Transcriptome and Metabolome-Based Analysis Reveals the Molecular Mechanisms Underlying the Differences in Tanshinone and Salvianolic Acid Content Between <i>Salvia miltiorrhiza</i> Roots and Leaves. [PDF]
Liu F, Xu Y, Pan L, Zhang Y, Ding M.
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Diterpene chemical space of Aeollanthus buchnerianus Briq. aerial part. [PDF]
Bitchagno GTM, Reynolds N, Simmonds MSJ.
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Tanshinone IIA alleviates LPS-induced acute kidney injury by inhibiting RIP3/Nrf2-mediated oxidative stress. [PDF]
Zhang S, Dong X, Chen G, Wang C.
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Regulatory Effect and Mechanism of Tanshinone I on Cell Apoptosis in Steroid-Induced Osteonecrosis of the Femoral Head. [PDF]
Su Q, Chen J.
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MAPK3-MYB36-ARF1 module regulates the tanshinone formation in Salvia miltiorrhiza. [PDF]
Xie Y, Liu H.
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Content of Carnosic Acid, Carnosol, Rosmarinic Acid, and Proximate Composition in an Assortment of Dried Sage (<i>Salvia officinalis</i> L.). [PDF]
Hrebień-Filisińska AM +4 more
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Carnosol exerts anti-inflammatory effects in pulpitis by inhibiting the RAGE/NF-κB signalling pathway. [PDF]
Liu X +6 more
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Carnosic acid enhances cisplatin sensitivity and suppresses gastric cancer progression via the TP53/SLC7A11/ALOX12 axis. [PDF]
Zhou L, Xu B, Li B.
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Protective effect of tanshinone IIA against Listeria monocytogenes infection in vitro and in vivo. [PDF]
Wang H, Hu S, Feng H, Sun H.
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Carnosic Acid Mediates Production of Reactive Oxygen Species to Regulate Mitogen-Activated Protein Kinase Pathway Phosphorylation and Induce Apoptosis in Human Breast Cancer Cells. [PDF]
Wang X +6 more
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