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Lancet (London, England)|June 20, 1992
No risk of diabetes after insulin-shock treatmentT Bock, C R Pedersen, K Josefsen, et al.The Journal of Endocrinology|April 1, 1996
Fluorescence-activated cell sorted rat islet cells and studies of the insulin secretory processK Josefsen, J P Stenvang, H Kindmark, et al.Life Sciences|March 10, 1995
Tissue culture supernatants from human islets of Langerhans activate the oxidative burst response of human monocytes in vitroK Josefsen, H Nielsen, W A Hansen, et al.European Journal of Endocrinology|August 3, 2002
The (ProB27, ThrB28) human insulin analogue is more potent and more rapidly absorbed from subcutis than human insulinR Clausen, T G Jørgensen, K H Jørgensen, et al.Journal of Neuroendocrinology|November 24, 2007
Impaired glucose tolerance in the R6/1 transgenic mouse model of Huntington's diseaseK Josefsen, M D Nielsen, K H Jørgensen, et al.Diabetologia|October 1, 1994
Sulphatide in islets of Langerhans and in organs affected in diabetic late complications: a study in human and animal tissueK Buschard, K Josefsen, S V Hansen, et al.Glycobiology|November 26, 1999
The glycosphingolipid sulfatide in the islets of Langerhans in rat pancreas is processed through recycling: possible involvement in insulin traffickingP Fredman, J E Mânsson, B M Rynmark, et al.Journal of Neuroendocrinology|July 16, 2009
Huntington's disease does not appear to increase the risk of diabetes mellitusT W Boesgaard, T T Nielsen, K Josefsen, et al.International Journal of Experimental Diabetes Research|July 27, 2001
Neonatal treatment with beta-cell stimulatory agents reduces the incidence of diabetes in BB ratsK Buschard, T Bock, C R Pedersen, et al.Journal of Diabetes Research|December 27, 2013
Ampicillin-improved glucose tolerance in diet-induced obese C57BL/6NTac mice is age dependentI Rune, C H F Hansen, M Ellekilde, et al.Pageof 3