Antileishmanial Activity of Lignans, Neolignans …
169
256. Friedman M, Henika PR, Levin CE, Mandrell RE (2006) Antimicrobial wine formulations
active against the foodborne pathogens Escherichia coli O157:H7 and Salmonella enterica. J
Food Sci 71:M245
257. Setiawan VW, Zhang ZF, Yu GP, Lu QY, Li YA, Lu ML, Wang MR, Guo CH, Yu SZ, Kurtz RC,
Hsieh CC (2001) Protective effect of green tea on the risks of chronic gastritis and stomach
cancer. Int J Cancer 92:600
258. Matsunaga K, Klein TW, Friedman H, Yamamoto Y (2002) Epigallocatechin gallate, a potential immunomodulatory agent of tea components, diminishes cigarette smoke condensateinduced suppression of anti-Legionella pneumophila activity and cytokine responses of
alveolar macrophages. Clin Diagn Lab Immunol 9:864
259. Yamamoto Y, Matsunaga K, Friedman H (2004) Protective effects of green tea catechins on
alveolar macrophages against bacterial infections. BioFactors 21:119
260. Yam TS, Shah S, Hamilton-Miller JM (1997) Microbiological activity of whole and fractionated crude extracts of tea (Camellia sinensis), and of tea components. FEMS Microbiol Lett
152:169
261. Anand PK, Kaul D, Sharma M (2006) Green tea polyphenol inhibits Mycobacterium
tuberculosis survival within human macrophages. Int J Biochem Cell Biol 38:600
262. Sugita-Konishi Y, Hara-Kudo Y, Amano F, Okubo T, Aoi N, Iwaki M, Kumagai S (1999)
Epigallocatechin gallate and gallocatechin gallate in green tea catechins inhibit extracellular
release of Vero toxin from enterohemorrhagic Escherichia coli O157:H7. Biochim Biophys
Acta 1472:42
263. Ganguly NK, Kaur T (1996) Mechanism of action of cholera toxin and other toxins. Indian J
Med Res 104:28
264. Toda M, Okubo S, Ikigai H, Shimamura T (1990) Antibacterial and antihemolysin activities
of tea catechins and their structural relatives. Nihon Saikingaku Zasshi 45:561
265. Weber JM, Ruzindana-Umunyana A, Imbeault L, Sircar S (2003) Inhibition of adenovirus
infection and adenain by green tea catechins. Antiviral Res 58:167
266. Clark KJ, Grant PG, Sarr AB, Belakere JR, Swaggerty CL, Phillips TD, Woode GN (1998)
An in vitro study of theaflavins extracted from black tea to neutralize bovine rotavirus and
bovine coronavirus infections. Vet Microbiol 63:147
267. Chang L-K, Wei T-T, Chiu Y-F, Tung CP, Chuang JY, Hung SK, Li C, Liu ST (2003) Inhibition of Epstein-Barr virus lytic cycle by (–)-epigallocatechin gallate. Biochem Biophys Res
Commun 301:1062
268. Kawai K, Tsuno NH, Kitayama J, Okaji Y, Yazawa K, Asakage M, Hori N, Watanabe T, Takahashi K, Nagawa H (2003) Epigallocatechin gallate, the main component of tea polyphenol,
binds to CD4 and interferes with gp120 binding. J Allergy Clin Immunol 112:951
269. Hamza A, Zhan C-G (2006) How can (–)-epigallocatechin gallate from green tea prevent
HIV-1 infection: mechanistic insights from computational modeling and the implication for
rational design of anti-HIV-1 entry inhibitors. J Phys Chem B 110:2910
270. Yamaguchi K, Honda M, Ikigai H, Hara Y, Shimamura T (2002) Inhibitory effects of (–)epigallocatechin gallate on the life cycle of human immunodeficiency virus type 1 (HIV-1).
Antiviral Res 53:19
271. Liu S, Lu H, Zhao Q, He Y, Niu J, Debnath AK, Wu S, Jiang S (2005) Theaflavin derivatives in
black tea and catechin derivatives in green tea inhibit HIV-1 entry by targeting gp41. Biochim
Biophys Acta 1723:270
272. Schroeder CM, Zhao C, DebRoy C, Tarcolini J, Zhao S, White DG, Wagner DD, McDermott
PF, Walker RD, Meng J (2002) Antimicrobial resistance of Escherichia coli O157 isolated
from humans, cattle, swine, and food. Appl Environ Microbiol 68:576
273. de Souza Pereira JJ, Pereira A de PC, Jandú JJB, da Paz JA, Crovella S, Dos Santos Correia MT
(2017) Commiphora leptophloeos phytochemical and antimicrobial characterization. Front
Microbiol 8:52
274. Bai M, Wu L-J, Cai Y, Eu S-Y, Song X-P, Chen G-Y, Zheng C-J, Han C-R (2017) One new
lignan derivative from Combretum alfredii Hance. Nat Prod Res 31:1022
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