pubmed-article:10907796 | rdf:type | pubmed:Citation | lld:pubmed |
pubmed-article:10907796 | lifeskim:mentions | umls-concept:C0035820 | lld:lifeskim |
pubmed-article:10907796 | lifeskim:mentions | umls-concept:C0007603 | lld:lifeskim |
pubmed-article:10907796 | lifeskim:mentions | umls-concept:C0013846 | lld:lifeskim |
pubmed-article:10907796 | lifeskim:mentions | umls-concept:C1554184 | lld:lifeskim |
pubmed-article:10907796 | lifeskim:mentions | umls-concept:C1880266 | lld:lifeskim |
pubmed-article:10907796 | pubmed:issue | 3 | lld:pubmed |
pubmed-article:10907796 | pubmed:dateCreated | 2000-11-9 | lld:pubmed |
pubmed-article:10907796 | pubmed:abstractText | Because oxidative stress is one of the main sources of severe cellular damage, cells have different defense weapons against reactive oxygen species. Ubiquitous plasma membrane redox systems play a role in defense against oxidative stress damage. On the other hand, a tightly controlled and localized production of reactive oxygen species by a plasma membrane NADPH oxidase can be used as a potent microbicidal weapon. This dual, prooxidant and antioxidant role of plasma membrane electron transport systems in defense is studied and discussed. | lld:pubmed |
pubmed-article:10907796 | pubmed:language | eng | lld:pubmed |
pubmed-article:10907796 | pubmed:journal | http://linkedlifedata.com/r... | lld:pubmed |
pubmed-article:10907796 | pubmed:citationSubset | IM | lld:pubmed |
pubmed-article:10907796 | pubmed:chemical | http://linkedlifedata.com/r... | lld:pubmed |
pubmed-article:10907796 | pubmed:chemical | http://linkedlifedata.com/r... | lld:pubmed |
pubmed-article:10907796 | pubmed:chemical | http://linkedlifedata.com/r... | lld:pubmed |
pubmed-article:10907796 | pubmed:status | MEDLINE | lld:pubmed |
pubmed-article:10907796 | pubmed:issn | 1040-9238 | lld:pubmed |
pubmed-article:10907796 | pubmed:author | pubmed-author:Núñez de... | lld:pubmed |
pubmed-article:10907796 | pubmed:author | pubmed-author:MedinaM AMA | lld:pubmed |
pubmed-article:10907796 | pubmed:author | pubmed-author:del... | lld:pubmed |
pubmed-article:10907796 | pubmed:issnType | Print | lld:pubmed |
pubmed-article:10907796 | pubmed:volume | 35 | lld:pubmed |
pubmed-article:10907796 | pubmed:owner | NLM | lld:pubmed |
pubmed-article:10907796 | pubmed:authorsComplete | Y | lld:pubmed |
pubmed-article:10907796 | pubmed:pagination | 197-220 | lld:pubmed |
pubmed-article:10907796 | pubmed:dateRevised | 2006-11-15 | lld:pubmed |
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pubmed-article:10907796 | pubmed:year | 2000 | lld:pubmed |
pubmed-article:10907796 | pubmed:articleTitle | Dual role of plasma membrane electron transport systems in defense. | lld:pubmed |
pubmed-article:10907796 | pubmed:affiliation | Department of Biochemistry and Molecular Biology, Medical College of Virginia, Virginia Commonwealth University, Richmond 23298-0614, USA. | lld:pubmed |
pubmed-article:10907796 | pubmed:publicationType | Journal Article | lld:pubmed |
pubmed-article:10907796 | pubmed:publicationType | Review | lld:pubmed |
pubmed-article:10907796 | pubmed:publicationType | Research Support, Non-U.S. Gov't | lld:pubmed |
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