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1 nol constituents of the leaves and fruits of Ginkgo biloba.
2 o 140) for kava to 720 (CI, 520 to 1100) for Ginkgo biloba.
3 not wholly conserved between angiosperms and Ginkgo biloba.
4 and the partial pressure of CO(2) in modern Ginkgo biloba and Metasequoia glyptostroboides to develo
5 ry impairment (eg, donepezil, memantine, and ginkgo biloba), and bone marrow supporting agents (eg, e
6 This research underscores the potential of Ginkgo biloba as a functional ingredient in fermented be
7 k of bias compared omega-3 fatty acids, soy, ginkgo biloba, B vitamins, vitamin D plus calcium, vitam
9 Cd(II) in water, tobacco, green tea leaves, ginkgo biloba, carrots, and rice samples, and its accura
10 opoisomerase II (Topo II) than did the other Ginkgo biloba constituents; this in silico prediction wa
11 and showed that neuroprotective extracts of Ginkgo biloba could inhibit oligomer formation at very l
12 -depth comparative transcriptome analyses of Ginkgo biloba developing ovules, pollen cones, and megag
13 ein include garlic (Allium sativum), ginkgo (Ginkgo biloba), echinacea (Echinacea purpurea), ginseng
18 reviously demonstrated that the standardized Ginkgo biloba extract EGb 761, commonly used to enhance
19 s study reveals that diets supplemented with Ginkgo biloba extract have notable neuromodulatory effec
21 on of EGb 761, a standardized formulation of Ginkgo biloba extract, markedly protected Tat transgenic
22 ides are structurally unique constituents of Ginkgo biloba extracts and are known antagonists of the
24 s and bilobalide) are unique constituents of Ginkgo biloba extracts that have various effects on the
25 ide, are structurally unique constituents of Ginkgo biloba extracts, which exhibit various neuromodul
26 e about effects of omega-3 fatty acids, soy, ginkgo biloba, folic acid alone or with other B vitamins
27 ate sexual differences in spring budburst in Ginkgo biloba, Fraxinus chinensis, and Eucommia ulmoides
28 eding when warfarin is combined with ginkgo (Ginkgo biloba), garlic (Allium sativum), dong quai (Ange
33 species, the codon usage pattern analysis of Ginkgo biloba is a useful way to understand its evolutio
38 ginkgolides, bilobalide) from the tissues of Ginkgo biloba L. and pharmaceutical ginkgo products by R
39 In this study, the DNA damaging effects of Ginkgo biloba leaf extract and many of its constituents
41 II knockdown cells, DNA damage triggered by Ginkgo biloba leaf extract or quercetin was dramatically
46 tudy explores the feasibility of using dried Ginkgo biloba leaves in SCOBY-mediated fermentation to p
47 ginkgo terpene trilactones in extractions of ginkgo biloba leaves obtained from three different extra
51 d ginkgolides, the anti-oxidant component of Ginkgo biloba leaves, or vitamin E, prevented the Abeta-
53 dariffa (petals), Rosa canina (receptacles), Ginkgo biloba (leaves), Cymbopogon citratus (leaves), Al
56 dels of PD include creatine, coenzyme Q(10), Ginkgo biloba, nicotinamide, and acetyl-L-carnitine.
57 understand the development of the ovules in Ginkgo biloba ovules, we performed spatio-temporal expre
62 d that quercetin, a flavonoid constituent of Ginkgo biloba, showed a higher potential to interact wit
63 f the 8 most widely used herbal supplements (ginkgo biloba, St John's wort, echinacea, ginseng, garli
64 e highly oxygenated diterpenes isolated from Ginkgo biloba that exhibit potent anti-inflammatory and
66 Standardized extract from the leaves of the Ginkgo biloba tree, labeled EGb761, has been used in cli
67 perties of sun and shade leaf morphotypes of Ginkgo biloba trees under the present atmospheric CO2 co
70 mechanisms operate in the ancient gymnosperm Ginkgo biloba, we measured Lhcb mRNA levels in seedlings
72 (GA), a natural compound from the extract of Ginkgo biloba, with known antiviral properties for sever