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Indoxyl sulfate promotes apoptosis in cultured osteoblast cells

Authors
Kim, Young-HeeKwak, Kyung-AhGil, Hyo-WookSong, Ho-YeonHong, Sae-Yong
Issue Date
1-Dec-2013
Publisher
BioMed Central
Keywords
Uremia; Renal osteodystrophy; Apoptosis; Cell differentiation; Organic anion transporters
Citation
BMC pharmacology & toxicology, v.14
Journal Title
BMC pharmacology & toxicology
Volume
14
URI
https://scholarworks.bwise.kr/sch/handle/2021.sw.sch/13061
DOI
10.1186/2050-6511-14-60
ISSN
2050-6511
Abstract
Background: Indoxyl sulfate (IS), an organic anion uremic toxin, promotes the progression of renal dysfunction. Some studies have suggested that IS inhibits osteoclast differentiation and suppresses parathyroid hormone (PTH)-stimulated intracellular cAMP production, decreases PTH receptor expression, and induces oxidative stress in primary mouse calvaria osteoblast cell culture. However, the direct effects of IS on osteoblast apoptosis have not been fully evaluated. Hence, we investigated whether IS acts as a bone toxin by studying whether IS induces apoptosis and inhibits differentiation in the cultured osteoblast cell line MC3T3-E1. Methods: We assessed the direct effect of IS on osteoblast differentiation and apoptosis in the MC3T3-E1 cell line. We examined caspase-3/7 activity, apoptosis-related proteins, free radical production, alkaline phosphatase activity, and mRNA expression of type 1 collagen and osteonectin. Furthermore, we investigated the uptake of IS via organic anion transport (OAT). Results: We found that IS increased caspase activity and induced apoptosis. Production of free radicals increased depending on the concentration of IS. Furthermore, IS inhibited the expression of mRNA type 1 collagen and osteonectin and alkaline phosphatase activity. The expression of OAT, which is known to mediate the cellular uptake of IS, was detected in in the MC3T3-E1 cell line. The inhibition of OAT improved cell viability and suppressed the production of reactive oxygen species. These results suggest that IS is transported in MC3T3-E1 cells via OAT, which causes oxidative stress to inhibit osteoblast differentiation. Conclusions: IS acts as a bone toxin by inhibiting osteoblast differentiation and inducing apoptosis.
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