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robinia/kanker

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A translationally controlled tumor protein gene Rpf41 is required for the nodulation of Robinia pseudoacacia.

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Translationally controlled tumor protein (TCTP) is fundamental for the regulation of development and general growth in eukaryotes. Its multiple functions have been deduced from its involvement in several cell pathways, but its potential involvement in symbiotic nodulation of legumes cannot be

Effect of Robinia pseudoacacia Leaf Extract on Interleukin-1β-mediated Tumor Angiogenesis.

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Interleukin (IL)-1β is a pro-inflammatory cytokine that has recently been established as a stimulator of angiogenesis via regulation of proangiogenic factor expression in the tumor microenvironment. This study aimed to demonstrate the inhibitory effects of Robinia pseudoacacia leaf

The P110 subunit of PI3-K is a therapeutic target of acacetin in skin cancer.

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The identification of primary molecular targets of cancer-preventive phytochemicals is essential for a comprehensive understanding of their mechanism of action. In the present study, we investigated the chemopreventive effects and molecular targets of acacetin, a flavonoid found in Robinia p

Acacetin, a flavone with diverse therapeutic potential in cancer, inflammation, infections and other metabolic disorders

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Background: Acacetin is a di-hydroxy and mono-methoxy flavone present in various plants, including black locust, Damiana, Silver birch. Literature information revealed that acacetin exhibits an array of pharmacological potential including

Cytokeratin immunolocalization and lectin binding studies in oesophageal squamous dysplasia.

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We examined full thickness specimens of oesophageal squamous dysplasia from both cancer-free and cancer patients using immunohistochemical labelling for cytokeratin subtypes 10/13 and 14 and for involucrin, binding studies for various lectins, and PAS/D staining before and after diastase treatment.

Acacetin attenuates neuroinflammation via regulation the response to LPS stimuli in vitro and in vivo.

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Under normal conditions in the brain, microglia play roles in homeostasis regulation and defense against injury. However, over-activated microglia secrete proinflammatory and cytotoxic factors that can induce progressive brain disorders, including Alzheimer's disease, Parkinson's disease and

Laetirobin from the parasitic growth of Laetiporus sulphureus on Robinia pseudoacacia.

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(+/-)-Laetirobin (1) was isolated as a cytostatic lead from Laetiporus sulphureus growing parasitically on the black locust tree, Robinia pseudoacacia, by virtue of a reverse-immunoaffinity system. Using an LC/MS procedure, milligram quantities of (+/-)-laetirobin (1) were obtained, and the

Bioactive flavonoids from the black locust tree, robinia pseudoacacia.

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Five flavonoids, acacetin ( 1 ), secundiflorol I ( 2 ), mucronulatol ( 3 ), isomucronulatol ( 4 ), and isovestitol ( 5 ) were isolated, with the fractionation being guided by the brine shrimp lethality test (BST), from the ethanolic extract of the whole plant of Robinia pseudoacacia (Fabaceae). The

The Rpf84 gene, encoding a ribosomal large subunit protein, RPL22, regulates symbiotic nodulation in Robinia pseudoacacia.

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A homologue of the ribosomal protein L22e, Rpf84, regulates root nodule symbiosis by mediating the infection process of rhizobia and preventing bacteroids from degradation in Robinia pseudoacacia. Ribosomal proteins (RPs) are known to have extraribosomal functions, including developmental regulation

In vitro anticancer potential of tree extracts from the Walloon Region forest.

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Forty-eight extracts from 16 common Belgian trees from the Walloon Region forest were evaluated for in vitro growth inhibitory activity against the human LoVo colon cancer, PC3 prostate cancer, and U373 glioblastoma cell lines. Our study was performed with the aim of selecting plant candidates in
Background: Bee pollen (BP) has been used as a traditional medicine and food diet additive due to its nutritional and biological properties. The potential biological properties of bee pollen vary greatly with the botanical and

Uses of plant lectins in bioscience and biomedicine.

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New research directions in the last decade have led to major developments in the uses of plant lectins in bioscience and biomedicine. Major advances have been made in our understanding how lectins in the diet can act on the gastrointestinal tract and the physiological consequences of their actions,
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