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Inhibition of metabolic cooperation between Chinese hamster V79 cells by structurally diverse teratogens
Abstract:
Cell-cell communication through chemical messengers is a fundamental event required for the differentiation of embryonal cells. Interference with this process by xenobiotics may disrupt embryogenesis. Chinese hamster cells (V79) which display a specific form of cell-cell communication called metabolic cooperation were cultured in the presence of structurally diverse chemical teratogens. Among them were 12-O-tetradecanoyl-phorbol-13-acetate (TPA), diphenylhydantoin (DPH), warfarin, and a series of monoalkyl ethers of ethylene glycol with alcohol chain lengths from methyl to butyl. Sodium saccharin and ascorbic acid were examined to represent two chemicals which have been thoroughly tested for teratogenic effects in laboratory animals and cause no birth defects. Recovery of 100 6-thioguanine-resistant V79 (6-TGr) cells in coculture with 400,000 6-thio-guanine-sensitive V79 (6-TGs) cells in the presence of 6-thioguanine (6-TG) and the chemical agent was measured. In amounts that neither interfered with colony forming ability nor caused cytostasis when 100 6-TGr cells were plated alone, all of the substances except for saccharin and vitamin C increased the number of surviving 6-TGr cells in a concentration-related manner. The recovery was increased by the presence of TPA (to 100% by 4 ng/ml), DPH (from 26% at 91 microM to 43% at 274 microM), warfarin (from 15.5% at 162 microM to 44.5% at 487 microM) and to variable extents by all five glycol ethers. The most efficacious in the latter group of compounds was the isopropyl ether which raised 6-TGr recovery from 8% at 0.017 M to 66% at 0.087 M. Based on the evidence accumulated by previous studies involving TPA, we postulate that the teratogens employed inhibited metabolic cooperation. These observations suggest that V79 cells may be suitable to study inhibition of cell-cell communication as a mechanism of teratogenesis.
Insights
Chemicals like TPA, DPH, and glycol ethers disrupt embryonal cell communication, potentially causing birth defects. This study shows V79 cells can model how xenobiotics interfere with metabolic cooperation, a key process in development.
Area of Science:
- Developmental toxicology
- Cell biology
- Chemical teratogenesis
Background:
- Cell-cell communication is crucial for embryonic development.
- Xenobiotics can interfere with this communication, leading to developmental abnormalities.
- Metabolic cooperation in V79 Chinese hamster cells provides a model for studying cell-cell communication.
Purpose of the Study:
- To investigate the effects of various chemical teratogens on metabolic cooperation in V79 cells.
- To assess the potential of V79 cells as a model for studying teratogenesis mechanisms.
Main Methods:
- V79 cells (6-thioguanine-resistant and 6-thioguanine-sensitive) were co-cultured in the presence of teratogens.
- The recovery of 6-thioguanine-resistant cells was measured in the presence of 6-thioguanine and test chemicals.
- Chemicals tested included TPA, DPH, warfarin, glycol ethers, sodium saccharin, and ascorbic acid.
Main Results:
- Most tested chemicals, except saccharin and ascorbic acid, increased the survival of 6-thioguanine-resistant cells in a concentration-dependent manner.
- TPA, DPH, warfarin, and glycol ethers significantly enhanced 6-TGr cell recovery, indicating inhibited metabolic cooperation.
- Isopropyl ether was particularly effective among the glycol ethers in increasing 6-TGr cell recovery.
Conclusions:
- The tested teratogens likely inhibit metabolic cooperation in V79 cells.
- V79 cell co-culture systems are suitable for studying the mechanism of teratogenesis via inhibition of cell-cell communication.
- This model offers a potential screening tool for teratogenic compounds.