Page 131 - 201904
P. 131
第 4 期 陈小强,等: 向日葵茎髓提取物的抑菌活性及机制 ·657·
borne pathogens[J]. Food Control, 2018, 94: 155-161. al. The antimicrobial effect and the action mechanism of catfish
[23] Zhu Junli (朱军莉), Wang Huimin (王慧敏), Wang Guiyang (王桂 epidermal mucus extracts[J]. Journal of Chinese Institute of Food
洋), et al. Inhibition activity of tea polyphenols and grape seed extract Science and Technology (中国食品学报), 2017, 17(4): 21-29.
on biofilm formation of pseudomonas[J]. Journal of Chinese Institute [32] Wang Yonggang (王永刚), Yang Guangrui (杨光瑞), Ma Xueqing
of Food Science and Technology (中国食品学报), 2016, 16(1): 84-90. (马雪青), et al. Antibacterial mechanisms of endophytic fungi Alternaria
[24] Zheng Cuiping (郑翠萍), Quan Meiping (权美平), Kang Lina (康莉 alternata of ethyl acetateextract on Escherichia coli[J]. Chinese
娜), et al. Study on the antibacterial activity and its mechanism of Traditional and Herbal Drugs (中草药), 2018, 49(2): 374-381.
acetone extract from Rubia cordifolia[J]. Science and Technology of [33] Cho H, Uehara T, Bernhardt T. Beta-lactam antibiotics induce a lethal
Food Industry (食品工业科技), 2015, 36(9): 116-119. malfunctioning of the bacterial cell wall synthesis machinery[J]. Cell,
[25] Fatrcova-Sramkova K, Nozkova J, Mariassyova M, et al. Biologically 2014, 159(6): 1300-1311.
active antimicrobial and antioxidant substances in the Helianthus [34] Goggins S, Naz C, Marsh B, et al. Ratiometric electrochemical
annuus L. bee pollen[J]. Journal of Environmental Science and Health detection of alkaline phosphatase[J]. Chemical Communications,
Part B-Pesticides Food Contaminants and Agricultural Wastes, 2016, 2015, 51(3): 561-564.
51(3): 176-181. [35] Huo Jiancong (霍健聪), Deng Shanggui (邓尚贵), Li Jianrong (励建
[26] Duan Lindong (段林东), Wang Xiuqun (王秀群). Extraction and 荣). Preparation of flavonoids of Houttuyniacordata Thunb. and the
antibiotic effect of chlorogenic acid from sunflower shell mea[J]. antibacterial mechanismon Bacillus subtilis[J]. Journal of Chinese
Journal of Southwest Agricultural University (Natural Science) (西南 Institute of Food Science and Technology (中国食品学报), 2017,
农业大学学报: 自然科学版), 2006, 28(1): 124-126, 130. 17(9): 82-89.
[27] Kumar V D, Verma P R P, Singh S K. Morphological and in vitro [36] The Uniprot Consortium. UniProt: a hub for protein information[J].
antibacterial efficacy of quercetin loaded nanoparticles against Nucleic Acids Research, 2015, 43(Database issue): D204-D212.
food-borne microorganisms[J]. LWT-Food Science and Technology, [37] Yuan Zhongwei (袁中伟), Chen Zhiying (陈志英), Gan Yingying (甘
2016, 66: 638-650. 盈盈), et al. Antibacterial mechanism of thymol to methicillin-
[28] Fu Dan (付丹), Jin Yongguo (金永国), Han Mengqi (韩梦琪), et al. resistant Staphylococcus aureus[J]. Journal of South China
Studies on antibacterial activity and antibacterial mechanism of Agricultural University (华南农业大学学报), 2018, 39(6): 18-23.
ovomucin[J]. Journal of Chinese Institute of Food Science and [38] Li Changqin (李昌勤), Zhao Lin (赵琳), Xue Zhiping (薛志平), et
Technology (中国食品学报), 2016, 16(10): 28-35. al. Antibacterial mechanism of cryptotanshinone[J]. Chinese
[29] Teissie J, Eynard N, Gabriel B, et al. Electropermeabilization of the Pharmaceutical Journal (中国药学杂志), 2012, 47(21): 1706-1710.
cell membranes[J]. Advanced Drug Delivery Reviews, 1999, 35: 3-19. [39] Matsuura M, Abe H, Tominaga T, et al. A novel method of DAPI
[30] Lu Haixia (陆海霞), Huang Xiaoming (黄小鸣), Zhu Junli (朱军莉). staining for differential diagnosis of renal amyloidosis[J]. Journal of
Effect of ultrahigh pressure on cell membrane destruction and death Medical Investigation, 2017, 64(3/4): 217-221.
of Listeria monocytogenes[J]. Acta Microbiologica Sinica (微生物学 [40] Zhang Y, Feng R, Li L, et al. The antibacterial mechanism of
报), 2014, 54(7): 746-753. terpinen-4-ol against Streptococcus agalactiae[J]. Current Microbiology,
[31] Li Tingting (李婷婷), Yang Bing (杨兵), Zhang Huifang (张慧芳), et 2018, 75(9): 1214-1220.
(上接第 648 页) [14] Zhu H L, Hu Z Y, Ma X M, et al. Synthesis, surface and antimicrobial
activities of cationic gemini surfactants with semi-rigid spacers[J].
[4] Goto M, Momota A, Ono T. DNA extraction by cationic reverse Journal of Surfactants and Detergents, 2016, 19(2): 265-274.
micelles[J]. Journal of Chemical Engineering of Japan, 2004, 37(5): [15] Wang Yian (王一安), Yang Xiaolan (杨小兰), Zhong Guoqing (钟国
662-668. 清 ). Solid-phase synthesis, characterization and antibacterial
[5] Madaan P, Tyagi V K. Quaternary pyridinium salts: A review[J]. activities of binuclear antimony (Ⅲ) complex of sulfur-containing
Journal of Oleo Science, 2008, 57(4): 197-215. bissalicylaldehyde Schiff base[J]. Fine Chemicals (精细化工), 2017,
[6] Woude I V D, Wagenaar A, Meekel A A P, et al. Novel pyridinium 34(11): 1278-1282.
surfactants for efficient, nontoxic in vitro gene delivery[J]. [16] Garcia M T, Ribosa I, Perez L, et al. Aggregation behavior and
Proceedings of the National Academy of Sciences of the United antimicrobial activity of ester functionalized imidazolium and
States of America, 1997, 94(4): 1160-1165. pyridinium-based ionic liquids in aqueous solution[J]. Langmuir,
[7] Geng F, Liu J, Zheng L Q, et al. Micelle formation of long-chain 2013, 29(8): 2536-2545.
imidazolium ionic liquids in aqueous solution measured by [17] Biesen G A, Bottaro C S. Linear solvation energy relationships of
isothermal titration microcalorimetry[J]. Journal of Chemical & anionic dimeric surfactants in micellar electrokinetic chromatography
Engineering Data, 2010, 55(1): 147-151. I. Effect of the length of a hydrophobic spacer[J]. Journal of
[8] Wang H Y, Wang J J, Zhang S B, et al. Structural effects of anions Chromatography A, 2007, 1157: 437-445.
and cations on the aggregation behavior of ionic liquids in aqueous [18] Baker G A, Pandey S, Pandey S, etal. A new class of cationic
solutions[J]. Journal of Physical Chemistry B, 2008, 112(51): 16682- surfactants inspired by N-alkyl-N-methylpyrrolidinium ionic
16689. liquids[J]. Analyst, 2004, 129(10): 890-892.
[9] Dai C L, Du M Y, Liu Y F, et al. Aggregation behavior of long-chain [19] Ghumare A K, Pawar B V, Bhagwat S S. Synthesis and antibacterial
piperidinium ionic liquids in ethylammoniumnitrate[J]. Molecules, activity of novel amido-amine-based cationicgemini surfactants[J].
2014, 19(12): 20157-20169. Journal of Surfactants and Detergents, 2013, 16(1): 85-93.
[10] Sashina E S, Kashirskii D A, Zaborski M, et al. Synthesis and [20] Ahmad I, Patial P, Kaur C, et al. Cationic imidazolium monomeric
dissolving power of 1-alkyl-3-methylpyridinium-based ionic liquids[J]. surfactants: Their synthesis and surface active properties[J]. Journal
Russian Journal of General Chemistry, 2012, 82(12): 1994-1998. of Surfactants and Detergents, 2014, 17(2): 269-277.
[11] Sashina E S, Kashirskii D A, Janowska G, et al. Thermal properties [21] Usman M, Rashid M A, Mansha A, et al. Thermodynamic solution
of 1-alkyl-3-methylpyridinium halide-based ionic liquids[J]. properties of pefloxacinmesylate and its interactions with organized
Thermochimica Acta, 2013, 568(20): 185-188. assemblies of anionic surfactant, sodium dodecyl sulphate[J].
[12] Tiwari A, Sahoo M, Soreng M, et al. Synthesis, characterization, Thermochimica Acta, 2013, 573: 18-24.
solution behavior, and density functional theory analysis of some [22] Wang Liyan (王丽艳), He Xianyou (何显优), Bai Liming (白丽明),
pyridinium-base ionic liquids[J]. Journal of Surfactants and et al. Synthesis and properties ofsurfactants containing amide
Detergents, 2018, 21(3): 367-373. bond[J]. Fine Chemicals (精细化工), 2018, 35(6): 941-948.
[13] Bhattacharya S, Haldar J. Thermodynamics of micellization of [23] Cui Zhenggang (崔正刚). Fundamentals of surfactants, colloids, and
multiheaded single-chain cationic surfactants[J]. Langmuir, 2004, interface chemistry[M]. Beijing: Chemical Industry Press (北京:化
20(19): 7940-7947. 学工业出版社), 2013: 99-100.