[1] ZHANG Y Z, YIN L Q, HUANG L, et al.Composition, antioxidant activity, and neuroprotective effects of anthocyanin-rich extract from purple highland barley bran and its promotion on autophagy[J].Food Chemistry, 2021, 339:127849.
[2] 郑杰, 丁晨旭, 赵先恩, 等.花色苷化学研究进展[J].天然产物研究与开发, 2011, 23(5):970-978.
ZHENG J, DING C X, ZHAO X E, et al.Review of anthocyanins chemical studies[J].Natural Product Research and Development, 2011, 23(5):970-978.
[3] CASTAÑEDA-OVANDO A, DE LOURDES PACHECO-HERNÁNDEZ M, PÁEZ-HERNÁNDEZ M E, et al.Chemical studies of anthocyanins:A review[J].Food Chemistry, 2009, 113(4):859-871.
[4] FAN Y L, WANG X Y, LI H Y, et al.Anthocyanin, a novel and user-friendly reporter for convenient, non-destructive, low cost, directly visual selection of transgenic hairy roots in the study of rhizobia-legume symbiosis[J].Plant Methods, 2020, 16:94.
[5] QI Y T, GU C H, WANG X J, et al.Identification of the Eutrema salsugineum EsMYB90 gene important for anthocyanin biosynthesis[J].BMC Plant Biology, 2020, 20(1):186.
[6] YANG J F, LIU X J, ZHANG X X, et al.Phenolic profiles, antioxidant activities, and neuroprotective properties of mulberry (Morus atropurpurea Roxb.) fruit extracts from different ripening stages[J].Journal of Food Science, 2016, 81(10):C2439-C2446.
[7] 蔡珊, 黄亚梅, 张易华, 等.花青素生理活性及其抗氧化机制[J].陕西农业科学, 2018, 64(12):40-43;58.
CAI S, HUANG Y M, ZHANG Y H, et al.Anthocyanin physiological activity and its anti-oxidation mechanism[J].Shaanxi Journal of Agricultural Sciences, 2018, 64(12):40-43, 58.
[8] FLESCHHUT J, KRATZER F, RECHKEMMER G, et al.Stability and biotransformation of various dietary anthocyanins in vitro[J].European Journal of Nutrition, 2006, 45(1):7-18.
[9] 孙建霞, 张燕, 胡小松, 等.花色苷的结构稳定性与降解机制研究进展[J].中国农业科学, 2009, 42(3):996-1008.
SUN J X, ZHANG Y, HU X S, et al.Structural stability and degradation mechanisms of anthocyanins[J].Scientia Agricultura Sinica, 2009, 42(3):996-1008.
[10] 徐青, 王代波, 刘国华, 等.花青素稳定性影响因素及改善方法研究进展[J].食品研究与开发, 2020, 41(7):218-224.
XU Q, WANG D B, LIU G H, et al.Influencing factors and improving methods of anthocyanin stability[J].Food Research and Development, 2020, 41(7):218-224.
[11] AKKARACHANEEYAKORN S, TINRAT S.Effects of types and amounts of stabilizers on physical and sensory characteristics of cloudy ready-to-drink mulberry fruit juice[J].Food Science & Nutrition, 2015, 3(3):213-220.
[12] ZHANG P, LI Y, CHONG S L, et al.Identification and quantitative analysis of anthocyanins composition and their stability from different strains of Hibiscus syriacus L.flowers[J].Industrial Crops and Products, 2022, 177:114457.
[13] 王志伟. 关于花青素在小浆果加工过程中的稳定性研究[J].农业技术与装备, 2020(1):37;40.
WANG Z W.Study on the stability of anthocyanins during processing of small berries[J].Agricultural Technology & Equipment, 2020(1):37;40.
[14] GHAREAGHAJLOU N, HALLAJ-NEZHADI S, GHASEMPOUR Z.Red cabbage anthocyanins:Stability, extraction, biological activities and applications in food systems[J].Food Chemistry, 2021, 365:130482.
[15] 赵成银, 郭晨利, 刘沛华, 等.不同品种牡丹花色分析及花青素稳定性研究[J].河南农业, 2022(25):22-23.
ZHAO C Y, GUO C L, LIU P H, et al.Color analysis of different varieties of Paeonia suffruticosa and stability of anthocyanins[J].Agriculture of Henan, 2022(25):22-23.
[16] 刘亮, 吴悦, 曹少谦.桑椹花色苷在不同糖体系中的热降解动力学研究[J].湖北农业科学, 2011, 50(5):1018-1022.
LIU L, WU Y, CAO S Q.Thermal degradation kinetics of anthocyanins obtained from mulberry juice in different sugar model systems[J].Hubei Agricultural Sciences, 2011, 50(5):1018-1022.
[17] 刘瑜, 黄文, 王益, 等.桑葚果粉的制备工艺及其稳定性研究[J].食品工业科技, 2019, 40(4):178-183.
LIU Y, HUANG W, WANG Y, et al.Study on the preparation technology and stability of mulberry powder[J].Science and Technology of Food Industry, 2019, 40(4):178-183.
[18] 孙蕾, 刘晓瑞, 景浩.三种有机酸对红豆越橘花青素的热稳定性研究[J].食品科技, 2011, 36(11):230-237.
SUN L, LIU X R, JING H.Effects of three organic acids on thermal stability of lingonberry anthocynanins[J].Food Science and Technology, 2011, 36(11):230-237.
[19] 刘妍, 郭艳峰, 李晓璐, 等.三种水果果皮中花青素含量测定及其稳定性分析[J].保鲜与加工, 2017, 17(4):89-93.
LIU Y, GUO Y F, LI X L, et al.Determination and stability analysis of anthocyanidin in three kinds of fruit peels[J].Storage and Process, 2017, 17(4):89-93.
[20] TORSKANGERPOLL K, ANDERSEN Ø M.Colour stability of anthocyanins in aqueous solutions at various pH values[J].Food Chemistry, 2005, 89(3):427-440.
[21] 吕婉莹, 贾冬梅, 胡云峰, 等.贮运条件对草莓主要色素成分稳定性的影响[J].农学学报, 2021, 11(6):73-77.
LYU W Y, JIA D M, HU Y F, et al.Effects of storage and transportation condition on the stability of main pigment components in strawberry[J].Journal of Agriculture, 2021, 11(6):73-77.
[22] GAMAGE G C V, CHOO W S.Thermal and pH stability of natural anthocyanin colourant preparations from black goji berry[J].Food Chemistry Advances, 2023, 2:100236.
[23] CHENG Y, CHEN X, YANG T, et al.Effects of whey protein isolate and ferulic acid/phloridzin/naringin/cysteine on the thermal stability of mulberry anthocyanin extract at neutral pH[J].Food Chemistry, 2023, 425:136494.
[24] 张相锋, 焦子伟, 杨晓绒.黑果小檗果皮色素稳定性研究[J].现代农业科技, 2017(3):229-231.
ZHANG X F, JIAO Z W, YANG X R.Study on stability of Berberis heteropoda schrenk peel pigment[J].Modern Agricultural Science and Technology, 2017(3):229-231.
[25] SENDRI N, SINGH S, BHATT S, et al.Insight into the influence of oxygen, sunlight and temperature on the stability and color attributes of red cabbage anthocyanins and in vitro gastrointestinal behaviour[J].Food Chemistry Advances, 2023, 3:100359.
[26] 廖凌姗, 田圣, 陈杰, 等.胭脂萝卜花青素的稳定性及抗氧化性研究[J].当代化工研究, 2022(22):30-32.
LIAO L S, TIAN S, CHEN J, et al.Study on the stability and antioxidation of anthocyanins from rouge radish[J].Modern Chemical Research, 2022(22):30-32.
[27] 唐榕, 宁恩创, 林莹.桑葚花色苷的提取纯化及稳定性[J].食品工业科技, 2018, 39(14):181-185;199.
TANG R, NING E C, LIN Y.Extraction, purification and stability of anthocyanin from mulberry[J].Science and Technology of Food Industry, 2018, 39(14):181-185;199.
[28] 张雨桐, 朱磊, 郭志龙, 等.葡萄皮渣花色苷稳定性研究[J].农产品加工, 2015(16):1-3;7.
ZHANG Y T, ZHU L, GUO Z L, et al.Stability of anthocyanins from grape pomace[J].Farm Products Processing, 2015(16):1-3;7.
[29] ZHOU M, CHEN Q Q, BI J F, et al.Degradation kinetics of cyanidin 3-O-glucoside and cyanidin 3-O-rutinoside during hot air and vacuum drying in mulberry (Morus alba L.) fruit:A comparative study based on solid food system[J].Food Chemistry, 2017, 229:574-579.
[30] 曾琳, 韩成云, 赵志刚, 等.不同提取方法黑米花青素的稳定性研究[J].食品工业, 2018, 39(8):6-10.
ZENG L, HAN C Y, ZHAO Z G, et al.Stability of anthocyanin extracted from black rice by different methods[J].The Food Industry, 2018, 39(8):6-10.
[31] 张新灿, 郭浩然, 张静, 等.桑葚干和桑葚酒中花青素稳定性分析[J].食品研究与开发, 2022, 43(24):51-57.
ZHANG X C, GUO H R, ZHANG J, et al.Stability analysis of anthocyanins in dried mulberry and mulberry wine[J].Food Research and Development, 2022, 43(24):51-57.
[32] WU G, FAN L L, ZHOU J Z, et al.Metal-induced color change in blackberry wine[J].LWT, 2023, 173:114361.
[33] 朱晓路, 陈文博, 王玉玲, 等.食品中的花青素及其与金属离子的相互作用[J].食品工业, 2022, 43(9):249-253.
ZHU X L, CHEN W B, WANG Y L, et al.Anthocyanins in food and the interaction with metal ions[J].The Food Industry, 2022, 43(9):249-253.
[34] 陈莎莎, 索有瑞, 白波, 等.青藏高原黑果枸杞花青素稳定性评价[J].天然产物研究与开发, 2017, 29(2):322-328.
CHEN S S, SUO Y R, BAI B, et al.Evaluation of the stability of anthocyanins in Lycium ruthenicum Murr.from Qinghai Tibet Plateau[J].Natural Product Research and Development, 2017, 29(2):322-328.
[35] WROLSTAD R E, SKREDE G, LEA P, et al.Influence of sugar on anthocyanin pigment stability in frozen strawberries[J].Journal of Food Science, 1990, 55(4):1064-1065.
[36] 樊小静, 任广跃, 段续, 等.不同干燥方式下紫薯全粉的物性品质及花青素含量[J].食品与发酵工业, 2022, 48(21):160-166.
FAN X J, REN G Y, DUAN X, et al.Effects of different drying methods on physical properties, quality and anthocyanin content of purple potato powder[J].Food and Fermentation Industries, 2022, 48(21):160-166.
[37] TOMAS M, TOYDEMIR G, BOYACIOGLU D, et al.The effects of juice processing on black mulberry antioxidants[J].Food Chemistry, 2015, 186:277-284.
[38] 刘伟, 许弯, 胡小琴, 等.预处理对蓝莓NFC果汁品质和风味的影响[J].中国食品学报, 2021, 21(3):193-202.
LIU W, XU W, HU X Q, et al.Effect of pretreatment on quality and flavor of blueberry NFC juice[J].Journal of Chinese Institute of Food Science and Technology, 2021, 21(3):193-202.
[39] 何中秋. 浓缩蓝莓汁加工及其物性参数变化规律研究[D].长春:吉林农业大学, 2015.
HE Z Q.Processing of concentrated blueberry juice and study on its physical parameter changes[D].Changchun:Jilin Agricultural University, 2015.
[40] BAO S H, YIN D Z, ZHAO Q Y, et al.Comprehensive evaluation of the effect of five sterilization methods on the quality of black carrot juice based on PCA, TOPSIS and GRA models[J].Food Chemistry:X, 2023, 17:100604.
[41] 吴琼, 冯卫敏, 蒋和体.不同杀菌方式对桑葚原汁品质的影响[J].食品科学, 2016, 37(9):144-149.
WU Q, FENG W M, JIANG H T.Effect of sterilization methods on the quality of mulberry juice[J].Food Science, 2016, 37(9):144-149.
[42] 陈卫军. 基于乳清分离蛋白的载体材料构建及对功能因子的稳态作用研究[D].杭州:浙江大学, 2020.
CHEN W J.Construction of delivery systems with whey protein isolate and their stabilization effect on bioactive compounds[D].Hangzhou:Zhejiang University, 2020.
[43] NIE M, WANG L, LU S M, et al.Protective effect of amino acids on the stability of bayberry anthocyanins and the interaction mechanism between L-methionine and cyanidin-3-O-glycoside[J].Food Chemistry, 2022, 396:133689.
[44] 王宇滨, 张超, 马越, 等.几种有机酸对紫玉米花青素热稳定性的影响[J].食品科学, 2010, 31(7):164-167.
WANG Y B, ZHANG C, MA Y, et al.Effects of organic acids on thermal stability of anthocyanins from purple corn[J].Food Science, 2010, 31(7):164-167.
[45] 张钰娟. 基于氨基酸辅色作用的黑莓花青素稳定性研究及其作用机理初步探究[D].贵阳:贵州师范大学, 2017.
ZHANG Y J.The copigmentation effect of amino acid on blackberry anthocyanin stability and the mechanism investigation[D].Guiyang:Guizhou Normal University, 2017.
[46] CHUNG C, ROJANASASITHARA T, MUTILANGI W, et al.Stability improvement of natural food colors:Impact of amino acid and peptide addition on anthocyanin stability in model beverages[J].Food Chemistry, 2017, 218:277-284.
[47] BINGÖL A, TÜRKYıLMAZ M, ÖZKAN M.Increase in thermal stability of strawberry anthocyanins with amino acid copigmentation[J].Food Chemistry, 2022, 384:132518.
[48] OH J, IMM J.Effect of amino acids addition on stability and antioxidative property of anthocyanins[J].Korean Journal of Food Science and Technology, 2005, 37:562-566.
[49] HATTORI T, CHEN Y, ENOKI S, et al.Exogenous isoleucine and phenylalanine interact with abscisic acid-mediated anthocyanin accumulation in grape[J].Folia Horticulturae, 2019, 31(1):147-157.
[50] TÜRKYıLMAZ M, HAMZAOĞLU F, ÜNAL H, et al.Influence of amino acid addition on the thermal stability of anthocyanins in pomegranate (Punica granatum L., cv.Hicaznar) and orange (Citrus sinensis L.Osbeck, cv.Valencia) juice blend[J].Food Chemistry, 2022, 370:131061.
[51] CORTEZ R, LUNA-VITAL D A, MARGULIS D, et al.Natural pigments:Stabilization methods of anthocyanins for food applications[J].Comprehensive Reviews in Food Science and Food Safety, 2017, 16(1):180-198.
[52] CHUNG C, ROJANASASITHARA T, MUTILANGI W, et al.Enhanced stability of anthocyanin-based color in model beverage systems through whey protein isolate complexation[J].Food Research International, 2015, 76:761-768.
[53] LANG Y X, GAO H Y, TIAN J L, et al.Protective effects of α-casein or β-casein on the stability and antioxidant capacity of blueberry anthocyanins and their interaction mechanism[J].LWT, 2019, 115:108434.
[54] ZANG Z H, CHOU S R, GENG L J, et al.Interactions of blueberry anthocyanins with whey protein isolate and bovine serum protein:Color stability, antioxidant activity, in vitro simulation, and protein functionality[J].LWT, 2021, 152:112269.
[55] CHENG J, LIU J H, PRASANNA G, et al.Spectrofluorimetric and molecular docking studies on the interaction of cyanidin-3-O-glucoside with whey protein, β-lactoglobulin[J].International Journal of Biological Macromolecules, 2017, 105(Pt 1):965-972.
[56] CHEN X, GUAN Y M, ZENG M M, et al.Effect of whey protein isolate and phenolic copigments in the thermal stability of mulberry anthocyanin extract at an acidic pH[J].Food Chemistry, 2022, 377:132005.
[57] JIANG Y T, YIN Z C, WU Y R, et al.Inhibitory effects of soy protein and its hydrolysate on the degradation of anthocyanins in mulberry extract[J].Food Bioscience, 2021, 40:100911.
[58] HE W J, GUO F X, JIANG Y T, et al.Enzymatic hydrolysates of soy protein promote the physicochemical stability of mulberry anthocyanin extracts in food processing[J].Food Chemistry, 2022, 386:132811.
[59] CHENG Y, CHEN X, YANG T, et al.Storage stability and multi-spectroscopy analysis of the ternary complex induced by mulberry anthocyanin extract interacting with whey protein isolate and rutin under acidic conditions[J].Food Hydrocolloids, 2023, 143:108911.
[60] 彭孟晨. 野樱莓原花青素的提取纯化、纳米颗粒制备及其稳定性的研究[D].无锡:江南大学, 2022.
PENG M C.Study on extraction and purification, nanoparticles preparation and stability of proanthocyanidins from chokeberry[D].Wuxi:Jiangnan University, 2022.
[61] 张丽霞, 刘书晶, 张晨颜, 等.鸡卵白蛋白-桑葚酒渣花色苷纳米颗粒特性[J].林业工程学报, 2021, 6(1):92-97.
ZHANG L X, LIU S J, ZHANG C Y, et al.Characteristics of chicken ovalbumin-mulberry wine pomace anthocyanin nanoparticles[J].Journal of Forestry Engineering, 2021, 6(1):92-97.
[62] 冉林武, 米佳, 禄璐, 等.黑果枸杞花色苷纳米颗粒的制备及其对氧化低密度脂蛋白诱导的人脐静脉融合细胞氧化损伤的保护作用[J].食品科学, 2019, 40(17):162-168.
RAN L W, MI J, LU L, et al.Preparation of anthocyanin-loaded nanoparticles from Lycium ruthenium Murr.and its protective effect on oxidative damage of EAhy926 cells induced by oxidized low-density lipoprotein[J].Food Science, 2019, 40(17):162-168.
[63] GÜLTEKIN-ÖZGÜVEN M, KARADAĞ A, DUMAN Ş, et al.Fortification of dark chocolate with spray dried black mulberry (Morus nigra) waste extract encapsulated in chitosan-coated liposomes and bioaccessability studies[J].Food Chemistry, 2016, 201:205-212.
[64] CHOI Y, KOH E.Microencapsulation of aronia extract and stability of encapsulated anthocyanins during sulgidduk cooking[J].Food Science, 2022, 54(2)163-170.
[65] 陈程莉, 李丰泉, 刁倩, 等.不同壁材对黑枸杞花青素微胶囊稳定性和缓释特性的影响[J].食品与发酵工业, 2020, 46(16):78-85.
CHEN C L, LI F Q, DIAO Q, et al.Effects of different wall materials on the stability and sustained-release characteristics of anthocyanin microcapsules of Lycium ruthenicum Murr[J].Food and Fermentation Industries, 2020, 46(16):78-85.
[66] KHALIFA I, LI M L, MAMET T, et al.Maltodextrin or gum Arabic with whey proteins as wall-material blends increased the stability and physiochemical characteristics of mulberry microparticles[J].Food Bioscience, 2019, 31:100445.
[67] XU L, CHENG J R, LIU X M, et al.Effect of microencapsulated process on stability of mulberry polyphenol and oxidation property of dried minced pork slices during heat processing and storage[J].LWT, 2019, 100:62-68.
[68] YAMDECH R, ARAMWIT P, KANOKPANONT S.Stability of anthocyanin from mulberry extracts in alginate microspheres at high temperature[J].Advanced Materials Research, 2012, 506:587-590.