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S Reissmann

Publications and source records attributed to S Reissmann.

42 records · Page 3Linked to original sources

[The effect of potentiating factors on the bradykinine effect in vitro].

Bradykinin potentiating factors from the venom of Bothrops jajaraca and Agkistrodon halys blomhoffii potentiate the action of bradykinin at several smooth muscles. This potentiation is specific for bradykinin and has to be distinguished from an unspecific potentiation. The potentiation induced by BPF is not due to an indirect cholinergic mechanism or to a kininase inhibition in vitro. The results suggest that there would be an allosteric transition of the bradykinin receptor.

Animals↗

[Stability of some bradykinin analogues against kininase II (author's transl)].

Some analogues of bradykinin, especially with replacements by other amino acids of phenylalanine in position 8, have been investigated for enzymatic stability against kininase II from rat duodenum microsomes and rat uterus plasma membranes, respectively. As compared with bradykinin, two of the analogues, [8-erythro-beta-phenylserine]- and [8-erythro-alpha-Amino-beta-phenylbutyric acid]-Bradykinin were stable to enzymatic degradation. Therefore, the latter may be used for studies in hormone-receptor interaction.

Animals↗

[Studies on bradykinin-binding cell fractions. 1. Characterization of kininase activity of the microsomal and membrane fraction from the rat uterus].

In the membrane fraction of rat uterus, kinin-destroying activity was found and characterized as kininase II by means of several kininase inhibitors. It could be shown that sudies of bradykinin-receptor interactions requires the use of kininase inhibitors like phenanthroline or the use of a stable bradykinin analogue like [8-erythro-alpha-amino-beta-phenylbutyric acid]-bradykinin.

Angiotensin-Converting Enzyme Inhibitors↗

[Characterization of the effect of bradykinin on the smooth muscle with special reference to its latency].

The biological activity of bradykinin on the isolated guinea-pig ileum is evident after a defined period of time - its latency. The latency of a bradykinin induced contraction is not caused by the strong protonization of the polypeptide. Analogues with the same or diminished basicity have a shorter latency than bradykinin. The latency is increased at high hydrogen concentration in comparison with the physiological pH-value. But this phenomenon is also observed at angiotensin, eledoisin, acetylcholine, histamine and barium chloride. The latency is dependent upon the temperature. Exogenous calcium ions are without demonstrable influence on the bradykinin induced latency. The membrane potential is not changed during the latency. The results are discussed in connection with the drug-receptor interactions.

Animals↗

Design, synthesis and characterization of bradykinin antagonists via cyclization of the modified backbone.

With the aim of synthesizing cyclic antagonists of the nonapeptide hormone bradykinin with minimal side chain modification, we performed backbone to backbone and backbone to side chain cyclization. To probe and compare different strategies for this new kind of cyclization, the branched peptide bonds were formed by both reductive alkylation on the solid phase and by using preformed building units. Lactam bridges between the modified amide groups were formed by the use of the phenylalanine derivatives N(CH2COOH)Phe and N(CH2CH2NH2)Phe. The best results in the formation of the N-alkylamide bond were obtained with the coupling reagent PyBrop. The coupling rate was monitored by estimation of the N-terminal Fmoc-group. The cyclization was performed on the solid support. Unexpected difficulties resulted from the instability of the N-alkylamide bond under strong acidic conditions, as used for deprotection and for removal from the resin. We synthesized peptides with backbone to backbone cyclization between positions 2 and 5, as well as backbone to side chain cyclizations between positions 0 and 5, and between 2 and 6. The relatively high biological activities of some of the cyclic analogues support the supposed receptor-bound conformation of bradykinin antagonists with a beta-turn in the N-terminal sequence.

Animals↗