Natural Compound Library Screening Identifies New Molecules for the Treatment of Cardiac Fibrosis and Diastolic Dysfunction.
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Authors
Schimmel, KatharinaJung, Mira
Foinquinos, Ariana
José, Gorka San
Beaumont, Javier
Bock, Katharina
Grote-Levi, Lea
Xiao, Ke
Bär, Christian
Pfanne, Angelika
Just, Annette
Zimmer, Karina
Ngoy, Soeun
López, Begoña
Ravassa, Susana
Samolovac, Sabine
Janssen-Peters, Heike
Remke, Janet
Scherf, Kristian
Dangwal, Seema
Piccoli, Maria-Teresa
Kleemiss, Felix
Kreutzer, Fabian Philipp
Kenneweg, Franziska
Leonardy, Julia
Hobuß, Lisa
Santer, Laura
Do, Quoc-Tuan
Geffers, Robert
Braesen, Jan Hinrich
Schmitz, Jessica
Brandenberger, Christina
Müller, Dominik N
Wilck, Nicola
Kaever, Volkhard
Bähre, Heike
Batkai, Sandor
Fiedler, Jan
Alexander, Kevin M
Wertheim, Bradley M
Fisch, Sudeshna
Liao, Ronglih
Diez, Javier
González, Arantxa
Thum, Thomas
Issue Date
2020-01-17
Metadata
Show full item recordAbstract
High-throughput natural compound library screening identified 15 substances with antiproliferative effects in human cardiac fibroblasts. Using multiple in vitro fibrosis assays and stringent selection algorithms, we identified the steroid bufalin (from Chinese toad venom) and the alkaloid lycorine (from Amaryllidaceae species) to be effective antifibrotic molecules both in vitro and in vivo, leading to improvement in diastolic function in 2 hypertension-dependent rodent models of cardiac fibrosis. Administration at effective doses did not change plasma damage markers or the morphology of kidney and liver, providing the first toxicological safety data. Using next-generation sequencing, we identified the conserved microRNA 671-5p and downstream the antifibrotic selenoprotein P1 as common effectors of the antifibrotic compounds.Citation
Circulation. 2020 Mar 3;141(9):751-767. doi: 10.1161/CIRCULATIONAHA.119.042559. Epub 2020 Jan 17.Affiliation
HZI,Helmholtz-Zentrum für Infektionsforschung GmbH, Inhoffenstr. 7,38124 Braunschweig, Germany.Publisher
Lippincott, Williams & WilkinsJournal
CirculationPubMed ID
31948273Type
ArticleLanguage
enEISSN
1524-4539ae974a485f413a2113503eed53cd6c53
10.1161/CIRCULATIONAHA.119.042559
Scopus Count
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