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1.
Kim, T.* et al.: Glucagon receptor signaling regulates energy metabolism via hepatic farnesoid X receptor and fibroblast growth factor 21. Diabetes 67, 1773-1782 (2018)
2.
Renner, S.* et al.: Metabolic syndrome and extensive adipose tissue inflammation in morbidly obese Göttingen minipigs. Mol. Metab., accepted (2018)
3.
Khajavi, N.* ; Biebermann, H.* ; Tschöp, M.H. & DiMarchi, R.*: Treatment of diabetes and obesity by rationally designed peptide agonists functioning at multiple metabolic receptors. In: (10th ESPE Advanced Seminar in Developmental Endocrinology, 10 June 2016, Ulm). 2017. 165-182 (Endocr. Dev. ; 32)
4.
Tschöp, M.H. & DiMarchi, R.*: Single-molecule combinatorial therapeutics for treating obesity and diabetes. In:. Alexandria: Amer Diabetes Assoc, 2017. 1766-1769 (Diabetes ; 66)
5.
Clemmensen, C. ; Müller, T.D. ; Finan, B. ; Tschöp, M.H. & DiMarchi, R.*: Current and emerging treatment options in diabetes care. Handb. Exp. Pharmacol. 233, 437-459 (2016)
6.
Finan, B. et al.: Chemical hybridization of glucagon and thyroid hormone optimizes therapeutic Impact for metabolic disease. Cell 167, 843-857.e14 (2016)
7.
Clemmensen, C. et al.: GLP-1/glucagon co-agonism restores leptin responsiveness in obese mice chronically maintained on an obesogenic diet. Diabetes 63, 1422-1427 (2014)
8.
Heppner, K.M.* et al.: Both acyl and des-acyl ghrelin regulate adiposity and glucose metabolism via CNS ghrelin receptors. Diabetes 63, 122-131 (2014)
9.
Müller, T.D. et al.: The orphan receptor Gpr83 regulates systemic energy metabolism via ghrelin-dependent and ghrelin-independent mechanisms. Nat. Commun. 4:1968 (2013)
10.
Heppner, K.M.* et al.: Acylation type determines ghrelin's effects on energy homeostasis in rodents. Endocrinology 153, 4687-4695 (2012)
11.
Müller, T.D. et al.: Restoration of leptin responsiveness in diet-induced obese mice using an optimized leptin analog in combination with exendin-4 or FGF21. J. Pept. Sci. 18, 383-393 (2012)