PubMed:25393740
Annnotations
PubMed_ArguminSci
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
T1 | 88-341 | DRI_Background | denotes | In response to hypoxia and other stress, the sympathetic (adrenergic) nervous system regulates arterial contractility and blood flow, partly through differential activities of the alpha1 (α1) - adrenergic receptor (AR) subtypes (α1A-, α1B-, and α1D-AR). |
T2 | 342-559 | DRI_Approach | denotes | Thus, we tested the hypothesis that with acclimatization to long-term hypoxia (LTH), contractility of middle cerebral arteries (MCA) is regulated by changes in expression and activation of the specific α1-AR subtypes. |
T3 | 560-698 | DRI_Approach | denotes | We conducted experiments in MCA from adult normoxic sheep maintained near sea level (300 m) and those exposed to LTH (110 days at 3801 m). |
T4 | 699-844 | DRI_Approach | denotes | Following acclimatization to LTH, ovine MCA showed a 20% reduction (n = 5; P<0.05) in the maximum tension achieved by 10-5 M phenylephrine (PHE). |
T5 | 845-1029 | DRI_Outcome | denotes | LTH-acclimatized cerebral arteries also demonstrated a statistically significant (P<0.05) inhibition of PHE-induced contractility in the presence of specific α1-AR subtype antagonists. |
T6 | 1030-1177 | DRI_Outcome | denotes | Importantly, compared to normoxic vessels, there was significantly greater (P<0.05) α1B-AR subtype mRNA and protein levels in LTH acclimatized MCA. |
T7 | 1178-1359 | DRI_Outcome | denotes | Also, our results demonstrate that extracellular regulated kinase 1 and 2 (ERK1/2)-mediated negative feedback regulation of PHE-induced contractility is modulated by α1B-AR subtype. |
T8 | 1360-1454 | DRI_Background | denotes | Overall, in ovine MCA, LTH produces profound effects on α1-AR subtype expression and function. |
Goldhamster2_Cellosaurus
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
T1 | 250-260 | CVCL_C410|Hybridoma|Mus musculus | denotes | activities |
T2 | 319-320 | CVCL_6479|Finite_cell_line|Mus musculus | denotes | A |
T3 | 325-326 | CVCL_6480|Finite_cell_line|Mus musculus | denotes | B |
T4 | 335-339 | CVCL_W749|Transformed_cell_line|Homo sapiens | denotes | D-AR |
T5 | 348-350 | CVCL_5M23|Cancer_cell_line|Mesocricetus auratus | denotes | we |
T6 | 470-473 | CVCL_ZC21|Cancer_cell_line|Homo sapiens | denotes | MCA |
T7 | 491-498 | CVCL_0238|Cancer_cell_line|Homo sapiens | denotes | changes |
T8 | 517-527 | CVCL_C410|Hybridoma|Mus musculus | denotes | activation |
T9 | 560-562 | CVCL_5M23|Cancer_cell_line|Mesocricetus auratus | denotes | We |
T10 | 588-591 | CVCL_ZC21|Cancer_cell_line|Homo sapiens | denotes | MCA |
T11 | 739-742 | CVCL_ZC21|Cancer_cell_line|Homo sapiens | denotes | MCA |
T12 | 750-754 | CVCL_1940|Cancer_cell_line|Mus musculus | denotes | a 20 |
T13 | 750-754 | CVCL_Z353|Spontaneously_immortalized_cell_line|Aedes aegypti | denotes | a 20 |
T14 | 750-751 | CVCL_6479|Finite_cell_line|Mus musculus | denotes | a |
T15 | 752-754 | CVCL_J923|Hybridoma|Mus musculus | denotes | 20 |
T16 | 898-899 | CVCL_6479|Finite_cell_line|Mus musculus | denotes | a |
T17 | 1116-1117 | CVCL_6480|Finite_cell_line|Mus musculus | denotes | B |
T18 | 1173-1176 | CVCL_ZC21|Cancer_cell_line|Homo sapiens | denotes | MCA |
T19 | 1246-1251 | CVCL_B527|Embryonic_stem_cell|Homo sapiens | denotes | and 2 |
T20 | 1346-1347 | CVCL_6480|Finite_cell_line|Mus musculus | denotes | B |
T21 | 1378-1381 | CVCL_ZC21|Cancer_cell_line|Homo sapiens | denotes | MCA |
GoldHamster
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
T2 | 0-15 | UBERON:0004449 | denotes | Cerebral artery |
T1 | 0-15 | D002539 | denotes | Cerebral artery |
T3 | 0-15 | D002539 | denotes | Cerebral artery |
T5 | 16-21 | CHEBI:30216 | denotes | alpha |
T6 | 16-23 | PR:P0CY06 | denotes | alpha-1 |
T7 | 56-60 | original_id | denotes | term |
T11 | 91-110 | GO:0001666 | denotes | response to hypoxia |
T12 | 103-110 | D000860 | denotes | hypoxia |
T13 | 103-110 | D000860 | denotes | hypoxia |
T15 | 158-172 | UBERON:0001016 | denotes | nervous system |
T14 | 158-172 | D009422 | denotes | nervous system |
T16 | 158-172 | D009422 | denotes | nervous system |
T17 | 268-273 | CHEBI:30216 | denotes | alpha |
T18 | 268-274 | PR:P0CY06 | denotes | alpha1 |
T23 | 282-301 | D011941 | denotes | adrenergic receptor |
T41 | 407-411 | original_id | denotes | term |
T42 | 412-419 | D000860 | denotes | hypoxia |
T43 | 412-419 | D000860 | denotes | hypoxia |
T44 | 460-468 | UBERON:0001637 | denotes | arteries |
T46 | 470-473 | P60254 | denotes | MCA |
T45 | 470-473 | CHEBI:34342 | denotes | MCA |
T47 | 478-487 | SO:0000119 | denotes | regulated |
T53 | 588-591 | P60254 | denotes | MCA |
T52 | 588-591 | CHEBI:34342 | denotes | MCA |
T54 | 597-602 | UBERON:0007023 | denotes | adult |
T55 | 612-617 | 9940 | denotes | sheep |
T56 | 612-617 | D012756 | denotes | sheep |
T57 | 634-637 | PR:000000735 | denotes | sea |
T58 | 733-738 | D012757 | denotes | ovine |
T59 | 733-738 | D012757 | denotes | ovine |
T61 | 739-742 | P60254 | denotes | MCA |
T60 | 739-742 | CHEBI:34342 | denotes | MCA |
T64 | 756-765 | MOP:0000569 | denotes | reduction |
T67 | 824-837 | 8163 | denotes | phenylephrine |
T65 | 824-837 | D010656 | denotes | phenylephrine |
T66 | 824-837 | CHEBI:8093 | denotes | phenylephrine |
T68 | 824-837 | D010656 | denotes | phenylephrine |
T71 | 839-842 | SO:0001441 | denotes | PHE |
T69 | 839-842 | CHEBI:32501 | denotes | PHE |
T70 | 839-842 | CHEBI:29997 | denotes | PHE |
T72 | 839-842 | CHEBI:17295 | denotes | PHE |
T73 | 839-842 | CHEBI:32496 | denotes | PHE |
T74 | 839-842 | CHEBI:28044 | denotes | PHE |
T75 | 871-879 | UBERON:0001637 | denotes | arteries |
T78 | 949-952 | SO:0001441 | denotes | PHE |
T76 | 949-952 | CHEBI:32501 | denotes | PHE |
T77 | 949-952 | CHEBI:29997 | denotes | PHE |
T79 | 949-952 | CHEBI:17295 | denotes | PHE |
T80 | 949-952 | CHEBI:32496 | denotes | PHE |
T81 | 949-952 | CHEBI:28044 | denotes | PHE |
T86 | 1017-1028 | CHEBI:48706 | denotes | antagonists |
T97 | 1129-1133 | SO:0000234 | denotes | mRNA |
T95 | 1129-1133 | D012333 | denotes | mRNA |
T96 | 1129-1133 | CHEBI:33699 | denotes | mRNA |
T98 | 1138-1145 | GO:0003675 | denotes | protein |
T101 | 1138-1145 | PR:000000001 | denotes | protein |
T102 | 1138-1145 | SO:0000104 | denotes | protein |
T99 | 1138-1145 | CHEBI:36080 | denotes | protein |
T100 | 1138-1145 | CHEBI:11122 | denotes | protein |
T104 | 1173-1176 | P60254 | denotes | MCA |
T103 | 1173-1176 | CHEBI:34342 | denotes | MCA |
T105 | 1213-1226 | GO:0005576 | denotes | extracellular |
T106 | 1227-1236 | SO:0000119 | denotes | regulated |
T111 | 1253-1257 | Q63844 | denotes | ERK1 |
T112 | 1253-1257 | P27361 | denotes | ERK1 |
T113 | 1253-1257 | P21708 | denotes | ERK1 |
T114 | 1253-1257 | PR:000000104 | denotes | ERK1 |
T115 | 1253-1257 | PR:P42525 | denotes | ERK1 |
T116 | 1253-1257 | Q5A1D3 | denotes | ERK1 |
T117 | 1253-1257 | P42525 | denotes | ERK1 |
T118 | 1253-1257 | PR:P27361 | denotes | ERK1 |
T119 | 1253-1257 | PR:P21708 | denotes | ERK1 |
T121 | 1253-1257 | PR:Q63844 | denotes | ERK1 |
T122 | 1253-1257 | C4YGK0 | denotes | ERK1 |
T123 | 1253-1257 | PR:Q5A1D3 | denotes | ERK1 |
T120 | 1253-1257 | GO:0004707 | denotes | ERK1 |
T124 | 1288-1298 | GO:0065007 | denotes | regulation |
T127 | 1302-1305 | SO:0001441 | denotes | PHE |
T125 | 1302-1305 | CHEBI:32501 | denotes | PHE |
T126 | 1302-1305 | CHEBI:29997 | denotes | PHE |
T128 | 1302-1305 | CHEBI:17295 | denotes | PHE |
T129 | 1302-1305 | CHEBI:32496 | denotes | PHE |
T130 | 1302-1305 | CHEBI:28044 | denotes | PHE |
T139 | 1372-1377 | D012757 | denotes | ovine |
T140 | 1372-1377 | D012757 | denotes | ovine |
T142 | 1378-1381 | P60254 | denotes | MCA |
T141 | 1378-1381 | CHEBI:34342 | denotes | MCA |
PubmedHPO
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
T1 | 192-205 | HP_0001371 | denotes | contractility |
T2 | 427-440 | HP_0001371 | denotes | contractility |
T3 | 961-974 | HP_0001371 | denotes | contractility |
T4 | 1314-1327 | HP_0001371 | denotes | contractility |