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Limb bud cell cultures for estimating the teratogenic potential of compounds

Validation of the test system with retinoids

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Abstract

Mesenchyme cells, derived from embryonic limb buds, cultured at high cell density, multiply and differentiate into chondrocytes. Using alcian blue, a stain specific for cartilage proteoglycans, the degree of chondrogenesis can be visualized in the micromass cultures as well as quantified by extraction of the stain and spectrophotometric determination of its absorbance. In the presence of active retinoids chondrogenesis is concentration-dependently inhibited. For comparison of the activity of the various retinoids the concentration needed to reduce alcian blue staining by 50% was estimated. In order to validate whether the activity in limb bud cells can predict the teratogenic potential in vivo, the in vitro activity of 25 retinoids was compared with their in vivo teratogenicity observed mainly in rodents. For retinoids which were already in the biologically active form like those with a free carboxylic acid endgroup, there was a good quantitative correlation between the in vitro and in vivo activity. In contrast, the ethylester analog etretinate was slightly active and the ethylamine analog motretinide inactive in vitro but both were teratogenic in vivo. This finding may indicate that these retionoids were not metabolized to the active form in vitro. In conclusion, these results suggest that the limb bud cell culture system may be useful for a preliminary testing to select non-teratogenic retinoids. For the risk assessment in humans, however, the in vitro result should be verified in animal studies.

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References

  • Bollag W (1983) Vitamin A and retinoids: from nutrition to pharmacotherapy in dermatology and oncology. Lancet 1: 860–863

    Google Scholar 

  • Caplan A (1970) Effects of the nicotinamide-sensitive teratogen 3-acetylpyridine on chick limb bud cells in culture. Exp Cell Res 62: 341–355

    Google Scholar 

  • Flint OP, Orton TC (1984) An in vitro assay for teratogens with cultures of rat embryo midbrain and limb bud cells. Toxicol Appl Pharmacol 76: 383–395

    Google Scholar 

  • Gallandre F, Kistler A, Galli B (1980) Inhibition and reversion of chondrogenesis by retinoic acid in rat limb bud cell cultures. Roux's Arch Dev Biol 189: 25–33

    Google Scholar 

  • Geelen JAG (1979) Hypervitaminosis A induced teratogenesis. Crit Rev Toxicol 6: 351–375

    Google Scholar 

  • Guntakatta M, Matthews EJ, Rundell JO (1984) Development of a mouse embryo limb bud cell culture system for the estimation of chemical teratogenic potential. Teratogen Carcinogen Mutagen 4: 349–364

    Google Scholar 

  • Happle R, Traupe H, Bounameaux Y, Fisch T (1984) Teratogene Wirkung von Etretinat beim Mensch. Dtsch Med Wschr 109: 1476–1480

    Google Scholar 

  • Hassell JR, Horigan EA (1982) Chondrogenesis: A model developmental system for measuring teratogenic potential of compounds. Teratogen Carcinogen Mutagen 2: 325–331

    Google Scholar 

  • Homburger F, Goldberg AM (1985) In vitro embryotoxicity and teratogenicity tests. Concepts in Toxicology vol 3. Karger, Basel

    Google Scholar 

  • Hummler H, Schüpbach M (1982) Studies in reproductive toxicology and mutagenicity with Ro 10-9359. In: Orfanos CE, Braun-Falco O, Farber EM, Grupper C, Polano MK, Schuppli R (eds) Retinoids: Advances in basic research and therapy. Springer-Verlag, Berlin and New York, pp 49–59

    Google Scholar 

  • Kamm JJ (1982) Toxicology, carcinogenicity, and teratogenicity of some orally administered retinoids. J Am Acad Dermatol 6: 652–659

    Google Scholar 

  • Kamm JJ, Ashenfelter KO, Ehmann CW (1984) Preclinical and clinical toxicology of selected retinoids. In: Sporn MB, Roberts AB, Goodman DS (eds) The retinoids, vol. 2. Academic Press, New York, pp 287–326

    Google Scholar 

  • Kistler A (1981) Structure-activity relationship of retinoids in fetal rat bone cultures. Calcif Tissue Int 33: 249–254

    Google Scholar 

  • Kistler A (1984) Structure-activity relationship of retinoids on the differentiation of cultured chick foot skin. Roux's Arch Dev Biol 194: 9–17

    Google Scholar 

  • Kistler A (1985) Inhibition of chondrogenesis by retinoids: Limb bud cell cultures as a test system to measure the teratogenic potential of compounds? In: Homburger F, Goldberg AM (eds) In vitro embryotoxicity and teratogenicity tests. Concepts Toxicol, vol 3. Karger, Basel, pp 86–100

    Google Scholar 

  • Kistler A (1986) Structure-activity relationship of retinoids on lobuloalveolar differentiation of cultured mouse mammary glands. Carcinogenesis 7: 1175–1182

    Google Scholar 

  • Kistler A, Hummler H (1985) Teratogenesis and reproductive safety evaluation of the retinoid etretin (Ro 10-1670). Arch Toxicol 58: 50–56

    Google Scholar 

  • Kistler A, Mislin M, Gehrig A (1985) Chondrogenesis of limb bud cells. Improved method and the effect of the potent teratogen retinoic acid. Xenobiotica 15: 673–679

    Google Scholar 

  • Lammer EJ, Chen DT, Hoar RM, Agnish ND, Benke PJ, Braun JT, Curry CJ, Fernhoff PM, Grix AW, Lott IT, Richard JM, Sun SC (1985) Retinoic Acid Embryopathy. N Engl J Med 313: 837–841

    Google Scholar 

  • Legator MS (ed) (1982) In vitro teratogenesis testing. In: Teratogen Carcinogen and Mutagen, Vol 2. Alan R. Liss, Inc., New York, pp 221–374

  • Lewis CA, Pratt RM, Pennypacker JP, Hassell JR (1978) Inhibition of limb chondrogenesis in vitro by vitamin A: Alterations in cell surface characteristics. Dev Biol 64: 31–47

    Google Scholar 

  • Loeliger P, Bollag W, Mayer H (1980) Arotinoids, a new class of highly active retinoids. Eur J Med Chem 15: 9–15

    Google Scholar 

  • Neubert D (1985) Toxicity studies with cellular models of differentiation. Xenobiotica 15: 649–660

    Google Scholar 

  • Peck GL (1981) Retinoids in clinical dermatology. In: R. Fleischmajer (ed) Progress in diseases of the skin, vol 1. Grune and Stratton, New York, pp 227–269

    Google Scholar 

  • Peck GL (1983) Retinoids: Therapeutic use in dermatology. Curr Ther 25: 103–112

    Google Scholar 

  • Rosa FW (1983) Teratogenicity of isotretinoin. Lancet 2, 513

    Google Scholar 

  • Rosa FW, Wilk AL, Kelsey FO (1986) Teratogen update: vitamin A congeners. Teratology 33: 355–364

    Google Scholar 

  • Steele CE, Marlow R, Turton J, Hicks RM (1986) In vitro teratogenicity of retinoids. Teratology 33: 32A (Abstract)

  • Stern RS, Rosa F, Baum C (1984) Isotretinoin and pregnancy. J Am Acad Dermatol 10: 851–854

    Google Scholar 

  • Umansky R (1966) The effect of cell population density on the developmental fate of reaggregating mouse limb bud mesenchyme. Dev Biol 13: 31–56

    Google Scholar 

  • Wilk AL, Greenberg JH, Horigan EA, Pratt RM, Martin GR (1980) Detection of teratogenic compounds using differentiating embryonic cells in culture. In Vitro 16: 269–276

    Google Scholar 

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Kistler, A. Limb bud cell cultures for estimating the teratogenic potential of compounds. Arch Toxicol 60, 403–414 (1987). https://doi.org/10.1007/BF00302382

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  • DOI: https://doi.org/10.1007/BF00302382

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