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1.
Henderson, D.J.* et al.: Beyond genomic studies of congenital heart defects through systematic modelling and phenotyping. Dis. Model. Mech. 17:dmm050913 (2024)
2.
Kramer, J.* et al.: Axolotl mandible regeneration occurs through mechanical gap closure and a shared regenerative program with the limb. Dis. Model. Mech. 17:dmm050743 (2024)
3.
Shashikadze, B.* et al.: Multi-omics analysis of diabetic pig lungs reveals molecular derangements underlying pulmonary complications of diabetes mellitus. Dis. Model. Mech. 17:dmm050650 (2024)
4.
Cacheiro, P.* et al.: Knockout mice represent an important tool for the multisystemic study of human monogenic heart disease. Dis. Model. Mech. 16:dmm049770 (2023)
5.
Garrett, L. et al.: Post-synaptic scaffold protein TANC2 in psychiatric and somatic disease risk. Dis. Model. Mech. 15:dmm049205 (2022)
6.
Salminen, A.V. et al.: Consensus guidelines on the construct validity of rodent models of restless legs syndrome. Dis. Model. Mech. 15:dmm049615 (2022)
7.
Bohnert, B.N. et al.: Essential role of DNA-PKcs and plasminogen for the development of doxorubicin-induced glomerular injury in mice. Dis. Model. Mech. 14:dmm049038 (2021)
8.
Hansen, J. ; von Melchner, H.* & Wurst, W.: Mutant non-coding RNA resource in mouse embryonic stem cells. Dis. Model. Mech. 14:dmm047803 (2021)
9.
Stirm, M.* et al.: A scalable, clinically severe pig model for Duchenne muscular dystrophy. Dis. Model. Mech. 14:dmm049285 (2021)
10.
Delgadillo-Silva, L.F. et al.: Modelling pancreatic beta-cell inflammation in zebrafish identifies the natural product wedelolactone for human islet protection. Dis. Model. Mech. 12:dmm036004 (2019)
11.
Renner, S.* et al.: Mild maternal hyperglycemia in INSC93S transgenic pigs causes impaired glucose tolerance and metabolic alterations in neonatal offspring. Dis. Model. Mech. 12:dmm039156 (2019)
12.
Poobalasingam, T.* et al.: Heterozygous Vangl2Looptail mice reveal novel roles for the planar cell polarity pathway in adult lung homeostasis and repair. Dis. Model. Mech. 10, 409-423 (2017)
13.
Salminen, A.V. et al.: Meis1 effects on motor phenotypes and the sensorimotor system in mice. Dis. Model. Mech. 10, 981-991 (2017)
14.
Szibor, M.* et al.: Broad AOX expression in a genetically tractable mouse model does not disturb normal physiology. Dis. Model. Mech. 10, 163-171 (2017)
15.
Mutze, K. ; Vierkotten, S. ; Milosevic, J.* ; Eickelberg, O. & Königshoff, M.: Enolase 1 and protein disulfide isomerase associated 3 regulate Wnt/β-catenin driven trans-differentiation of murine alveolar epithelial cells. Dis. Model. Mech. 8, 877-890 (2015)
16.
Xiao, Y. et al.: High-resolution live imaging reveals axon-glia interactions during peripheral nerve injury and repair in zebrafish. Dis. Model. Mech. 8, 553-564 (2015)
17.
Adams, D.* et al.: Bloomsbury report on mouse embryo phenotyping: Recommendations from the IMPC workshop on embryonic lethal screening. Dis. Model. Mech. 6, 571-579 (2013)
18.
Rodgers, R.J.* ; Tschöp, M.H. & Wilding, J.P.H.*: Anti-obesity drugs: Past, present and future. Dis. Model. Mech. 5, 621-626 (2012)
19.
Stemmer, K. et al.: High-fat-diet-induced obesity causes an inflammatory and tumor-promoting microenvironment in the rat kidney. Dis. Model. Mech. 5, 627-635 (2012)
20.
Yi, C.-X. ; Tschöp, M.H. ; Woods, S.C.* & Hofmann, S.M.: High-fat-diet exposure induces IgG accumulation in hypothalamic microglia. Dis. Model. Mech. 5, 686-690 (2012)