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Molecular signatures of angiogenesis inhibitors: a single-embryo untargeted metabolomics approach in zebrafish.
Wilhelmi, Pia; Haake, Volker; Zickgraf, Franziska M; Giri, Varun; Ternes, Philipp; Driemert, Peter; Nöth, Julia; Scholz, Stefan; Barenys, Marta; Flick, Burkhard; Birk, Barbara; Kamp, Hennicke; Landsiedel, Robert; Funk-Weyer, Dorothee.
Afiliação
  • Wilhelmi P; BASF SE, Experimental Toxicology and Ecology, Carl-Bosch-Strasse 38, 67056, Ludwigshafen Am Rhein, Germany. pwilhewi7@alumnes.ub.edu.
  • Haake V; University of Barcelona, Research Group in Toxicology-GRET, 08028, Barcelona, Spain. pwilhewi7@alumnes.ub.edu.
  • Zickgraf FM; BASF Metabolome Solutions, 10589, Berlin, Germany.
  • Giri V; BASF SE, Experimental Toxicology and Ecology, Carl-Bosch-Strasse 38, 67056, Ludwigshafen Am Rhein, Germany. franziska-maria.zickgraf@basf.com.
  • Ternes P; BASF SE, Experimental Toxicology and Ecology, Carl-Bosch-Strasse 38, 67056, Ludwigshafen Am Rhein, Germany.
  • Driemert P; BASF Metabolome Solutions, 10589, Berlin, Germany.
  • Nöth J; BASF Metabolome Solutions, 10589, Berlin, Germany.
  • Scholz S; Department of Bioanalytical Ecotoxicology, Helmholtz Centre for Environmental Research-UFZ, 04318, Leipzig, Germany.
  • Barenys M; Department of Bioanalytical Ecotoxicology, Helmholtz Centre for Environmental Research-UFZ, 04318, Leipzig, Germany.
  • Flick B; University of Barcelona, Research Group in Toxicology-GRET, 08028, Barcelona, Spain.
  • Birk B; German Centre for the Protection of Laboratory Animals (Bf3R), German Federal Institute for Risk Assessment (BfR), 10589, Berlin, Germany.
  • Kamp H; BASF SE, Experimental Toxicology and Ecology, Carl-Bosch-Strasse 38, 67056, Ludwigshafen Am Rhein, Germany.
  • Landsiedel R; Preclinical Compound Profiling, Toxicology, NUVISAN ICB GmbH, 13353, Berlin, Germany.
  • Funk-Weyer D; BASF SE, Experimental Toxicology and Ecology, Carl-Bosch-Strasse 38, 67056, Ludwigshafen Am Rhein, Germany.
Arch Toxicol ; 98(3): 943-956, 2024 Mar.
Article em En | MEDLINE | ID: mdl-38285066
ABSTRACT
Angiogenesis is a key process in embryonic development, a disruption of this process can lead to severe developmental defects, such as limb malformations. The identification of molecular perturbations representative of antiangiogenesis in zebrafish embryo (ZFE) may guide the assessment of developmental toxicity from an endpoint- to a mechanism-based approach, thereby improving the extrapolation of findings to humans. Thus, the aim of the study was to discover molecular changes characteristic of antiangiogenesis and developmental toxicity. We exposed ZFEs to two antiangiogenic drugs (SU4312, sorafenib) and two developmental toxicants (methotrexate, rotenone) with putative antiangiogenic action. Molecular changes were measured by performing untargeted metabolomics in single embryos. The metabolome response was accompanied by the occurrence of morphological alterations. Two distinct metabolic effect patterns were observed. The first pattern comprised common effects of two specific angiogenesis inhibitors and the known teratogen methotrexate, strongly suggesting a shared mode of action of antiangiogenesis and developmental toxicity. The second pattern involved joint effects of methotrexate and rotenone, likely related to disturbances in energy metabolism. The metabolites of the first pattern, such as phosphatidylserines, pterines, retinol, or coenzyme Q precursors, represented potential links to antiangiogenesis and related developmental toxicity. The metabolic effect pattern can contribute to biomarker identification for a mechanism-based toxicological testing.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Peixe-Zebra / Inibidores da Angiogênese Tipo de estudo: Prognostic_studies Limite: Animals / Humans Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Peixe-Zebra / Inibidores da Angiogênese Tipo de estudo: Prognostic_studies Limite: Animals / Humans Idioma: En Ano de publicação: 2024 Tipo de documento: Article