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Cited 32 time in webofscience Cited 33 time in scopus
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Activated Microglia Are Less Vulnerable to Hemin Toxicity due to Nitric Oxide-Dependent Inhibition of JNK and p38 MAPK Activationopen access

Authors
Cai, YingCho, Geum-SilJu, ChungWang, Si-LingRyu, Jong HoonShin, Chan YoungKim, Hee-SunNam, Kung-WooJalin, Angela M. A. AnthonySun, WoongChoi, In-YoungKim, Won-Ki
Issue Date
1-Aug-2011
Publisher
AMER ASSOC IMMUNOLOGISTS
Citation
JOURNAL OF IMMUNOLOGY, v.187, no.3, pp 1314 - 1321
Pages
8
Indexed
SCI
SCIE
SCOPUS
Journal Title
JOURNAL OF IMMUNOLOGY
Volume
187
Number
3
Start Page
1314
End Page
1321
URI
https://scholarworks.korea.ac.kr/kumedicine/handle/2020.sw.kumedicine/13248
DOI
10.4049/jimmunol.1002925
ISSN
0022-1767
1550-6606
Abstract
In intracerebral hemorrhage, microglia become rapidly activated and remove the deposited blood and cellular debris. To survive in a harmful hemorrhagic or posthemorrhagic condition, activated microglia must be equipped with appropriate self-defensive mechanism(s) to resist the toxicity of hemin, a component released from damaged RBCs. In the current study, we found that activation of microglia by pretreatment with LPS markedly reduced their vulnerability to hemin toxicity in vitro. Similarly, intracorpus callosum microinjection of LPS prior to hemin treatment reduced the brain tissue damage caused by hemin and increased microglial density in the penumbra in rats. LPS induced the expressions of inducible NO synthase (iNOS) and heme oxygenase (HO)-1, the rate-limiting enzyme in heme degradation in microglia. The preventive effect by LPS was significantly diminished by an iNOS inhibitor, L-N(6)-(1-iminoethyl)lysine, whereas it was mimicked by a NO donor, diethylamine-NONOate, both suggesting the crucial role of NO in the modulation of hemin-induced toxicity in activated microglia. We further found that NO reduced hemin toxicity via inhibition of hemin-induced activation of JNK and p38 MAPK pathways in microglia. Whereas HO-1 expression in LPS-stimulated microglia was markedly blocked by L-N(6)-(1-iminoethyl)lysine, the HO-1 inhibitor, tin protoporphyrin, increased iNOS expression and decreased the susceptibility of LPS-activated microglia to hemin toxicity. The data indicate that the mutual interaction between NO and HO-1 plays a critical role in modulating the adaptive response of activated microglia to hemin toxicity. Better understanding of the survival mechanism of activated microglia may provide a therapeutic strategy to attenuate the devastating intracerebral hemorrhagic injury. The Journal of Immunology, 2011, 187: 1314-1321.
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