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D Yajko

Publications and source records attributed to D Yajko.

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Efficacies of liposome-encapsulated streptomycin and ciprofloxacin against Mycobacterium avium-M. intracellulare complex infections in human peripheral blood monocyte/macrophages.

Current treatments of disseminated infection caused by the Mycobacterium avium-M. intracellulare complex (MAC) are generally ineffective. Liposome-mediated delivery of antibiotics to MAC-infected tissues in vivo can enhance the efficacy of the drugs (N. Düzgüneş, V. K. Perumal, L. Kesavalu, J. A. Goldstein, R. J. Debs, and P. R. J. Gangadharam, Antimicrob. Agents Chemother. 32:1404-1411, 1988; N. Düzgüneş, D. A. Ashtekar, D. L. Flasher, N. Ghori, R. J. Debs, D. S. Friend, and P. R. J. Gangadharam, J. Infect. Dis. 164:143-151, 1991). We investigated the therapeutic efficacies of liposome-encapsulated streptomycin and ciprofloxacin against growth of the MAC inside human peripheral blood monocyte/macrophages. Treatment was initiated 24 h after infection of macrophages with the MAC and stopped after 20 h, and the cells were incubated for another 7 days. The antimycobacterial activity of streptomycin was enhanced when the drug was delivered to macrophages in liposome-encapsulated form, reducing the CFU about threefold more than the free drug did throughout the concentration range studied (10 to 50 micrograms/ml). With 50 micrograms of encapsulated streptomycin per ml, the CFU were reduced to 11% of the initial level of infection. Liposome-encapsulated ciprofloxacin was at least 50 times more effective against the intracellular bacteria than was the free drug: at a concentration of 0.1 microgram/ml, liposome-encapsulated ciprofloxacin had greater antimycobacterial activity than the free drug at 5 microgram/ml. With liposome-encapsulated ciprofloxacin at 5 micrograms/ml, the CFU were reduced by more than 1,000-fold at the end of the 7-day incubation period, compared with untreated controls. These results suggest that liposome-encapsulated ciprofloxacin or other fluoroquinolones may be effective against MAC infections in vivo.

Ciprofloxacin

Predictive value of stool examination in acute diarrhea.

We prospectively evaluate the value of fecal blood and fecal leukocytes in predicting whether acute diarrhea in adults is associated with a stool culture positive for a bacterial pathogen. One hundred thirteen patients, aged 19 to 50 years, seen in a two-year period in an urban adult outpatient setting underwent stool culture for the presenting symptom of diarrhea. Heterosexual men represented 48% of the cohort, women represented 17%, and homosexual men represented 35%. Overall, 53 (47%) of the patients had positive stool cultures for enteric pathogens. Campylobacter jejuni was the most common organism in the entire cohort, but Shigella species were most common in homosexual men. The best predictive variables for a stool culture positive for a bacterial pathogen were the presence of both fecal leukocytes and fecal blood in the stool, compared with only one or neither. When both were present, the sensitivity was 81%, the specificity 74%, and the predictive values of a positive and negative test were 81% and 83%, respectively; the likelihood ratio was 4.87. When homosexual men and the rest of the cohort were analyzed separately, the combination of fecal leukocytes and fecal blood remained the best method of predicting a positive stool culture in both. Examination of stool for fecal leukocytes and fecal blood is a rapid, reliable, and inexpensive way to differentiate between bacterial and other causes of acute diarrhea in the adult acute care setting.

Adult

Bacterial characterization by flow cytometry.

Bacteria were analyzed in a dual-beam flow cytometer after double staining with the fluorescent dyes chromomycin A3 and Hoechst 33258, which bind preferentially to DNA that is rich in guanine-cytosine and adenine-thymine, respectively. The measurements were indicative of the cellular DNA content and base composition, cell concentration, and proliferative state of the population. The ratio of the chromomycin A3 signal to the Hoechst 33258 signal increased with the guanine-cytosine content of the cellular DNA for the six cultured species measured, following expectation. Bacteria in urine from patients with urinary tract infections were characterized without interference from host cell DNA, debris, or other particulates.

Bacteria