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8 Records found.
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1.
Hinrichs, A.* et al.: Growth hormone receptor-deficient pigs resemble the pathophysiology of human Laron syndrome and reveal altered activation of signaling cascades in the liver. Mol. Metab. 11, 113-128 (2018)
2.
Blutke, A.* et al.: The Munich MIDY Pig Biobank - A unique resource for studying organ crosstalk in diabetes. Mol. Metab. 6, 931-940 (2017)
3.
Hinrichs, A.S.* et al.: Impaired weight gain and disproportionate organ growth, but preserved fertility in growth hormone receptor deficient pigs (Laron syndrome). Reprod. Dom. Anim. 52, 24-24 (2017)
4.
Kemter, E.* et al.: INS-eGFP transgenic pigs: A novel reporter system for studying maturation, growth and vascularisation of neonatal islet-like cell clusters. Diabetologia 60, 1152-1156 (2017)
5.
Ivanova-Cederstroem, A. et al.: Generation of the transgenic INS-SNAP (SOFIA) pig for the high-throughput high-content study of insulin granule biogenesis and turnover in isolated islets. Diabetologia 58, S217 (2015)
6.
Kemter, E.* et al.: INS-eGFP transgenic piglets provide a novel tool for studying maturation and vascularization of Neonatal Islet Cell Clusters (NICCs) in vivo. Xenotransplantation 22, S62-S63 (2015)
7.
Kemter, E.* et al.: INS-EGFP transgenic piglets provide a novel tool for studying maturation and vascularization of Neonatal Islet Cell Clusters (NICCs) in vivo. Transplantation 99, S99 (2015)
8.
Renner, S.* et al.: Permanent neonatal diabetes in INSC94Y transgenic pigs. Diabetes 62, 1505-1511 (2013)