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cucumis myriocarpus/hypersensitivity

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Σελίδα 1 από 16 Αποτελέσματα

Anti-allergic effect of bryonolic acid from Luffa cylindrica cell suspension cultures.

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The anti-allergic activity of bryonolic acid (1) isolated from the cultured cells of Luffa cylindrica L. (Cucurbitaceae) was compared with that of glycyrrhetinic acid (2), the aglycone of glycyrrhizin from licorice. Compound 1, when administered to rats intraperitoneally at a dose of 600 mg/kg,

Clinical characteristics of melon (Cucumis melo) allergy.

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BACKGROUND Although melon is a frequent allergy-eliciting fruit, allergic reactions to melon have rarely been reported. OBJECTIVE To evaluate and describe the clinical characteristics of melon allergy in melon-allergic patients. METHODS We evaluated patients allergic to melon and a control group of

Validity of using recombinant melon profilin, Cuc m 2, for diagnosis of melon allergy.

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BACKGROUND Allergy is a clinical disorder affecting humans worldwide. Allergenic extracts prepared from natural source materials remain heterogeneous in composition and content, but are regularly used for diagnosis and immunotherapy. Recombinant allergens are suitable candidates to use in place of

An overview of fruit allergy and the causative allergens.

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Plant allergens, being one of the most widespread allergenic substances, are hard to avoid. Hence, their identification and characterization are of prime importance for the diagnosis and treatment of food allergy. The reported allergies to fruits mainly evoke oral allergy syndrome caused by the

Production of an anti-allergic triterpene bryonolic acid, by plant cell cultures.

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Cell suspension cultures of Luffa cylindrica, Citrullus lanatus, and related cucurbitaceous plants accumulate large quantities of bryonolic acid (3 beta-hydroxy-D:C-friedoolean-8-en-29-oic acid) [1], an acidic, pentacyclic triterpene found exclusively in the roots of the intact plants. This compound

Occupational asthma and rhinoconjunctivitis by melon plant allergy.

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Randomized, double-blind, crossover challenge study in 53 subjects reporting adverse reactions to melon (Cucumis melo).

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BACKGROUND Few studies have evaluated IgE-mediated hypersensitivity to melon with details of clinical reactions confirmed by double-blind, placebo-controlled, food challenges (DBPCFCs). OBJECTIVE We sought to investigate clinical features (type and severity of reactions, age at onset, results of

Molecular cloning, characterization, and expression of Cuc m 2, a major allergen in Cucumis melo.

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BACKGROUND Several studies reported the clinical features of IgE-mediated hypersensitivity after ingestion of melon. Melon allergy is a common IgE-mediated fruit allergy in Iran. This prompted us to investigate immunochemical and molecular properties of the major allergen in melon fruit, to compare

Luffa cylindrica suppresses development of Dermatophagoides farinae-induced atopic dermatitis-like skin lesions in Nc/Nga mice.

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BACKGROUND The fruit pulp of Luffa cylindrica Roemer (Cucurbitaceae) (LC) has been used to induce hemostasis, resolve phlegm and clear fever in traditional Korean medicine. However, the efficacy of LC has not been examined in atopic dermatitis (AD). OBJECTIVE A 70% ethanol extract of LC was

Resistance of Cucumis spp. to the Root-knot Nematode, Meloidogyne incognita acrita.

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The nature of resistance in Cucumis ficifolius and C. metuliferus to the root-knot nematode, Meloidogyne incognita acrita, was studied under greenhouse conditions. Although as many larvae penetrated the roots of these species as those of the susceptible C. melo, few developed to the adult female

Molecular cloning and expression of Cucumisin (Cuc m 1), a subtilisin-like protease of Cucumis melo in Escherichia coli.

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BACKGROUND Oral allergy syndrome resulted from plant-derived foods is frequent among adults. Allergy to melon (cucumis melo) is one of the most frequent fruit allergies in Iran. Three different major allergens have been found in Cucumis melo that Cuc m 1 (cucumisin) has been identified as the major

Identification and molecular characterization of the cDNA encoding Cucumis melo allergen, Cuc m 3, a plant pathogenesis-related protein.

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BACKGROUND Melon (Cucumis melo) allergy is one of the most common food allergies, characterized by oral allergy syndrome. To date, two allergen molecules, Cuc m 1 and Cuc m 2, have been fully characterized in melon pulp, but there are few reports about the molecular characteristics of Cuc m

First Report of a Field Outbreak of a Bacterial Leaf Spot of Cantaloupe and Squash Caused by Pseudomonas syringae pv. syringae in Georgia.

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In March 2000, a leaf spot was reported affecting yellow summer squash (Cucurbita pepo) and cantaloupe (Cucumis melo) in commercial fields in Colquitt, Echols, and Grady counties in Georgia. All of the crops affected were reported within a 10-day period, and average temperatures during that time

Comparative proteomic analysis of melon phloem exudates in response to viral infection.

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Phloem vasculature is the route that most plant viruses use to spread widely around the plant. In addition, phloem sap transports signals that trigger systemic defense responses to infection. We investigated the proteome-level changes that occur in phloem sap during virus infection using the 2D-DIGE

Comparative structural and thermal stability studies of Cuc m 2.0101, Art v 4.0101 and other allergenic profilins.

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Worldwide, more than one-third of the population suffers from allergies. A significant fraction of officially registered allergens originate from the profilin family of proteins. Profilins are small ubiquitous proteins which are found in plants, viruses and various eukaryotes including mammals.
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