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Tuttle, A. H., Rankin, M. M., Teta, M., Sartori, D. J., Stein, G. M., Kim, G. J., et al. Immunofluorescent Detection of Two Thymidine Analogues (CldU and IdU) in Primary Tissue. J. Vis. Exp. (46), e2166, doi:10.3791/2166 (2010).
Teta, M. et al., Growth and regeneration of adult Beta cells does not involve specialized progenitors. Dev Cell 12 (5), 817 (2007).
Kiel, M. J. et al., Haematopoietic stem cells do not asymmetrically segregate chromosomes or retain BrdU. Nature 449 (7159), 238 (2007).
Bersell, K., Arab, S., Haring, B., and Kuhn, B., Neuregulin1/ErbB4 signaling induces cardiomyocyte proliferation and repair of heart injury. Cell 138 (2), 257 (2009).
Rankin, M. M. and Kushner, J. A., Adaptive Beta Cell Proliferation Is Severely Restricted with Advanced Age. Diabetes (2009).
He, L. M. et al., Cyclin D2 Protein Stability Is Regulated in Pancreatic Beta Cells. Mol Endocrinol (2009).
Kushner, J. A., Beta-cell growth: an unusual paradigm of organogenesis that is cyclin D2/Cdk4 dependent. Cell Cycle 5 (3), 234 (2006); Teta, M. et al., Very slow turnover of beta-cells in aged adult mice. Diabetes 54 (9), 2557 (2005).
Wilson, A. et al., Hematopoietic stem cells reversibly switch from dormancy to self-renewal during homeostasis and repair. Cell 135 (6), 1118 (2008).
Van Nest, G., Raman, R. K., and Rutter, W. J., Effects of dexamethasone and 5-bromodeoxyuridine on protein synthesis and secretion during in vitro pancreatic development. Dev Biol 98 (2), 295 (1983); Githens, S., Pictet, R., Phelps, P., and Rutter, W. J., 5-bromodeoxyuridine may alter the differentiative program of the embryonic pancreas. J Cell Biol 71 (2), 341 (1976); Walther, B. T., Pictet, R. L., David, J. D., and Rutter, W. J., On the mechanism of 5-bromodeoxyuridine inhibition of exocrine pancreas differentiation. J Biol Chem 249 (6), 1953 (1974).
Chen, S. et al., Measurement of pancreatic islet cell proliferation by heavy water labeling. Am J Physiol Endocrinol Metab 293 (5), E1459 (2007).
Salic, A. and Mitchison, T. J., A chemical method for fast and sensitive detection of DNA synthesis in vivo. Proc Natl Acad Sci U S A 105 (7), 2415 (2008).
Best, M. D., Click chemistry and bioorthogonal reactions: unprecedented selectivity in the labeling of biological molecules. Biochemistry 48 (28), 6571 (2009).
Buck, S. B. et al., Detection of S-phase cell cycle progression using 5-ethynyl-2'-deoxyuridine incorporation with click chemistry, an alternative to using 5-bromo-2'-deoxyuridine antibodies. Biotechniques 44 (7), 927 (2008).
Huising, M. O. et al., CRFR1 is expressed on pancreatic beta cells, promotes beta cell proliferation, and potentiates insulin secretion in a glucose-dependent manner. Proc Natl Acad Sci U S A 107 (2), 912.
Reimann, F. et al., Glucose sensing in L cells: a primary cell study. Cell Metab 8 (6), 532 (2008).
Doupe, D. P., Klein, A. M., Simons, B. D., and Jones, P. H., The ordered architecture of murine ear epidermis is maintained by progenitor cells with random fate. Dev Cell 18 (2), 317.
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ReplyPosted by: Raj GiraddiJuly 25, 2011, 10:48 AM