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PubMed:25451290 / 312-557 JSONTXT

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PubMed_ArguminSci

Id Subject Object Predicate Lexical cue
T2 0-245 DRI_Approach denotes We have studied whether this response involves ATP-sensitive potassium (KATP) channels, which are known to be involved in the hypoxic/ischemic defense of mammalian neural and muscular tissues, by causing hyperpolarization and reduced ATP demand.

Goldhamster2_Cellosaurus

Id Subject Object Predicate Lexical cue
T5 0-2 CVCL_5M23|Cancer_cell_line|Mesocricetus auratus denotes We

GoldHamster

Id Subject Object Predicate Lexical cue
T14 47-50 318 denotes ATP
T13 47-50 D000255 denotes ATP
T15 47-50 CHEBI:30616 denotes ATP
T16 47-50 D000255 denotes ATP
T17 47-50 CHEBI:15422 denotes ATP
T21 61-70 8588 denotes potassium
T18 61-70 D011188 denotes potassium
T19 61-70 D011188 denotes potassium
T20 61-70 CHEBI:26216 denotes potassium
T22 72-86 D054086 denotes KATP) channels
T24 234-237 318 denotes ATP
T23 234-237 D000255 denotes ATP
T25 234-237 CHEBI:30616 denotes ATP
T26 234-237 D000255 denotes ATP
T27 234-237 CHEBI:15422 denotes ATP