Cardiac troponin T content in heart and skeletal muscle and in blood samples from ApoE/LDL receptor double knockout mice

Background: The isolated perfused mouse heart is a useful experimental model, and cardiac troponin T (cTnT) in coronary effluent may be a sensitive marker of myocardial damage. In recent years, the apolipoprotein E/low-density lipoprotein receptor double knockout (apoE/LDLr KO) mice have become valu...

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Veröffentlicht in:Clinica chimica acta 2004-06, Vol.344 (1), p.73-78
Hauptverfasser: Löwbeer, Christian, Forsberg, Ann-Marie, Tokuno, Shinichi, Hemdahl, Anne-Louise, Gustafsson, Sven A, Valen, Guro
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container_end_page 78
container_issue 1
container_start_page 73
container_title Clinica chimica acta
container_volume 344
creator Löwbeer, Christian
Forsberg, Ann-Marie
Tokuno, Shinichi
Hemdahl, Anne-Louise
Gustafsson, Sven A
Valen, Guro
description Background: The isolated perfused mouse heart is a useful experimental model, and cardiac troponin T (cTnT) in coronary effluent may be a sensitive marker of myocardial damage. In recent years, the apolipoprotein E/low-density lipoprotein receptor double knockout (apoE/LDLr KO) mice have become valuable tools in atherosclerosis research. The aim of the study was to validate measurements of cTnT in heart, skeletal muscle, and serum of apoE/LDLr KO mice. Methods: Wild-type C57BL/6J mice were fed with standard diet, and apoE/LDLr KO mice were fed an atherogenic diet. Blood was sampled from the jugular vein or the thoracic cavity. Heart and femoral skeletal muscle were sampled and homogenized. cTnT was measured with the third-generation cTnT assay (Troponin T STAT) on Elecsys 2010 immunoassay analyser (Roche Diagnostics). Results: Median serum cTnT in samples from the thoracic cavity of C57BL/6J mice was about 20–90 times higher, and from ApoE/LDLr KO mice about 30 times higher than serum cTnT in samples from the external jugular vein. There was no difference in cTnT content (μg cTnT/g heart muscle) in hearts from C57BL/6J and apoE/LDLr KO mice. The median cTnT content in skeletal muscle was less than 0.1% of the cTnT content in heart muscle. Conclusion: There is no difference in cTnT content of heart muscle comparing C57BL/6J and ApoE/LDLr KO mice, which have larger hearts. Sampling from the thoracic cavity causes unacceptably high cTnT levels. Serum cTnT in samples from the jugular vein is only slightly elevated. Elevated baseline levels of cTnT in mice are not caused by troponin T from skeletal muscle.
doi_str_mv 10.1016/j.cccn.2004.02.006
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In recent years, the apolipoprotein E/low-density lipoprotein receptor double knockout (apoE/LDLr KO) mice have become valuable tools in atherosclerosis research. The aim of the study was to validate measurements of cTnT in heart, skeletal muscle, and serum of apoE/LDLr KO mice. Methods: Wild-type C57BL/6J mice were fed with standard diet, and apoE/LDLr KO mice were fed an atherogenic diet. Blood was sampled from the jugular vein or the thoracic cavity. Heart and femoral skeletal muscle were sampled and homogenized. cTnT was measured with the third-generation cTnT assay (Troponin T STAT) on Elecsys 2010 immunoassay analyser (Roche Diagnostics). Results: Median serum cTnT in samples from the thoracic cavity of C57BL/6J mice was about 20–90 times higher, and from ApoE/LDLr KO mice about 30 times higher than serum cTnT in samples from the external jugular vein. There was no difference in cTnT content (μg cTnT/g heart muscle) in hearts from C57BL/6J and apoE/LDLr KO mice. The median cTnT content in skeletal muscle was less than 0.1% of the cTnT content in heart muscle. Conclusion: There is no difference in cTnT content of heart muscle comparing C57BL/6J and ApoE/LDLr KO mice, which have larger hearts. Sampling from the thoracic cavity causes unacceptably high cTnT levels. Serum cTnT in samples from the jugular vein is only slightly elevated. 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In recent years, the apolipoprotein E/low-density lipoprotein receptor double knockout (apoE/LDLr KO) mice have become valuable tools in atherosclerosis research. The aim of the study was to validate measurements of cTnT in heart, skeletal muscle, and serum of apoE/LDLr KO mice. Methods: Wild-type C57BL/6J mice were fed with standard diet, and apoE/LDLr KO mice were fed an atherogenic diet. Blood was sampled from the jugular vein or the thoracic cavity. Heart and femoral skeletal muscle were sampled and homogenized. cTnT was measured with the third-generation cTnT assay (Troponin T STAT) on Elecsys 2010 immunoassay analyser (Roche Diagnostics). Results: Median serum cTnT in samples from the thoracic cavity of C57BL/6J mice was about 20–90 times higher, and from ApoE/LDLr KO mice about 30 times higher than serum cTnT in samples from the external jugular vein. There was no difference in cTnT content (μg cTnT/g heart muscle) in hearts from C57BL/6J and apoE/LDLr KO mice. The median cTnT content in skeletal muscle was less than 0.1% of the cTnT content in heart muscle. Conclusion: There is no difference in cTnT content of heart muscle comparing C57BL/6J and ApoE/LDLr KO mice, which have larger hearts. Sampling from the thoracic cavity causes unacceptably high cTnT levels. Serum cTnT in samples from the jugular vein is only slightly elevated. Elevated baseline levels of cTnT in mice are not caused by troponin T from skeletal muscle.</description><subject>Animals</subject><subject>Apolipoproteins E - deficiency</subject><subject>Arteriosclerosis - diagnosis</subject><subject>Biomarkers - analysis</subject><subject>Biomarkers - blood</subject><subject>Blood Specimen Collection - methods</subject><subject>Cardiac troponin T</subject><subject>Disease Models, Animal</subject><subject>Heart muscle</subject><subject>Jugular Veins</subject><subject>Male</subject><subject>Medicin och hälsovetenskap</subject><subject>Mice</subject><subject>Mice, Knockout</subject><subject>Muscle, Skeletal - chemistry</subject><subject>Myocardium - chemistry</subject><subject>Receptors, LDL - deficiency</subject><subject>Skeletal muscle</subject><subject>Thorax - blood supply</subject><subject>Troponin T - analysis</subject><subject>Troponin T - blood</subject><issn>0009-8981</issn><issn>1873-3492</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2004</creationdate><recordtype>article</recordtype><sourceid>EIF</sourceid><recordid>eNp9kUtv3CAURlHVqpkm_QNdVKy6swM22EbqJpqmD2mkbpI14nGtMmODC7iPf1-mM21WyYp7L-dcJD6E3lBSU0K7631tjPF1QwirSVMT0j1DGzr0bdUy0TxHG0KIqAYx0Av0KqV9aRnp6Et0QTllooAb9GuronXK4BzDErzz-A6b4DP4jEvzDVTMWHmL0wEmyGrC85rMBH9nBdBTCOVSzcsECY8xzPhmCbfXuw87HMHAkkPENqy6KAcfzCGsGc_OwBV6MaopwevzeYnuP97ebT9Xu6-fvmxvdpVh7ZArq6nho-1px3sjStnwEdjQW6LA8rFTBngHQHqtleWWKtW1VGs7ipEwI2x7iarT3vQTllXLJbpZxd8yKCfPo0OpQPKBs4EVvn-UX2KwD9I_kQretq0o5ruTWbDvK6QsZ5cMTJPyENYkeypaRvgRbE6giSGlCOP_RyiRx2TlXh6TlcdkJWlkSbZIb8_bVz2DfVDOURbg_QmA8ps_HESZjANvwLoSRJY2uKf2_wG5v7jq</recordid><startdate>20040601</startdate><enddate>20040601</enddate><creator>Löwbeer, Christian</creator><creator>Forsberg, Ann-Marie</creator><creator>Tokuno, Shinichi</creator><creator>Hemdahl, Anne-Louise</creator><creator>Gustafsson, Sven A</creator><creator>Valen, Guro</creator><general>Elsevier B.V</general><scope>CGR</scope><scope>CUY</scope><scope>CVF</scope><scope>ECM</scope><scope>EIF</scope><scope>NPM</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>7X8</scope><scope>ADTPV</scope><scope>AOWAS</scope></search><sort><creationdate>20040601</creationdate><title>Cardiac troponin T content in heart and skeletal muscle and in blood samples from ApoE/LDL receptor double knockout mice</title><author>Löwbeer, Christian ; 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In recent years, the apolipoprotein E/low-density lipoprotein receptor double knockout (apoE/LDLr KO) mice have become valuable tools in atherosclerosis research. The aim of the study was to validate measurements of cTnT in heart, skeletal muscle, and serum of apoE/LDLr KO mice. Methods: Wild-type C57BL/6J mice were fed with standard diet, and apoE/LDLr KO mice were fed an atherogenic diet. Blood was sampled from the jugular vein or the thoracic cavity. Heart and femoral skeletal muscle were sampled and homogenized. cTnT was measured with the third-generation cTnT assay (Troponin T STAT) on Elecsys 2010 immunoassay analyser (Roche Diagnostics). Results: Median serum cTnT in samples from the thoracic cavity of C57BL/6J mice was about 20–90 times higher, and from ApoE/LDLr KO mice about 30 times higher than serum cTnT in samples from the external jugular vein. There was no difference in cTnT content (μg cTnT/g heart muscle) in hearts from C57BL/6J and apoE/LDLr KO mice. The median cTnT content in skeletal muscle was less than 0.1% of the cTnT content in heart muscle. Conclusion: There is no difference in cTnT content of heart muscle comparing C57BL/6J and ApoE/LDLr KO mice, which have larger hearts. Sampling from the thoracic cavity causes unacceptably high cTnT levels. Serum cTnT in samples from the jugular vein is only slightly elevated. Elevated baseline levels of cTnT in mice are not caused by troponin T from skeletal muscle.</abstract><cop>Netherlands</cop><pub>Elsevier B.V</pub><pmid>15149873</pmid><doi>10.1016/j.cccn.2004.02.006</doi><tpages>6</tpages></addata></record>
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source MEDLINE; Access via ScienceDirect (Elsevier)
subjects Animals
Apolipoproteins E - deficiency
Arteriosclerosis - diagnosis
Biomarkers - analysis
Biomarkers - blood
Blood Specimen Collection - methods
Cardiac troponin T
Disease Models, Animal
Heart muscle
Jugular Veins
Male
Medicin och hälsovetenskap
Mice
Mice, Knockout
Muscle, Skeletal - chemistry
Myocardium - chemistry
Receptors, LDL - deficiency
Skeletal muscle
Thorax - blood supply
Troponin T - analysis
Troponin T - blood
title Cardiac troponin T content in heart and skeletal muscle and in blood samples from ApoE/LDL receptor double knockout mice
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