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Estrogen stimulates microglia and brain recovery from hypoxia-ischemia in normoglycemic but not diabetic female mice
Liqun Zhang, … , Ian A. Simpson, Susan J. Vannucci
Liqun Zhang, … , Ian A. Simpson, Susan J. Vannucci
Published January 1, 2004
Citation Information: J Clin Invest. 2004;113(1):85-95. https://doi.org/10.1172/JCI18336.
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Article Metabolism

Estrogen stimulates microglia and brain recovery from hypoxia-ischemia in normoglycemic but not diabetic female mice

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Abstract

Diabetic hyperglycemia increases ischemic brain damage in experimental animals and humans. The mechanisms are unclear but may involve enhanced apoptosis in penumbral regions. Estrogen is an established neuroprotectant in experimental stroke. Our previous study demonstrated that female diabetic db/db mice suffered less damage following cerebral hypoxia-ischemia (H/I) than male db/db mice. Here we investigated the effects of diabetes and estrogen apoptotic gene expression following H/I. Female db/db and nondiabetic (+/?) mice were ovariectomized (OVX) and treated with estrogen or vehicle prior to H/I; brains were analyzed for damage and bcl-2 family gene expression. OVX increased ischemic damage in +/? mice; estrogen reduced tissue injury and enhanced antiapoptotic gene expression (bcl-2 and bfl-1). db/db mice demonstrated more damage, without increased bcl-2 mRNA; bfl-1 expression appeared at 48 hours of recovery associated with infarction. To our knowledge, this is the first description of bfl-1 in the brain with localization to microglia and macrophages. Early induction of bfl-1 expression in +/? mouse brain was associated with microglia; delayed bfl-1 expression in diabetic brain was in macrophages bordering the infarct. Furthermore, estrogen replacement stimulated early postischemic expression of bcl-2 and bfl-1 and reduced damage in normoglycemic animals but failed to protect the diabetic brain.

Authors

Liqun Zhang, Aji Nair, Kyle Krady, Christopher Corpe, Robert H. Bonneau, Ian A. Simpson, Susan J. Vannucci

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Figure 9

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Flow cytometric analysis of microglia and macrophages in +/? and db/db m...
Flow cytometric analysis of microglia and macrophages in +/? and db/db mice following H/I. Mice underwent H/I, and brains were removed 24 and 48 hours after surgery. Brains of both +/? and db/db mice were divided into damaged (ipsilateral) and undamaged (contralateral) hemispheres. Mononuclear cells from the pooled hemispheres of two to four mice per group were isolated by a Percoll gradient and processed for simultaneous detection of CD11 and CD45, with bfl-1, as described in Methods. Ten thousand events per sample were analyzed by fluorescent flow cytometry. (a and b) Total microglia (a) and macrophages (b) per hemisphere. (c and d) The number of microglia (c) and macrophages (d) that are bfl-1 positive. Black bars, +/? ipsilateral; dark gray bars, +/? contralateral; light gray bars, db/db ipsilateral; white bars, db/db contralateral.

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