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2.
Int J Biol Macromol ; 153: 276-288, 2020 Jun 15.
Artículo en Inglés | MEDLINE | ID: mdl-32145228

RESUMEN

The most effective medicines available for the treatment of leishmaniasis, a life-threatening disease, exhibit serious toxicological issues. To achieve better therapeutic efficiency while decreasing toxicity associated with amphotericin B (AmB), water-soluble dextrin-AmB (Dex-AmB) formulations were developed. Self-assembled nanocomplexes were formed by dissolving Dex and AmB in alkaline borate buffer, followed by dialysis and either freeze-drying (FD) or nano spray-drying (SD), yielding water dispersible particles with a diameter of 214 nm and 347 nm, respectively. The very simple production process allowed the formation of amorphous inclusion complexes containing 14% of AmB in the form of monomers and water-soluble aggregates. Nanocomplexes were effective against parasites in axenic culture (IC50 of 0.056 and 0.096 µM for L. amazonensis and 0.030 and 0.044 µM for L. infantum, respectively for Dex-AmB FD and Dex-AmB SD) and in decreasing the intramacrophagic infection with L. infantum (IC50 of 0.017 and 0.023 µM, respectively for Dex-AmB FD and Dex-AmB SD). Also, the formulations were able to significantly reduce the cytotoxicity of AmB. Overall, this study demonstrates the suitability of dextrin as an AmB carrier and the facile and inexpensive development of a delivery system for the treatment of leishmaniasis.


Asunto(s)
Anfotericina B/química , Anfotericina B/farmacología , Antiprotozoarios/química , Antiprotozoarios/farmacología , Dextrinas/química , Leishmaniasis/tratamiento farmacológico , Anfotericina B/uso terapéutico , Antiprotozoarios/uso terapéutico , Composición de Medicamentos , Hemólisis/efectos de los fármacos , Leishmania/efectos de los fármacos , Leishmania/fisiología
3.
J Dairy Sci ; 95(6): 3354-62, 2012 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-22612969

RESUMEN

This project aimed to determine effects of applying an inoculant containing homofermentative and heterofermentative bacteria on the fermentation, nutritive value, aerobic stability, and nutrient losses from corn silage produced in farm-scale silos. Corn forage was harvested at 34% dry matter (DM) and treated without (control) or with 5 × 105 cfu/g of Lactobacillus buchneri and Pediococcus pentosaceus. The inoculant was sprayed on alternate 8-row-wide swaths of forage, and the untreated and inoculated forages were alternately packed into 3.6-m-wide bag silos. Forty-five tonnes of corn forage were packed into each of 4 replicate bags per treatment and ensiled for 166 d. Silage removed from the bags (500 kg/d) was separated into good and spoiled (visibly moldy or darker) silage portions, and weighed for 35 d. Weekly composites were analyzed for chemical composition, aerobic stability, and fungal counts. Aerobic stability was measured using data loggers that recorded sample and ambient temperature every 30 min for 7 d. Inoculation did not affect the chemical composition of the spoiled or good silage but decreased the quantity (5.7 vs. 12.9 kg/d) and percentage (3.4 vs. 7.8) of spoiled silage in the bags by over 50%. Losses of crude protein (0.28 vs. 0.92 kg/d), gross energy (6.0 × 104 vs. 1.8 × 105 kJ/d), and neutral detergent fiber (1.34 vs. 4.12 kg/d) in spoiled silage were less in inoculated versus control silages. Inoculated silages had lower pH (3.91 vs. 3.99), lactate concentration (7.63 vs. 7.86%), lactate:acetate ratio (1.58 vs. 2.53%), and a greater acetate (5.11 vs. 3.56%) concentration than the control silage. Inoculated silages tended to have fewer yeasts (2.59 vs. 4.62 log cfu/g) than control silages, but aerobic stability was not different across treatments (14.7 vs. 9.5 h). Applying the inoculant made the fermentation more heterolactic, inhibited the growth of yeasts, and substantially reduced the amount of spoilage and the associated energy and nutrient losses.


Asunto(s)
Alimentación Animal/microbiología , Almacenamiento de Alimentos/métodos , Valor Nutritivo , Ensilaje/microbiología , Zea mays , Acetatos/análisis , Alimentación Animal/análisis , Alimentación Animal/normas , Animales , Bovinos , Concentración de Iones de Hidrógeno , Lactatos/análisis , Lactobacillus , Pediococcus , Ensilaje/análisis , Zea mays/metabolismo , Zea mays/microbiología
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