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artocarpus rigidus/бактерицид

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Antibacterial assay-guided isolation of active compounds from Artocarpus heterophyllus heartwoods.

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BACKGROUND Preparations from Artocarpus heterophyllus Lam. (Moraceae) heartwoods are used in the traditional folk medicine for the treatment of inflammation, malarial fever, and to prevent bacterial and fungal infections. OBJECTIVE The objective of this study was to isolate pure antibacterial

A synergistic effect of artocarpanone from Artocarpus heterophyllus L. (Moraceae) on the antibacterial activity of selected antibiotics and cell membrane permeability.

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UNASSIGNED Artocarpanone isolated from Artocarpus heterophyllus L. (Moraceae) exhibits antibacterial activity. The present study investigated synergistic activity between artocarpanone and tetracycline, ampicillin, and norfloxacin, respectively, against methicillin-resistant Staphylococcus aureus

In Vitro Antibacterial Activity of Crude Extracts of Artocarpus heterophyllus Seeds against Selected Diarrhoea-Causing Superbug Bacteria

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The current upsurge in resistance to conventional antibiotics, as well as high cost of orthodox medical treatment, called for the use of medicinal plants as an alternative therapy. This research was aimed at determining the antibacterial activity of Artocarpus heterophyllus seed extracts

Jacalin-copper sulfide nanoparticles complex enhance the antibacterial activity against drug resistant bacteria via cell surface glycan recognition.

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In any therapeutic modality the usage of drug in high doses often leads to serious side-effects. Herein, we demonstrated a method to enhance the antibacterial efficacy of CuS NPs at lower concentration through interacting with jackfruit seed lectin, jacalin. Fluorescence quenching studies revealed

Antibacterial activity of Artocarpus heterophyllus.

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The crude methanolic extracts of the stem and root barks, stem and root heart-wood, leaves, fruits and seeds of Artocarpus heterophyllus and their subsequent partitioning with petrol, dichloromethane, ethyl acetate and butanol gave fractions that exhibited a broad spectrum of antibacterial activity.

Green synthesis of silver nanoparticles using Artocarpus hirsutus seed extract and its antibacterial activity.

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To evaluate the antibacterial activity of Artocarpus hirsutus mediated seed extract for nanoparticle synthesis.Gastro-intestinal bacteria are known for causing deadly infections in humans. They also possess multi-drug resistance and interfere with clinical

Flavones with antibacterial activity against cariogenic bacteria.

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Methanolic extracts obtained from 13 plants were studied for their antibacterial activity against cariogenic bacteria. Among them, the extract from Artocarpus heterophyllus showed the most intensive activity. Serial chromatographic purifications offered two active compounds which were identified as

In Vitro antibacterial efficacy of 21 Indian timber-yielding plants against multidrug-resistant bacteria causing urinary tract infection.

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OBJECTIVE To screen methanolic leaf extracts of 21 timber-yielding plants for antibacterial activity against nine species of uropathogenic bacteria isolated from clinical samples of a hospital (Enterococcus faecalis, Staphylococcus aureus, Acinetobacter baumannii, Citrobacter freundii, Enterobacter

Antioxidant and antibacterial activities on foodborne pathogens of Artocarpus heterophyllus Lam. (Moraceae) leaves extracts.

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Total water extract, ethyl acetate, and aqueous fractions from the leaves of Artocarpus heterophyllus were evaluated for phenolic content, antioxidant, and antibacterial activities against some foodborne pathogens such as E. coli, Listeria monocytogenes, Salmonella typhimurium, Salmonella enterica,

Effectiveness of Artocarpus lakoocha extract, poloxamer 407, on Enterococcus faecalis in vitro.

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OBJECTIVE The antiviral activities of Artocarpus lakoocha (A. lakoocha) extract have been reported in a number of studies; however, data regarding its antibacterial capability are limited. The aim of the present study was to examine the effectiveness of A. lakoocha extract, poloxamer 407, on

One-step synthesis of highly-biocompatible spherical gold nanoparticles using Artocarpus heterophyllus Lam. (jackfruit) fruit extract and its effect on pathogens.

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BACKGROUND Novel approaches for the synthesis of gold nanoparticles (AuNPs) are of great importance due to its vast spectrum of applications in diverse fields, including medical diagnostics and therapeutics. Te presented study reports the successful AuNPs' synthesis using Artocarpus heterophyllus

Sepicanin A- A new geranyl flavanone from Artocarpus sepicanus with activity against methicillin-resistant Staphylococcus aureus (MRSA).

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Bioassay-guided fractionation of the EtOH extract of Artocarpus sepicanus Diels leaves has led to the isolation of a new geranyl flavanone (1), along with the known compounds, afzelechin-3-O-α-L-rhamnopyranoside and β-sitosterol glucoside. The structure of the new compound was established by UV, IR,

Antioxidant, antimicrobial and tyrosinase inhibitory activities of xanthones isolated from Artocarpus obtusus F.M. Jarrett.

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One of the most promising plants in biological screening test results of thirteen Artocarpus species was Artocarpus obtusus FM Jarrett and detailed phytochemical investigation of powdered dried bark of the plant has led to the isolation and identification of three xanthones;

Antimicrobial activity of a 48-kDa protease (AMP48) from Artocarpus heterophyllus latex.

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OBJECTIVE Artocarpus heterophyllus (jackfruit) is a latex producing plant. Plant latex is produced from secretory cells and contains many intergradients. It also has been used in folk medicine. This study aimed to purify and characterize the biological activities of a protease from jackfruit

Preliminary Phytochemical screening and antimicrobial studies on Artocarpus lakoocha Roxb.

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The antibacterial activity of Artocarpus lakoocha Roxb. bark was tested against different species of bacteria. The minimum inhibitory concentration (MIC) of the methanolic extract showed that there was no growth in Shigella soneii 2, E.coli MTCC 1568, Bacillus pumilus 8241, Proteus mirabilis AM 198,
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