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Biomedical subjects

E B Berkhin

Publications and source records attributed to E B Berkhin.

At least 19 recordsLinked to original sources

Regulation of renal tubular secretion of organic compounds.

BACKGROUND: Information on the molecular basis underlying organic anion and cation transport in renal tubules has expanded in recent years with the identification and characterization of numerous transporters. However, little is known about the regulation of this transport. METHODS: Both English and Russian language studies dealing with the regulation of organic ion transport by the kidney have been reviewed. RESULTS: This review summarizes the literature on the physiological and pharmacological aspects of the regulation of organic ion transport, linking this information where possible to underlying transport mechanisms. Current models of the tubular secretion of organic anions and cations are reviewed. Factors that inhibit or enhance tubular secretion of xenobiotics are described, and their influence on proximal tubule cell transport and function is discussed. Important roles for substrate stimulation, the adrenergic nervous system, numerous hormones, P-glycoprotein, and protein kinase C activity have been identified. CONCLUSIONS: Despite considerable advances in the understanding of basic transport pathways and mechanisms involved in the tubular secretion of organic compounds, there is still relatively little information on the regulation of this transport. Studies combining the techniques of integrative and cell physiology and molecular biology will provide significant new insights into the pathways regulating the tubular transport of these compounds.

Animals↗

[Effect of taktivin on diuresis and tubular cardiotrast secretion in the kidney].

The effect of a new immunomodulator taktivin (7-20 micrograms/kg subcutaneously, for 6 days) on the diuresis and tubular transport of cardiotrast (diodrast) was studied on rats. taktivin was shown to increase the tubular transport of the xenobiotic without significant changes in glomerular filtration and renal excretion of water, sodium, potassium, uric acid and creatinine. Possible mechanism of taktivin's action on the tubular transport of xenobiotics is discussed.

Adjuvants, Immunologic↗

[Effect of zixoryn on diuresis and renal transport of xenobiotics].

A new inducer of the monooxygenase system zixoryn (oral dose--100 mg/kg, for 4 days) increased the excretion and maximum tubular transport of cardiotrast (diodrast) in rats. Zixoryn had no effect on daily and water diuresis and renal excretion of sodium, potassium and creatinine.

Animals↗

[Effect of immunostimulants on kidney tubule secretion of xenobiotics].

Excretion of cardiotrast (diotrast) was used to study tubular secretion of organic compounds in rats. Immunostimulants prodigiosin (0.05 mg/kg) and levamisole (10 mg/kg) injected subcutaneously three times every other day increased cardiotrast excretion. High levamisole dose (50 mg/kg), having no stimulating effect on the immunity, failed also to influence tubular cardiotrast transport. Possible mechanisms of immunostimulants' action on the tubular secretion of xenobiotics is discussed.

Adjuvants, Immunologic↗

[Mechanism of transport of secreted organic substances through kidney tubule cells].

Vinblastin or copper chloride inhibiting the microtubules, decrease tubular excretion of cardiotrast in rats. After incubation of the kidney tissue homogenat at pH 9.0 the augmentation of inorganic phosphate was more obvious in rats preliminarily injected with cardiotrast. The data obtained indicate the possible role of microtubules in the tubular secretion of organic substances and the participation of phosphorylation in this process.

Animals↗

[New data on the mechanism of organic substance secretion by the kidney].

The substrate stimulation of renal secretory transport of cardiotrast and penicillin have been studied in conscious rats. This phenomenon takes place not only after repeated injections of substrates three times daily during three days but also after administration of the compounds for two or one days or twice daily with interval of two hours. The tubular secretion of organic substances seems to be the substrate inducing process.

Adaptation, Physiological↗