Literature DB >> 1877683

Two new inbred rat strains derived from SHR: WKHA, hyperactive, and WKHT, hypertensive, rats.

E D Hendley1, W G Ohlsson.   

Abstract

Two new strains of inbred rats have been developed. One, WKHA, exhibits hyperactivity, and the other, WKHT, exhibits hypertension. Both of these traits are expressed in the SHR. By crossing spontaneously hypertensive rats (SHRs) with Wistar-Kyoto (WKY) controls, followed by recombinant selected inbreeding, we succeeded in genetically separating the hyperactivity from the hypertension in two new strains. Longitudinal studies indicate a persistence of hypertension without hyperactivity in WKHTs, and hyperactivity without hypertension in WKHAs, over at least 1 year. Ventricular enlargement, another characteristic of SHRs, was observed in adult WKHTs after the onset of hypertension; however, ventricles were already enlarged in normotensive WKHAs at 6 wk. The emergent behavioral profile of WKHAs indicates that they retain the hyperactivity trait and hyperreactivity to stress, and not some of the other behaviors of SHRs, such as poor habituation. Studies in WKHTs suggest that they are an improvement over SHRs as a model of genetic hypertension as they lack some prominent behavioral abnormalities. Nevertheless, the four genetically related strains (WKHA, WKHT, SHR, and WKY), used together, are considered most appropriate for seeking correlations of biological differences with either hypertension or hyperactivity.

Entities:  

Mesh:

Year:  1991        PMID: 1877683     DOI: 10.1152/ajpheart.1991.261.2.H583

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  16 in total

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Authors:  I Kadish; T van Groen; J M Wyss
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2.  QTL mapping for traits associated with stress neuroendocrine reactivity in rats.

Authors:  Bastien Llamas; Vincent Contesse; Véronique Guyonnet-Duperat; Hubert Vaudry; Pierre Mormède; Marie-Pierre Moisan
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3.  The characteristics of motor activity in ISIAH rats in an open field test are controlled by genes on chromosomes 2 and 16.

Authors:  O E Redina; S E Smolenskaya; L N Maslova; D G Sakharov; A L Markel'
Journal:  Neurosci Behav Physiol       Date:  2008-12-17

4.  Stimulus processing and associative learning in Wistar and WKHA rats.

Authors:  Amy C Chess; Christopher S Keene; Elizabeth C Wyzik; David J Bucci
Journal:  Behav Neurosci       Date:  2005-06       Impact factor: 1.912

Review 5.  The role of the kidney and the sympathetic nervous system in hypertension.

Authors:  Philip Thomas; Indranil Dasgupta
Journal:  Pediatr Nephrol       Date:  2014-03-08       Impact factor: 3.714

Review 6.  Animal models to guide clinical drug development in ADHD: lost in translation?

Authors:  Jeffery R Wickens; Brian I Hyland; Gail Tripp
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7.  Distinct QTLs are linked to cardiac left ventricular mass in a sex-specific manner in a normotensive inbred rat inter-cross.

Authors:  Bastien Llamas; Zhibin Jiang; Marie-Line Rainville; Sylvie Picard; Christian F Deschepper
Journal:  Mamm Genome       Date:  2005-10-20       Impact factor: 2.957

Review 8.  Cardioprotective actions of cyclic GMP: lessons from genetic animal models.

Authors:  Christian F Deschepper
Journal:  Hypertension       Date:  2009-12-14       Impact factor: 10.190

9.  Medial temporal lobe functioning and structure in the spontaneously hypertensive rat: comparison with Wistar-Kyoto normotensive and Wistar-Kyoto hypertensive strains.

Authors:  Audrey M Wells; Amy C Janes; Xiaoxu Liu; Christian F Deschepper; Marc J Kaufman; Kathleen M Kantak
Journal:  Hippocampus       Date:  2010-06       Impact factor: 3.899

10.  QTL analyses of temporal and intensity components of home-cage activity in KJR and C57BL/6J strains.

Authors:  Juzoh Umemori; Akinori Nishi; Arimantas Lionikas; Takayuki Sakaguchi; Satoshi Kuriki; David A Blizard; Tsuyoshi Koide
Journal:  BMC Genet       Date:  2009-07-29       Impact factor: 2.797

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