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- W4320497516 startingPage "919" @default.
- W4320497516 abstract "Skeletal disabilities are a prominent burden on the present population with an increasing life span. Advances in osteopathy have provided various medical support for bone-related diseases, including pharmacological and prosthesis interventions. However, therapeutics and post-surgery complications are often reported due to side effects associated with modern-day therapies. Thus, therapies utilizing natural means with fewer toxic or other side effects are the key to acceptable interventions. Flavonoids constitute a class of bioactive compounds found in dietary supplements, and their pharmacological attributes have been well appreciated. Recently, flavonoids' role is gaining renowned interest for its effect on bone remodeling. A wide range of flavonoids has been found to play a pivotal role in the major bone signaling pathways, such as wingless-related integration site (Wnt)/β-catenin, bone morphogenetic protein (BMP)/transforming growth factor (TGF)-β, mitogen-activated protein kinase (MAPK), etc. However, the reduced bioavailability and the absorption of flavonoids are the major limitations inhibiting their use against bone-related complications. Recent utilization of nanotechnological approaches and other delivery methods (biomaterial scaffolds, micelles) to target and control release can enhance the absorption and bioavailability of flavonoids. Thus, we have tried to recapitulate the understanding of the role of flavonoids in regulating signaling mechanisms affecting bone remodeling and various delivery methods utilized to enhance their therapeutical potential in treating bone loss." @default.
- W4320497516 created "2023-02-14" @default.
- W4320497516 creator A5001497588 @default.
- W4320497516 creator A5029197210 @default.
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- W4320497516 creator A5047192349 @default.
- W4320497516 creator A5056540491 @default.
- W4320497516 creator A5089599521 @default.
- W4320497516 date "2023-02-12" @default.
- W4320497516 modified "2023-10-15" @default.
- W4320497516 title "Bioactivity, Molecular Mechanism, and Targeted Delivery of Flavonoids for Bone Loss" @default.
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