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1.
Int J Nanomedicine ; 12: 6373-6381, 2017.
Artículo en Inglés | MEDLINE | ID: mdl-28919741

RESUMEN

The biosynthesis of metallic nanoparticles (NPs) using biological systems such as fungi has evolved to become an important area of nanobiotechnology. Herein, we report for the first time the extracellular synthesis of highly stable silver NPs (AgNPs) using the nematophagous fungus Duddingtonia flagrans (AC001). The fungal cell-free filtrate was analyzed by the Bradford method and 3,5-dinitrosalicylic acid assay and used to synthesize the AgNPs in the presence of a 1 mM AgNO3 solution. They have been characterized by UV-Vis spectroscopy, X-ray diffraction, transmission electron microscopy, dynamic light scattering, Zeta potential measurements, Fourier-transform infrared, and Raman spectroscopes. UV-Vis spectroscopy confirmed bioreduction, while X-ray diffractometry established the crystalline nature of the AgNPs. Dynamic light scattering and transmission electron microscopy images showed approximately 11, 38 nm monodisperse and quasispherical AgNPs. Zeta potential analysis was able to show a considerable stability of AgNPs. The N-H stretches in Fourier-transform infrared spectroscopy indicate the presence of protein molecules. The Raman bands suggest that chitinase was involved in the growth and stabilization of AgNPs, through the coating of the particles. Our results show that the NPs we synthesized have good stability, high yield, and monodispersion.


Asunto(s)
Duddingtonia/metabolismo , Nanopartículas del Metal/química , Nanotecnología/métodos , Plata/química , Sistema Libre de Células , Dispersión Dinámica de Luz , Microscopía Electrónica de Transmisión , Plata/metabolismo , Nitrato de Plata/química , Nitrato de Plata/metabolismo , Espectrofotometría Ultravioleta , Espectroscopía Infrarroja por Transformada de Fourier , Espectrometría Raman , Difracción de Rayos X
2.
Rev. iberoam. micol ; 31(2): 114-118, abr.-jun. 2014.
Artículo en Inglés | IBECS | ID: ibc-121251

RESUMEN

Background. Geohelminths are parasites that stand out for their prevalence and wide distribution, depending on the soil for their transmission. Aims. The aim of this work was to evaluate the predatory capacity of the fungal isolate of the genus Duddingtonia (CG768) on third stage larvae (L3) of Ancylostoma spp. in beach sand under laboratory conditions. Methods. In the assay A five treatment groups and 1 control group were formed. The treatment groups contained 5000, 10,000, 15,000, 20,000 or 25,000 chlamydospores of the fungal isolate and 1000 Ancylostoma spp. L3 in pots containing 30 g of sand. The control group (without fungus) contained only 1000 Ancylostoma spp. L3 and distilled water in pots with 30 g of sand. Results. Evidence of predatory activity was observed at the end of 15 days, where we observed the following percentages of reduction of L3: Group 1 (4.5%); Group 2 (24.5%); Group 3 (59.2%); Group 4 (58.8%); Group 5 (63%). However, difference was noted (p < 0.01) only at concentrations 15,000, 20,000 and 25,000 in relation to control group. In the assay B two groups were formed in Petri dishes of 9 cm in diameter containing agar water 2% medium. In the treated group, each Petri dish contained 500 Ancylostoma spp. L3 and 5 g of sand containing the isolate CG 768 at a concentration of 25,000 chlamydospores/g of sand, and the control group (without fungus) contained only 500 L3. At the end of 7 days the non-predation L3 of Petri dishes using the method of Baermann were recovered. Difference (p < 0.01) between groups on reducing the average number of Ancylostoma spp. L3 (percent reduction of 84%) was observed. Conclusions. The results of this study confirm earlier work on the efficiency of the Duddingtonia genus in the control of Ancylostoma spp. infective larvae (AU)


Antecedentes. Los geohelmintos son parásitos que destacan por su prevalencia y amplia distribución, puesto que su transmisión depende del suelo. Objetivos. El objetivo del presente estudio fue evaluar la capacidad predatoria de aislamientos fúngicos del género Duddingtonia (CG768) sobre las larvas de estadio 3 (L3) de Ancylostoma spp. en arena de playa, en condiciones de laboratorio. Métodos. En el ensayo A se formaron 5 grupos de tratamiento y un grupo de control. Los grupos de tratamiento contenían 5000, 10.000, 15.000, 20.000 o 25.000 clamidosporas del aislamiento fúngico y 1000 larvas L3 de Ancylostoma spp. en recipientes con 30 g de arena. Los recipientes del grupo de control (sin clamidosporas) solo contenían 1000 larvas L3 de Ancylostoma spp. y agua destilada con 30 g de arena. Resultados. Al término de 15 días, fue evidente la actividad predatoria, con los porcentajes siguientes de reducción de larvas L3: grupo 1 (4.5%); grupo 2 (24.5%); grupo 3 (59.2%); grupo 4 (58.8%), y grupo 5 (63%). Sin embargo, en relación con el grupo control, solo se identificaron diferencias significativas (p < 0.01) a las concentraciones de 15.000, 20.000 y 25.000. En el ensayo B, en placas de Petri de 9 cm de diámetro, que contenían un medio de agar agua al 2%, se formaron 2 grupos. En el grupo tratado, cada placa de Petri contenía 500 larvas L3 de Ancylostoma spp. y 5 g de arena con el aislamiento CG768 a una concentración de 25.000 clamidosporas/g de arena, y el grupo de control (sin hongo) solo contenía 500 larvas L3. Al cabo de 7 días, utilizando el método de Baermann, a partir de las placas de Petri se obtuvieron larvas L3 no sometidas a predación por el hongo. Entre los grupos se observó una diferencia significativa (p < 0.01) en la reducción del número medio de larvas L3 de Ancylostoma spp. (porcentaje de reducción del 84%). Conclusiones. Los resultados del presente estudio confirman los datos de investigaciones previas sobre la eficiencia del género Duddingtonia en el control de las larvas infectantes de Ancylostoma spp (AU)


Asunto(s)
Ancylostoma , Ancylostoma/aislamiento & purificación , Ancylostoma/microbiología , Contaminación de Playas/análisis , Duddingtonia , Duddingtonia/aislamiento & purificación , Duddingtonia/patogenicidad , Hongos/patogenicidad , Contaminación de Playas/efectos adversos , Contaminación de Playas/métodos , Contaminación de Playas/estadística & datos numéricos , Saneamiento de Playas , 28599 , Duddingtonia/metabolismo
3.
BMC Res Notes ; 6: 340, 2013 Aug 29.
Artículo en Inglés | MEDLINE | ID: mdl-23985336

RESUMEN

BACKGROUND: Duddingtonia flagrans and Monacrosporium thaumasium are promising fungus species in veterinary biological control of gastrointestinal nematodes because of their production capacity of fungal structures (conidia and/or chlamydospores), growth efficiency in laboratory solid media and especially their predatory capacity. However, their large-scale production remains a challenge. This work aimed at evaluating the mycelial mass production of D. flagrans (AC001 and CG722) and M. thaumasium (NF34A) nematophagous fungi under different culture conditions. RESULTS: The results did not present significant differences (p > 0.05) in mycelia mass production between the isolates cultured under pH 4.0. Furthermore, after 168 hrs., the isolate CG722 presented a lower production of mycelial mass in medium CM (corn meal) (p < 0.05). CONCLUSION: We therefore concluded the use of culture media SD (soy dextrose) and CG (corn grits) at pH values between 6.0 and 7.0 is suitable for high mycelial mass production of D. flagrans and M. thaumasium.


Asunto(s)
Agentes de Control Biológico , Duddingtonia/crecimiento & desarrollo , Micelio/crecimiento & desarrollo , Saccharomycetales/crecimiento & desarrollo , Animales , Biomasa , Medios de Cultivo/química , Duddingtonia/metabolismo , Glucosa/metabolismo , Concentración de Iones de Hidrógeno , Micelio/metabolismo , Nematodos/microbiología , Saccharomycetales/metabolismo , Glycine max/química
4.
Res Vet Sci ; 94(3): 568-72, 2013 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-23274060

RESUMEN

The predatory nematophagous fungi have been used as an alternative control of gastrointestinal nematodes of domestic animals in natural and laboratory conditions. However, it is unclear if the association of some of these species could bring some kind of advantage, from a biological standpoint. In this context, this study consisted of two tests in vitro: in assay A, the assessment of the viability of the association of pellets in sodium alginate matrix containing the fungus Duddingtonia flagrans (AC001) and Monacrosporium thaumasium (NF34) and its predatory activity on infective larvae (L3) of cyathostomin after passing through the gastrointestinal tract of horses and assay B, assessment of the cyathostomin L3 reduction percentage in coprocultures. Twelve crossbred horses, females, with a mean weight of 356 kg and previously dewormed were divided in three groups with four animals each: group 1, each animal received 50 g of pellets containing mycelial mass of the fungus D. flagrans and 50 g of pellets of the fungus M. thaumasium, associated and in a single oral dose; group 2, 100 g of pellets containing D. flagrans and 100 g of pellets containing M. thaumasium, associated and in a single oral dose; group 3, control. Faecal samples were collected from animals in the treated and control groups at time intervals of 12, 24, 36, 48, 60 and 72 h after the administration of treatments and placed in Petri dishes containing 2% water-agar (assay A) and cups for coprocultures (assay B). Subsequently, 1000 cyathostomin L3 were added to each Petri dish (assay A) and 1000 cyathostomin eggs were added to each coproculture (assay B) of fungi-treated and control groups. At the end of 15 days, there was observed that the two associations of pellets containing the fungi tested showed predatory activity after passing through the gastrointestinal tract of horses (assay A). In assay B, all the intervals studied showed reduction rate in the number of L3 recovered from coprocultures exceeding 80%. However, no difference (p>0.01) was seen in recovery of not predated L3 between the fungi-treated groups in the time intervals studied. The results obtained showed that the associations of pellets (50 or 100 g of each fungal isolate) were viable after passage through the gastrointestinal tract in horses and could be used in natural conditions.


Asunto(s)
Ascomicetos/metabolismo , Duddingtonia/metabolismo , Tracto Gastrointestinal/parasitología , Infecciones Equinas por Strongyloidea/terapia , Estrongílidos/microbiología , Administración Oral , Alginatos , Animales , Implantes de Medicamentos , Heces/parasitología , Femenino , Tracto Gastrointestinal/microbiología , Ácido Glucurónico , Ácidos Hexurónicos , Caballos/parasitología , Larva , Infecciones Equinas por Strongyloidea/parasitología
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