@prefix this: . @prefix sub: . @prefix beldoc: . @prefix rdfs: . @prefix rdf: . @prefix xsd: . @prefix dct: . @prefix dce: . @prefix pav: . @prefix np: . @prefix belv: . @prefix prov: . @prefix chebi: . @prefix sdis: . @prefix mesh: . @prefix obo: . @prefix occursIn: . @prefix species: . @prefix pubmed: . @prefix orcid: . sub:Head { this: np:hasAssertion sub:assertion; np:hasProvenance sub:provenance; np:hasPublicationInfo sub:pubinfo; a np:Nanopublication . } sub:assertion { sub:_1 rdf:object mesh:D006984; rdf:predicate belv:increases; rdf:subject sdis:mechanical%20stress; a rdf:Statement . sub:_2 occursIn: obo:CL_0000746, obo:UBERON_0000948, species:10090; rdf:object sub:_1; rdf:predicate belv:decreases; rdf:subject chebi:3347; a rdf:Statement . sub:assertion rdfs:label "a(CHEBI:candesartan) -| (path(SDIS:\"mechanical stress\") -> path(MESHD:Hypertrophy))", "path(SDIS:\"mechanical stress\") -> path(MESHD:Hypertrophy)" . } sub:provenance { beldoc: dce:description "Approximately 61,000 statements."; dce:rights "Copyright (c) 2011-2012, Selventa. All rights reserved."; dce:title "BEL Framework Large Corpus Document"; pav:authoredBy sub:_4; pav:version "20131211" . sub:_3 prov:value "the development of cardiac hypertrophy was significantly attenuated by candesartan (heart weight, 145 ± 21 mg; Fig. 5). These results suggest that mechanical stress can induce cardiac hypertrophy in vivo by activating the AT1 receptor without the involvement of AII."; prov:wasQuotedFrom pubmed:15146194 . sub:_4 rdfs:label "Selventa" . sub:assertion prov:hadPrimarySource pubmed:15146194; prov:wasDerivedFrom beldoc:, sub:_3 . } sub:pubinfo { this: dct:created "2014-07-03T14:32:21.227+02:00"^^xsd:dateTime; pav:createdBy orcid:0000-0001-6818-334X, orcid:0000-0002-1267-0234 . }