HERG K(+) currents in human prolactin-secreting adenoma cells.

Standard

HERG K(+) currents in human prolactin-secreting adenoma cells. / Bauer, Christiane K.; Wulfsen, I; Schäfer, R; Glassmeier, Günter; Wimmers, S; Flitsch, Joerg; Lüdecke, D K; Schwarz, J R.

In: PFLUG ARCH EUR J PHY, Vol. 445, No. 5, 5, 2003, p. 589-600.

Research output: SCORING: Contribution to journalSCORING: Journal articleResearchpeer-review

Harvard

Bauer, CK, Wulfsen, I, Schäfer, R, Glassmeier, G, Wimmers, S, Flitsch, J, Lüdecke, DK & Schwarz, JR 2003, 'HERG K(+) currents in human prolactin-secreting adenoma cells.', PFLUG ARCH EUR J PHY, vol. 445, no. 5, 5, pp. 589-600. <http://www.ncbi.nlm.nih.gov/pubmed/12634931?dopt=Citation>

APA

Bauer, C. K., Wulfsen, I., Schäfer, R., Glassmeier, G., Wimmers, S., Flitsch, J., Lüdecke, D. K., & Schwarz, J. R. (2003). HERG K(+) currents in human prolactin-secreting adenoma cells. PFLUG ARCH EUR J PHY, 445(5), 589-600. [5]. http://www.ncbi.nlm.nih.gov/pubmed/12634931?dopt=Citation

Vancouver

Bauer CK, Wulfsen I, Schäfer R, Glassmeier G, Wimmers S, Flitsch J et al. HERG K(+) currents in human prolactin-secreting adenoma cells. PFLUG ARCH EUR J PHY. 2003;445(5):589-600. 5.

Bibtex

@article{8928bb33428f4082b10b88eda71ff755,
title = "HERG K(+) currents in human prolactin-secreting adenoma cells.",
abstract = "To investigate the presence and possible function of ether-{\`a}-go-go-related gene (erg) K(+) channels in human lactotroph cells (HERG channels), primary cultures were prepared from human prolactinoma tissue. In almost all primary cultures, HERG currents could be recorded in identified prolactin cells using an external high-K(+) solution. The antiarrhythmic agent E-4031, a specific blocker of erg channels, served to isolate HERG currents as the drug-sensitive currents. In cells of two tumours tested, thyrotropin-releasing hormone significantly reduced the amplitude of the HERG currents. The potential dependence of HERG current availability and the deactivation kinetics differed significantly even between prolactin cells derived from one adenoma. For comparison, corresponding values were obtained for heterologously expressed rat erg1, erg2 and erg3 channels. The expression of the three HERG channel subunits was investigated in nine human adenomas using RT-PCR. Transcripts for HERG1 were present in all adenomas and although transcripts for HERG2 and HERG3 were also detected, their expression level was more variable. The results demonstrate the functional expression of HERG channels in human prolactin-secreting tumours and are compatible with a physiological role for these channels in the control of prolactin secretion, as has been shown in normal rat lactotroph cells.",
author = "Bauer, {Christiane K.} and I Wulfsen and R Sch{\"a}fer and G{\"u}nter Glassmeier and S Wimmers and Joerg Flitsch and L{\"u}decke, {D K} and Schwarz, {J R}",
year = "2003",
language = "English",
volume = "445",
pages = "589--600",
journal = "PFLUG ARCH EUR J PHY",
issn = "0031-6768",
publisher = "Springer",
number = "5",

}

RIS

TY - JOUR

T1 - HERG K(+) currents in human prolactin-secreting adenoma cells.

AU - Bauer, Christiane K.

AU - Wulfsen, I

AU - Schäfer, R

AU - Glassmeier, Günter

AU - Wimmers, S

AU - Flitsch, Joerg

AU - Lüdecke, D K

AU - Schwarz, J R

PY - 2003

Y1 - 2003

N2 - To investigate the presence and possible function of ether-à-go-go-related gene (erg) K(+) channels in human lactotroph cells (HERG channels), primary cultures were prepared from human prolactinoma tissue. In almost all primary cultures, HERG currents could be recorded in identified prolactin cells using an external high-K(+) solution. The antiarrhythmic agent E-4031, a specific blocker of erg channels, served to isolate HERG currents as the drug-sensitive currents. In cells of two tumours tested, thyrotropin-releasing hormone significantly reduced the amplitude of the HERG currents. The potential dependence of HERG current availability and the deactivation kinetics differed significantly even between prolactin cells derived from one adenoma. For comparison, corresponding values were obtained for heterologously expressed rat erg1, erg2 and erg3 channels. The expression of the three HERG channel subunits was investigated in nine human adenomas using RT-PCR. Transcripts for HERG1 were present in all adenomas and although transcripts for HERG2 and HERG3 were also detected, their expression level was more variable. The results demonstrate the functional expression of HERG channels in human prolactin-secreting tumours and are compatible with a physiological role for these channels in the control of prolactin secretion, as has been shown in normal rat lactotroph cells.

AB - To investigate the presence and possible function of ether-à-go-go-related gene (erg) K(+) channels in human lactotroph cells (HERG channels), primary cultures were prepared from human prolactinoma tissue. In almost all primary cultures, HERG currents could be recorded in identified prolactin cells using an external high-K(+) solution. The antiarrhythmic agent E-4031, a specific blocker of erg channels, served to isolate HERG currents as the drug-sensitive currents. In cells of two tumours tested, thyrotropin-releasing hormone significantly reduced the amplitude of the HERG currents. The potential dependence of HERG current availability and the deactivation kinetics differed significantly even between prolactin cells derived from one adenoma. For comparison, corresponding values were obtained for heterologously expressed rat erg1, erg2 and erg3 channels. The expression of the three HERG channel subunits was investigated in nine human adenomas using RT-PCR. Transcripts for HERG1 were present in all adenomas and although transcripts for HERG2 and HERG3 were also detected, their expression level was more variable. The results demonstrate the functional expression of HERG channels in human prolactin-secreting tumours and are compatible with a physiological role for these channels in the control of prolactin secretion, as has been shown in normal rat lactotroph cells.

M3 - SCORING: Journal article

VL - 445

SP - 589

EP - 600

JO - PFLUG ARCH EUR J PHY

JF - PFLUG ARCH EUR J PHY

SN - 0031-6768

IS - 5

M1 - 5

ER -