Development of adrenal 3-dimensional spheroid cultures: potential for the treatment of adrenal insufficiency and neurodegenerative diseases

Author:

Steenblock Charlotte1ORCID,Fliedner Stephanie2ORCID,Spinas Giatgen A3ORCID,Ofir Racheli4ORCID,Kugelmeier Patrick5,Ludwig Barbara1ORCID,Bechmann Nicole6ORCID

Affiliation:

1. Department of Internal Medicine III, University Hospital Carl Gustav Carus, Technische Universität Dresden, 01307 Dresden, Germany

2. 1st Department of Medicine, University Medical Center Schleswig-Holstein, Campus Lübeck, 23538 Lübeck, Germany

3. Department of Endocrinology, Diabetology and Clinical Nutrition, University Hospital Zurich, 8091 Zurich, Switzerland

4. Betalin Therapeutics Ltd, Jerusalem Bio Park, Minrav Bldg., Hadassah Ein Kerem Campus, Jerusalem 9112001, Israel

5. Kugelmeiers Ltd., 8703 Erlenbach, Switzerland

6. Institute for Clinical Chemistry and Laboratory Medicine, University Hospital Carl Gustav Carus, Medical Faculty Carl Gustav Carus, Technische Universität Dresden, 01307 Dresden, Germany

Abstract

Aim: Regenerative and curative strategies would be desirable for neurodegenerative and adrenal diseases, and multipotent adrenal stem cells are considered as promising biological tools for this purpose. Stem-like cells with the potential to proliferate and differentiate in vivo and in vitro were discovered in both cortex and medulla of the adrenal gland. Previously, it was demonstrated that nestin-positive progenitors in the cortex and medulla, play an important role under stress. In the present study, the cultivation of these cells was optimized and their growth in vitro was characterized. Methods: Primary cells from the adrenal cortex and medulla from Nes-GFP mice were isolated and the in vitro culture conditions promoting the growth of stem and progenitor cells using different 3-dimensional (3D) spheroid culture models were optimized. Results: Both cortical and medullary cells could be cultured for at least one month under several different low-adherence conditions maintaining their viability and potential to differentiate. Medullary cells grew faster than cortical cells. Endothelin did not affect the cultures. Conclusions: Adrenomedullary and adrenocortical nestin-positive progenitor cells can be cultured long-term in 3D cultures maintaining their proliferation and differentiation capabilities. Such multidimensional models can potentially be used for drug screening to develop personalized medicines or for transplantation to treat neurodegenerative disorders or adrenal diseases, such as adrenal insufficiency.

Publisher

Open Exploration Publishing

Subject

General Medicine,General Earth and Planetary Sciences,General Environmental Science,General Medicine,Ocean Engineering,General Medicine,General Medicine,General Medicine,General Medicine,General Earth and Planetary Sciences,General Environmental Science,General Medicine

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1. Message of welcome from the editor-in-chief;Exploration of Endocrine and Metabolic Disease;2023-11-15

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