[1] Huang MT, Smart RC, Wong CQ, et al. Inhibitory effect of curcumin, chlorogenic acid, caffeic acid, and ferulic acid on tumor promotion in mouse skin by 12-O-tetradecanoylphorbol-13-acetate. Cancer Res, 1988; 48, 5941-6.
[2] Kawabata K, Yamamoto T, Hara A, et al. Modifying effects of ferulic acid on azoxymethane-induced colon carcinogenesis in F344 rats. Cancer Lett, 2000; 157, 15-21. doi:  10.1016/S0304-3835(00)00461-4
[3] Wu XW, Wei W, Yang XW, et al. Anti-Inflammatory Phenolic Acid Esters from the Roots and Rhizomes of Notopterygium incisium and Their Permeability in the Human Caco-2 Monolayer Cell Model. Molecules, 2017; 22, 935. doi:  10.3390/molecules22060935
[4] Wu X. Comparison of phenolic acid profiles and anti-inflammatory effects of two major species of blueberries in the US. FASEB J, 2012; 26, 828-37.
[5] Balasubashini MS, Rukkumani R, Viswanathan P, et al. Ferulic acid alleviates lipid peroxidation in diabetic rats. Phytotherapy Research, 2004; 18, 310-4. doi:  10.1002/(ISSN)1099-1573
[6] Prinsen P, Gutiérrez A, Faulds CB, et al. Comprehensive study of valuable lipophilic phytochemicals in wheat bran. J Agr Food Chem, 2014; 62, 1664-73. doi:  10.1021/jf404772b
[7] Fan L, Ma S, Wang X, et al. Improvement of Chinese noodle quality by supplementation with arabinoxylans from wheat bran. Int J Food Sci Tech, 2016; 51, 602-8. doi:  10.1111/ijfs.13042
[8] Dai J, RJ Mumper. Plant phenolics:extraction, analysis and their antioxidant and anticancer properties. Molecules, 2010; 15, 7313-52. doi:  10.3390/molecules15107313
[9] Mateo Anson N, Hemery YM, Bast A, et al. Optimizing the bioactive potential of wheat bran by processing. Food Funct, 2012; 3, 362-75. doi:  10.1039/c2fo10241b
[10] Sevgi K, B Tepe, C Sarikurkcu. Antioxidant and DNA damage protection potentials of selected phenolic acids. Food Chem Toxicol, 2015; 77, 12-21. doi:  10.1016/j.fct.2014.12.006
[11] Laranjinha JAN, LM Almeida, VMC Madeira. Reactivity of Dietary Phenolic-Acids with Peroxyl Radicals-Antioxidant Activity Upon Low-Density-Lipoprotein Peroxidation. Biochem Pharmaco, 1994; 48, 487-94. doi:  10.1016-0006-2952(94)90278-X/
[12] Mathew S, TE Abraham. In vitro antioxidant activity and scavenging effects of Cinnamomum verum leaf extract assayed by different methodologies. Food Chem Toxicol, 2006; 44, 198-206. doi:  10.1016/j.fct.2005.06.013
[13] Laddomada B, S Caretto, G Mita. Wheat Bran Phenolic Acids:Bioavailability and Stability in Whole Wheat-Based Foods. Molecules, 2015; 20, 15666-85. doi:  10.3390/molecules200915666
[14] Wang LJ, CL Weller. Recent advances in extraction of nutraceuticals from plants. Trends Food Sci Tech, 2006; 17, 300-12. doi:  10.1016/j.tifs.2005.12.004
[15] Liu LY, Zhao ML, Liu XX, et al. Effect of steam explosion-assisted extraction on phenolic acid profiles and antioxidant properties of wheat bran. J Sci Food Agr, 2016; 96, 3484-91. doi:  10.1002/jsfa.7532
[16] Gan RY, Shah NP, Wang MF, et al. Fermentation alters antioxidant capacity and polyphenol distribution in selected edible legumes. Int J Food Sci Tech, 2016; 51, 875-84. doi:  10.1111/ijfs.2016.51.issue-4
[17] Koistinen VM, Nordlund E, Katina K, et al. Effect of Bioprocessing on the In Vitro Colonic Microbial Metabolism of Phenolic Acids from Rye Bran Fortified Breads. J Agr Food Chem, 2017; 65, 1854. doi:  10.1021/acs.jafc.6b05110
[18] Peng M, Liu JY, Huang Y, et al. Effects of a mixed koji culture of Aspergillus oryzae HG-26 and Aspergillus niger HG-35 on the levels of enzymes, antioxidants and phenolic compounds in soy sauce during the fermentation process. Int J Food Sci Tech, 2017; 52, 1585-93. doi:  10.1111/ijfs.2017.52.issue-7
[19] Zhina Yin, Wenjia Wu, Chongzhen Sun, et al. Comparison of Releasing Bound Phenolic Acids from Wheat Bran by Fermentation of three Aspergillus Species. Int J Food Sci Tech, 2018; 53, 1120-30. doi:  10.1111/ijfs.2018.53.issue-5
[20] Ma Y, H Huang. Characterisation and comparison of phenols, flavonoids and isoflavones of soymilk and their correlations with antioxidant activity. Int J Food Sci Tech, 2014; 49, 2290-8. doi:  10.1111/ijfs.2014.49.issue-10
[21] Walters M, Riberio APL, Hosseinian F, et al. Phenolic acids, avenanthramides, and antioxidant activity of oats defatted with hexane or supercritical fluid. J Cereal Sci, 2018; 79, 21-6. doi:  10.1016/j.jcs.2017.09.010
[22] Liao W, Ning ZX, Chen LY, et al. Intracellular Antioxidant Detoxifying Effects of Diosmetin on 2, 2-Azobis(2-amidinopropane) Dihydrochloride (AAPH)-Induced Oxidative Stress through Inhibition of Reactive Oxygen Species Generation. J Agr Food Chem, 2014; 62, 8648-54. doi:  10.1021/jf502359x
[23] Liao W, Chen LY, Ma X, et al. Protective effects of kaempferol against reactive oxygen species-induced hemolysis and its antiproliferative activity on human cancer cells. Eur J Med Chem, 2016; 114, 24-32. doi:  10.1016/j.ejmech.2016.02.045
[24] Zhang MM, Wang G, Lai FR, et al. Structural Characterization and Immunomodulatory Activity of a Novel Polysaccharide from Lepidium meyenii. J Agr Food Chem, 2016; 64, 1921-31. doi:  10.1021/acs.jafc.5b05610
[25] Wolfe KL, RH Liu. Structure-activity relationships of flavonoids in the cellular antioxidant activity assay. J Agric Food Chem, 2008; 56, 8404-11. doi:  10.1021/jf8013074
[26] Zhang M, Zhang H, Li HX, et al. Antioxidant Mechanism of Betaine without Free Radical Scavenging Ability J Agr Food Chem, 2016; 64, 7921-30. doi:  10.1021/acs.jafc.6b03592
[27] Zhang M, Xin X, Lao FR, et al. Cellular Transport of Esculin and Its Acylated Derivatives in Caco-2 Cell Monolayers and Their Antioxidant Properties in Vitro. J Agr Food Chem, 2017; 65, 7424-32. doi:  10.1021/acs.jafc.7b02525
[28] Xin X, Zhang MM, Li XF, et al. Biocatalytic synthesis of acylated derivatives of troxerutin:their bioavailability and antioxidant properties in vitro. Microb Cell Fact, 2018; 17, 130. doi:  10.1186/s12934-018-0976-x
[29] Anson NM, Berg R, Havenaar R, et al. Ferulic acid from aleurone determines the antioxidant potency of wheat grain (Triticum aestivum L.). J Agr Food Chem, 2008; 56, 5589-594. doi:  10.1021/jf800445k
[30] Singleton V RJ. Colorimetry of total phenolics with phosphomolybdicphosphotungstic acid reagents. Am J Enol Vitic, 1965; 16, 144-58.
[31] Itagaki S, Kurokawa T, Nakata C, et al. In vitro and in vivo antioxidant properties of ferulic acid:A comparative study with other natural oxidation inhibitors. Food Chem, 2009; 114, 466-71. doi:  10.1016/j.foodchem.2008.09.073
[32] Silva EdO, R Batista. Ferulic Acid and Naturally Occurring Compounds Bearing a Feruloyl Moiety:A Review on Their Structures, Occurrence, and Potential Health Benefits. Compr Rev Food Sci F, 2017; 16, 580-616. doi:  10.1111/crf3.2017.16.issue-4
[33] Lampiasi N, G Montana. The molecular events behind ferulic acid mediated modulation of IL-6 expression in LPS-activated Raw 264.7 cells. Immunobiology, 2016; 221, 486-93. doi:  10.1016/j.imbio.2015.11.001
[34] Nile SH, Ko EY, Kim DH, et al. Screening of ferulic acid related compounds as inhibitors of xanthine oxidase and cyclooxygenase-2 with anti-inflammatory activity. Rev Bras Farmacogn, 2016; 26, 50-5. doi:  10.1016/j.bjp.2015.08.013
[35] Graf E. Antioxidant potential of ferulic acid. Free radical bio med, 1992; 13, 435-48. doi:  10.1016/0891-5849(92)90184-I
[36] Kikuzaki H, Hisamoto M, Hirose K, et al. Antioxidant properties of ferulic acid and its related compounds. J Agr Food Chem, 2002; 50, 2161-8. doi:  10.1021/jf011348w
[37] Ralph J, Quideau S, Grabber JH, et al. Identification and synthesis of new ferulic acid dehydrodimers present in grass cell-walls. J Chem Soc, 1994; 0, 3485-98. doi:  10.1039-p19940003485/
[38] Dolores H, Nuñez V, Sancho AI et al. Hydroxycinnamic Acids and Ferulic Acid Dehydrodimers in Barley and Processed Barley. J Agr Food Chem, 2001; 49, 4884-8. doi:  10.1021/jf010530u
[39] Andreasen MF, Landbo AK, Christensen LP, et al. Antioxidant effects of phenolic rye (Secale cereale L.) extracts, monomeric hydroxycinnamates, and ferulic acid dehydrodimers on human low-density lipoproteins. J Agr Food Chem, 2001; 49, 4090-6. doi:  10.1021/jf0101758
[40] Carnachan SM, PJ Harris. Ferulic acid is bound to the primary cell walls of all gymnosperm families. Biochem Syst Ecol, 2000; 28, 865-79. doi:  10.1016/S0305-1978(00)00009-0
[41] Srinivasan M, AR Sudheer, VP Menon. Ferulic acid:Therapeutic potential through its antioxidant property. J Clin Biochem Nutr, 2007; 40, 92-100. doi:  10.3164/jcbn.40.92