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J Brook

Publications and source records attributed to J Brook.

46 records · Page 3Linked to original sources

Serum lysozyme in multiple myeloma.

SLL's were tested by turbidometric assay on 33 male patients with multiple myeloma with three to 58 tests (mean 11) for each patient over a 7-year period. The age of the patients ranged from 31 to 83 years, with a median age of 58 years. SLL's in the normal controls were 14.4 +/- 3.5 microgram/ml. Patients with myeloma had a median lysozyme level of 16 microgram/ml and mean of 16.5. The SLL's in patients with lgG1,2,3,4, Iga, and kappa and lambda light-chain myeloma were similar. Slightly higher mean SLL'S were noted in older patients. Patients with severe renal disease also had higher SLL'S. No significant changes in SLL's were seen during infections or during mild granulocytopenia (granulocyte count greater than 500 cells/mm3). In severe granulocytopenia (granulocyte count less than 500 cells/mm3) the SLL's decreased and returned to normal levels when the white blood cell counts improved. In eight patients surviving for more than 5 years, the SLL's were not different from those of the other patients. SLL values in patients with multiple myeloma did not differ significantly by statistical test from those of controls when those patients with impaired renal function are excluded.

Adult↗

Disseminated Nocardia brasiliensis infection.

We report a 40-year-old man with advanced Hodgkin disease who received combination chemotherapy and developed disseminated Nocardia brasiliensis infection. We discuss opportunistic infections in the compromised host, with particular reference to nocardial disease and certain biologic characteristics of that organism.

Adult↗

Effects of Phosfon-S on Nucleic Acid Metabolism in Pisum sativum Alaska.

Phosfon-S, a substance which inhibits stem elongation, alters nucleic acid metabolism in Pisum sativum Alaska. Methylated albumin kieselguhr (MAK) columns were used to fractionate (32)P-labeled nucleic acids. Phosfon-S treatment of the plants resulted in a decrease in soluble RNA and an increase in ribosomal RNA. Specific activities of the various nucleic acid fractions were lower as a result of treatment. The nucleic acids from treated tissues were more resistant to RNase degradation, and endogenous RNase activity was lower in treated tissues. When RNase treated nucleic acids were fractionated on MAK columns, the DNA-RNA fractions from treated plants had a higher specific activity than that of the control, which was not true before nuclease treatment. Spectrophotometric examination of this fraction revealed a difference in absorption spectra, possibly indicating a Phosfon-S nucleic acid complex. It is suggested that these alterations in nucleic acid metabolism could in turn alter a wide variety of metabolic processes, resulting in retarded growth.

Journal Article↗