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Biomedical subjects

J L Born

Publications and source records attributed to J L Born.

34 records · Page 2Linked to original sources

Growth of human malaria parasites in biotinylated erythrocytes.

The adaptation of the biotin-avidin system for the analysis of membrane pathobiology in Plasmodium falciparum malaria is described. Biotin was linked covalently via the succinimide ester derivative (biotinyl-N-hydroxysuccinimide ester, BNHS) to intact human erythrocytes, prior to inoculation and in vitro cultivation of falciparum parasites. Growth experiments indicated that incubation concentrations of less than 1.0 mg BNHS/1.0 ml erythrocyte packed cell volume could yield biotinylated erythrocytes capable of sustaining parasite growth at levels comparable to control cultures. Using a synthesized [14C]BNHS compound at optimal incubation concentration, it was determined that 1.32 X 10(-4) mmol [14C]BNHS were bound per 1.0 mg of erythrocyte stromal protein. In addition, analysis of [14C]biotinylated red blood cell ghost preparations by polyacrylamide gel electrophoresis demonstrated that band 3 (a heterogeneous glycoprotein) was the principal site of membrane labeling. Approximately 77% of total membrane-associated [14C]BNHS was localized to this polypeptide. The unique properties of the specific, ligand-protein interaction of the biotin-avidin complex suggest that the biotinylation procedure described in this report will provide a useful analytical tool in host cell-plasmodial parasite, membrane studies.

Animals↗

Binding of pyridine derivatives to cytochrome P-450.

The spectral binding constants, Ks, of pyridine, methylpyridine, and dimethylpyridines were determined. The Ks values of the compounds were discussed in terms of mechanisms of possible bonding to cytochrome P-450.

Animals↗

Anomalous chemical shifts of methyl groups of 2,4-dimethylbenzo[g]quinoline.

The chemical shifts of the methyl groups of 2,4-dimethylbenzo[g]quinoline are defined with respect to concentration, showing that the methyl resonances are reversed from their expected positions in concentrations normally used in NMR spectroscopy. The phenomenon is explained in terms of the probably "fixation" of bonds in the heteroring.

Chemical Phenomena↗

Heavy-particle therapy in acromegaly and Cushing disease.

A total of 349 patients with pituitary tumors, including acromegaly, Cushing disease, Nelson syndrome, prolactin-secreting adenoma, and chromophobe adenoma, have been treated with heavy-particle radiation during the past 17 years. The incidence of side effects has been low. Only 30 patients, 8.6%, have died, most of preexisting cardiovascular complications. Heavy particle therapy provides a form of treatment with no mortality and extremely low morbidity, and its use in treating pituitary disorders has resulted in dramatic improvement in the signs and symptoms of patients with acromegaly and Cushing disease.

Acromegaly↗

Isotopic sensitivity in the microsomal oxidation of the dihydropyridine calcium entry blocker nifedipine.

The primary deuterium isotope effect on Vm for the microsomal oxidation of the dihydropyridine calcium entry blocker nifedipine [4-(2-nitrophenyl)-2,6-dimethyl-3,5- bis(methoxycarbonyl)-1,4-dihydropyridine] has been measured. The magnitude of the kinetic isotope effect, 6.7, suggests that the rate-limiting step in the mechanism of microsomal oxidation of nifedipine involves the loss of a hydrogen atom rather than nitrogen oxidation. Thus the microsomal oxidation of nifedipine is mechanistically different from that of other 1,4-dihydropyridines.

Animals↗