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Morus alba

K. Prabhu. J uvenomimetic activity in some South Indian plants and the probable cause of this activity in Morus alba. Entomon 1977 2 259-261. [Pg.143]

Hano, Y. et al., A novel way of determining the structure of artonin I, an optically active Diels-Alder type adduct, with the aid of an enzyme system of Morus alba cell cultures, J. Chem. Soc. Chem. Commun., 1177, 1992. [Pg.1065]

Morus alba callus and cell suspension cultures specifically produce chalomoradn 5 and kuwanon J 6 from dnnamoylpolyketide intermediates. Administration of [2- C]cinnamic add AT-acetylcysteamine thioester to the M. alba cell cultures revealed the cinnamoyl CoA intermediate to be a significant precursor <99H(50)989>. For further biosynthetic investip-tions see <99H(51)231>. [Pg.135]

Morus alba L. M. constantinopolitana Poir. M. indica L. Sang Zhi or Sang Gen Bai Pi (Mulberry tree) (young twig) Morin, dihydromorin, maclurin, dihydrokaempterol, mulberrin, 2,4,4, t-tetrahydroxybenzophenone, mulberrochromene, cyclomulbeiTochromene.33 Antirheumatic, antihypertensive, diuretic, remove obstructions of the intestinal tract. [Pg.113]

Abrus precatorius, Hibiscus sabdariffa, Malva sylvestris, M. mtundifolia, Morus alba, Perilla frutescens, Pinus albicaulis, P contorta, P. mugo, P. palustris, P. strvbus, Rubus idaeus, Vitis vinifera Ribes lacustre, R. nigrum, Vaccinium vitis-idaea, V. myrtilloides, V myrtillus, V. oreophilum, V macrocarpon Cassia angustifolia, C. senna Rubia tinctorum... [Pg.504]

About seventy kinds of new phenolic compounds could be isolated from Japanese cultivated mulberry tree (Morus alba, M. bombycis, and M, Ihou) and Chinese crude drug Sang-Bai-Pi (the root bark of Chinese mulberry tree). Most of them are isoprenylated flavonoids. Among them, kuwanon G (1) was the first isolation of the active substance exhibiting the hypotensive effect from the Japanese Morus alba root bark [9]. Furthermore, kuwanon G (1) and its isoprenylated derivative kuwanon H (2) [10] are considered to be formed through an enzymatic Diels-Alder type reaction of a chalcone and a dehydrokuwanon C or its... [Pg.200]

Morusin (3), a flavone derivative, isolated from the root bark of Morus alba L., as a main isoprenylated flavonoid, has a structure bearing an isoprenoid moiety at the C-3 position and a 2, 4 -dioxygenated pattern in the B ring [15]. These features are one of the characteristics of the isoprenylated flavonoids of Morus root bark. [Pg.202]

F g- (4). Isolation procedure of flavonoids from the root bark of Morus alba. [Pg.208]

Hypertension is an important risk factor for coronary heart disease and stroke. Since ancient times, hypertensive patients have been treated orally with plant extracts based on folk medicine. However, and despite their in vitro vasodilator effects, little information about the protective effects of flavonoids on hypertension is available in the literature. Flavonoids have been considered as active principles of several antihypertensive plant extracts (e.g. rhamnoglycoside of limocitrin isolated from Citrus limonum, kaempferol 4 -0-glucose and hyperin from Euphorbia maddeni, moracenins from Morus alba, procyanidin glycoside from Rhamnus lycioides) [150,151]. In all cases, only the acute antihypertensive effects after i.v. administration in anaesthetised normotensive and/or hypertensive animals have been described. In addition to the direct vasodilator effects discussed above, the inhibition of angiotensin-converting enzyme reported... [Pg.594]

Morin (flavonol) Morus alba, Chlorophora tinctoria (Moraceae) MMP-2 (25 pM), MMP-9 (300 pM) [87]... [Pg.582]

Morus alba (mulberry) (Moraceae) [root bark] Morus alba (mulberry) (Moraceae) [root bark] Animals - endogenous Bombesin family peptide... [Pg.218]

Morus alba, M. spp. (mulberry), Chlorophora tinctoria, Artocarpus heterophyllus, A. integrifolia (Moraceae)... [Pg.286]

Makisterone A, D (Amaranthaceae) [root], Lamium spp. (Lamiaceae), Morus alba (Moraceae) Diplagium dmianum (fern) ECDY-R agonists... [Pg.463]

Tetrahydroxystilbene) Morus alba (Moraceae), Picea spp., Pinas MLCK, PKA, PKC,... [Pg.562]

Mulberry tree is a rich source of intermolecular Diels-Alder type adducts coiq>rising two molecules of isoprenylphenols [26]. This article describes the chemistry of the Diels-Alder type adducts from moraceous plants and the biosynthesis of the adducts in Morus alba cell cultures. [Pg.451]

Figure 26 Bioconversion of 55 to 31 using Morus alba ceii cultures... Figure 26 Bioconversion of 55 to 31 using Morus alba ceii cultures...
Shlklmate pathway and Isoprenold biosynthesis In Morus alba cell cultures... [Pg.471]


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Bioconversion using Morus alba cell

Hypotensive action of Morus alba

Morus

Morus alba Linne

Morus alba Linne moracenin A and B from

Morus alba cell cultures

Morus alba root bark

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