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Biomedical subjects

Y Fares

Publications and source records attributed to Y Fares.

3 recordsLinked to original sources

Successful treatment of Candida albicans osteomyelitis of the spine with fluconazole and surgical debridement: case report.

A 65-year old diabetic male presented with progressive bone destruction of thoracic spine (T-11&12) with cord compression. Candida albicans was isolated from aspirated materials pre-and intra-operative. Two weeks of fluconazole was given prior to surgical debridement, and fixation of the lesion. C. albicans isolated pre-and 2-weeks after fluconazole treatment were DNA-typed using AP-PCR. MIC was 2-4 mg/l in all isolates tested. The pre-and post treatment isolates had two DNA patterns, indicating the existence of two different strains. Surgical treatment was necessary for patient recovery.

Aged↗

Induction of nitrate transport in maize roots, and kinetics of influx, measured with nitrogen-13.

Unlike phosphate or potassium transport, uptake of nitrate by roots is induced, in part, by contact with the substrate ion. Plasmalemma influx of (13)N-labeled nitrate in maize roots was studied in relation to induction of the uptake system, and the influence of short-term N starvation. Maize (Zea mays) roots not previously exposed to nitrate had a constitutive transport system (state 1), but influx increased 250% during six hours of contact with 100 micromolar nitrate, by which time the transport mechanism appeared to be fully synthesized (state 2). A three-day period of N starvation prior to induction and measurement of nitrate influx resulted in a greater capacity to transport nitrate than in unstarved controls, but this was fully expressed only if roots were kept in contact with nitrate for the six hours needed for full induction (state 2E). A kinetic analysis indicated a 160% increase in maximum influx in N-starved, induced roots with a small decrease in K(m). The inducible component to nitrate influx was induced only by contact with nitrate. Full expression of the nitrate inducible transport system was dependent upon mRNA synthesis. An inhibitor of cytoplasmic protein synthesis (cycloheximide) eliminated the formation of the transport system while inhibition by chloramphenicol of mitochondrial- or plastid-coded protein synthesis had no effect. Poisoning of membrane-bound proteins effectively disabled both the constitutive and induced transport systems.

Journal Article↗