR-800–labeled DV or IR-800 control. L, left.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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