Circadian-stage dependence of methotrexate in a keratinized epithelium. An in-vivo study using flow cytometry on the hamster cheek pouch epithelium

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Standard

Circadian-stage dependence of methotrexate in a keratinized epithelium. An in-vivo study using flow cytometry on the hamster cheek pouch epithelium. / Møller, Ulla; Larsen, Jørgen Knud; Keiding, Niels; Christensen, Ib Jarle.

I: Cell and Tissue Kinetics, Bind 17, Nr. 5, 09.1984, s. 483-495.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Møller, U, Larsen, JK, Keiding, N & Christensen, IJ 1984, 'Circadian-stage dependence of methotrexate in a keratinized epithelium. An in-vivo study using flow cytometry on the hamster cheek pouch epithelium', Cell and Tissue Kinetics, bind 17, nr. 5, s. 483-495. https://doi.org/10.1111/j.1365-2184.1984.tb00607.x

APA

Møller, U., Larsen, J. K., Keiding, N., & Christensen, I. J. (1984). Circadian-stage dependence of methotrexate in a keratinized epithelium. An in-vivo study using flow cytometry on the hamster cheek pouch epithelium. Cell and Tissue Kinetics, 17(5), 483-495. https://doi.org/10.1111/j.1365-2184.1984.tb00607.x

Vancouver

Møller U, Larsen JK, Keiding N, Christensen IJ. Circadian-stage dependence of methotrexate in a keratinized epithelium. An in-vivo study using flow cytometry on the hamster cheek pouch epithelium. Cell and Tissue Kinetics. 1984 sep.;17(5):483-495. https://doi.org/10.1111/j.1365-2184.1984.tb00607.x

Author

Møller, Ulla ; Larsen, Jørgen Knud ; Keiding, Niels ; Christensen, Ib Jarle. / Circadian-stage dependence of methotrexate in a keratinized epithelium. An in-vivo study using flow cytometry on the hamster cheek pouch epithelium. I: Cell and Tissue Kinetics. 1984 ; Bind 17, Nr. 5. s. 483-495.

Bibtex

@article{df9a3df7e2c5449587ea83b4d45d43a8,
title = "Circadian-stage dependence of methotrexate in a keratinized epithelium. An in-vivo study using flow cytometry on the hamster cheek pouch epithelium",
abstract = "The partially synchronized cell system of the hamster cheek pouch epithelium shows a characteristic diurnal rhythm of cell proliferation. Bolus injections of methotrexate (Mtx) in both lethal (10 g/m2) and non‐lethal (2 g/m2) doses were found to inhibit cell‐cycle progression primarily by impairing the G1/S transition. the results were obtained by flow cytometric DNA analysis. the inhibitory effect of Mtx manifested itself as a relative decrease of the S fraction (drug‐effector phase), and was found to be dependent both on the dose and on the time of the day it was given. A bolus injection of Mtx was given either at 1200 hr (when a minimal number of cells are in S phase) or at 0200 hr (when a maximum number of cells are in S phase). the greatest cumulative decrease in S fraction was seen when the injection was given at 1200 hr. the time between injection and the effect (seen as a decrease in S fraction) was independent of the time of the Mtx injection, but seemed instead to be related to the natural diurnal period of increasing flux from G1 to S phase (at the onset of the dark period). the main effect (the relative decrease in S fraction) was repeated during the following 24‐hr period, pointing to a protracted effect of Mtx on G1 cells. G1 cells affected by the initial high Mtx plasma concentration seem to be responsible for the reduced influx into S phase in both the first and second 24‐hr period. In earlier toxicological studies, the survival rate of hamsters was dependent on the time of injection and was highest after injection at 1200 hr. Thus maximum cytokinetic effect on epithelial cells was found at the time of the day when there was a minimum lethal effect on the animal.",
author = "Ulla M{\o}ller and Larsen, {J{\o}rgen Knud} and Niels Keiding and Christensen, {Ib Jarle}",
year = "1984",
month = sep,
doi = "10.1111/j.1365-2184.1984.tb00607.x",
language = "English",
volume = "17",
pages = "483--495",
journal = "Cell and Tissue Kinetics",
issn = "0008-8730",
publisher = "Wiley-Blackwell",
number = "5",

}

RIS

TY - JOUR

T1 - Circadian-stage dependence of methotrexate in a keratinized epithelium. An in-vivo study using flow cytometry on the hamster cheek pouch epithelium

AU - Møller, Ulla

AU - Larsen, Jørgen Knud

AU - Keiding, Niels

AU - Christensen, Ib Jarle

PY - 1984/9

Y1 - 1984/9

N2 - The partially synchronized cell system of the hamster cheek pouch epithelium shows a characteristic diurnal rhythm of cell proliferation. Bolus injections of methotrexate (Mtx) in both lethal (10 g/m2) and non‐lethal (2 g/m2) doses were found to inhibit cell‐cycle progression primarily by impairing the G1/S transition. the results were obtained by flow cytometric DNA analysis. the inhibitory effect of Mtx manifested itself as a relative decrease of the S fraction (drug‐effector phase), and was found to be dependent both on the dose and on the time of the day it was given. A bolus injection of Mtx was given either at 1200 hr (when a minimal number of cells are in S phase) or at 0200 hr (when a maximum number of cells are in S phase). the greatest cumulative decrease in S fraction was seen when the injection was given at 1200 hr. the time between injection and the effect (seen as a decrease in S fraction) was independent of the time of the Mtx injection, but seemed instead to be related to the natural diurnal period of increasing flux from G1 to S phase (at the onset of the dark period). the main effect (the relative decrease in S fraction) was repeated during the following 24‐hr period, pointing to a protracted effect of Mtx on G1 cells. G1 cells affected by the initial high Mtx plasma concentration seem to be responsible for the reduced influx into S phase in both the first and second 24‐hr period. In earlier toxicological studies, the survival rate of hamsters was dependent on the time of injection and was highest after injection at 1200 hr. Thus maximum cytokinetic effect on epithelial cells was found at the time of the day when there was a minimum lethal effect on the animal.

AB - The partially synchronized cell system of the hamster cheek pouch epithelium shows a characteristic diurnal rhythm of cell proliferation. Bolus injections of methotrexate (Mtx) in both lethal (10 g/m2) and non‐lethal (2 g/m2) doses were found to inhibit cell‐cycle progression primarily by impairing the G1/S transition. the results were obtained by flow cytometric DNA analysis. the inhibitory effect of Mtx manifested itself as a relative decrease of the S fraction (drug‐effector phase), and was found to be dependent both on the dose and on the time of the day it was given. A bolus injection of Mtx was given either at 1200 hr (when a minimal number of cells are in S phase) or at 0200 hr (when a maximum number of cells are in S phase). the greatest cumulative decrease in S fraction was seen when the injection was given at 1200 hr. the time between injection and the effect (seen as a decrease in S fraction) was independent of the time of the Mtx injection, but seemed instead to be related to the natural diurnal period of increasing flux from G1 to S phase (at the onset of the dark period). the main effect (the relative decrease in S fraction) was repeated during the following 24‐hr period, pointing to a protracted effect of Mtx on G1 cells. G1 cells affected by the initial high Mtx plasma concentration seem to be responsible for the reduced influx into S phase in both the first and second 24‐hr period. In earlier toxicological studies, the survival rate of hamsters was dependent on the time of injection and was highest after injection at 1200 hr. Thus maximum cytokinetic effect on epithelial cells was found at the time of the day when there was a minimum lethal effect on the animal.

UR - http://www.scopus.com/inward/record.url?scp=0021217246&partnerID=8YFLogxK

U2 - 10.1111/j.1365-2184.1984.tb00607.x

DO - 10.1111/j.1365-2184.1984.tb00607.x

M3 - Journal article

C2 - 6205759

AN - SCOPUS:0021217246

VL - 17

SP - 483

EP - 495

JO - Cell and Tissue Kinetics

JF - Cell and Tissue Kinetics

SN - 0008-8730

IS - 5

ER -

ID: 203013551