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Chromosome substitution modulates resistance to ischemia reperfusion injury in Brown Norway rats

Brown Norway rats (BN, BN/NHsdMcwi) are profoundly resistant to developing acute kidney injury (AKI) following ischemia reperfusion. To help define the genetic basis for this resistance, we used consomic rats, in which individual chromosomes from BN rats were placed into the genetic background of Da...

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Autores principales: Basile, David P., Dwinell, Melinda R., Wang, Shur-Jen, Shames, Brian D., Donohoe, Deborah, Chen, Shaoying, Sreedharan, Rajasree, Van Why, Scott K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3561482/
https://www.ncbi.nlm.nih.gov/pubmed/23235564
http://dx.doi.org/10.1038/ki.2012.391
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author Basile, David P.
Dwinell, Melinda R.
Wang, Shur-Jen
Shames, Brian D.
Donohoe, Deborah
Chen, Shaoying
Sreedharan, Rajasree
Van Why, Scott K.
author_facet Basile, David P.
Dwinell, Melinda R.
Wang, Shur-Jen
Shames, Brian D.
Donohoe, Deborah
Chen, Shaoying
Sreedharan, Rajasree
Van Why, Scott K.
author_sort Basile, David P.
collection PubMed
description Brown Norway rats (BN, BN/NHsdMcwi) are profoundly resistant to developing acute kidney injury (AKI) following ischemia reperfusion. To help define the genetic basis for this resistance, we used consomic rats, in which individual chromosomes from BN rats were placed into the genetic background of Dahl SS rats (SS, SS/JrHsdMcwi) to determine which chromosomes contain alleles contributing to protection from AKI. The parental strains had dramatically different sensitivity to ischemia reperfusion with plasma creatinine levels following 45 minutes of ischemia and 24 hours reperfusion of 4.1 and 1.3 mg/dl in SS and in BN, respectively. No consomic strain showed protection similar to the parental BN strain. Nine consomic strains (SS-7BN, SS-XBN, SS-8BN, SS-4BN, SS-15BN, SS-3BN, SS-10BN, SS-6BN, and SS-5BN) showed partial protection (plasma creatinine about 2.5-3.0 mg/dl), suggesting that multiple alleles contribute to the severity of AKI. In silico analysis was performed using disease ontology database terms and renal function quantitative trait loci from the rat genome database on the BN chromosomes giving partial protection from AKI. This tactic identified at least 36 candidate genes, with several previously linked to the pathophysiology of AKI. Thus, natural variants of these alleles or yet to be identified alleles on these chromosomes provide protection against AKI. These alleles may be potential modulators of AKI in susceptible patient populations.
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spelling pubmed-35614822013-08-01 Chromosome substitution modulates resistance to ischemia reperfusion injury in Brown Norway rats Basile, David P. Dwinell, Melinda R. Wang, Shur-Jen Shames, Brian D. Donohoe, Deborah Chen, Shaoying Sreedharan, Rajasree Van Why, Scott K. Kidney Int Article Brown Norway rats (BN, BN/NHsdMcwi) are profoundly resistant to developing acute kidney injury (AKI) following ischemia reperfusion. To help define the genetic basis for this resistance, we used consomic rats, in which individual chromosomes from BN rats were placed into the genetic background of Dahl SS rats (SS, SS/JrHsdMcwi) to determine which chromosomes contain alleles contributing to protection from AKI. The parental strains had dramatically different sensitivity to ischemia reperfusion with plasma creatinine levels following 45 minutes of ischemia and 24 hours reperfusion of 4.1 and 1.3 mg/dl in SS and in BN, respectively. No consomic strain showed protection similar to the parental BN strain. Nine consomic strains (SS-7BN, SS-XBN, SS-8BN, SS-4BN, SS-15BN, SS-3BN, SS-10BN, SS-6BN, and SS-5BN) showed partial protection (plasma creatinine about 2.5-3.0 mg/dl), suggesting that multiple alleles contribute to the severity of AKI. In silico analysis was performed using disease ontology database terms and renal function quantitative trait loci from the rat genome database on the BN chromosomes giving partial protection from AKI. This tactic identified at least 36 candidate genes, with several previously linked to the pathophysiology of AKI. Thus, natural variants of these alleles or yet to be identified alleles on these chromosomes provide protection against AKI. These alleles may be potential modulators of AKI in susceptible patient populations. 2012-12-12 2013-02 /pmc/articles/PMC3561482/ /pubmed/23235564 http://dx.doi.org/10.1038/ki.2012.391 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Basile, David P.
Dwinell, Melinda R.
Wang, Shur-Jen
Shames, Brian D.
Donohoe, Deborah
Chen, Shaoying
Sreedharan, Rajasree
Van Why, Scott K.
Chromosome substitution modulates resistance to ischemia reperfusion injury in Brown Norway rats
title Chromosome substitution modulates resistance to ischemia reperfusion injury in Brown Norway rats
title_full Chromosome substitution modulates resistance to ischemia reperfusion injury in Brown Norway rats
title_fullStr Chromosome substitution modulates resistance to ischemia reperfusion injury in Brown Norway rats
title_full_unstemmed Chromosome substitution modulates resistance to ischemia reperfusion injury in Brown Norway rats
title_short Chromosome substitution modulates resistance to ischemia reperfusion injury in Brown Norway rats
title_sort chromosome substitution modulates resistance to ischemia reperfusion injury in brown norway rats
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3561482/
https://www.ncbi.nlm.nih.gov/pubmed/23235564
http://dx.doi.org/10.1038/ki.2012.391
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