Effects of 5‐Fluorouracil on embryonic rat palate in vitro: Fusion in the absence of proliferation
- 2 June 1993
- journal article
- developmental pharmacology-and-toxicology
- Published by Wiley in Teratology
- Vol. 47 (6) , 541-554
- https://doi.org/10.1002/tera.1420470606
Abstract
5‐Fluorouracil (5‐FU) inhibits the enzyme thymidylate synthetase (TS) which results in inhibition of DNA synthesis. 5‐FU is teratogenic in many species, inducing cleft palate, limb, and tail defects. In the present study, gestation day (GD) 14 embryonic rat craniofacial explants were exposed to 5‐FU in organ culture with increasing concentrations and durations of exposure. Palates exposed to 5‐FU were morphologically abnormal and craniofacial shape, size, and palatal fusion pattern were affected with the severity of effects dependent on concentration and duration of exposure. Cleft palate was induced in vitro as opposing palates overlapped in a narrowed oral cavity. Palates exposed to higher levels of 5‐FU were growth inhibited, but fused even though proliferation ceased and few cells were available to participate in elevation and fusion. This was demonstrated as a biphasic concentration‐response profile for palatal fusion in which 0.05 to 0.15 μg 5‐FU/ml produced decreasing rates of palatal fusion, while exposure to 0.15 to 3.0 μg/ml resulted in progressively increasing rates of fusion. The effects of 5‐FU were detected biochemically as a reduction in TS activity which was concentration and time dependent during the first 12 hours, with a return to control levels by 24 hours. During the first day, 5‐FU did not alter protein levels, but DNA levels significantly decreased at the high concentration, 2.0 μg/ml. After 5 days in culture, both DNA and protein decreased with increasing 5‐FU concentration and duration of exposure. Also by the end of the culture period, 3H‐TdR incorporation had decreased in a concentration dependent manner. It is concluded that progressive inhibition of proliferation and growth in organ culture results in two different morphological outcomes: cleft palate resulting from a narrowed oral cavity and increased incidence of anterior palatal fusion under conditions of strong growth reduction. This study demonstrates that elevation and fusion can occur in the absence of growth and proliferation. Based on these observations, severe inhibition of growth or proliferation would not necessarily be sufficient to induce cleft palate. © 1993 Wiley‐Liss, Inc. 1 This article is a US government work and, as such, is in the public domain in the United States of America.Keywords
This publication has 26 references indexed in Scilit:
- Embryonic palatal responses to teratogens in serum-free organ cultureTeratology, 1992
- Development of the Fetal Mouse Palate in Suspension Organ CultureCells Tissues Organs, 1990
- Postimplantation embryo culture for the assessment of the teratogenic potential and potency of compoundsCellular and Molecular Life Sciences, 1988
- The in vitro embryotoxicity of 5-fluorouracil in rat embryosTeratology, 1987
- A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye bindingAnalytical Biochemistry, 1976
- Effects of 5-Fluorouracil on Secondary Palatal Development of 129/J MiceJournal of Dental Research, 1971
- Estimating the Degrees of Freedom for Linear Combinations of Mean Squares by Satterthwaite's FormulaTechnometrics, 1969
- Potentiation of the teratogenic effects of 5‐fluorouracil by natural pyrimidines. II. Biochemical aspectsTeratology, 1969
- Sensitive stages for the production of developmental abnormalities in mice with 5‐fluorouracilJournal of Anatomy, 1960
- Fluorinated Pyrimidines, A New Class of Tumour-Inhibitory CompoundsNature, 1957