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Biomedical subjects

V Utermohlen

Publications and source records attributed to V Utermohlen.

23 records · Page 2Linked to original sources

Cellular reactivity studies to streptococcal antigens. Migration inhibition studies in patients with streptococcal infections and rheumatic fever.

The question of whether hypersensitivity to streptococcal antigens plays a role in the pathogenesis of the nonsuppurative sequelae of streptococcal infections remains at present unclear. As a first step in the approach to this question, the degree of cellular reactivity of peripheral blood leucocytes to streptococcal antigens was investigated in a number of rheumatic fever patients, patients with uncomplicated streptococcal infections, as well as normal healthy subjects. Using the in vitro technique for the inhibition of capillary migration of peripheral blood leucocytes as an index of the degree of sensitivity to streptococcal antigens, the results indicate that patients with acute rheumatic fever exhibit an exaggerated cellular reactivity to these antigens and in particular to streptococcal cell membrane antigens. This abnormal response to streptococcal membrane antigens appears to persist in rheumatic subjects for at least 5 yr after the initial attack of rheumatic fever. Only Group A streptococcal membrane antigens elicited this unusual response in rheumatic subjects, since the cellular reactivity to Group C and D streptococcal membranes was the same in all groups. Patients with evidence of valvular disease exhibited the same degree of cellular reactivity to these antigens as did patients without clinical evidence of rheumatic heart disease. The nature of the antigens responsible for the observed cellular response remains unknown. Enzymatic treatment of streptococcal cell walls and membranes designed to remove type-specific M proteins did not alter the observed cellular reactivity to the streptococcal antigens. The finding that an abnormal cellular response to certain streptococcal antigens is present only in rheumatic patients suggests that cell-mediated factors may play an important role in the disease process.

Animals↗

Energy requirements of parenterally fed bone marrow transplant recipients.

To determine the energy intake (kcal/kg/day) necessary to maintain zero nitrogen balance (assuming adequate protein intake) during the first 30 days after transplant, we studied 91 bone marrow transplant recipients. Serial nitrogen balance and concomitant energy and protein intakes were determined prospectively on each patient. Eight-four (92%) of the patients (ages 4-49 yr) had sufficient data for evaluation. For each patient, a simple linear model (nitrogen balance vs energy intake) was used to determine the patient's predicted individual energy requirement during the first 30 posttransplant days (EReq30). Weighted least squares multiple regression was used to determine the effect on EReq30 of such variables as age and sex. Energy requirements were significantly (p less than 0.001) greater for children, males, and patients with acute graft-vs-host disease, and when the percent of the total energy intake given by the intravenous route was high. An equation that incorporated these variables was developed to predict the energy requirements for bone marrow transplant recipients during their first 30 posttransplant days. Although individual energy requirements vary, this equation is a useful guide for initial energy prescriptions.

Adolescent↗