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3篇 您的检索式:作者名="Daojiang Yan"
    题名 作者 年代 出处 被引量
1Epigenetic modification in histone deacetylase deletion strain of Calcarisporium arbuscula leads to diverse diterpenoids显示文摘Epigenetic modifications have been proved to be a powerful way to activate silent gene clusters and lead to diverse secondary metabolites in fungi. Previously, inactivation of a histone H3 deacetylase in Calcarisporium arbuscula had led to pleiotropic activation and overexpression of more than 75% of the biosynthetic genes and isolation of ten compounds. Further investigation of the crude extract of C. arbuscula Δhda A strain resulted in the isolation of twelve new diterpenoids including three cassanes(1-3), one cleistanthane(4), six pimaranes(5-10), and two isopimaranes(11 and 12) along with two know cleistanthane analogues. Their structures were elucidated by extensive NMR spectroscopic data analysis. Compounds 2 and 4 showed potent inhibitory effects on the expression of MMP1 and MMP2(matrix metalloproteinases family) in human breast cancer(MCF-7) cells.Jian Bai Rong Mu Man Dou Daojiang Yan Bingyu Liu Qian Wei Jun Wan Yi Tang Youcai Hu 2018Acta Pharmaceutica Sinica B2018,8,4:5
2A Stochastic Restricted s–K Estimator in the Linear Model显示文摘In this paper, we propose a stochastic restricted s–K estimator in the linear model with additional stochastic linear restrictions by combining the ordinary mixed estimator(OME) with the s–K estimator. It is shown that the proposed estimator is superior to the OME and the s–K estimator under the mean squared error matrix criterion under some conditions. Finally, a numerical example and a Monte Carlo simulation study are given to verify the theoretical results.Daojiang HE Yan WU 2014Journal of Mathematical Research with Applications2014,34,3:0
3RXRα agonist bexarotene attenuates radiation-induced skin injury by relieving oxidative stress显示文摘Objective: To investigate the protective effect of bexarotene in radiation-induced skin injury and elucidate underlying mechanism.Methods: Irradiated cellular and animal models were established using an X-ray linear accelerator. Cell viabilityand apoptosis were evaluated by CCK8 and flow cytometry. In vivo protective effect of bexarotene was measuredin irradiated SD rats. The antioxidant capacity of bexarotene was validated by DCF-DA method. The signalingpathways involved in bexarotene-mediated skin repair were enriched by RNA sequencing.Results: Bexarotene could significantly restore the proliferation and inhibit the apoptosis of WS1 cells with radiation damage (P < 0.05). Moreover, bexarotene could effectively shorten the process of skin damage andpromote skin repair in a rat model of radiation-induced skin injury (P < 0.05). Mechanistically, bexaroteneeffectively reduced the expression of RXRα (P < 0.05), thus leading to an early decrease in reactive oxygen species(ROS) after radiation exposure. Furthermore, a transcriptome analysis indicated that bexarotene-mediated recovery of radiation damage involves redox signaling, immune regulation, lipid metabolism and autophagy.Conclusion: Bexarotene is a promising therapeutic agent in the treatment of radiation-induced skin injury.Sheng Jiang Weichao Cai Jianhui Chen Wenling Tu Yulan Liu Lixin Gong Yahui Feng Wei Mo Tao Yan Shuyu Zhang Daojiang Yu 2022Radiation Medicine and Protection2022,3,2:0
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