4.5 Article

Chondroitin sulfate alleviates osteoporosis caused by calcium deficiency by regulating lipid metabolism

期刊

NUTRITION & METABOLISM
卷 20, 期 1, 页码 -

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BMC
DOI: 10.1186/s12986-023-00726-3

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Osteoporosis; Chondroitin sulfate; Intestinal flora; Metabolomics; Lipid metabolism

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The use of non-drug intervention for calcium deficiency is being explored. However, there is limited understanding about the combined mechanism of chondroitin sulfate and calcium in alleviating osteoporosis from the perspective of gut microbiota and metabolomics. This study established an osteoporosis rat model and compared the intestinal microbiota and metabolite expression levels in rats fed different diets. The results showed that chondroitin sulfate intervention reduced short-chain fatty acid synthesis, slowed down inflammatory response, inhibited osteoclast differentiation, promoted calcium absorption, and alleviated osteoporosis in low-calcium feeding rats.
The use of non-drug intervention for calcium deficiency has attracted attention in recent years. Although calcium carbonate is the preferred raw material for calcium supplementation, there are few reports on the mechanism of the combined action of chondroitin sulfate and calcium to alleviate osteoporosis from the perspective of gut microbiota and metabolomics. In this study, a rat model of osteoporosis was established by feeding a low-calcium diet. The intestinal microbiota abundance, fecal and plasma metabolite expression levels of rats fed a basal diet, a low-calcium diet, a low-calcium diet plus calcium carbonate, and a low-calcium diet plus chondroitin sulfate were compared. The results showed that compared with the low calcium group, the calcium content and bone mineral density of femur were significantly increased in the calcium carbonate and chondroitin sulfate groups. 16 S rRNA sequencing and metabolomics analysis showed that chondroitin sulfate intervention could reduce short-chain fatty acid synthesis of intestinal flora, slow down inflammatory response, inhibit osteoclast differentiation, promote calcium absorption and antioxidant mechanism, and alleviate osteoporosis in low-calcium feeding rats. Correlation analysis showed that the selected intestinal flora was significantly correlated with metabolites enriched in feces and plasma. This study provides scientific evidence of the potential impact of chondroitin sulfate as a dietary supplement for patients with osteoporosis.

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