34 results on '"Agren A"'
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2. Penetration through nylon film containing a carrier
3. Proceedings: Pharmacokinetical evaluation of morphine induced analgesia in the rat
4. Complex formation between macromolecules and drugs. IV. Binding of sulfa drugs to human serum albumin at varying pH values
5. Rates of transfer of organic protolytic solutes between an aqueous and an organic phase. I. A study of the transfer dependency of pH and the absolute rate of resolvation
6. Complex formation between macromolecules and drugs. 8. Binding of saccharine, N-methyl saccharine, and the diuretic drugs hydroflumethiazide and bendroflumethiazide to human serum albumin
7. HYDROLYSIS OF PROTOLYTIC ESTERS. IV. SOLVOLYSIS OF PROCAINE IN ETHANOL-WATER
8. Hydrolysis of protolytic esters. V. Alkaline hydrolysis of some acetylenic esters
9. Complex formation between macromolecules and drugs. VI. Correlation of binding parameters for the binding of sulfa drugs to human serum albumin (HSA) with partition coefficients, thermodynamic values and quantum mechanical data
10. Copper-catalyzed hydrolysis of some esters and amides
11. Hydrolysis of protolytic esters. VI. Alkaline hydrolysis and ring closure of glycylglycine ethyl ester
12. Complex formation between macromolecules and drugs. IX. The competition between two sulfa drugs and phenobarbital, pentobarbital or phenoxymethyl penicillin for binding sites on human serum albumin
13. Complex formation between macromolecules and drugs. II. Binding of drug to the membrane in dialysis studies
14. Complex formation between macromolecules and drugs. VII. The binding of some barbiturates to human serum albumin (HSA) at varying pH
15. Complex formation between macromolecules and drugs. 3. A study of the influence of ionic strength and pH. Binding between Aptin, nortriptyline, sulfamethizole or tripelenamine and serum albumin, poly-arginine, poly-lysine, poly-ornithine, protamine or dextran sulfate
16. HYDROLYSIS OF PROTOLYTIC ESTERS. 3. COPPER-CATALYZED HYDROLYSIS OF ETHYL PICOLINATE
17. Penetration of organic compounds and ion pairs through nylon membranes.
18. Complex formation between macromolecules and drugs. X. Binding of tolbutamide, chlorpropamide and carbutamide to human serum albumin, and the competition between tolbutamide or chlorpropamide and carbutamide or 4-sulfanilamido-2,6-dimethylpyrimidine for binding sites on human serum albumin.
19. Proceedings: Pharmacokinetical evaluation of morphine induced analgesia in the rat.
20. Penetration through nylon film containing a carrier.
21. Hydrolysis of protolytic esters. V. Alkaline hydrolysis of some acetylenic esters.
22. Complex formation between macromolecules and drugs. 8. Binding of saccharine, N-methyl saccharine, and the diuretic drugs hydroflumethiazide and bendroflumethiazide to human serum albumin.
23. Complex formation between macromolecules and drugs. I. Dialysis studies of phenol and polyethylene glycol (PEG).
24. Copper-catalyzed hydrolysis of some esters and amides.
25. HYDROLYSIS OF PROTOLYTIC ESTERS. IV. SOLVOLYSIS OF PROCAINE IN ETHANOL-WATER.
26. Complex formation between macromolecules and drugs. 3. A study of the influence of ionic strength and pH. Binding between Aptin, nortriptyline, sulfamethizole or tripelenamine and serum albumin, poly-arginine, poly-lysine, poly-ornithine, protamine or dextran sulfate.
27. Complex formation between macromolecules and drugs. IX. The competition between two sulfa drugs and phenobarbital, pentobarbital or phenoxymethyl penicillin for binding sites on human serum albumin.
28. HYDROLYSIS OF PROTOLYTIC ESTERS. 3. COPPER-CATALYZED HYDROLYSIS OF ETHYL PICOLINATE.
29. Complex formation between macromolecules and drugs. IV. Binding of sulfa drugs to human serum albumin at varying pH values.
30. Rates of transfer of organic protolytic solutes between an aqueous and an organic phase. I. A study of the transfer dependency of pH and the absolute rate of resolvation.
31. Complex formation between macromolecules and drugs. VI. Correlation of binding parameters for the binding of sulfa drugs to human serum albumin (HSA) with partition coefficients, thermodynamic values and quantum mechanical data.
32. Complex formation between macromolecules and drugs. II. Binding of drug to the membrane in dialysis studies.
33. Hydrolysis of protolytic esters. VI. Alkaline hydrolysis and ring closure of glycylglycine ethyl ester.
34. Complex formation between macromolecules and drugs. VII. The binding of some barbiturates to human serum albumin (HSA) at varying pH.
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