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Proteomic analysis of decellularized mice liver and kidney extracellular matrices.
Diedrich, Anna-Maria; Daneshgar, Assal; Tang, Peter; Klein, Oliver; Mohr, Annika; Onwuegbuchulam, Olachi A; von Rueden, Sabine; Menck, Kerstin; Bleckmann, Annalen; Juratli, Mazen A; Becker, Felix; Sauer, Igor M; Hillebrandt, Karl H; Pascher, Andreas; Struecker, Benjamin.
Afiliação
  • Diedrich AM; Department of General, Visceral, and Transplant Surgery, University Hospital Muenster, 48149, Muenster, Germany.
  • Daneshgar A; Department of Surgery, Charité Mitte | Campus Virchow-Klinikum, Charité -Universitaetsmedizin Berlin, Campus, 13353, Berlin, Germany.
  • Tang P; Berlin Institute of Health at Charité - Universitaetsmedizin Berlin, BIH Biomedical Innovation Academy, BIH Charité Clinician Scientist Program, Charitéplatz 1, 10117, Berlin, Germany.
  • Klein O; Department of Surgery, Charité Mitte | Campus Virchow-Klinikum, Charité -Universitaetsmedizin Berlin, Campus, 13353, Berlin, Germany.
  • Mohr A; Berlin Institute of Health at Charité - Universitaetsmedizin Berlin, Core Facility Imaging Mass Spectrometry, 13353, Berlin, Germany.
  • Onwuegbuchulam OA; Department of General, Visceral, and Transplant Surgery, University Hospital Muenster, 48149, Muenster, Germany.
  • von Rueden S; Department of General, Visceral, and Transplant Surgery, University Hospital Muenster, 48149, Muenster, Germany.
  • Menck K; Department of General, Visceral, and Transplant Surgery, University Hospital Muenster, 48149, Muenster, Germany.
  • Bleckmann A; Department of Medicine A for Hematology, Oncology, Hemostaseology and Pneumology, University Hospital Muenster, 48149, Muenster, Germany.
  • Juratli MA; West German Cancer Center, University Hospital Muenster, 48149, Muenster, Germany.
  • Becker F; Department of Medicine A for Hematology, Oncology, Hemostaseology and Pneumology, University Hospital Muenster, 48149, Muenster, Germany.
  • Sauer IM; West German Cancer Center, University Hospital Muenster, 48149, Muenster, Germany.
  • Hillebrandt KH; Department of General, Visceral, and Transplant Surgery, University Hospital Muenster, 48149, Muenster, Germany.
  • Pascher A; West German Cancer Center, University Hospital Muenster, 48149, Muenster, Germany.
  • Struecker B; Department of General, Visceral, and Transplant Surgery, University Hospital Muenster, 48149, Muenster, Germany.
J Biol Eng ; 18(1): 17, 2024 Feb 22.
Article em En | MEDLINE | ID: mdl-38389090
ABSTRACT

BACKGROUND:

The extracellular matrix (ECM) is a three-dimensional network of proteins that encases and supports cells within a tissue and promotes physiological and pathological cellular differentiation and functionality. Understanding the complex composition of the ECM is essential to decrypt physiological processes as well as pathogenesis. In this context, the method of decellularization is a useful technique to eliminate cellular components from tissues while preserving the majority of the structural and functional integrity of the ECM.

RESULTS:

In this study, we employed a bottom-up proteomic approach to elucidate the intricate network of proteins in the decellularized extracellular matrices of murine liver and kidney tissues. This approach involved the use of a novel, perfusion-based decellularization protocol to generate acellular whole organ scaffolds. Proteomic analysis of decellularized mice liver and kidney ECM scaffolds revealed tissue-specific differences in matrisome composition, while we found a predominantly stable composition of the core matrisome, consisting of collagens, glycoproteins, and proteoglycans. Liver matrisome analysis revealed unique proteins such as collagen type VI alpha-6, fibrillin-2 or biglycan. In the kidney, specific ECM-regulators such as cathepsin z were detected.

CONCLUSION:

The identification of distinct proteomic signatures provides insights into how different matrisome compositions might influence the biological properties of distinct tissues. This experimental workflow will help to further elucidate the proteomic landscape of decellularized extracellular matrix scaffolds of mice in order to decipher complex cell-matrix interactions and their contribution to a tissue-specific microenvironment.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article