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M Hoch

Publications and source records attributed to M Hoch.

41 records · Page 3Linked to original sources

Radioimmunoassay of serum thyroglobulin. Technique and clinical results.

A radioimmunoassay technique using a double antibody procedure for human serum thyroglobulin (HTg) is described. Only antigen labeling with iodine-125 is performed extemporaneously, the other reagents being purchased commercially. Quality criteria were: sensitivity (2 microgram/l), interassay reproducibility (coefficient of variance, C.V. = 11%) and specificity are comparable with those of previously published techniques. Normal limits for serum HTg concentrations were established on the basis of 65 assays (33.0 +/- 21.20 microgram/l). In 69 subjects exhibiting goiters and cold nodules, the values observed were considerably higher and more dispersed (81 +/- 57 microgram/l); the same observation was made for the the cases of Basedow's disease studied. Patients who had undergone thyroid ablation for thyroid cancer exhibited a low or nondemonstrable HTg concentration, except for seven subjects showing osseous and/or pulmonary functionally active metastases of a differentiated cancer whose HTg levels were significantly higher (300-400 microgram/l). These results concur with several previous reports in emphasizing the interest of assaying serum HTg during the surveillance of differentiated cancers of the thyroid.

Humans↗

12-hour psychotherapy.

The two cases cited illustrate how short-term therapy can be used to meet a patient's needs to deal with loss and grief. Although the goals as set out in short-term therapy contracts are not always fully achieved, this treatment modality, as delineated by Mann, is valuable to psychiatry. Short-term therapy is not only a sound therapeutic intervention, but also a means of bringing psychiatric health care to a greater segment of the population.

Adjustment Disorders↗

DE-cadherin, a core component of the adherens junction complex modifies subcellular localization of the Drosophila gap junction protein innexin2.

The Drosophila innexin multigene family of gap junction encoding proteins consists of eight family members whose function in epithelial morphogenesis is mostly unknown. We have recently shown that innexin2 plays a crucial role in the organization of embryonic epithelia. Innexin2 protein accumulates in the epidermis in the apico-lateral membrane domain and colocalizes with core proteins of adherens junctions, such as DE-cadherin and Armadillo, the ss -catenin homolog. Innexin2 localization is altered in both armadillo and DE-cadherin mutants Biochemical interaction studies point to a direct interaction of DE-cadherin and Armadillo with innexin2 suggesting a close link between gap junction and adherens junction biogenesis. We have used the Drosophila Schneider cell tissue culture system to further study the interaction of innexin2 with DE-cadherin. Our results provide evidence that DE-cadherin may be a key component to control trafficking, and localization of Innexin2 to the plasma membrane.

Adherens Junctions↗