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pinus parviflora/antineoplàstic

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Induction of antimicrobial activity by antitumor substances from pine cone extract of Pinus parviflora Sieb. et Zucc.

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Pretreatment with two distinct antitumor substances extracted from pine cone of Pinus parviflora Sieb. et Zucc. protected mice from the lethal effects of E. coli infection. Intraperitoneal administration of these fractions transiently induced differentiation-inducing factor (DIF) with a peak at

Antitumor activity of polysaccharide fractions from pine cone extract of Pinus parviflora Sieb. et Zucc.

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Hot water extract of pine cone (PCE) of Pinus parviflora Sieb. et Zucc. dose-dependently suppressed both solid and ascites tumor cells transplanted into various mice. Acidic polysaccharides of PCE significantly increased the survival time of mice bearing ascites tumor cells, and activity increased

Inhibition of influenza virus infection by pine cone antitumor substances.

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The anti-influenza virus activity of polysaccharides and other high molecular weight fractions from pine cone extract (PCE) of Pinus parviflora Sieb. et Zucc. was investigated. None of the fractions affected the growth of MDCK cells. The acidic PCE substances markedly suppressed the growth of the

Interaction between influenza virus proteins and pine cone antitumor substance that inhibits the virus multiplication.

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Fractions obtained from pine cone extract (PCE) of Pinus parviflora Sieb. et Zucc. have been shown to suppress the growth of influenza virus. The inhibitory effects of one of the fractions, Fraction VII, on the formation of RNA-viral protein complex and the viral RNA synthesis were investigated. The
Non-toxic stimulation of dendritic cells (DCs), which are central immunomodulators, may aid the prevention of cancer. Furthermore, induction of apoptosis in cancer cells by anticancer agents contributes to the induction of DC maturation. We previously reported that extracts from Pinus parviflora

Lignified materials as potential medicinal resources. III. Diversity of biological activity and possible molecular species involved.

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Diverse biological activities of hot-water and alkali extracts of lignified materials were reviewed and the molecular species involved are discussed. Materials tested included pine cone of Pinus parviflora SIEB. et Zucc., wood chips of slash pine, Douglas fir, and tallow wood, and two basidiocarps,

Induction of antiparasite activity by pine cone lignin-related substances.

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Pretreatment with two distinct lignin-related antitumor substances extracted from pine cone of Pinus parviflora Sieb. et Zucc. protected infant mice from Hymenolepis nana (Cestoda) infection. Subcutaneous administration of these fractions (10 mg/kg) to 1 week old mice evoked strong protective

Mitogenic activity of pine cone extracts against cultured splenocytes from normal and tumor-bearing animals.

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An acidic pine cone extract, Fr. V. of Pinus parviflora Sieb. et Zucc. significantly stimulated DNA synthesis of isolated splenocytes from both mice and rats, but only marginally affected the DNA synthesis of leukemic cell lines. The maximum stimulation level attained by Fr. V slightly exceeded that
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