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miliusa velutina/flavonoid

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A new flavone and cytotoxic activity of flavonoid constituents isolated from Miliusa balansae (Annonaceae).

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A new flavone named miliufavol [8-(2-hydroxybenzyl)-5-hydroxy-2-(4-hydroxy-3-methoxyphenyl)-3,7-dimethoxy-4H-chromen-4-one or 8-C-(o)-hydroxybenzylpachypodol] from Miliusa balansae (Annonaceae) was isolated and structurally elucidated by spectroscopic means besides four known flavones: ombuine,

Inhibition of the Calcineurin Pathway by Two Flavonoids Isolated from Miliusa sinensis Finet & Gagnep.

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In order to discover plant-derived signaling pathway inhibitors with antifungal properties, a two-component screening system utilizing the calcineurin and Hog1 mitogen-activated protein kinase pathways responsible for the virulence networks of Cryptococcus neoformans was employed, owing to the

Homogentisic acid derivatives from Miliusa balansae.

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The new homogentisic acid derivatives miliusol (1b) and miliusolide (2) from Miliusa balansae were isolated and structurally determined by spectroscopic means. The relative configurations of the new 1b and its known acetate 1a were established. Furthermore, the symmetric ether

Exploration of Pharmacophore in Chrysosplenol C as Activator in Ventricular Myocyte Contraction.

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Chrysosplenol C (4',5,6-trihydroxy-3,3',7-trimethoxyflavone) isolated from Miliusa balansae has unique structural features as a reversible inotropic agent independent of β-adrenergic signaling and with selective activation of cardiac myosin ATPase. Hence, a series of chrysosplenol analogues were

Genus Miliusa: A Review of Phytochemistry and Pharmacology.

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Background
Genus Miliusa (family Annonaceae), widely distributed in mainland Asia and Australia to New Guinea, has been employed in both traditional herbal uses and pharmacological medicines. Original research articles related to this genus are now available, but
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