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Biomedical subjects

A Obayashi

Publications and source records attributed to A Obayashi.

34 records · Page 2Linked to original sources

Demalonyl derivatives of guanidylfungin A and copiamycin: their synthesis and antifungal activity.

Guanidylfungin A was chemically modified by alkylation, reduction and/or demalonylation. Demalonylmethylguanidylfungin A became soluble in water and showed approximately eight-fold higher activity against fungi and Gram-positive bacteria than guanidylfungin A along with strongly fungicidal effect. Similarly, copiamycin was converted to demalonylmethylcopiamycin, which also showed higher antifungal activity than copiamycin itself.

Antifungal Agents↗

Influence of angiotensin-converting enzyme inhibitor, foroxymithine, on dynamic equilibrium around the renin-angiotensin system in vivo.

To understand the in vivo actions of angiotensin-converting enzyme (ACE) inhibitors, a prolonged study was performed in rabbits over a half year, using one of such inhibitors, foroxymithine. During the initial 2 months of the inhibitor administration, the serum level of ACE was suppressed. Thereafter, probably triggered by the consequent sharp rise in the plasma renin activity (PRA) level, the ACE level regained its initial value. Thus the close correlation between the levels of PRA and ACE seen in the control animal was entirely broken by this inhibitor. A multivariate study indicated that the inhibitor drastically changed the normal networks of peptide metabolism in vivo. These results are compatible with the notion that the ACE inhibitor blocks the regulatory mechanisms of the renin-angiotensin system in vivo.

Angiotensin I↗

Control of growth rate by initial substrate concentration at values below maximum rate.

The hyperbolic relationship between specific growth rate, mu, and substrate concentration, proposed by Monod and used since as the basis for the theory of steady-state growth in continuous-flow systems, was tested experimentally in batch cultures. Use of a Flavobacterium sp. exhibiting a high saturation constant for growth in glucose minimal medium allowed direct measurement of growth rate and substrate concentration throughout the growth cycle in medium containing a rate-limiting initial concentration of glucose. Specific growth rates were also measured for a wide range of initial glucose concentrations. A plot of specific growth rate versus initial substrate concentration was found to fit the hyperbolic equation. However, the instantaneous relationship between specific growth rate and substrate concentration during growth, which is stated by the equation, was not observed. Well defined exponential growth phases were developed at initial substrate concentrations below that required for support of the maximum exponential growth rate and a constant doubling time was maintained until 50% of the substrate had been used. It is suggested that the external substrate concentration initially present "sets" the specific growth rate by establishing a steady-state internal concentration of substrate, possibly through control of the number of permeation sites.

Culture Media↗