Gene expression in human skeletal muscle: alternative normalization method and effect of repeated biopsies

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Standard

Gene expression in human skeletal muscle: alternative normalization method and effect of repeated biopsies. / Lundby, Carsten; Nordsborg, Nikolai; Kusuhara, K.; Kristensen, K. Møller; Neufer, P. Darrell; Pilegaard, Henriette.

I: European Journal of Applied Physiology, Bind 95, Nr. 4, 2005, s. 351-360.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Lundby, C, Nordsborg, N, Kusuhara, K, Kristensen, KM, Neufer, PD & Pilegaard, H 2005, 'Gene expression in human skeletal muscle: alternative normalization method and effect of repeated biopsies', European Journal of Applied Physiology, bind 95, nr. 4, s. 351-360. https://doi.org/10.1007/s00421-005-0022-7

APA

Lundby, C., Nordsborg, N., Kusuhara, K., Kristensen, K. M., Neufer, P. D., & Pilegaard, H. (2005). Gene expression in human skeletal muscle: alternative normalization method and effect of repeated biopsies. European Journal of Applied Physiology, 95(4), 351-360. https://doi.org/10.1007/s00421-005-0022-7

Vancouver

Lundby C, Nordsborg N, Kusuhara K, Kristensen KM, Neufer PD, Pilegaard H. Gene expression in human skeletal muscle: alternative normalization method and effect of repeated biopsies. European Journal of Applied Physiology. 2005;95(4):351-360. https://doi.org/10.1007/s00421-005-0022-7

Author

Lundby, Carsten ; Nordsborg, Nikolai ; Kusuhara, K. ; Kristensen, K. Møller ; Neufer, P. Darrell ; Pilegaard, Henriette. / Gene expression in human skeletal muscle: alternative normalization method and effect of repeated biopsies. I: European Journal of Applied Physiology. 2005 ; Bind 95, Nr. 4. s. 351-360.

Bibtex

@article{b8975fa0a54b11dbbee902004c4f4f50,
title = "Gene expression in human skeletal muscle: alternative normalization method and effect of repeated biopsies",
abstract = "The reverse transcriptase-polymerase chain reaction (RT-PCR) method has lately become widely used to determine transcription and mRNA content in rodent and human muscle samples. However, the common use of endogenous controls for correcting for variance in cDNA between samples is not optimal. Specifically, we investigated (1) a new normalization method based on determining the cDNA content by the flourophores PicoGreen and OliGreen, (2) effect of repeated muscle biopsies on mRNA gene expression, and (3) the spatial heterogeneity in mRNA expression across the muscle. Standard curves using oligo standards revealed a high degree of sensitivity and linearity (2.5-45 ng; R 2>0.99) with OliGreen reagent, as was the case for OliGreen analyses with standard curves constructed from serial dilutions of representative RT samples (R 2 >0.99 for a ten times dilution range of a representative reversed transcribed (RT) sample). Likewise, PicoGreen reagent detected the RNA:DNA hybrid content in RT samples with great sensitivity. Standard curves constructed from both double-stranded lambda DNA (1-10 ng) and from serial dilutions of representative RT samples consistently resulted in linearity with R 2 >0.99. The present determination of cDNA content in reversed transcribed human skeletal muscle RNA samples by both PicoGreen and OliGreen analyses suggests that these fluorophores provide a potential alternative normalization procedure for human gene expression studies. In addition, the present study shows that multiple muscle biopsies obtained from the same muscle do not influence the mRNA response induced by an acute exercise bout for any of the genes examined.",
author = "Carsten Lundby and Nikolai Nordsborg and K. Kusuhara and Kristensen, {K. M{\o}ller} and Neufer, {P. Darrell} and Henriette Pilegaard",
note = "PUF 2005 5200 016",
year = "2005",
doi = "10.1007/s00421-005-0022-7",
language = "English",
volume = "95",
pages = "351--360",
journal = "European Journal of Applied Physiology",
issn = "1439-6319",
publisher = "Springer",
number = "4",

}

RIS

TY - JOUR

T1 - Gene expression in human skeletal muscle: alternative normalization method and effect of repeated biopsies

AU - Lundby, Carsten

AU - Nordsborg, Nikolai

AU - Kusuhara, K.

AU - Kristensen, K. Møller

AU - Neufer, P. Darrell

AU - Pilegaard, Henriette

N1 - PUF 2005 5200 016

PY - 2005

Y1 - 2005

N2 - The reverse transcriptase-polymerase chain reaction (RT-PCR) method has lately become widely used to determine transcription and mRNA content in rodent and human muscle samples. However, the common use of endogenous controls for correcting for variance in cDNA between samples is not optimal. Specifically, we investigated (1) a new normalization method based on determining the cDNA content by the flourophores PicoGreen and OliGreen, (2) effect of repeated muscle biopsies on mRNA gene expression, and (3) the spatial heterogeneity in mRNA expression across the muscle. Standard curves using oligo standards revealed a high degree of sensitivity and linearity (2.5-45 ng; R 2>0.99) with OliGreen reagent, as was the case for OliGreen analyses with standard curves constructed from serial dilutions of representative RT samples (R 2 >0.99 for a ten times dilution range of a representative reversed transcribed (RT) sample). Likewise, PicoGreen reagent detected the RNA:DNA hybrid content in RT samples with great sensitivity. Standard curves constructed from both double-stranded lambda DNA (1-10 ng) and from serial dilutions of representative RT samples consistently resulted in linearity with R 2 >0.99. The present determination of cDNA content in reversed transcribed human skeletal muscle RNA samples by both PicoGreen and OliGreen analyses suggests that these fluorophores provide a potential alternative normalization procedure for human gene expression studies. In addition, the present study shows that multiple muscle biopsies obtained from the same muscle do not influence the mRNA response induced by an acute exercise bout for any of the genes examined.

AB - The reverse transcriptase-polymerase chain reaction (RT-PCR) method has lately become widely used to determine transcription and mRNA content in rodent and human muscle samples. However, the common use of endogenous controls for correcting for variance in cDNA between samples is not optimal. Specifically, we investigated (1) a new normalization method based on determining the cDNA content by the flourophores PicoGreen and OliGreen, (2) effect of repeated muscle biopsies on mRNA gene expression, and (3) the spatial heterogeneity in mRNA expression across the muscle. Standard curves using oligo standards revealed a high degree of sensitivity and linearity (2.5-45 ng; R 2>0.99) with OliGreen reagent, as was the case for OliGreen analyses with standard curves constructed from serial dilutions of representative RT samples (R 2 >0.99 for a ten times dilution range of a representative reversed transcribed (RT) sample). Likewise, PicoGreen reagent detected the RNA:DNA hybrid content in RT samples with great sensitivity. Standard curves constructed from both double-stranded lambda DNA (1-10 ng) and from serial dilutions of representative RT samples consistently resulted in linearity with R 2 >0.99. The present determination of cDNA content in reversed transcribed human skeletal muscle RNA samples by both PicoGreen and OliGreen analyses suggests that these fluorophores provide a potential alternative normalization procedure for human gene expression studies. In addition, the present study shows that multiple muscle biopsies obtained from the same muscle do not influence the mRNA response induced by an acute exercise bout for any of the genes examined.

U2 - 10.1007/s00421-005-0022-7

DO - 10.1007/s00421-005-0022-7

M3 - Journal article

C2 - 16151837

VL - 95

SP - 351

EP - 360

JO - European Journal of Applied Physiology

JF - European Journal of Applied Physiology

SN - 1439-6319

IS - 4

ER -

ID: 91525