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U Ludwig

Publications and source records attributed to U Ludwig.

5 recordsLinked to original sources

[Evaluation of the aca lipase (DuPont) determination and of the lipase determination according to Myrick (Calbiochem-Behring) (author's transl)].

Two lipase methods, the method for the aca (DuPont) and the method according to Myrick (1976) Thesis, Birmingham Al.) (Calbiochem-Behring), were compared with the lipase method of Rick (1969) Z. Klin. Chem. Klin. Biochem. 7, 530--539) and with the amylase determination. The diagnostic value of the aca method, the amylase and the lipase method of Rick were in good agreement, whereas the method of Myrick gave conflicting results.

Amylases

[Treatment of the swan neck deformity].

The pathogenesis and the anatomic causes for the swan neck deformity are reviewed. Many different soft tissue operations can succeed in preventing catastrophic loss of function if the deformity is treated while still in stage 1 or 2. In the later stages (3 and 4) restoration of finger is often not possible as a result of joint stiffness and irreversible joint changes. In this case, arthroplasty and arthrodesis should be considered.

Contracture

Hormonal control of gene expression: differential activation of rat bone marrow RNA polymerases by erythropoietin and testosterone.

Hormones play a role in the regulation of gene expression by inducing changes in enzyme patterns in target cells mediated by the synthesis of specific RNA molecules. Erythropoiesis has been used as a system for studying the molecular mechanism of regulation of gene action by means of two hormones: erythropoietin and testosterone. Experiments designed to correlate the biochemical action of both hormones on rat marrow cells are herein reported. Both factors seems to act at different biochemical and citological levels. Erythropoietin triggers the erythropoietic process acting on the erythropoietin sensitive cells (ESC), in which the hormone induces the synthesis of a high molecular weight RNA, which is the precursor of a functional 9 S messenger RNA. Testosterone seems to act on polychromatophilic erythroblasts, in which the synthesis of ribosomal RNA or its precursor is stimulated. The steroid enhances the nuclear ribonuclease activity, which could represent a control mechanism for the processing (maturation) of high molecular weight RNAs. The incorporation of 3H-GTP and 3H-UTP into RNA by isolated rat bone marrow nuclei is stimulated by erythropoietin and testosterone. Using alpha-amanitine and different ionic strength conditions it was found that erythropoietin enhances preferentially RNA polymerase II activity while testosterone increases RNA polymerase I activity. It is postulated that erythropoietin and testosterone act synergically to create the biochemical machinery for hemoglobin synthesis, the macromolecule that characterizes the erythropoietic process.

Amanitins