Charlotte Steenblock-Group

Stem-like Cells of the HPA axis and their role in stress

Marine Sponge-Derived Secondary Metabolites Modulate SARS-CoV-2 Entry Mechanisms


Journal article


C. Steenblock, Stefanie Richter, Dirk Lindemann, Hermann Ehrlich, Stefan R. Bornstein, N. Bechmann
Hormone and Metabolic Research, 2023

Semantic Scholar DOI PubMed
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APA   Click to copy
Steenblock, C., Richter, S., Lindemann, D., Ehrlich, H., Bornstein, S. R., & Bechmann, N. (2023). Marine Sponge-Derived Secondary Metabolites Modulate SARS-CoV-2 Entry Mechanisms. Hormone and Metabolic Research.


Chicago/Turabian   Click to copy
Steenblock, C., Stefanie Richter, Dirk Lindemann, Hermann Ehrlich, Stefan R. Bornstein, and N. Bechmann. “Marine Sponge-Derived Secondary Metabolites Modulate SARS-CoV-2 Entry Mechanisms.” Hormone and Metabolic Research (2023).


MLA   Click to copy
Steenblock, C., et al. “Marine Sponge-Derived Secondary Metabolites Modulate SARS-CoV-2 Entry Mechanisms.” Hormone and Metabolic Research, 2023.


BibTeX   Click to copy

@article{c2023a,
  title = {Marine Sponge-Derived Secondary Metabolites Modulate SARS-CoV-2 Entry Mechanisms},
  year = {2023},
  journal = {Hormone and Metabolic Research},
  author = {Steenblock, C. and Richter, Stefanie and Lindemann, Dirk and Ehrlich, Hermann and Bornstein, Stefan R. and Bechmann, N.}
}

Abstract

Abstract The emergence of SARS-CoV 2 caused the COVID-19 pandemic, resulting in numerous global infections and deaths. In particular, people with metabolic diseases display an increased risk of severe COVID 19 and a fatal outcome. Treatment options for severe cases are limited, and the appearance of new virus variants complicates the development of novel therapies. To better manage viral infections like COVID 19, new therapeutic approaches are needed. Marine sponges offer a natural and renewable source of unique bioactive agents. These sponges produce secondary metabolites with various effects, including anti-viral, anti-inflammatory, and anti-tumorigenic properties. In the current study, we investigated the effect of five different marine sponge-derived secondary metabolites (four bromotyrosines and one sesquiterpenoid hydroquinone). Two of these, Avarol and Acetyl-dibromoverongiaquinol reduced the expression of ACE2, the main receptor for SARS-CoV 2, and the alternative receptor NRP1. Moreover, these substances derived from sponges demonstrated the ability to diminish the virus titer in SARS-CoV 2-infected cells, especially concerning the Omicron lineage. However, the reduction was not substantial enough to expect a significant impact on infected humans. Consequently, the investigated sponge-derived secondary metabolites are not likely to be effective to treat COVID 19 as a stand-alone therapy.


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