Page 146 - 《精细化工》2022年第3期
P. 146
·568· 精细化工 FINE CHEMICALS 第 39 卷
Comparison on the antioxidant activity and tyrosinase inhibitory Antibacterial effect and mechanism of dandelion phytic acid on
effect of five natural plant extracts[J]. Modern Food Science and Salmonella[J]. Natural Product Research and Development (天然产
Technology (现代食品科技), 2018, 34(10): 81-86, 37. 物研究与开发), 2019, 31(6): 975-980, 985.
[3] YU H M (余汉谋), JIANG X T (姜兴涛), LI Q Y (李庆廷), et al. [15] WU Y (吴颖), WANG J Q (王佳其), TANG W (唐文), et al.
Progress in research work on skin-whitening effect of essential Inhibitory effect of tyrosinase on flavonoids from dandelion[J]. The
oils[J]. China Surfactant Detergent & Cosmetics (日用化学工业), Food Industry (食品工业), 2021, 42(6): 283-287.
2014, 44(1): 45-49. [16] ZOU S H (邹世辉). Research progress on bioactive substances of
[4] ZHANG M L (张美龄). Study on the plant extracts for cosmetics taraxacum mongolicum[J]. Heilongjiang Agricultural Sciences (黑龙
preservatives[D]. Wuxi: Jiangnan University (江南大学), 2017. 江农业科学), 2019, (8): 186-189.
[5] ELHIDAR N, NAFIS A, KASRATI A, et al. Chemical composition, [17] CAI L L, CHEN B H, YI F L, et al. Optimization of extraction of
antimicrobial activities and synergistic effects of essential oil from polysaccharide from dandelion root by response surface methodology:
Senecio anteuphorbium, a moroccan endemic plant[J]. Industrial Structural characterization and antioxidant activity[J]. International
Crops and Products, 2019, 130: 310-315. Journal of Biological Macromolecules, 2019, 140: 907-919.
[6] WANG Y L (王云龙), FANG Q (房岐), ZHENG C (郑超), et al. [18] YANG H Y (杨环毓), QIAN Z Y (钱忠英), FU X H (傅秀花), et al.
Research progress of phytochemistry, pharmacological action and Study on skin care efficacy of black tea and green tea extract[J]. Fine
quality control of Salvia Miltiorrhiza[J]. China Pharmaceuticals (中 Chemicals (精细化工), 2020, 37(2): 426-432.
国药业), 2020, 29(15): 6-10. [19] SHI Y B (石艳宾), LI J (李景), LIU H (刘浩), et al. Synergistic
[7] CHEN Y S, LEE S M, LIN Y J, et al. Effects of danshensu and antioxidant activity among polyphenols by response surface
salvianolic acid B from Salvia miltiorrhiza Bunge (Lamiaceae) on methodology[J]. Science and Technology of Food Industry (食品工
cell proliferation and collagen and melanin production[J]. Molecules, 业科技), 2017, 38(17): 61-64, 69.
2014, 19(2): 2029-2041. [20] AHMED M H, ALDESOUKI H M, BADRIA F A. Effect of phenolic
[8] HE S (何珊), FU X J (付先军), ZHANG L (张玲), et al. Study on compounds from the rind of Punica granatum on the activity of three
integrated extraction technology for effective components of Danshen metabolism-related enzymes[J]. Biotechnology and Applied
(Salvia miltiorrhiza) by response surface methodology and its antioxidant Biochemistry, 2020, 67(6): 960-972.
activity in vitro[J]. Chinese Archives of Traditional Chinese Medicine [21] ZHOU D Q (周德庆). Microbial experiment course[M]. Beijing:
(中华中医药学刊), 2021, 39(01): 28-32, 266-267. Higher Education Press (高等教育出版社), 2006.
[9] XIE T T, MA S L, LOU H X, et al. Two novel abietane [22] DUAN W L (段伟丽), LIU Y Q (刘艳秋), BAO Y H (包怡红), et al.
norditerpenoids with anti-inflammatory properties from the roots of Study on antimicrobial activities and stability of essential oil from
Salvia miltiorrhiza var. alba[J]. Tetrahedron Letters, 2014, 55(51): artemisia argyi[J]. Journal of Food Science and Biotechnology (食品
7106-7109. 与生物技术学报), 2015, 34(12): 1332-1337.
[10] DIAN L H (典灵辉), GONG X L (龚先玲), ZHANG L J (张立坚), et [23] SHI Z (石真). Chemical separation of essential oil from Eupatorium
al. Analysis of volatile oils in Salvia miltiorrhiza Bge.[J]. LiShiZhen adenophorum and its anti-inflammatory effect in vitro[D]. Chengdu:
Medicine and Materia Medica Research (时珍国医国药), 2006, (1): Sichuan Agricultural University (四川农业大学), 2019.
34-35. [24] LI R (李蕊), ZHANG N (张楠), YAO L (姚雷), et al. Study on the
[11] LIANG J Y (梁嘉钰), ZHAO S Y (赵思雨), LIU J (刘佳), et al. hair growth promotion effect of lavender essential oil and Asian mint
Investigation on extraction technology and components determination essential oil[J]. China Surfactant Detergent & Cosmetics (日用化学
of Salvia volatile oil[J]. Journal of Shenyang Pharmaceutical University 工业), 2020, 50(8): 536-541.
(沈阳药科大学学报), 2018, 35(4): 301-305. [25] YANG N (杨娜). Percutaneous permeability enhancement of volatile
[12] LEE D S, LEE S H, NOH J G, et al. Antibacterial activities of oils from Angelica Sinensis[J]. Guangdong Chemical Industry (广东
cryptotanshinone and dihydrotanshinone I from a medicinal herb, 化工), 2020, 47(18): 65-67.
Salvia miltiorrhiza Bunge[J]. Bioscience Biotechnology and [26] LI Y (李莹). Construction of chemical sunscreen/lignin microcapsules
Biochemistry, 1999, 63(12): 2236-2239. and their applied fundamental research[D]. Guangzhou: South China
[13] HOU R R (侯荣荣), DU F T (杜峰涛), ZOU X Y (邹星月), et al. University of Technology (华南理工大学), 2018.
Advances in the application of taraxacum active substances[J]. Anhui [27] BISWAS R, CHANDA J, KAR A, et al. Tyrosinase inhibitory
Agricultural Science Bulletin (安徽农学通报), 2019, 25(22): 27-28, 53. mechanism of betulinic acid from Dillenia indica[J]. Food Chemistry,
[14] GAO F X (高飞雄),LIANG Y K (梁引库), LI Y X (李云祥), et al. 2017, 232: 689-696.
(上接第 553 页) [20] TRNKA T, MORGAN J, SANFIRD M S, et al. Synthesis and activity
of ruthenium alkylidene complexes coordinated with phosphine and
[14] SHIEH P, ZHANG W X, HUSTED K E L, et al. Cleavable N-heterocyclic carbene ligands[J]. J Am Chem Soc, 2003, 125(9):
comonomers enable degradable, recyclable thermoset plastics[J]. 2546-2558.
Nature, 2020, 583(7817): 542-547. [21] LIU F (刘枫). Study on synthesis of PDCPD and copolymer[D].
[15] LIU H Y, WEI H B, MOORE J S. Frontal ring-opening metathesis Dalian: Dalian University of Technology (大连理工大学), 2012.
copolymerization: Deviation of front velocity from mixing rules[J]. [22] HU F Y (胡方圆). Preparation and modification of polydicyclopentadiene
ACS Macro Lett, 2019, 8(7): 846-851. [D]. Dalian: Dalian University of Technology (大连理工大学), 2014.
[16] BAO Y (鲍燕), DING Y (丁颖). Research progress of water-based [23] HUANG J, DAVID A, GAC P Y L, et al. Thermal oxidation of
alkyd resins[J]. Fine Chemicals (精细化工), 2020, 37(6): 1107-1115. poly(dicyclopentadiene)-Kinetic modeling of double bond consumption
[17] WEI Y B (魏元博), AN Q F (安秋凤), ZHAO J (赵洁). Synthesis [J]. Polymer Degradation and Stability, 2019, 166: 258-271.
and application properties of quaternary ammonium modified amino [24] HUANG J, MINNE W, DROZDZAK R, et al. Thermal oxidation of
polysiloxane[J]. Fine Chemicals (精细化工), 2014, 31(5): 627-632. poly(dicyclopentadiene)-decomposition of hydroperoxides[J].
[18] AKINDOYO J, BEG M D H, GHAZALI S, et al. Polyurethane Polymer Degradation and Stability, 2020, 174: 109102.
types, synthesis and applications-A review[J]. RSC Adv, 2016, [25] GONG L J, XU W J, LIU K, et al. ROMP of acetoxy-substituted
6(115): 114453-114482. dicyclopentadiene to linear polymer with a high T g[J]. RSC Adv,
[19] CUTHBERT T J, LI T, SPEED A W H, et al. Structure of the 2015, 5(33): 26185-26188.
thermally induced cross-link in C-linked methyl ester-functionalized [26] DEAN L M, WU Q, ALSHANGITI Q, et al. Rapid synthesis of
polydicyclopentadiene (fPDCPD)[J]. Macromolecules, 2018, elastomers and thermosets with tunable thermomechanical properties
51(5): 2038-2047. [J]. ACS Macro Letters, 2020, 9(6): 819-824.