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erythrophleum guineense/alkaloid

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Page 1 from 29 results

Chemical and pharmacological characterization of Erythrophleum lasianthum alkaloids.

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Two alkaloids 1 and 2 were isolated from the seeds of Erythrophleum lasianthum. Their structures were assigned by spectroscopic and chemical means as 3 beta-hydroxynorerythrosuamine (1) and its 3-O-beta-D-glucopyranoside (2). In spontaneously beating atria, both compounds 1 and 2 showed a marked and

A cassaine diterpene alkaloid, 3β-acetyl-nor-erythrophlamide, suppresses VEGF-induced angiogenesis and tumor growth via inhibiting eNOS activation.

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Angiogenesis is one of the hallmarks of cancer, playing an essential role in tumor growth, invasion, and metastasis. 3β-Acetyl-nor-erythrophlamide (3-ANE), a cassaine diterpene alkaloid compound from Erythrophleum fordii, exerts various pharmacological effects, including antitumor activity. However,

Cassaine diterpene alkaloids from Erythrophleum fordii and their anti-angiogenic effect.

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Angiogenesis plays a critical role in embryonic development and various physiological processes. However, excessive angiogenesis is associated with several pathological conditions including cancer. Angiogenesis is closely related to tumor growth, invasion and metastasis, and is considered a prime

A new alkaloid from Erythrophleum couminga.

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Conformational isomerism in a new alkaloid from Erythrophleum suaveolens syn. E. guineense.

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Reaction of antiarrhythmic agents with aglycones and erythrophleum alkaloids.

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[Erythrophleum alkaloids (author's transl)].

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Effects of two Erythrophleum alkaloids on potassium transfer in human erythrocytes.

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Mutants of HeLa cells resistant to ouabain and cassaine: genetic evidence for the common site of action of cardiac glycosides and erythrophleum alkaloids.

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[Erythrophleum alkaloids].

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The action of the Erythrophleum alkaloids upon the isolated mammalian heart.

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Studies on Veratrum alkaloids. XXVIII. The action of the erythrophleum alkaloids on the single twitch and on the veratrine response of the sartorius muscle of the frog.

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Ciliary process ATPase: azasteroid and Erythrophleum alkaloid inhibition.

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New alkaloids from Erythrophleum species.

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Cardiotonic effect and toxicity of Erythrophleum alkaloids.

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