Microglial Cell Activation is a Source of Metalloproteinase Generation during Hemorrhagic Transformation

Author:

del Zoppo Gregory J123,Frankowski Harald14,Gu Yu-Huan1,Osada Takashi1,Kanazawa Masato1,Milner Richard3,Wang Xiaoyun5,Hosomi Naohisa6,Mabuchi Takuma7,Koziol James A3

Affiliation:

1. Division of Hematology, Department of Medicine, University of Washington School of Medicine, Seattle, Washington, USA

2. Department of Neurology, University of Washington School of Medicine, Seattle, Washington, USA

3. Department of Molecular and Experimental Medicine, The Scripps Research Institute, La Jolla, California, USA

4. Department of Pediatrics, University of California, San Diego School of Medicine, La Jolla, California, USA

5. Scripps Genomic Medicine, The Scripps Translational Science Institute, La Jolla, California, USA

6. Department of Clinical Neuroscience and Therapeutics, Hiroshima University Graduate School of Biomedical Science, Hiroshima, Japan

7. Department of Internal Medicine, Hojo Tanaka Hospital, Kasai/Hyogo, Japan

Abstract

Hemorrhage and edema accompany evolving brain tissue injury after ischemic stroke. In patients, these events have been associated with metalloproteinase (MMP)-9 in plasma. Both the causes and cellular sources of MMP-9 generation in this setting have not been defined. MMP-2 and MMP-9 in nonhuman primate tissue in regions of plasma leakage, and primary murine microglia and astrocytes, were assayed by immunocytochemistry, zymography, and real-time RT-PCR. Ischemia-related hemorrhage was associated with microglial activation in vivo, and with the leakage of plasma fibronectin and vitronectin into the surrounding tissue. In strict serum-depleted primary cultures, by zymography, pro-MMP-9 was generated by primary murine microglia when exposed to vitronectin and fibronectin. Protease secretion was enhanced by experimental ischemia (oxygen-glucose deprivation, OGD). Primary astrocytes, on each matrix, generated only pro-MMP-2, which decreased during OGD. Microglia—astrocyte contact enhanced pro-MMP-9 generation in a cell density-dependent manner under normoxia and OGD. Compatible with observations in a high quality model of focal cerebral ischemia, microglia, but not astrocytes, respond to vitronectin and fibronectin, found when plasma extravasates into the injured region. Astrocytes alone do not generate pro-MMP-9. These events explain the appearance of MMP-9 antigen in association with ischemia-induced cerebral hemorrhage and edema.

Publisher

SAGE Publications

Subject

Cardiology and Cardiovascular Medicine,Clinical Neurology,Neurology

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