4.7 Article

Diversity-oriented synthesis through gamma radiolysis: Preparation of unusual ecdysteroid derivatives activating Akt and AMPK in skeletal muscle cells

Journal

BIOORGANIC CHEMISTRY
Volume 112, Issue -, Pages -

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.bioorg.2021.104951

Keywords

Gamma radiolysis; Ecdysterone; Natural product; Diversity-oriented synthesis; Centrifugal partition chromatography; Protein kinase B; AMP-activated protein kinase

Funding

  1. National Research, Development and Innovation Office, Hungary (NKFIH) [K134704]
  2. Economic Development and Innovation Operative Program [GINOP2.3.215201600012]
  3. Ministry of Human Capacities, Hungary [20391-3/2018/FEKUSTRAT]

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The study utilized gamma-ray radiation for diversity-oriented synthesis of analogs of 20-hydroxyecdysone (20E) and isolated 14 ecdysteroids, including five new compounds. These new compounds showed stronger cytoprotective effects and capacity to promote Akt and AMPK phosphorylation in vitro compared to 20E.
Gamma-ray radiation is a unique way to induce chemical transformations of bioactive compounds. In the present study, we pursued this approach to the diversity-oriented synthesis of analogs of 20-hydroxyecdysone (20E), an abundant ecdysteroid with a range of beneficial, non-hormonal bioactivities in mammals including humans. Gamma irradiations of aqueous solutions of 20E were conducted either in N2- or N2O-saturated solutions. Centrifugal partition chromatography was used to fractionate crude resulting irradiated materials using a biphasic solvent system composed of tert-butyl alcohol - ethyl acetate - water (0.45:0.9:1, v/v/v) in ascending mode. Subsequently, the products were purified by RP-HPLC. Fourteen ecdysteroids, including five new compounds, were isolated, and their structure were elucidated by 1D and 2D NMR and HRMS. Compounds 2-4, 7, 9, 12 and 15 were tested for their capacity to increase the Akt- and AMPK-phosphorylation of C2C12 murine skeletal myotubes in vitro. The compounds were similarly active on Akt as their parent compound. Stachysterone B (7) and a new ring-rearranged compound (12) were more potent than 20E in activating AMPK, indicating a stronger cytoprotective effect. Our results demonstrate the use of gamma irradiation in expanding the chemical diversity of ecdysteroids to obtain new, unusual bioactive metabolites.

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