Characterization of pituitary stem/progenitor cell populations in spontaneous dwarf rats
Author:
Affiliation:
1. Laboratory of Veterinary Biochemistry, Joint Department of Veterinary Medicine, Faculty of Agriculture, Tottori University, Tottori, Japan
Publisher
Japanese Society of Veterinary Science
Subject
General Veterinary
Link
https://www.jstage.jst.go.jp/article/jvms/84/5/84_22-0063/_pdf
Reference51 articles.
1. 1. Agarwal, G., Bhatia, V., Cook, S. and Thomas, P. Q. 2000. Adrenocorticotropin deficiency in combined pituitary hormone deficiency patients homozygous for a novel PROP1 deletion. J. Clin. Endocrinol. Metab. 85: 4556–4561.
2. 2. Alba, M. and Salvatori, R. 2004. A mouse with targeted ablation of the growth hormone-releasing hormone gene: a new model of isolated growth hormone deficiency. Endocrinology 145: 4134–4143.
3. 3. Andoniadou, C. L., Matsushima, D., Mousavy Gharavy, S. N., Signore, M., Mackintosh, A. I., Schaeffer, M., Gaston-Massuet, C., Mollard, P., Jacques, T. S., Le Tissier, P., Dattani, M. T., Pevny, L. H. and Martinez-Barbera, J. P. 2013. Sox2(+) stem/progenitor cells in the adult mouse pituitary support organ homeostasis and have tumor-inducing potential. Cell Stem Cell 13: 433–445.
4. 4. Behringer, R. R., Mathews, L. S., Palmiter, R. D. and Brinster, R. L. 1988. Dwarf mice produced by genetic ablation of growth hormone-expressing cells. Genes Dev. 2: 453–461.
5. 5. Borrelli, E., Heyman, R. A., Arias, C., Sawchenko, P. E. and Evans, R. M. 1989. Transgenic mice with inducible dwarfism. Nature 339: 538–541.
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