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miliusa tomentosa/cancro

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Miliusanes, a class of cytotoxic agents from Miliusa sinensis.

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Bioassay-directed fractionation of the leaves, twigs, and flowers of Miliusa sinensis Finet and Gagnep. (Annonaceae) led to the isolation of a new class of potential anticancer lead molecules. They are a cluster of compounds composed of a C(18) carbon skeleton, a known but heretofore unnamed type,

In Vitro and in Vivo Antitumor Effects of Plant-Derived Miliusanes and Their Induction of Cellular Senescence.

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Our earliest phytochemical separation of Miliusa sinensis aided us in the isolation of a class of unique miliusanes, which were demonstrated as anticancer lead molecules. In the present study, we isolated 19 miliusanes (1-19), including 11 novel ones (5 and 10-19) from another Miliusa plant ( M.

Two new sesquiterpenes from the stems of Miliusa velutina

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From the ethyl acetate extract of the stems of Miliusa velutina, seven compounds (1-7) were isolated, including two new compounds such as mivelutina A acid (1), mivelutina B acid (2) and one known compound mivelutina B methyl ester (3). For this NMR data

Cananginones A–I, linear acetogenins from the stem bark of Miliusa velutina [corrected].

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Nine linear C23 and C21 acetogenins, named cananginones A-I (1-9), were isolated from stem bark of Miliusa velutina [corrected] . Their structures were established by spectroscopic methods. These compounds showed cytotoxicity against three cancer cell lines (KB, MCF7 and NCI-H187) with IC₅₀ values

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

Miliusins; Cytotoxic Neolignans From the Leaves of Miliusa Sessilis

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Eight undescribed neolignans and an undescribed propanoid dimer were isolated from the leaves of Miliusa sessilis, together with two known compounds, dehydrodieugenol A and dehydrodieugenol B. All structures were elucidated by extensive spectroscopic data analysis and the structure of
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