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  • 1
    Online-Ressource
    Online-Ressource
    Ukaaz Publications ; 2020
    In:  Annals of Phytomedicine: An International Journal Vol. 9, No. 1 ( 2020-06)
    In: Annals of Phytomedicine: An International Journal, Ukaaz Publications, Vol. 9, No. 1 ( 2020-06)
    Materialart: Online-Ressource
    ISSN: 2278-9839 , 2393-9885
    Originaltitel: Assessment of antimicrobial activity and cytotoxic effect of green mediated silver nanoparticles and its coating onto mini-implants
    Sprache: Unbekannt
    Verlag: Ukaaz Publications
    Publikationsdatum: 2020
    ZDB Id: 2834281-1
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
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  • 2
    Online-Ressource
    Online-Ressource
    EManuscript Technologies ; 2023
    In:  Journal of Young Pharmacists Vol. 15, No. 2 ( 2023-04-17), p. 278-282
    In: Journal of Young Pharmacists, EManuscript Technologies, Vol. 15, No. 2 ( 2023-04-17), p. 278-282
    Materialart: Online-Ressource
    ISSN: 0975-1483 , 0975-1505
    URL: Issue
    Sprache: Unbekannt
    Verlag: EManuscript Technologies
    Publikationsdatum: 2023
    ZDB Id: 2503424-8
    SSG: 15,3
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
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  • 3
    Online-Ressource
    Online-Ressource
    EManuscript Technologies ; 2019
    In:  Pharmacognosy Journal Vol. 11, No. 4 ( 2019-07-15), p. 787-789
    In: Pharmacognosy Journal, EManuscript Technologies, Vol. 11, No. 4 ( 2019-07-15), p. 787-789
    Materialart: Online-Ressource
    ISSN: 0975-3575
    URL: Issue
    Sprache: Unbekannt
    Verlag: EManuscript Technologies
    Publikationsdatum: 2019
    ZDB Id: 2586850-0
    SSG: 15,3
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
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  • 4
    Online-Ressource
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    Naturalis Biodiversity Center ; 2023
    In:  Persoonia - Molecular Phylogeny and Evolution of Fungi Vol. 50, No. 1 ( 2023-06-30), p. 158-310
    In: Persoonia - Molecular Phylogeny and Evolution of Fungi, Naturalis Biodiversity Center, Vol. 50, No. 1 ( 2023-06-30), p. 158-310
    Kurzfassung: Novel species of fungi described in this study include those from various countries as follows: Australia , Aschersonia mackerrasiae on whitefly, Cladosporium corticola on bark of Melaleuca quinquenervia , Penicillium nudgee from soil under Melaleuca quinquenervia , Pseudocercospora blackwoodiae on leaf spot of Persoonia falcata , and Pseudocercospora dalyelliae on leaf spot of Senna alata . Bolivia , Aspicilia lutzoniana on fully submersed siliceous schist in high-mountain streams, and Niesslia parviseta on the lower part and apothecial discs of Erioderma barbellatum onatwig. Brazil , Cyathus bonsai on decaying wood, Geastrum albofibrosum from moist soil with leaf litter, Laetiporus pratigiensis on a trunk of a living unknown hardwood tree species, and Scytalidium synnematicum on dead twigs of unidentified plant. Bulgaria , Amanita abscondita on sandy soil in a plantation of Quercus suber . Canada , Penicillium acericola on dead bark of Acer saccharum , and Penicillium corticola on dead bark of Acer saccharum . China , Colletotrichum qingyuanense on fruit lesion of Capsicum annuum . Denmark , Helminthosphaeria leptospora on corticioid Neohypochnicium cremicolor. Ecuador (Galapagos) , Phaeosphaeria scalesiae on Scalesia sp. Finland , Inocybe jacobssonii on calcareouss oils in dry forests and park habitats. France , Cortinarius rufomyrrheus on sandy soil under Pinus pinaster , and Periconia neominutissima on leaves of Poaceae . India , Coprinopsis fragilis on decaying bark of logs, Filoboletus keralensis on unidentified woody substrate, Penicillium sankaranii from soil, Physisporinus tamilnaduensis on the trunk of Azadirachta indica , and Poronia nagaraholensis on elephant dung. Iran , Neosetophoma fic on infected leaves of Ficus elastica . Israel , Cnidariophoma eilatica (incl. Cnidariophoma gen. nov.) from Stylophora pistillata . Italy , Lyophyllum obscurum on acidic soil. Namibia , Aureobasidium faidherbiae on dead leaf of Faidherbia albida , and Aureobasidium welwitschiae on dead leaves of Welwitschia mirabilis . Netherlands , Gaeumannomycella caricigena on dead culms of Carex elongata , Houtenomyces caricicola (incl. Houtenomyces gen. nov.) on culms of Carex disticha , Neodacampia ulmea (incl. Neodacampia gen. nov.) on branch of Ulmus laevis , Niesslia phragmiticola on dead standing culms of Phragmites australis , Pseudopyricularia caricicola on culms of Carex disticha , and Rhodoveronaea nieuwwulvenica on dead bamboo sticks. Norway , Arrhenia similis half-buried and moss-covered pieces of rotting wood in grass-grownpath. Pakistan , Mallocybe ahmadii on soil. Poland , Beskidomyces laricis (incl. Beskidomyces gen. nov.) from resin of Larix decidua ssp. polonica , Lapidomyces epipinicola from sooty mould community on Pinus nigra , and Leptographium granulatum from a gallery of Dendroctonus micans on Picea abies . Portugal , Geoglossum azoricum on mossy areas of laurel forest areas planted with Cryptomeria japonica , and Lunasporangiospora lusitanica from a biofilm covering a bio deteriorated limestone wall. Qatar , Alternaria halotolerans from hypersaline sea water, and Alternaria qatarensis from water sample collected from hypersaline lagoon. South Africa , Alfaria thamnochorti on culm of Thamnochortus fraternus , Knufia aloeicola on Aloe gariepensis , Muriseptatomyces restionacearum (incl. Muriseptatomyces gen. nov.) on culms of Restionaceae , Neocladosporium arctotis on nest of cases of bagworm moths( Lepidoptera, Psychidae ) on Arctotis auriculata , Neodevriesia scadoxi on leaves of Scadoxus puniceus , Paraloratospora schoenoplecti on stems of Schoenoplectus lacustris , Tulasnella epidendrea from the roots of Epidendrum × obrienianum , and Xenoidriella cinnamomi (incl. Xenoidriella gen. nov.) on leaf of Cinnamomum camphora . South Korea , Lemonniera fraxinea on decaying leaves of Fraxinus sp. frompond. Spain , Atheniella lauri on the bark of fallen trees of Laurus nobilis , Halocryptovalsa endophytica from surface-sterilised, asymptomatic roots of Salicornia patula , Inocybe amygdaliolens on soil in mixed forest, Inocybe pityusarum on calcareous soil in mixed forest, Inocybe roseobulbipes on acidic soils, Neonectria borealis from roots of Vitis berlandieri × Vitis rupestris , Sympoventuria eucalyptorum on leaves of Eucalyptus sp., and Tuber conchae fromsoil. Sweden , Inocybe bidumensis on calcareous soil. Thailand , Cordyceps sandindaengensis on Lepidoptera pupa, buried in soil, Ophiocordyceps kuchinaraiensis on Coleoptera larva, buried in soil, and Samsoniella winandae on Lepidoptera pupa, buriedinsoil. Taiwan region (China) , Neophaeosphaeria livistonae on dead leaf of Livistona rotundifolia . Türkiye , Melanogaster anatolicus on clay loamy soils. UK , Basingstokeomyces allii (incl. Basingstokeomyces gen. nov.) on leaves of Allium schoenoprasum . Ukraine , Xenosphaeropsis corni on recently dead stem of Cornus alba. USA , Nothotrichosporon aquaticum (incl. Nothotrichosporon gen. nov.) from water, and Periconia philadelphiana from swab of coil surface. Morphological and culture characteristics for these new taxa are supported by DNA barcodes.
    Materialart: Online-Ressource
    ISSN: 0031-5850
    Sprache: Englisch
    Verlag: Naturalis Biodiversity Center
    Publikationsdatum: 2023
    ZDB Id: 2389449-0
    SSG: 12
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  • 5
    In: Fungal Diversity, Springer Science and Business Media LLC, Vol. 100, No. 1 ( 2020-01), p. 5-277
    Kurzfassung: Fungal diversity notes is one of the important journal series of fungal taxonomy that provide detailed descriptions and illustrations of new fungal taxa, as well as providing new information of fungal taxa worldwide. This article is the 11th contribution to the fungal diversity notes series, in which 126 taxa distributed in two phyla, six classes, 24 orders and 55 families are described and illustrated. Taxa in this study were mainly collected from Italy by Erio Camporesi and also collected from China, India and Thailand, as well as in some other European, North American and South American countries. Taxa described in the present study include two new families, 12 new genera, 82 new species, five new combinations and 25 new records on new hosts and new geographical distributions as well as sexual-asexual reports. The two new families are Eriomycetaceae (Dothideomycetes, family incertae sedis ) and Fasciatisporaceae ( Xylariales , Sordariomycetes). The twelve new genera comprise Bhagirathimyces ( Phaeosphaeriaceae ), Camporesiomyces ( Tubeufiaceae ), Eriocamporesia ( Cryphonectriaceae ), Eriomyces ( Eriomycetaceae ), Neomonodictys ( Pleurotheciaceae ), Paraloratospora ( Phaeosphaeriaceae ), Paramonodictys ( Parabambusicolaceae ), Pseudoconlarium (Diaporthomycetidae, genus incertae sedis ), Pseudomurilentithecium ( Lentitheciaceae ), Setoapiospora ( Muyocopronaceae ), Srinivasanomyces ( Vibrisseaceae ) and Xenoanthostomella ( Xylariales , genera incertae sedis ). The 82 new species comprise Acremonium chiangraiense , Adustochaete nivea , Angustimassarina camporesii , Bhagirathimyces himalayensis , Brunneoclavispora camporesii , Camarosporidiella camporesii , Camporesiomyces mali , Camposporium appendiculatum , Camposporium multiseptatum , Camposporium septatum , Canalisporium aquaticium , Clonostachys eriocamporesiana , Clonostachys eriocamporesii , Colletotrichum hederiicola , Coniochaeta vineae , Conioscypha verrucosa , Cortinarius ainsworthii , Cortinarius aurae , Cortinarius britannicus , Cortinarius heatherae , Cortinarius scoticus , Cortinarius subsaniosus , Cytospora fusispora , Cytospora rosigena , Diaporthe camporesii , Diaporthe nigra , Diatrypella yunnanensis , Dictyosporium muriformis , Didymella camporesii , Diutina bernali , Diutina sipiczkii , Eriocamporesia aurantia , Eriomyces heveae , Ernakulamia tanakae , Falciformispora uttaraditensis , Fasciatispora cocoes , Foliophoma camporesii , Fuscostagonospora camporesii , Helvella subtinta , Kalmusia erioi , Keissleriella camporesiana , Keissleriella camporesii , Lanspora cylindrospora , Loratospora arezzoensis , Mariannaea atlantica , Melanographium phoenicis , Montagnula camporesii , Neodidymelliopsis camporesii , Neokalmusia kunmingensis , Neoleptosporella camporesiana , Neomonodictys muriformis , Neomyrmecridium guizhouense , Neosetophoma camporesii , Paraloratospora camporesii , Paramonodictys solitarius , Periconia palmicola , Plenodomus triseptatus , Pseudocamarosporium camporesii , Pseudocercospora maetaengensis , Pseudochaetosphaeronema kunmingense , Pseudoconlarium punctiforme , Pseudodactylaria camporesiana , Pseudomurilentithecium camporesii , Pseudotetraploa rajmachiensis , Pseudotruncatella camporesii , Rhexocercosporidium senecionis , Rhytidhysteron camporesii , Rhytidhysteron erioi , Septoriella camporesii , Setoapiospora thailandica , Srinivasanomyces kangrensis , Tetraploa dwibahubeeja , Tetraploa pseudoaristata , Tetraploa thrayabahubeeja , Torula camporesii , Tremateia camporesii , Tremateia lamiacearum , Uzbekistanica pruni , Verruconis mangrovei , Wilcoxina verruculosa , Xenoanthostomella chromolaenae and Xenodidymella camporesii . The five new combinations are Camporesiomyces patagoniensis , Camporesiomyces vaccinia , Camposporium lycopodiellae , Paraloratospora gahniae and Rhexocercosporidium microsporum . The 22 new records on host and geographical distribution comprise Arthrinium marii , Ascochyta medicaginicola , Ascochyta pisi , Astrocystis bambusicola , Camposporium pellucidum , Dendryphiella phitsanulokensis , Diaporthe foeniculina , Didymella macrostoma , Diplodia mutila , Diplodia seriata , Heterosphaeria patella , Hysterobrevium constrictum , Neodidymelliopsis ranunculi , Neovaginatispora fuckelii , Nothophoma quercina , Occultibambusa bambusae , Phaeosphaeria chinensis , Pseudopestalotiopsis theae , Pyxine berteriana , Tetraploa sasicola , Torula gaodangensis and Wojnowiciella dactylidis . In addition, the sexual morphs of Dissoconium eucalypti and Phaeosphaeriopsis pseudoagavacearum are reported from Laurus nobilis and Yucca gloriosa in Italy, respectively. The holomorph of Diaporthe cynaroidis is also reported for the first time.
    Materialart: Online-Ressource
    ISSN: 1560-2745 , 1878-9129
    Sprache: Englisch
    Verlag: Springer Science and Business Media LLC
    Publikationsdatum: 2020
    ZDB Id: 2424484-3
    SSG: 12
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  • 6
    Online-Ressource
    Online-Ressource
    Naturalis Biodiversity Center ; 2021
    In:  Persoonia - Molecular Phylogeny and Evolution of Fungi
    In: Persoonia - Molecular Phylogeny and Evolution of Fungi, Naturalis Biodiversity Center
    Kurzfassung: Novel species of fungi described in this study include those from various countries as follows: Algeria , Phaeoacremonium adelophialidum from Vitis vinifera . Antarctica , Comoclathris antarctica from soil. Australia , Coniochaeta salicifolia as endophyte from healthy leaves of Geijera salicifolia , Eremothecium peggii in fruit of Citrus australis , Microdochium ratticaudae from stem of Sporobolus natalensis , Neocelosporium corymbiae on stems of Corymbia variegata , Phytophthora kelmanii from rhizosphere soil of Ptilotus pyramidatus , Pseudosydowia backhousiae on living leaves of Backhousia citriodora , Pseudosydowia indooroopillyensis , Pseudosydowia louisecottisiae and Pseudosydowia queenslandica on living leaves of Eucalyptus sp. Brazil , Absidia montepascoalis from soil. Chile , Ilyonectria zarorii from soil under Maytenus boaria . Costa Rica , Colletotrichum filicis from an unidentified fern. Croatia , Mollisia endogranulata on deteriorated hardwood. Czech Republic , Arcopilus navicularis from tea bag with fruit tea, Neosetophoma buxi as endophyte from Buxus sempervirens , Xerochrysium bohemicum on surface of biscuits with chocolate glaze and filled with jam. France , Entoloma cyaneobasale on basic to calcareous soil, Fusarium aconidiale from Triticum aestivum , Fusarium juglandicola from buds of Juglans regia . Germany , Tetraploa endophytica as endophyte from Microthlaspi perfoliatum roots. India , Castanediella ambae on leaves of Mangifera indica , Lactifluus kanadii on soil under Castanopsis sp., Penicillium uttarakhandense from soil. Italy , Penicillium ferraniaense from compost. Namibia , Bezerromyces gobabebensis on leaves of unidentified succulent, Cladosporium stipagrostidicola on leaves of Stipagrostis sp., Cymostachys euphorbiae on leaves of Euphorbia sp., Deniquelata hypolithi from hypolith under a rock, Hysterobrevium walvisbayicola on leaves of unidentified tree, Knufia hypolithi and Knufia walvisbayicola from hypolith under a rock, Lapidomyces stipagrostidicola on leaves of Stipagrostis sp., Nothophaeotheca mirabibensis (incl. Nothophaeotheca gen. nov.) on persistent inflorescence remains of Blepharis obmitrata , Paramyrothecium salvadorae on twigs of Salvadora persica , Preussia procaviicola on dung of Procavia sp., Sordaria equicola on zebra dung, Volutella salvadorae on stems of Salvadora persica . Netherlands , Entoloma ammophilum on sandy soil, Entoloma pseudocruentatum on nutrient poor (acid) soil, Entoloma pudens on plant debris, amongst grasses. New Zealand , Amorocoelophoma neoregeliae from leaf spots of Neoregelia sp., Aquilomyces metrosideri and Septoriella callistemonis from stem discolouration and leaf spots of Metrosideros sp., Cadophora neoregeliae from leaf spots of Neoregelia sp., Flexuomyces asteliae (incl. Flexuomyces gen. nov.) and Mollisia asteliae from leaf spots of Astelia chathamica , Ophioceras freycinetiae from leaf spots of Freycinetia banksii , Phaeosphaeria caricis-sectae from leaf spots of Carex secta . Norway , Cuphophyllus flavipesoides on soil in semi-natural grassland, Entoloma coracis on soil in calcareous Pinus and Tilia forests, Entoloma cyaneolilacinum on soil semi-natural grasslands, Inocybe norvegica on gravelly soil. Pakistan , Butyriboletus parachinarensis on soil in association with Quercus baloot . Poland , Hyalodendriella bialowiezensis on debris beneath fallen bark of Norway spruce Picea abies . Russia , Bolbitius sibiricus on а moss covered rotting trunk of Populus tremula , Crepidotus wasseri on debris of Populus tremula , Entoloma isborscanum on soil on calcareous grasslands, Entoloma subcoracis on soil in subalpine grasslands, Hydropus lecythiocystis on rotted wood of Betula pendula , Meruliopsis faginea on fallen dead branches of Fagus orientalis , Metschnikowia taurica from fruits of Ziziphus jujube , Suillus praetermissus on soil, Teunia lichenophila as endophyte from Cladonia rangiferina . Slovakia , Hygrocybe fulgens on mowed grassland, Pleuroflammula pannonica from corticated branches of Quercus sp. South Africa , Acrodontium burrowsianum on leaves of unidentified Poaceae , Castanediella senegaliae on dead pods of Senegalia ataxacantha , Cladophialophora behniae on leaves of Behnia sp., Colletotrichum cliviigenum on leaves of Clivia sp., Diatrype dalbergiae on bark of Dalbergia armata , Falcocladium heteropyxidicola on leaves of Heteropyxis canescens , Lapidomyces aloidendricola as epiphyte on brown stem of Aloidendron dichotomum , Lasionectria sansevieriae and Phaeosphaeriopsis sansevieriae on leaves of Sansevieria hyacinthoides , Lylea dalbergiae on Diatrype dalbergiae on bark of Dalbergia armata , Neochaetothyrina syzygii (incl. Neochaetothyrina gen. nov.) on leaves of Syzygium chordatum , Nothophaeomoniella ekebergiae (incl. Nothophaeomoniella gen. nov.) on leaves of Ekebergia pterophylla , Paracymostachys euphorbiae (incl. Paracymostachys gen. nov.) on leaf litter of Euphorbia ingens , Paramycosphaerella pterocarpi on leaves of Pterocarpus angolensis , Paramycosphaerella syzygii on leaf litter of Syzygium chordatum , Parateichospora phoenicicola (incl. Parateichospora gen. nov.) on leaves of Phoenix reclinata , Seiridium syzygii on twigs of Syzygium chordatum , Setophoma syzygii on leaves of Syzygium sp., Star­merella xylocopis from larval feed of an Afrotropical bee Xylocopa caffra , Teratosphaeria combreti on leaf litter of Combretum kraussii , Teratosphaericola leucadendri on leaves of Leucadendron sp., Toxicocladosporium pterocarpi on pods of Pterocarpus angolensis . Spain , Cortinarius bonachei with Quercus ilex in calcareus soils, Cortinarius brunneovolvatus under Quercus ilex subsp. ballota in calcareous soil, Extremopsis radicicola (incl. Extremopsis gen. nov.) from root-associated soil in a wet heathland, Russula quintanensis on acidic soils, Tubaria vulcanica on volcanic lapilii material, Tuber zambonelliae in calcareus soil. Sweden , Elaphomyces borealis on soil under Pinus sylvestris and Betula pubescens . Tanzania , Curvularia tanzanica on inflorescence of Cyperus aromaticus . Thailand , Simplicillium niveum on Ophiocordyceps camponoti-leonardi on underside of unidentified dicotyledonous leaf. USA , Calonectria californiensis on leaves of Umbellularia californica , Exophiala spartinae from surface sterilised roots of Spartina alterniflora , Neophaeococcomyces oklahomaensis from outside wall of alcohol distillery. Vietnam , Fistulinella aurantioflava on soil. Morphological and culture characteristics are supported by DNA barcodes.
    Materialart: Online-Ressource
    ISSN: 0031-5850
    Sprache: Englisch
    Verlag: Naturalis Biodiversity Center
    Publikationsdatum: 2021
    ZDB Id: 2389449-0
    SSG: 12
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  • 7
    In: Fungal Diversity, Springer Science and Business Media LLC, Vol. 83, No. 1 ( 2017-3), p. 1-261
    Materialart: Online-Ressource
    ISSN: 1560-2745 , 1878-9129
    Sprache: Englisch
    Verlag: Springer Science and Business Media LLC
    Publikationsdatum: 2017
    ZDB Id: 2424484-3
    SSG: 12
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  • 8
    Online-Ressource
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    Hindawi Limited ; 2022
    In:  BioMed Research International Vol. 2022 ( 2022-7-30), p. 1-12
    In: BioMed Research International, Hindawi Limited, Vol. 2022 ( 2022-7-30), p. 1-12
    Kurzfassung: Prevalently, there is a primary strategy to cure caries using restorative materials notably bioceramics. Existing synthetic materials stimulate natural tooth structure with acceptable interfacial bonding and esthetic and biomechanical qualities with better durability. Several bioceramics have been introduced and investigated for their potentialities as restorative materials. Biomineralization of tooth initiates repair and regeneration of natural dental tissue and reinstating the integrity of periodontium. In the evolution of bioceramics in the aspects of different essential composition for dental application, recent technology and modern strategies revolutionize the restorative dentistry. Bioglass is one among the important bioceramics as a restorative material, and by regulating the properties of the material, it is possible to construct improved formulation towards restoration. This article reviews the current revolution of endodontics, existing restorative materials, and technologies to be achieve for engineering materials with the better design.
    Materialart: Online-Ressource
    ISSN: 2314-6141 , 2314-6133
    Sprache: Englisch
    Verlag: Hindawi Limited
    Publikationsdatum: 2022
    ZDB Id: 2698540-8
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  • 9
    In: Fungal Diversity, Springer Science and Business Media LLC, Vol. 111, No. 1 ( 2021-11), p. 1-335
    Materialart: Online-Ressource
    ISSN: 1560-2745 , 1878-9129
    Sprache: Englisch
    Verlag: Springer Science and Business Media LLC
    Publikationsdatum: 2021
    ZDB Id: 2424484-3
    SSG: 12
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
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  • 10
    In: Brazilian Journal of Biology, FapUNIFESP (SciELO), Vol. 84 ( 2024)
    Kurzfassung: Resumo Os nanopartículos de prata são optados por ter várias aplicações em diferentes áreas que variam de medicamentos tradicionais a itens culinários. É tóxico e mais eficaz contra bactérias, vírus de fungos, parasitas, parasitas que transportam vetores como mosquitos e suas larvas e outros microorganismos eucarióticos em baixa concentração, sem efeitos colaterais e toxicidade para os seres humanos. Em vista desses dados, a presente pesquisa foi investigada sintetizando nanopartículas de prata usando nitrato de prata de 1 mm e extrato aquoso de Passiflora foetida. Foi analisada a variação de nanopartículas em tamanho e forma relativa à concentração de extrato preparado. A formação de nanopartículas de prata foi confirmada pela mudança de cor de verde amarelado para marrom-avermelhado, implicando a ressonância plasmônica da superfície. Além disso, foi concluído pela obtenção de um pico de absorvância a 420 nm usando análise do espectrofotômetro visível por UV. A análise do FTIR foi usada para identificar os ligantes de captura, que incluíam alcanes, grupos aromáticos e compostos nitro. O tamanho médio dos grãos de ~ 12 nm a 14 nm com fase cristalina foi revelado por estudos de difração de raios-X. As imagens SEM retratavam a morfologia da superfície com aglomeração; Os estudos de TEM mostraram a forma das nanopartículas como esféricas e hexagonais, com tamanhos variando de 40 nm a 100 nm e a análise EDAX confirmou a presença de prata elementar como constituinte principal. As nanopartículas de prata caracterizadas foram então testadas quanto a efeitos antibacterianos sinérgicos com tetraciclina, e os resultados mostram que são mais ativos contra E. coli e S. aureus, mas moderadamente eficazes contra B. cereus e K. pneumoniae. Ele também teve um forte efeito tóxico larval e pupal no vetor de dengue, Aedes aegypti com a maior mortalidade. Como resultado, as nanopartículas de prata podem ser uma alternativa viável para uma variedade de aplicações.
    Materialart: Online-Ressource
    ISSN: 1678-4375 , 1519-6984
    Originaltitel: Efeito sinérgico antibacteriano e mosquitocida de nanopartículas de prata sintetizadas passiflora foetida
    Sprache: Englisch , Portugiesisch
    Verlag: FapUNIFESP (SciELO)
    Publikationsdatum: 2024
    ZDB Id: 2159233-0
    SSG: 7,36
    SSG: 12
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
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