Immunomodulatory Effects of Diterpene Quinone Derivatives from the Roots ofHorminum pyrenaicumin Human PBMC

Author:

Becker K.1,Schwaiger S.2,Waltenberger B.2,Fuchs D.1ORCID,Pezzei C. K.23,Schennach H.4,Stuppner H.2ORCID,Gostner J. M.5ORCID

Affiliation:

1. Division of Biological Chemistry, Biocenter, Medical University of Innsbruck, Innsbruck, Austria

2. Institute of Pharmacy/Pharmacognosy and Center for Molecular Biosciences Innsbruck (CMBI), University of Innsbruck, Innsbruck, Austria

3. Institute for Analytical Chemistry and Radiochemistry and CMBI, University of Innsbruck, Innsbruck, Austria

4. Central Institute of Blood Transfusion and Immunology, University Hospital of Innsbruck, Innsbruck, Austria

5. Division of Medical Biochemistry, Biocenter, Medical University of Innsbruck, Innsbruck, Austria

Abstract

Several phytochemicals were shown to interfere with redox biology in the human system. Moreover, redox biochemistry is crucially involved in the orchestration of immunological cascades. When screening for immunomodulatory compounds, the two interferon gamma- (IFN-γ-) dependent immunometabolic pathways of tryptophan breakdown via indoleamine 2,3-dioxygenase-1 (IDO-1) and neopterin formation by GTP-cyclohydrolase 1 (GTP-CH-I) represent prominent targets, as IFN-γ-related signaling is strongly sensitive to oxidative triggers. Herein, the analysis of these pathway activities in human peripheral mononuclear cells was successfully applied in a bioactivity-guided fractionation strategy to screen for anti-inflammatory substances contained in the root ofHorminum (H.) pyrenaicumL. (syn. Dragon’s mouth), the only representative of the monophyletic genusHorminum. Four abietane diterpene quinone derivatives (horminone, 7-O-acetylhorminone, inuroyleanol and its 15,16-dehydro-derivative, a novel natural product), two nor-abietane diterpene quinones (agastaquinone and 3-deoxyagastaquinone) and twoabeo18 (4 → 3) abietane diterpene quinones (agastol and its 15,16-dehydro-derivative) could be identified. These compounds were able to dose-dependently suppress the above mentioned pathways with different potency. Beside the description of new active compounds, this study demonstrates the feasibility of integrating IDO-1 and GTP-CH-I activity in the search for novel anti-inflammatory compounds, which can then be directed towards a more detailed mode of action analysis.

Funder

Austrian Science Fund

Publisher

Hindawi Limited

Subject

Cell Biology,Ageing,General Medicine,Biochemistry

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