Search PubMed⌕ Search

Biomedical subjects

Brian Lee

Publications and source records attributed to Brian Lee.

7 recordsLinked to original sources

Investigation of transfusion transmission of a WA1-type babesial parasite to a premature infant in California.

BACKGROUND: A premature infant in California developed respiratory distress associated with infection with a protozoal parasite, Babesia. The infant had received two blood transfusions, one from the father and one from an anonymous donor (Donor A). This study describes the follow-up required to identify the source and species of Babesia that infected the infant. STUDY DESIGN AND METHODS: At the time of the infant's illness, whole blood from the infant, father, and mother was evaluated for Babesia infection. Similar evaluation of whole blood from Donor A was performed 2 months after the suspected donation to the infant. Samples were tested using blood smear examination, serology, PCR, and hamster inoculation. Identity of the recovered Babesia parasites was confirmed by DNA amplification by PCR, genetic sequencing of the 18S gene, and phylogenetic analysis. RESULTS: WA1-type Babesia was recovered from the infant. Neither parent was the source of infection. Serology and hamster inoculation confirmed WA1-type Babesia infection in Donor A. DNA sequences of the 18S gene from the infant and donor isolates were 100% identical. CONCLUSION: WA1-type Babesia infections may be difficult to detect among blood donors because such infections can be subclinical. This is the second WA1-type Babesia transmission via blood transfusion and the first in an infant. Physicians in the western United States should consider Babesia as a possible cause of nonspecific febrile illness after a blood transfusion.

Anemia↗

Flash Photolysis Studies of Roussin's Black Salt Anion: Fe(4)S(3)(NO)(7)(-).

A time-resolved optical (UV-vis) spectroscopic study of Roussin's black salt anion, Fe(4)S(3)(NO)(7)(-), revealed two separate intermediates, X and Y, following laser flash photolysis. Both intermediates react with nitric oxide with second-order kinetics to re-form the parent complex (k(NO)(X)() = 1.3 x 10(7) M(-)(1) s(-)(1); k(NO)(Y)() = 7.0 x 10(5) M(-)(1) s(-)(1) in aqueous solutions). The shorter-lived intermediate X was observed in time resolved infrared spectroscopic studies. Isotopic labeling experiments involving the exchange of black salt nitrosyls with (15)NO(2)(-) or (15)N(18)O were used to probe the correlation between nu(NO) bands and the anion structures. The identities of the intermediates are interpreted in terms of photolytic loss of chemically distinct nitrosyls found on the Fe(4)S(3)(NO)(7)(-) anion.

Journal Article↗