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Biomedical subjects

J Uriel

Publications and source records attributed to J Uriel.

At least 91 records · Page 5Linked to original sources

In vitro binding of 3H-estradiol to eosinophil and neutrophil granulocytes in various tissues (normal and neoplastic) of newborn and adult rats.

In vitro uptake and binding of tritiated estradiol to the specific granules of eosinophil granulocytes has been observed by ultrastructural radioautography in various tissues of the rat (liver and spleen of newborn, small intestine and bone marrow of adult animals). Binding of 3H-estradiol to granules present in the cytoplasm of neutrophil granulocytes has also been observed in bone marrow and in a cholangioma produced by chemical carcinogenesis. Neither type of granulocyte bound 3H-testosterone.

Adenoma, Bile Duct↗

Alpha-fetoprotein: the major high-affinity estrogen binder in rat uterine cytosols.

Evidence is present that alpha-fetoprotein (AFP), a serum globulin, accounts mainly, if not entirely, for the high estrogen-binding properties of uterine cytosols from immature rats. By the use of specific immunoadsorbents to AFP and by competitive assays with unlabeled steroids and pure AFP, it has been demonstrated that in hypotonic cytosols AFP is present partly as free protein with a sedimentation coefficient of about 4-5 S and partly in association with some intracellular constituent(s) to form an 8S estrogen-binding entity. The AFP leads to 8S transformation results in a loss of antigenic reactivity to antibodies against AFP and a significant change in binding specificity. This change in binding specificity is manifested by an increase in binding affinity for estradiol, estriol, diethylstillbestrol, and nafoxidine ( a non-steroidal anti-estrogen), and by a concomitant decrease in estrone binding. Both the antigenic and binding properties of native AFP are recovered after dissociation of the 8S complex in 0.4 M KC1. An AFP-mediated mechanism of early intracellular events associated with estrogen entry in target cells is suggested and discussed with regard to current views on steroid action.

Animals↗

Cancer, retrodifferentiation, and the myth of Faust.

The close relationship at the molecular level between cellular differentiation and neoplasia has been evidenced by the discovery in adult individuals of fetospecific antigens and fetal type isozymes associated with many spontaneous and experimentally induced malignant tumors. One question in relation with this finding is whether cancerous tumors develop from the differentiation of a tissue reserve of stem cells or by a process of retrodifferentiation, i.e., the nucleocytoplasmic stepwise reversion of cells toward stationary states with simplified structure and less information content. The question is not merely academic; elucidation of the nature of the target cells from which neoplastic growth emerges has obviously physiopathological and therapeutic implications. This contribution is an analysis of the nature and the mechanism of cellular retrodifferentiation and a discussion of its possible role in regeneration and metaplasia, as well as in neoplastic development. Throughout living systems, retrodifferentiation appears as a common adaptive process for the maintenance of cell integrity against deleterious agents of varied etiology (physical, chemical,and viral). While preserving the entire information encoded on its genome, cells undergoing retrodifferentiation lose morphological and functional complexity by virtue of a process of self-deletion of cytoplasmic structures and the transition to a more juvenile pattern of gene expression. This results in a progressive uniformization of originally distinct cell phenotypes and to a decrease of responsiveness to regulatory signals operational in adult cells. Retrodifferentiation is normally counterbalanced by a process of reontogeny that tends to restore the terminal phenotypes from where the reversion started. This explains why retrodifferentiation remains invariably associated to cell regeneration and tissue repair. There is an ever growing evidence that neoplastic transformation in vivo and in vitro is frequently preceded and/or accompanied by biochemical, morphological, and behavioral transitions characteristic of a cell undergoing retrodifferentiation. Contrary to what occurs in regenerating tissues, the "unbalanced" character of tumor-associated retrodifferentiation seems to be a property linked to cancer. The question arises why a unique mechanism of cell rejuvenation is in physiological conditions (regeneration), followed by a process of reontogeny, while in neoplasia the process remains incomplete or does not occur and leads to the emergence of a population of persistently dividing cells. It is to be hoped that a careful study of retrodifferentiation in physiological and tumoral models will help to distinguish that which in neoplastic development can be relevant to an adaptive cell behavior from that which might eventually be the result of specific or constitutive alterations.

Adaptation, Physiological↗

Trypsin inhibitor from cow colostrum. Isolation, electrophoretic characterization and immunologic properties.

Trypsin inhibitor from cow colostrum has been purified by affinity chromatography of colostral proteins on insolubilized trypsin. The method described compares favourably, in both simplicity and yield, with previous methods developed for the isolation of this inhibitor. Gel electrophoresis followed by characterization of antitrypsin activity allows the demonstration of four molecular forms of bovine colostral trypsin inhibitor in both crude colostral whey and purified preparations of the inhibitor. Immunoelectrophoresis of each of these materials with antisera specific for this inhibitor reveals a single precipitation line of broad anodic mobility. By immunodiffusion tests, the precipitation lines in preparations of purified inhibitor and colostral whey appear immunologically identical. In contrast, absence of crossed reactivity was observed between bovine colostral trypsin inhibitor and trypsin inhibitors of bovine serum. This strongly suggests the high specificity of this inhibitor as a colostral and milk constituent.

Animals↗