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Blood pressure, heart rate and tubuloglomerular feedback in A1AR-deficient mice with different genetic backgrounds

  • S. M. Kim
  • , D. Mizel
  • , Y. Qin
  • , Y. Huang
  • , J. Schnermann*
  • *Corresponding author for this work
  • National Institutes of Health

Research output: Contribution to journalJournal articlepeer-review

Abstract

Aim: Differences in genetic background between control mice and mice with targeted gene mutations have been recognized as a potential cause for phenotypic differences. In this study, we have used A1AR-deficient mice in a C57Bl/6 and SWR/J congenic background to assess the influence of background on the effect of A1AR-deficiency on cardiovascular and renal functional parameters. Methods: In A1AR+/+ and A1AR−/− mice in C57Bl/6 and SWR/J congenic backgrounds, we assessed blood pressure and heart rate using radio-telemetry, plasma renin concentrations and tubuloglomerular feedback. Results: We did not detect significant differences in arterial blood pressure (MAP) and heart rates (HR) between A1AR+/+ and A1AR−/− mice in either C57Bl/6, SWR/J or mixed backgrounds. MAP and HR were significantly higher in SWR/J than in C57Bl/6 mice. A high NaCl intake increased MAP in A1AR−/− mice on C57Bl/6 background while there was less or no salt sensitivity in the SWR/J background. No significant differences in plasma renin concentration were detected between A1AR−/− and A1AR+/+ mice in any of the strains. Tubuloglomerular feedback was found to be absent in A1AR−/− mice with SWR/J genetic background. Conclusions: While this study confirmed important differences between inbred mouse strains, we did not identify phenotypic modifications of A1AR-related effects on blood pressure, heart rate and plasma renin by differences in genetic background.

Original languageEnglish
Pages (from-to)259-267
Number of pages9
JournalActa Physiologica
Volume213
Issue number1
DOIs
StatePublished - 2015

Keywords

  • adenosine
  • blood pressure telemetry
  • C57Bl/6 mice
  • micropuncture
  • SWR/J mice

Quacquarelli Symonds(QS) Subject Topics

  • Anatomy & Physiology

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