[1] H. Tao, X. Wu, J. Cao, Y. Peng, A. Wang, J. Pei, J. Xiao, S. Wang, Y. Wang, Rhodiola species:A comprehensive review of traditional use, phytochemistry, pharmacology, toxicity, and clinical study, Med. Res. Rev., 39(5) (2019) 1779-1850 [2] X. Zhang, Q. Du, Y. Yang, J. Wang, Y. Liu, Z. Zhao, Y. Zhu, C. Liu, Salidroside alleviates ischemic brain injury in mice with ischemic stroke through regulating BDNK mediated PI3K/Akt pathway, Biochem. Pharmacol., 156 (2018) 99-108 [3] Y. Yuan, X. Wu, X. Zhang, Y. Hong, H. Yan, Ameliorative effect of salidroside from Rhodiola Rosea L. on the gut microbiota subject to furan-induced liver injury in a mouse model, Food. Chem. Toxicol., 125 (2019) 333-340 [4] S. Xing, J. Li, L. Chen, Y. Yang, P. He, J. Li, J. Yang, Salidroside attenuates endothelial cellular senescence via decreasing the expression of inflammatory cytokines and increasing the expression of SIRT3, Mech. Ageing Dev., 175 (2018) 1-6 [5] K. Chauhan, G. Kaur, S. Kaur, Evaluation of antileishmanial efficacy of salidroside against the SSG-sensitive and resistant strain of Leishmania donovani, Parasitol. Int, 72 (2019) 101928 [6] J. Sarris, A. Panossian, I. Schweitzer, C. Stough, A. Scholey, Herbal medicine for depression, anxiety and insomnia:A review of psychopharmacology and clinical evidence, Eur. Neuropsychopharmacol., 21 (12) (2011) 841-860 [7] H.-T. Wang, Y.-G. Zu, Z.-J. Mao, Study on supercritical CO2 extraction of salidroside and P-tyrosol in Rhodiola sachalinensis, Bull. Bot. Res., 24(4) (2004) 462-465 [8] Y. Mao, Y. Li, N. Yao, Simultaneous determination of salidroside and tyrosol in extracts of Rhodiola L. by microwave assisted extraction and high-performance liquid chromatography, J. Pharm. Biomed. Anal., 45 (3) (2007) 510-555 [9] H. Yu, Y. He, Y. She, M. Wang, Z. Yan, J. Ren, Z. Cao, Y. Shao, S. Wang, A.M. Abd EI-Aty, H. Ahmet, J. Wang, Preparation of molecularly imprinted polymers coupled with high-performance liquid chromatography for the selective extraction of salidroside from Rhodiola crenulata, J. Chromatogr. B 1118 (2019) 180-186. [10] Y. Zhang, Z. Zhou, L. Zou, R. Chi, Imidazolium-based ionic liquids with inorganic anions in the extraction of salidroside and tyrosol from Rhodiola:The role of cations and anions on the extraction mechanism, J. Mol. Liq., 275 (2019) 136-145 [11] R. Wu, H. Wang, J. Cao, L. Chen, E. Su, Simultaneous extraction of salidroside and tyrosol from Rhodiola rosea L. using tailor-made deep eutectic solvents, Chem. J. Chin. Univ.-Chin., 40 (5) (2019) 918-926 [12] A.N. Shikov, V.M. Kosman, E.V. Flisssyuk, I.E. Smekhova, A. Elameen, O.N. Pozharitskaya, Natural deep eutectic solvents for the extraction of phenyletanes and phenylpropanoids of Rhodiola rosea L. Molecules, 25(8) (2020) 1826 [13] H.B. Li, F. Chen, Preparative isolation and purification of salidroside from the Chinese medicinal plant Rhodiola sachalinensis by high-speed counter-current chromatography, J. Chromatogr. A, 932 (2001) 91-95 [14] X. Han, T. Zhang, Y. Wei, X. Cao, Y. Ito, Separation of salidroside from Rhodiola crenulata by high-speed counter-current chromatography, J. Chromatogr. A, 971 (2002) 237-241 [15] J. Li, H. A. Chase, Development of adsorptive (non-ionic) macroporous resins and their uses in the purification of pharmacologically-active natural products from plant sources, Nat. Prod. Rep., 27 (10) (2010) 1493-1510 [16] B.Q. Liu, J. Liu, D. Huang, D. Pei, D. Di, Separation and purification of hydroxytysol and oleuropein from Olea europaea L. (olive) leaves using macroporous resins and a novel solvent system, J. Sep. Sci, 43 (13) (2020) 2619-2625 [17] M.S.C. Zain, S.Y. Lee, C.Y. Teo, K. Shaari, Adsorption and desorption properties of total flavonoids from oil palm (Elaeis guineensis Jacq.) mature leaf on macroporous adsorption resins, Molecules 25 (4) (2020) 778. [18] M.H. Fan, S.Y. Xu, Adsorption and desorption properties of macroreticular resins for salidroside from Rhodiola sachalinensis A. Bor, Sep. Purif.Technol., 61 (2008) 211-216 [19] C. Ma, J. Tang, H. Wang, G. Tao, X. Gu, L. Hu, Preparative purification of salidroside from Rhodiola rosea by two-step adsorption chromatography on resins, J. Sep. Sci, 32 (2) (2009) 185-191 [20] R. Ju, R. Huang, J. Zhou, R. Li, P. Zhou, Z. Zhang, F. Xiang, D. Xu, W. Liu, X. Ma, Q. Zhang, W. Lu, Separation of injectable salidroside by column chromatography of macroporous resins for treating myocardial ischemia, Sci. China-Chem., 55(7) (2012) 1435-1444 [21] J. Min, Z. Zhang, Y. Meng, M. Cao, J. Zhu, F. Xiang, Purification technology of salidroside by macroporous adsorption resin, Chin. Trad. Herb. Drugs, 44(11) (2013) 1426-1430 [22] L. Sun, R. Zhou, J. Sui, Y. Liu, Simultaneous preparation of salidroside and p-tyrosol from Rhodiola crenulata by DIAION HP-20 macroporous resin chromatography combined with silica gel chromatography, Molecules, 23 (7) (2018) 1602 [23] H.M. Chiang, H.C. Chen, C.S. Wu, P.Y. Wu, K.C. Wen, Rhodiola plants:Chemistry and biological activity, J. Food Drug Anal., 23(3) (2015) 359-369 [24] P.K. Ajikumar, W.H. Xiao, K.E.J. Tyo, Y. Wang, F. Simeon, E. Leonard, O. Mucha, T.H. Phon, B. Pfeifer, G. Stephanopoulos, Isoprenoid pathway optimization for taxol precursor overproduction in Escherichia coli, Science, 330 (6000) (2010) 70-74 [25] C.J. Paddon, P.J. Westfall, D.J. Pitera, K. Benjamin, K. Fisher, D. McPhee, M.D. Leavell, A. Tai, A. Main, D. Eng, D.R. Polichuk, K.H. Teoh, D.W. Reed, T. Treynor, J. Lenihan, H. Jiang, M. Fleck, S. Bajad, G. Dang, D. Dengrove, D. Diola, G. Dorin, K.W. Ellens, S. Fickes, J. Galazzo, S.P. Gaucher, T. Geistlinger, R. Henry, M. Hepp, T. Horning, T. Iqbal, L. Kizer, B. Lieu, D. Melis, N. Moss, R. Regentin, S. Secrest, H. Tsuruta, R. Vazquez, L.F. Westblade, L. Xu, M. Yu, Y. Zhang, L. Zhao, J. Lievense, P.S. Covello, J.D. Keasling, K.K. Reiling, N.S. Renninger, J.D. Newman, High-level semi-synthetic production of the potent antimalarial artemisinin, Nature, 496 (2013) 528-532 [26] X. Luo, M.A. Reiter, L. d'Espaux, J. Wong, C.M. Denby, A. Lechner, Y. Zhang, A.T. Grzybowski, S. Harth, W. Lin, H. Lee, C. Yu, J. Shin, K. Deng, V.T. Benites, G. Wang, E.E.K. Baidoo, Y. Chen, I. Dev, C.J. Petzold, J.D. Keasling, Complete biosynthesis of cannabinoids and their unnatural analogues in yeast, Nature, 567 (2019) 123-126 [27] A. Cravens, J. Payne, C.D. Smolke, Synthetic biology strategies for microbial biosynthesis of plant natural products, Nat. Commun., 10 (2019) 2142 [28] X. Liu, X.B. Li, J. Jiang, Z.N. Liu, B. Qiao, F.F. Li, J.S. Cheng, X. Sun, Y.J. Yuan, J. Qiao, G.R. Zhao, Convergent engineering of syntrophic Escherichia coli coculture for efficient production of glycosides, Metab. Eng., 47 (2018) 243-253 [29] D. Chung, S.Y. Kim, J.H. Ahn, Production of three phenylethanoids, tyrosol, hydroxytyrosol, and salidroside, using plant genes expressing in Escherichia coli, Sci. Rep., 7 (2017) 2578 [30] J. Jiang, H. Yin, S.A. Wang, Y. Zhuang, S. Liu, T. Liu, Y. Ma, Metabolic engineering of Saccharomyces cerevisiae for high-level production of salidroside from glucose, J. Agric. Food Chem., 66 (17) (2018) 4431-4438 [31] W. Guo, Q. L. Huang, Y.H. Feng, T.C. Tan, S.H. Niu, S.L. Hou, Z.G. Chen, Z.Q. Du, Y. Shen, X. Fang, Rewiring central carbon metabolism for tyrosol and salidroside production in Saccharomyces cerevisiae, Biotechnol. Bioeng., 117 (8) (2020) 2410-2419 [32] X. Yang, M. Wei, H, Tian, T. Liu, L. Yang, Enrichment and purification of aucubin from Eucommia ulmoides ionic liquid extract using macroporous resins, Materials, 11(9) (2018) 1758 [33] Z. Li, J. Zhang, Y. Wu, Y. Zhan, X. Chang, Adsorption and desorption studies of betaxanthin from yellow beet onto macroporous resins, Sep. Sci. Technol., 56 (14) (2021) 2327-2337 [34] P.C.C. Siu, L.F. Koong, J. Saleem, J. Barford, G. McKay, Equilibrium and kinetics of copper ions removal from wastewater by ion exchange, Chin. J. Chem. Eng., 24(1) (2016) 94-100 [35] C. Guo, J. Qiao, S. Zhang, X. Ren, M. Li, Purification of polyphenols from Kiwi fruit peel extracts using macroporous resins and high-performance liquid chromatography analysis, Int. J. Food Sci. Technol., 53 (6) (2018) 1486-1493 [36] A.D. Mauro, E. Arena, B. Fallico, A. Passerini, E. Maccarone, Recovery of anthocyanins from pulp wash of pigmented oranges by concentration on resins, J. Agric. Food Chem., 50 (2002) 5968-5974 [37] M. Bilal, S. Yue, H. Hu, W. Wang, X. Zhang, Adsorption/desorption characteristics, separation and purification of phenazine-1-carboxylic acid from fermentation extract by macroporous adsorbing resins, J. Chem. Technol. Biotechnol., 93 (11) (2018) 3176-3184 [38] C. Gao, S. Zhao, Y. Yagiz, L. Gu, Static, kinetic, and isotherm adsorption performances of macroporous adsorbent resins for recovery and eenrichment of bioactive procyanidins from cranberry pomace, J. Food Sci., 83 (5) (2018) 1249-1257 [39] C.L. Bai, G.R. Zhao, Separation of salvianic acid A from the fermentation broth of engineered Escherichia coli using macroporous resins, J. Sep. Sci., 38 (16) (2015) 2833-2840 [40] H. Li, G. Hou, Y. Li, F. Zhao, W. Cong, C. Wang, Preparative separation of phloridzin from apple leaves using macroporous resins followed by preparative high-performance liquid chromatography, J. Sep. Sci, 41 (20) (2018) 3918-3924 |