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1.
Buck, A. et al.: Metabolic tumor constitution is superior to tumor regression grading for evaluating response to neoadjuvant therapy of esophageal adenocarcinoma patients. J. Pathol. 256, 202-213 (2022)
2.
Lansink Rotgerink, L.* et al.: Experimental investigation of skin toxicity after immune checkpoint inhibition in combination with radiation therapy. J. Pathol. 258, 189-198 (2022)
3.
Alston, C.L.* ; Stenton, S. ; Hudson, G.* ; Prokisch, H. & Taylor, R.W.*: The genetics of mitochondrial disease: Dissecting mitochondrial pathology using multi-omic pipelines. J. Pathol. 254, 430-442 (2021)
4.
Ganz, H.M. et al.: Generation of ductal organoids from normal mammary luminal cells reveals invasive potential. J. Pathol., DOI: 10.1002/path.5790 (2021)
5.
Vockerodt, M.* et al.: Regulation of S1PR2 by the EBV oncogene LMP1 in aggressive ABC-subtype diffuse large B-cell lymphoma. J. Pathol. 248, 142-154 (2019)
6.
Fichter, C.D.* et al.: A new model system identifies EGFR/HER2 and HER2/HER3 heterodimers as potent inducers of oesophageal epithelial cell invasion. J. Pathol. 243, 481-495 (2017)
7.
Buck, A. et al.: High-resolution MALDI-FT-ICR MS imaging for the analysis of metabolites from formalin-fixed paraffin-embedded clinical tissue samples. J. Pathol. 237, 123–132 (2015)
8.
Ringelhan, M. ; Protzer, U. ; O'Connor, T.* & Heikenwälder, M.: The direct and indirect role of HBV in liver cancer: Prospective markers for HCC-screening and potential therapeutic targets. J. Pathol. 235, 355-367 (2015)
9.
Aichler, M. & Walch, A.K.: In brief: The (molecular) pathogenesis of Barrett's oesophagus. J. Pathol. 232, 383-385 (2014)
10.
Balluff, B.* et al.: De novo discovery of phenotypic intra-tumor heterogeneity using imaging mass spectrometry. J. Pathol. 235, 3-13 (2014)
11.
Aichler, M. et al.: Clinical response to chemotherapy in oesophageal adenocarcinoma patients is linked to defects in mitochondria. J. Pathol. 230, 410-419 (2013)
12.
Richter, G.H.S.* et al.: G-protein coupled receptor 64 promotes invasiveness and metastasis in Ewing sarcomas through PGF and MMP1. J. Pathol. 230, 70-81 (2013)
13.
Aichler, M. et al.: Origin of pancreatic ductal adenocarcinoma from atypical flat lesions: A comparative study in transgenic mice and human tissues. J. Pathol. 226, 723-734 (2012)
14.
Meding, S. et al.: Tissue-based proteomics reveals FXYD3, S100A11 and GSTM3 as novel markers for regional lymph node metastasis in colon cancer. J. Pathol. 228, 459-470 (2012)
15.
Wolff, C.* et al.: Signalling networks associated with urokinase-type plasminogen activator (uPA) and its inhibitor PAI-1 in breast cancer tissues: New insights from protein microarray analysis. J. Pathol. 223, 54-63 (2011)
16.
Warren, M.V.* et al.: An impending crisis in the provision of histopathology expertise for mouse functional genomics. J. Pathol. 217, 4-13 (2009)
17.
Becker, K.-F.* et al.: Quantitative protein analysis from formalin-fixed tissues: Implications for translational clinical research and nanoscale molecular diagnosis. J. Pathol. 211, 370-378 (2007)
18.
Gerlach, U.* et al.: Centrosome-, chromosomal-passenger- and cell-cycle-associated mRNAs are differentially regulated in the development of sporadic colorectal cancer. J. Pathol. 208, 462-472 (2006)
19.
Hennard, C. et al.: The antibody 2B4 directed against the Epstein-Barr virus (EBV)-encoded nuclear antigen I (EBNA I) detects MAGE-4: Implications for studies on the EBV association of human cancers. J. Pathol. 209, 430-435 (2006)
20.
Schreck, S.* et al.: Activation-induced cytidine deaminase (AID) is expressed in normal spermatogenesis but only infrequently in testicular germ cell tumours. J. Pathol. 210, 26-31 (2006)