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Icariin reduces bone loss in a Rankl-induced transgenic medaka (Oryzias latipes) model for osteoporosis
Authors:Cuong V. Pham  Thanh T. Pham  Thuy T. Lai  Dat C. Trinh  Huong V. M. Nguyen  Tam T. M. Ha  Thuong T. Phuong  Long D. Tran  Christoph Winkler  Thuy T. To
Affiliation:1. Faculty of Biology, VNU University of Science, Vietnam National University, Hanoi, Vietnam;2. Department of Herbal Analysis and Standardization, Vietnam National Institute of Medicinal Materials, Hanoi, Vietnam;3. Department of Biological Sciences and Centre for Bioimaging Sciences, National University of Singapore, Singapore
Abstract:Given the limitations and side effects of many synthetic drugs, natural products are an important alternative source for drugs and medications for many diseases. Icariin (ICA), one of the main flavonoids from plants of the Epimedium genus, has been shown to ameliorate osteoporosis and improve bone health in preclinical studies. Those studies have used different in vivo models, mostly rodents, but the underlying mechanisms remain unclear. The present study shows, for the first time, that ICA reduces bone damage in a Rankl-induced medaka fish (Oryzias latipes), a non-rodent osteoporosis model. Live imaging was previously performed in this model to characterize antiresorptive and bone-anabolic properties of drugs. Here, a new quantification method (IM) was established based on the length of mineralized neural arches to quantify levels of bone mineralization damage and protection in early post-embryonic fish. This method was validated by quantification of three levels of bone damage in three independent Rankl fish lines, and by the determination of different degrees of severity of osteoporosis-like phenotypes in one Rankl line exposed to variable Rankl induction schemes. IM was also used to quantify the efficacy of alendronate and etidronate, two common anti-osteoporotic bisphosphonates, and revealed comparable bone protective effects for ICA and alendronate in this fish osteoporosis model. This study's data support the value of the medaka fish model for bone research and establish a method to screen for novel osteoprotective compounds.
Keywords:bisphosphonate  icariin  medaka  mineralized matrix  neural arch  osteoporosis
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