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plantago major/albumin

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ArticlesClinical trialsPatents
6 results

Plantamajoside from Plantago asiatica modulates human umbilical vein endothelial cell dysfunction by glyceraldehyde-induced AGEs via MAPK/NF-κB.

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BACKGROUND Plantago asiatica has been traditionally used for traditional medicine around East Asia. Plantamajoside (PM), which is isolated from this plant, is known for biological properties including anti-inflammation and antioxidant activity. To demonstrate the biological activity of PM against

Effects of medicinal herbs "Plantago asiatica", "Houttuynia cordata" and "Mentha haplocalyx" on non-specific immune responses of cobia (Rachycentron canadum).

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This study investigated the effects of orally administered Plantago asiatica, Houttuynia cordata, and Mentha haplocalyx on the growth and nonspecific immune responses of cobia (Rachycentron canadum). The nonspecific immune parameters assessed were weight gain, feed conversion ratio, superoxide anion

Renoprotective Effect of Plantago major Against Proteinuria and Apoptosis Induced by Adriamycin in Rat.

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Objective
Adriamycin (ADR) is an important anti-cancer drug which can cause renal toxicity. Given the known anti-inflammatory and antioxidant effects of Plantago major (P. major), the aim of this study was to determine the effects of hydroalcoholic extract of P.

Oral subchronic toxicity of aqueous crude extract of Plantago australis leaves.

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The toxic effects of chronic oral administration (60 days) of aqueous crude extract (AE) of Plantago australis Lam. (Plantaginaceae) in rats at doses of 850 and 1700 mg/kg on biochemical (ALT, AST, creatinine, urea, glucose, alkaline phosphatase, total proteins and albumin), hematological (complete

Role of plant β-glucosidases in the dual defense system of iridoid glycosides and their hydrolyzing enzymes in Plantago lanceolata and Plantago major.

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The typical defense compounds of Plantaginaceae are the iridoid glycosides, which retard growth and/or enhance mortality of non-adapted herbivores. In plants, glycosidic defense compounds and hydrolytic enzymes often form a dual defense system, in which the glycosides are activated by the enzymes to

Counter effects of N. Sativa L. and P. ovate L. on indicative markers of non alcoholic fatty liver disease.

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The broad spectrum of non-alcoholic fatty liver disease (NAFLD) diseases ranges from simple liver inflammation to steatosis, leading to fibrosis and cirrhosis. Four groups of weaning (30g) Rattus norvegicus were designated as W-0, W-I, W-II and W-III. For sixteen weeks group W-0 was given standard
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