Thyroid hormone effect on human mitochondria measured by flow cytometry

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Thyroid hormone effect on human mitochondria measured by flow cytometry. / Kvetny, Jan; Bomholt, Tobias; Pedersen, Palle; Wilms, Line; Anthonsen, Stine; Larsen, Jacob.

In: Scandinavian Journal of Clinical & Laboratory Investigation, Vol. 69, No. 7, 2009, p. 772-6.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Kvetny, J, Bomholt, T, Pedersen, P, Wilms, L, Anthonsen, S & Larsen, J 2009, 'Thyroid hormone effect on human mitochondria measured by flow cytometry', Scandinavian Journal of Clinical & Laboratory Investigation, vol. 69, no. 7, pp. 772-6. https://doi.org/10.3109/00365510903154752

APA

Kvetny, J., Bomholt, T., Pedersen, P., Wilms, L., Anthonsen, S., & Larsen, J. (2009). Thyroid hormone effect on human mitochondria measured by flow cytometry. Scandinavian Journal of Clinical & Laboratory Investigation, 69(7), 772-6. https://doi.org/10.3109/00365510903154752

Vancouver

Kvetny J, Bomholt T, Pedersen P, Wilms L, Anthonsen S, Larsen J. Thyroid hormone effect on human mitochondria measured by flow cytometry. Scandinavian Journal of Clinical & Laboratory Investigation. 2009;69(7):772-6. https://doi.org/10.3109/00365510903154752

Author

Kvetny, Jan ; Bomholt, Tobias ; Pedersen, Palle ; Wilms, Line ; Anthonsen, Stine ; Larsen, Jacob. / Thyroid hormone effect on human mitochondria measured by flow cytometry. In: Scandinavian Journal of Clinical & Laboratory Investigation. 2009 ; Vol. 69, No. 7. pp. 772-6.

Bibtex

@article{bacb8fa07abb11df928f000ea68e967b,
title = "Thyroid hormone effect on human mitochondria measured by flow cytometry",
abstract = "BACKGROUND: Mitochondrial function may be impaired in a number of diseases including metabolic syndrome, cardiovascular disease and endocrine disorders. Therefore it is important to be able to measure mitochondrial function in human cells. PURPOSE: The aim of the present study was to evaluate a method to measure mitochondrial function in human derived cells, which also would reflect regulation by thyroid hormones. METHODS: The MDA-MB-231 cell line (a human breast cancer cell line) was incubated with bioactive iodothyronines (T(4), 3'-3, 5-T(3), 3, 5-T(2)) 50 nmol/l for 3 h. Mitochondrial membrane potentials (MMP) were measured by a flow cytometer after staining with Tetramethylrhodamine methyl ester (TMRM). Also, the effect of TRIAC (a stimulator of thyroid hormone nuclear receptors) and L-Carnitine (an inhibitor of thyroid hormone passage into the nucleus) was examined. FINDINGS: It was possible to measure mitochondrial membrane potential (MMP) in human derived cells and to examine thyroid hormone effects using flow cytometry. Bioactive iodothyronines increased mitochondrial membrane potential. TRIAC had no effect and L-Carnitine only inhibited T(4) stimulation of membrane potential. CONCLUSION: Flow cytometry may be a valuable method for examining and testing mitochondrial function in human cells. Our findings demonstrate increase of mitochondrial membrane potential and an extra nuclear short time effect of 3, 5-T(2) on mitochondrial activity.",
author = "Jan Kvetny and Tobias Bomholt and Palle Pedersen and Line Wilms and Stine Anthonsen and Jacob Larsen",
note = "Keywords: Cell Line, Tumor; Esters; Flow Cytometry; Fluorescence; Humans; Mitochondria; Thyroid Hormones; Thyronines",
year = "2009",
doi = "10.3109/00365510903154752",
language = "English",
volume = "69",
pages = "772--6",
journal = "Scandinavian Journal of Clinical & Laboratory Investigation",
issn = "0036-5513",
publisher = "Taylor & Francis",
number = "7",

}

RIS

TY - JOUR

T1 - Thyroid hormone effect on human mitochondria measured by flow cytometry

AU - Kvetny, Jan

AU - Bomholt, Tobias

AU - Pedersen, Palle

AU - Wilms, Line

AU - Anthonsen, Stine

AU - Larsen, Jacob

N1 - Keywords: Cell Line, Tumor; Esters; Flow Cytometry; Fluorescence; Humans; Mitochondria; Thyroid Hormones; Thyronines

PY - 2009

Y1 - 2009

N2 - BACKGROUND: Mitochondrial function may be impaired in a number of diseases including metabolic syndrome, cardiovascular disease and endocrine disorders. Therefore it is important to be able to measure mitochondrial function in human cells. PURPOSE: The aim of the present study was to evaluate a method to measure mitochondrial function in human derived cells, which also would reflect regulation by thyroid hormones. METHODS: The MDA-MB-231 cell line (a human breast cancer cell line) was incubated with bioactive iodothyronines (T(4), 3'-3, 5-T(3), 3, 5-T(2)) 50 nmol/l for 3 h. Mitochondrial membrane potentials (MMP) were measured by a flow cytometer after staining with Tetramethylrhodamine methyl ester (TMRM). Also, the effect of TRIAC (a stimulator of thyroid hormone nuclear receptors) and L-Carnitine (an inhibitor of thyroid hormone passage into the nucleus) was examined. FINDINGS: It was possible to measure mitochondrial membrane potential (MMP) in human derived cells and to examine thyroid hormone effects using flow cytometry. Bioactive iodothyronines increased mitochondrial membrane potential. TRIAC had no effect and L-Carnitine only inhibited T(4) stimulation of membrane potential. CONCLUSION: Flow cytometry may be a valuable method for examining and testing mitochondrial function in human cells. Our findings demonstrate increase of mitochondrial membrane potential and an extra nuclear short time effect of 3, 5-T(2) on mitochondrial activity.

AB - BACKGROUND: Mitochondrial function may be impaired in a number of diseases including metabolic syndrome, cardiovascular disease and endocrine disorders. Therefore it is important to be able to measure mitochondrial function in human cells. PURPOSE: The aim of the present study was to evaluate a method to measure mitochondrial function in human derived cells, which also would reflect regulation by thyroid hormones. METHODS: The MDA-MB-231 cell line (a human breast cancer cell line) was incubated with bioactive iodothyronines (T(4), 3'-3, 5-T(3), 3, 5-T(2)) 50 nmol/l for 3 h. Mitochondrial membrane potentials (MMP) were measured by a flow cytometer after staining with Tetramethylrhodamine methyl ester (TMRM). Also, the effect of TRIAC (a stimulator of thyroid hormone nuclear receptors) and L-Carnitine (an inhibitor of thyroid hormone passage into the nucleus) was examined. FINDINGS: It was possible to measure mitochondrial membrane potential (MMP) in human derived cells and to examine thyroid hormone effects using flow cytometry. Bioactive iodothyronines increased mitochondrial membrane potential. TRIAC had no effect and L-Carnitine only inhibited T(4) stimulation of membrane potential. CONCLUSION: Flow cytometry may be a valuable method for examining and testing mitochondrial function in human cells. Our findings demonstrate increase of mitochondrial membrane potential and an extra nuclear short time effect of 3, 5-T(2) on mitochondrial activity.

U2 - 10.3109/00365510903154752

DO - 10.3109/00365510903154752

M3 - Journal article

C2 - 19929720

VL - 69

SP - 772

EP - 776

JO - Scandinavian Journal of Clinical & Laboratory Investigation

JF - Scandinavian Journal of Clinical & Laboratory Investigation

SN - 0036-5513

IS - 7

ER -

ID: 20366927