Results 181 to 190 of about 106,285 (222)
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Disseminated Infection by Aspergillus Terreus

Journal of Urology, 1983
A patient with acute nonlymphocytic leukemia who received chemotherapy developed lung nodules and later central nervous system symptoms consistent with disseminated aspergillosis. The diagnosis was made at open lung biopsy by culturing the organism and observing in tissue sections conidia borne laterally along the hyphae, a characteristic of the ...
S L, Tracy   +4 more
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Aspergillus terreus osteomyelitis.

Archives of internal medicine, 1977
Aspergillus terreus infection limited to the L1-2 disk space and first and second lumbar vertebrae developed in a patient not predisposed to invasive aspergillosis. The observation of morphologically distinct secondary spores (aleuriospores) on microscopic examination of open biopsy specimens permitted a preliminary identification of A terreus, which ...
R, Seligsohn, J W, Rippon, S A, Lerner
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Production of ?-glucosidase by Aspergillus terreus

Current Microbiology, 1995
The production of beta-glucosidase by Aspergillus terreus was investigated in liquid shake cultures. Enzyme production was maximum on the 7th day of growth (2.18 U/ml) with the initial pH of the medium in the range of 4.0-5.5. Cellulose (Sigmacell Type 100) at 1.0% (wt/vol) gave maximum beta-glucosidase activity among the various soluble and insoluble ...
S, Pushalkar, K K, Rao, K, Menon
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Selenoprotein inAspergillus terreus

Biological Trace Element Research, 1988
Aspergillus terreus, a moderately selenium-tolerant fungus, metabolized Se-selenite into several protein seleno-amino acids: selenomethionine and selenocysteine, as well as, nonprotein seleno-amino acids, selenocystathionine, and y-glutamyl selenomethyl selenocysteine.
S E, Ramadan, A A, Razak
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Biosynthesis of itaconic acid by aspergillus terreus

Archiv f�r Mikrobiologie, 1962
The formation of itaconic, aconitic and other acids from glucose in the presence of some enzyme inhibitors or organic acids by Aspergillus terreus was studied. Moreover, the metabolic activities of the preformed mats when floated on solutions of some organic acids were traced.
I R, SHIMI, M S, NOUR EL DEIN
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Aspergillus terreus Spondylodiscitis in an Immunocompromised Child

Pediatric Infectious Disease Journal, 2019
We report the case of a 12-year-old immunocompromised boy with spondylodiscitis of the thoracolumbar spine caused by Aspergillus terreus. Microbiologic diagnosis was confirmed by inoculation of aspiration fluid into blood culture bottles. Because of noncompliance, the patient was treated with extended voriconazole therapy (23 months) with regular serum
Young Joo, Sohn   +6 more
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Aspergillus terreuscomplex

Medical Mycology, 2009
Aspergillus terreus can cause invasive infections in humans, which are often refractory to therapy with the antifungal drug amphotericin B and have a propensity to dissemination. The organism has diverse colony morphology, and sub-typing studies have demonstrated that isolates of A. terreus are diverse in their genotypes. However, detailed phylogenetic
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Onychomycosis caused byAspergillus terreus

Medical Mycology, 1978
Four cases of onychomycosis caused by Aspergillus terreus are presented. The clinical characteristics consisted of spotted and striated leuconychia, dark spots and fragility of the nails. The mycology is described, and is shown that A. terreus has an inhibitory effect on the growth of dermatophytes and Scopulariopis brevicaulis.
P, Onsberg, D, Stahl, N K, Veien
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Biodegradation of lignocellulosic waste by Aspergillus terreus

Biodegradation, 2001
Biodegradation of lignocellulosic waste by Aspergillus terreus is reported for the first time. This isolate produced 250 CMCase (carboxymethyl cellulase or endoglucanase) U.ml(-1) and biodegraded hay and straw during 3 days and the biomass production on straw was 5g.L(-1) dry weight from 0.25 cm2 inoculated mycellium.
G, Emtiazi, N, Naghavi, A, Bordbar
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Substrate specificities of Aspergillus terreus α-arabinofuranosidases

Carbohydrate Polymers, 1998
The substrate specificities of three purified Aspergillus terreus α-arabinofuranosidases, pI 7.5, 8.3 and 8.5, were studied using various isolated arabinose-containing polysaccharides and oligosaccharides as substrates. In addition, their mode of action was compared with those of some other arabinose-releasing enzymes. All three A.
Luonteri, E., Beldman, G., Tenkanen, M.
openaire   +1 more source

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