Publication:
Rosmarinic acid improves hypertension and skeletal muscle glucose transport in angiotensin II-treated rats

dc.contributor.authorPrasannarong M.
dc.contributor.authorSaengsirisuwan V.
dc.contributor.authorSurapongchai J.
dc.contributor.authorBuniam J.
dc.contributor.authorChukijrungroat N.
dc.contributor.authorRattanavichit Y.
dc.date.accessioned2021-04-05T03:02:50Z
dc.date.available2021-04-05T03:02:50Z
dc.date.issued2019
dc.date.issuedBE2562
dc.description.abstractBackground: Rosmarinic acid (RA) is a natural pure compound from herbs belonging to the Lamiaceae family, such as rosemary, sage, basil, and mint. The antioxidant, angiotensin-converting enzyme inhibitory, and vasodilatory effects of RA have been revealed. Angiotensin II (ANG II) is a potent agent that generates hypertension and oxidative stress. Hypertension and skeletal muscle insulin resistance are strongly related. The aim of this study was to evaluate the effects of acute and chronic RA treatment on blood pressure and skeletal muscle glucose transport in ANG II-induced hypertensive rats. Methods: Eight-week-old male Sprague Dawley rats were separated into SHAM and ANG II-infused (250 ng/kg/min) groups. ANG II rats were treated with or without acute or chronic RA at 10, 20, or 40 mg/kg. At the end of the experiment, body weight, liver and heart weights, oral glucose tolerance, skeletal muscle glucose transport activity, and signaling proteins were evaluated. Results: Both acute and chronic RA treatment decreased systolic, diastolic, and mean arterial blood pressure. Only acute RA at 40 mg/kg resulted in a reduction of fasting plasma glucose levels and an induction of skeletal muscle glucose transport activity. These effects might involve increased ERK activity in skeletal muscle. Meanwhile, chronic RA treatment with 10, 20, and 40 mg/kg prevented ANG II-induced hyperglycemia. Conclusions: Both acute and chronic RA treatment attenuated ANG II-induced cardiometabolic abnormalities in rats. Therefore, RA would be an alternative strategy for improving skeletal muscle glucose transport and protecting against ANG II-induced hypertension and hyperglycemia. © 2019 The Author(s).
dc.format.mimetypeapplication/pdf
dc.identifier.citationBMC Complementary and Alternative Medicine. Vol 19, No.1 (2019)
dc.identifier.doi10.1186/s12906-019-2579-4
dc.identifier.issn14726882
dc.identifier.other2-s2.0-85068844277
dc.identifier.urihttps://hdl.handle.net/20.500.14740/5208
dc.rights.holderScopus
dc.subject.otherAngiotensin II
dc.subject.otherGlucose
dc.subject.otherGlyceraldehyde 3 phosphate dehydrogenase
dc.subject.otherGlycogen synthase kinase 3alpha
dc.subject.otherGlycogen synthase kinase 3beta
dc.subject.otherJanus kinase
dc.subject.otherMitogen activated protein kinase
dc.subject.otherMitogen activated protein kinase 1
dc.subject.otherMitogen activated protein kinase 3
dc.subject.otherMitogen activated protein kinase p38
dc.subject.otherProtein kinase B
dc.subject.otherRosmarinic acid
dc.subject.otherAngiotensin II
dc.subject.otherCinnamic acid derivative
dc.subject.otherDepside
dc.subject.otherGlucose
dc.subject.otherInsulin
dc.subject.otherRosmarinic acid
dc.subject.otherAnimal tissue
dc.subject.otherArticle
dc.subject.otherBody weight
dc.subject.otherControlled study
dc.subject.otherDiastolic blood pressure
dc.subject.otherDrug effect
dc.subject.otherEnzyme activity
dc.subject.otherGlucose blood level
dc.subject.otherGlucose transport
dc.subject.otherHeart weight
dc.subject.otherHypertension
dc.subject.otherLiver weight
dc.subject.otherLong term care
dc.subject.otherMale
dc.subject.otherMean arterial pressure
dc.subject.otherNonhuman
dc.subject.otherOral glucose tolerance test
dc.subject.otherRat
dc.subject.otherSham procedure
dc.subject.otherSingle drug dose
dc.subject.otherSkeletal muscle
dc.subject.otherSprague Dawley rat
dc.subject.otherSystolic blood pressure
dc.subject.otherTreatment duration
dc.subject.otherAnimal
dc.subject.otherBlood pressure
dc.subject.otherHypertension
dc.subject.otherMetabolism
dc.subject.otherOrgan size
dc.subject.otherSignal transduction
dc.subject.otherSkeletal muscle
dc.subject.otherAngiotensin II
dc.subject.otherAnimals
dc.subject.otherBlood Pressure
dc.subject.otherBody Weight
dc.subject.otherCinnamates
dc.subject.otherDepsides
dc.subject.otherGlucose
dc.subject.otherHypertension
dc.subject.otherInsulin
dc.subject.otherMale
dc.subject.otherMuscle, Skeletal
dc.subject.otherOrgan Size
dc.subject.otherRats
dc.subject.otherRats, Sprague-Dawley
dc.subject.otherSignal Transduction
dc.titleRosmarinic acid improves hypertension and skeletal muscle glucose transport in angiotensin II-treated rats
dc.typeArticle
dspace.entity.typePublication
swu.datasource.scopushttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85068844277&doi=10.1186%2fs12906-019-2579-4&partnerID=40&md5=2fc5ced36ddc1e5c6efdca0b01009e8c

Files