GeneSet Information

Tier II GS223410 • Blood pressure QTL 345 (Bp345 Published QTL Chr 3)

DESCRIPTION:

QTL Associated with Blood pressure. On Chromosome 3 with a LOD score= , p-value =0.001. From a(n) of

LABEL:

QTL-Bp345-Rat-Chr 3

SCORE TYPE:

Binary

DATE ADDED:

2015-06-10

DATE UPDATED:

2024-04-25

SPECIES:

AUTHORS:

Deng AY, Nattel S, Shi Y, L'heureux N, Cardin S, Ménard A, Roy J, Tardif JC

TITLE:

Distinct genomic replacements from Lewis correct diastolic dysfunction, attenuate hypertension, and reduce left ventricular hypertrophy in Dahl salt-sensitive rats.

JOURNAL:

Journal of hypertension None None, Vol 26, pp. 1935-43

ABSTRACT:

1. J Hypertens. 2008 Oct;26(10):1935-43. doi: 10.1097/HJH.0b013e32830a9a5e. Distinct genomic replacements from Lewis correct diastolic dysfunction, attenuate hypertension, and reduce left ventricular hypertrophy in Dahl salt-sensitive rats. Deng AY(1), Nattel S, Shi Y, L'heureux N, Cardin S, Ménard A, Roy J, Tardif JC. Author information: (1)Research Centre, Centre hospitalier de l'Université de Montréal, Montréal, Québec, Canada. alan.deng@umontreal.ca BACKGROUND: Hypertension and diastolic heart failure are two common cardiovascular diseases that inflict heavy morbidity and mortality, yet relatively little is understood about their pathophysiology. The identification of quantitative trait loci for blood pressure is important in unveiling the causes of polygenic hypertension. Although Dahl salt-sensitive strain is also an excellent model for the study of diastolic heart failure, virtually nothing is known about the quantitative trait loci determining diastolic heart failure. Diastolic dysfunction often represents the onset of diastolic heart failure. METHODS: We first characterized the cardiac phenotype of Dahl salt-sensitive strain and normotensive Lewis control rats by echocardiography to ascertain diastolic function. We then analyzed corresponding features of four newly developed and two existing congenic strains, each of which carries a specific chromosome substitution of Dahl salt-sensitive strain by its Lewis homologue and each lowering blood pressure. RESULTS: Dahl salt-sensitive strain displayed diastolic dysfunction that was rectified in two of six congenic strains, designated as positive congenic strains, which represent the first rodent models exhibiting functional normalization of diastolic dysfunction caused by naturally occurring genetic variants. The two positive congenic strains also showed a reduction in left ventricular mass. In contrast, four of six congenic strains did not change diastolic function despite their blood pressure-lowering effects. CONCLUSION: Genes present in the replaced chromosome segments of the two positive congenic strains are not commonly known to affect blood pressure, diastolic function or left ventricular mass. Consequently, novel prognostic, diagnostic and therapeutic strategies for hypertensive diastolic heart failure likely emerge from this work. PMID: 18806617 [PubMed - indexed for MEDLINE] PUBMED: 18806617
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