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Biomedical subjects

I Rostenberg

Publications and source records attributed to I Rostenberg.

At least 19 recordsLinked to original sources

Gc globulin and prealbumin serum levels in patients with cancer and benign inflammatory diseases and in asymptomatic smokers.

Gc globulin and prealbumin serum levels were determined in a coded serum panel from the National Cancer Institute-Mayo Clinic. Serum samples came from 100 patients with cancer (lung, prostate gland, or gastrointestinal tract), from 50 patients with benign inflammatory diseases from the same organs as those of the cancer patients, and from 50 clinically healthy smokers. No differences were observed among groups in the Gc globulin (vitamin D carrier) serum concentrations; however, prealbumin (vitamin A carrier) serum levels were decreased for patients with benign inflammatory diseases and for cancer patients; the cancer group showed the greatest decrease.

Alpha-Globulins↗

Serum IgG and IgD and levels in some infectious and noninfectious diseases.

Serum IgG and IgD levels were determined in the following groups: professional blood donors, healthy smokers and patients with acute hepatitis, with acute salmonellosis, with hepatic cirrhosis, with cancer (prostate, lung and gastrointestinal tract) and with benign diseases of the same organs as the cancer patients. IgG was significantly increased in the groups of patients with hepatitis, hepatic cirrhosis and cancer. IgD values showed a wide dispersion in all the groups, which do not allow for comparisons among means. For that reason, linear regression analysis between IgG and IgD was done, the results being significant only in the two groups with infectious diseases (acute hepatitis and acute salmonellosis), which suggest that IgD could be involved in the immune response against their respective pathogenic agents.

Blood Donors↗

Distinct glycosylation of serum proteins in patients with cancer: brief communication.

Concanavalin A and wheat germ agglutinin, lectins that interact with serum glycoprotein in a manner similar to the antigen--antibody reaction, were used as "antibodies" in a single radial immunodiffusion technique to test a coded serum panel (from the National Cancer Institute, Bethesda, Md., and the Mayo Clinic, Rochester, Minn.) containing a) 99 serum samples from patients with different types of malignant neoplasms of the gastrointestinal tract, prostate gland, and lung, b) 50 samples from patients with benign diseases of the same organs as those affected in the cancer patients, and c) 50 samples from apparently healthy smokers. The resulting precipitation rings were not correlated to serum protein concentration, and the differences (demonstrated by Student's t-test and with a generalization of the one-sided two-sample Kolmogorov-Smirnov statistic for evaluating diagnostic tests) established that serum glycoproteins are glycosylated differently in cancer patients than in people without cancer.

Blood Proteins↗

Altered carbohydrate content of alpha1-antitrypsin in patients with cancer.

The glycosylation of IgG and alpha1-antitrypsin (alpha1-AT) was studied by their precipitation with concanavalin A in a codified serum panel from the National Cancer Institute (Bethesda, Md.) and the Mayo Clinic (Rochester, Minn.). The serum panel was composed of samples from 98 patients with cancer of the lung, prostate gland, or gastrointestinal tract, 50 samples from patients with benign inflammatory diseases from the same organs as those of the cancer patients, and 41 samples from apparently healthy smokers. The assay for alpha1-AT revealed statistically significant differences in levels between the patients with cancer, the patients with benign diseases, and the smokers. However, tests revealed no statistically significant difference in IgG levels among the three groups. These results suggest that cancer may alter the glycosylation of alpha1-AT. The possibility remains that the test for alpha1-AT can detect genetic differences among individuals, but studies of families are needed before a final conclusion can be made.

Adult↗

Intrafamilial correlation analysis for IgM serum levels.

The IgM serum level was determined in the members of 29 healthy families. The IgM mean concentrations between fathers and mothers and between sons and daughters were significantly different (P less than .01), with higher serum IgM levels in females than in males. Simple linear regression analysis was done for the following intrafamilial combinations: son-father, daughter-father, son-mother, and daughter-mother. Significant correlation coefficients (P less than .05) were obtained in all four combinations, which does not support the X-linked gene hypothesis (i.e., that the X chromosome carries quantitative genes for immunoglobulin M). An alternative explanation for the differences between sexes for IgM serum concentration is considered.

Adolescent↗

The origin of serum protein, A, B, and H blood group, and Gm and Inv antigens in house dust.

Materials precipitated from an aqueous extract of house dust by saturation with ammonium sulphate showed immunological reaction with antisera to human serum albumin, human alpha1-acid glycoprotein, human IgG, Gm and Inv antigens and to A, B and H antigens. It is concluded that the albumin and alpha1-acid glycoprotein are of human origin. It seems that the apparent IgG activity is due to cross-reactivity since, from the anticipated specificities of the Fab and Fc fragments of human IgG, the former could not be detected, and since Gm (6) activity was present, unexpectedly, in Swiss house dust. The A, B and H blood group antigenic activities were detected in relative concentration different from those expected if they were solely of human origin. It is concluded that they are from both human and non-human sources.

ABO Blood-Group System↗

Inv(1) allotype: effect of immunoglobulin G heavy chain subtype on its expression.

More protein is required to detect the Inv(1) antigen carried in the light chain of immunoglobulin G molecules when the light chain is combined with a gamma2 heavy chain than when it is combined with a gamma1 or gamma3 heavy chain. One of the four gamma2 heavy chains used in the experiment, however, was as efficient as the gamma1 and gamma3 chains, indicating that there may be two subtypes of gamma2. Inv(1) was more easily detected in one of the two light chains used in the experiment. This difference may be associated with the subtypes of the kappa chain derived from studies of the variable portion of the chain.

Animals↗