Literature DB >> 23314184

Dopamine prevents impairment of autoregulation after traumatic brain injury in the newborn pig through inhibition of Up-regulation of endothelin-1 and extracellular signal-regulated kinase mitogen-activated protein kinase.

William M Armstead1, John Riley, Monica S Vavilala.   

Abstract

OBJECTIVE: Traumatic brain injury contributes to morbidity in children and boys are disproportionately represented. Autoregulation is impaired more in male compared with female piglets after traumatic brain injury through sex-dependent up-regulation of the spasmogen endothelin-1 and extracellular signal-regulated kinase (ERK) mitogen-activated protein kinase (MAPK), a family of three kinases: ERK, p38, and JNK). Elevation of mean arterial pressure leading to increased cerebral perfusion pressure via phenylephrine improves impairment of autoregulation after traumatic brain injury in female but not male piglets through modulation of endothelin-1 and ERK MAPK up-regulation, blocked in females, but aggravated in males. We hypothesized that pressor choice to elevate cerebral perfusion pressure is important in improving cerebral hemodynamics after traumatic brain injury and that dopamine will prevent impairment of autoregulation in both male and female piglets through blockade of endothelin-1 and ERK MAPK.
DESIGN: Prospective, randomized animal study.
SETTING: University laboratory.
SUBJECTS: Newborn (1-5 days old) pigs.
INTERVENTIONS: Cerebral perfusion pressure and pial artery diameter were determined before and after lateral fluid percussion brain injury was produced in piglets equipped with a closed cranial window. Dopamine (15 µg/kg/min IV) was administered 30 mins post fluid percussion injury. Cerebrospinal fluid ERK MAPK was determined by enzyme-linked immunosorbent assay.
MEASUREMENTS AND MAIN RESULTS: Dopamine increased cerebral perfusion pressure equivalently in both sexes and prevented sex-dependent reductions in pial artery diameter after fluid percussion injury. Loss of pial artery dilation during hypotension was greater in male than in female piglets after fluid percussion injury, but dopamine prevented such impairment equivalently in both sexes post injury. endothelin-1 and ERK MAPK release was greater in male compared to female piglets after fluid percussion injury, but dopamine also blocked their up-regulation equivalently in male and female piglets after fluid percussion injury.
CONCLUSIONS: These data indicate that dopamine is protective of autoregulation after fluid percussion injury in both sexes. These observations advocate for the consideration of development of sex based therapies for treatment of hemodynamic sequalae of pediatric traumatic brain injury.

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Year:  2013        PMID: 23314184      PMCID: PMC3567252          DOI: 10.1097/PCC.0b013e3182712b44

Source DB:  PubMed          Journal:  Pediatr Crit Care Med        ISSN: 1529-7535            Impact factor:   3.624


  29 in total

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3.  Adrenomedullin reduces gender-dependent loss of hypotensive cerebrovasodilation after newborn brain injury through activation of ATP-dependent K channels.

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4.  Contrasting effects of dopamine therapy in experimental brain injury.

Authors:  A Beaumont; K Hayasaki; A Marmarou; P Barzo; P Fatouros; F Corwin
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5.  Impaired cerebral blood flow autoregulation during posttraumatic arterial hypotension after fluid percussion brain injury is prevented by phenylephrine in female but exacerbated in male piglets by extracellular signal-related kinase mitogen-activated protein kinase upregulation.

Authors:  William M Armstead; J Willis Kiessling; W Andrew Kofke; Monica S Vavilala
Journal:  Crit Care Med       Date:  2010-09       Impact factor: 7.598

6.  Role of endothelin-1 in age-dependent cerebrovascular hypotensive responses after brain injury.

Authors:  W M Armstead
Journal:  Am J Physiol       Date:  1999-11

7.  Phenylephrine infusion prevents impairment of ATP- and calcium-sensitive potassium channel-mediated cerebrovasodilation after brain injury in female, but aggravates impairment in male, piglets through modulation of ERK MAPK upregulation.

Authors:  William M Armstead; J Willis Kiessling; John Riley; W Andrew Kofke; Monica S Vavilala
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8.  uPA modulates the age-dependent effect of brain injury on cerebral hemodynamics through LRP and ERK MAPK.

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9.  Brain injury impairs ATP-sensitive K+ channel function in piglet cerebral arteries.

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10.  Effect of cerebral perfusion pressure augmentation with dopamine and norepinephrine on global and focal brain oxygenation after traumatic brain injury.

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Authors:  Nicole D Osier; C Edward Dixon
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2.  The differential effects of norepinephrine and dopamine on cerebrospinal fluid pressure and spinal cord perfusion pressure after acute human spinal cord injury.

Authors:  F Altaf; D E Griesdale; L Belanger; L Ritchie; J Markez; T Ailon; M C Boyd; S Paquette; C G Fisher; J Street; M F Dvorak; B K Kwon
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3.  Improving Understanding and Outcomes of Traumatic Brain Injury Using Bidirectional Translational Research.

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Review 4.  Translational approach towards determining the role of cerebral autoregulation in outcome after traumatic brain injury.

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Review 5.  Neonatal cerebrovascular autoregulation.

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Review 7.  Sex-related responses after traumatic brain injury: Considerations for preclinical modeling.

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Review 8.  Cerebral Blood Flow Autoregulation and Dysautoregulation.

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