Matches in SemOpenAlex for { <https://semopenalex.org/work/W4313597632> ?p ?o ?g. }
- W4313597632 endingPage "123154" @default.
- W4313597632 startingPage "123154" @default.
- W4313597632 abstract "Lead (Pb) can cause damages to the brain, liver, kidney, endocrine and other systems. Flammulina velutipes residues polysaccharide (FVRP) has been reported to exhibit anti-heavy metal toxicity on yeast, but its regulating mechanism is unclear. Therefore, the protective effect and the underlying mechanism of FVRP on Pb-intoxicated mice were investigated. The results showed that FVRP could reduce liver and kidney function indexes, serum inflammatory factor levels, and increase antioxidant enzyme activity of Pb-poisoned mice. FVRP also exhibited a protective effect on histopathological damages in organs of Pb-intoxicated mice. Furthermore, FVRP attenuated Pb-induced kidney injury by inhibiting apoptosis via activating the Akt/GSK3β/Nrf-2/HO-1 signaling pathway. In addition, based on 16 s rRNA and ITS-2 sequencing data, FVRP regulated the imbalance of gut microbiota to alleviate the damage of Pb-poisoned mice by increasing the abundance of beneficial microbiota (Lachnospiraceae, Lactobacillaceae, Saccharomyces and Mycosphaerella) and decreasing the abundance of harmful microbiota (Muribaculaceae and Pleosporaceae). In conclusion, FVRP inhibited kidney injury in Pb-poisoned mice by inhibiting apoptosis via activating Akt/GSK3β/Nrf-2/HO-1 signaling pathway, and regulating gut fungi and gut bacteria. This study not only revealed the role of gut fungi in Pb-toxicity, but also laid a theoretical foundation for FVRP as a natural drug against Pb-toxicity." @default.
- W4313597632 created "2023-01-06" @default.
- W4313597632 creator A5003769106 @default.
- W4313597632 creator A5007532454 @default.
- W4313597632 creator A5041582131 @default.
- W4313597632 creator A5042786331 @default.
- W4313597632 creator A5052045984 @default.
- W4313597632 creator A5076055846 @default.
- W4313597632 creator A5084087666 @default.
- W4313597632 creator A5087992896 @default.
- W4313597632 date "2023-03-01" @default.
- W4313597632 modified "2023-10-16" @default.
- W4313597632 title "Polysaccharide from Flammulina velutipes residues protects mice from Pb poisoning by activating Akt/GSK3β/Nrf-2/HO-1 signaling pathway and modulating gut microbiota" @default.
- W4313597632 cites W1648001781 @default.
- W4313597632 cites W1683610473 @default.
- W4313597632 cites W1855404173 @default.
- W4313597632 cites W1973481434 @default.
- W4313597632 cites W1995897250 @default.
- W4313597632 cites W2003034989 @default.
- W4313597632 cites W2006201863 @default.
- W4313597632 cites W2008639012 @default.
- W4313597632 cites W2028430257 @default.
- W4313597632 cites W2029310248 @default.
- W4313597632 cites W2050376659 @default.
- W4313597632 cites W2056682519 @default.
- W4313597632 cites W2090927900 @default.
- W4313597632 cites W2093676555 @default.
- W4313597632 cites W2111406742 @default.
- W4313597632 cites W2133231258 @default.
- W4313597632 cites W2150107812 @default.
- W4313597632 cites W2152562424 @default.
- W4313597632 cites W2153909256 @default.
- W4313597632 cites W2260815707 @default.
- W4313597632 cites W2282464904 @default.
- W4313597632 cites W2287436132 @default.
- W4313597632 cites W2295104051 @default.
- W4313597632 cites W2308350894 @default.
- W4313597632 cites W2398334110 @default.
- W4313597632 cites W2516277878 @default.
- W4313597632 cites W2549676753 @default.
- W4313597632 cites W2578448800 @default.
- W4313597632 cites W2584922988 @default.
- W4313597632 cites W2587996254 @default.
- W4313597632 cites W2592316882 @default.
- W4313597632 cites W2604603026 @default.
- W4313597632 cites W2625304812 @default.
- W4313597632 cites W2744057697 @default.
- W4313597632 cites W2744627957 @default.
- W4313597632 cites W2754211114 @default.
- W4313597632 cites W2761761695 @default.
- W4313597632 cites W2765156844 @default.
- W4313597632 cites W2770043371 @default.
- W4313597632 cites W2791645513 @default.
- W4313597632 cites W2901275730 @default.
- W4313597632 cites W2909312595 @default.
- W4313597632 cites W2911250974 @default.
- W4313597632 cites W2913934270 @default.
- W4313597632 cites W2949787012 @default.
- W4313597632 cites W2966753948 @default.
- W4313597632 cites W2968232536 @default.
- W4313597632 cites W2972698411 @default.
- W4313597632 cites W2979284845 @default.
- W4313597632 cites W2993437731 @default.
- W4313597632 cites W2994812301 @default.
- W4313597632 cites W3007098803 @default.
- W4313597632 cites W3010624143 @default.
- W4313597632 cites W3027262121 @default.
- W4313597632 cites W3029249211 @default.
- W4313597632 cites W3034862856 @default.
- W4313597632 cites W3078777883 @default.
- W4313597632 cites W3127281789 @default.
- W4313597632 cites W3132583700 @default.
- W4313597632 cites W3158077106 @default.
- W4313597632 cites W3164405793 @default.
- W4313597632 cites W3172361268 @default.
- W4313597632 cites W3191600046 @default.
- W4313597632 cites W3196042274 @default.
- W4313597632 cites W3204242677 @default.
- W4313597632 cites W3205447965 @default.
- W4313597632 cites W4212813338 @default.
- W4313597632 cites W4220663819 @default.
- W4313597632 cites W4221033726 @default.
- W4313597632 cites W4225126659 @default.
- W4313597632 cites W4226070878 @default.
- W4313597632 cites W4280514666 @default.
- W4313597632 cites W4280561917 @default.
- W4313597632 cites W4281858223 @default.
- W4313597632 cites W4282024695 @default.
- W4313597632 cites W4282027163 @default.
- W4313597632 cites W4283644538 @default.
- W4313597632 cites W4286252742 @default.
- W4313597632 cites W4286512176 @default.
- W4313597632 cites W4288420600 @default.
- W4313597632 cites W4292821601 @default.
- W4313597632 cites W4296965434 @default.
- W4313597632 cites W4298148694 @default.
- W4313597632 cites W4303986345 @default.
- W4313597632 doi "https://doi.org/10.1016/j.ijbiomac.2023.123154" @default.