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The variability of AOAC methods of analysis as used in analytical pharmaceutical chemistry.

Pharmaceutical analytical chemistry, which ordinarily deals with the analysis of formulations containing from 0.1 to 100% of active ingredient, uses methods with a reproducibility (between-laboratory variability) of about 2.5% and a repeatability (within-laboratory variability) of about half that amount. The best between-laboratory precision attainable appears to be about 1.0% and within-laboratory precision, about 0.5%. On the basis of the results available, automated methods do not appear to be any more precise than manual methods, although the studies show fewer outlying data points. Replicates (preferably blind ones) should always be conducted in a collaborative interlaboratory study in order to obtain the important information as to whether efforts should be concentrated on improving the method itself or on the performance of laboratories and analysis in applying it.

Chemistry, Pharmaceutical↗

[The Brno School of Pharmaceutical Chemistry].

The Brno School of Pharmaceutical Chemistry began to form when RNDr. PhMr. Bohuslav Melichar came to the Institute of Pharmaceutical Chemistry of Masaryk University of Brno in 1945. Together with other lecturers, particularly RNDr. PhMr. Ales Sekera, they created a new conception of pharmaceutical chemistry based on the classification of chemical drugs according to their pharmacological effect, the principal emphasis being laid on the investigation of dependences between the chemical structures and their effects. The discipline was divided into theoretical-systematical, control-analytical and synthetic parts. The development of the conception continued after 1960 at the Faculty of Pharmacy, Comenius University, Bratislava, and after 1969 at the Faculty of Pharmacy, Charles University, Hradec Králové. A large number of workers, lecturers who educated numerous experts for research and practice, participated in the School within this period.

Chemistry, Pharmaceutical↗

[The origins of the Brno School of Pharmacy and the development of pharmaceutical chemistry as an important discipline].

After the foundation of the course of pharmaceutical studies at Masaryk University in Brno in 1945, its Institute of Pharmaceutical Chemistry has been founded. In pharmaceutical chemistry, which was divided into the theoretical, synthetic and control-analytical parts, a system of classification was worked out based on classification of drugs according to the kind of effect for which it serves. This conception was incorporated into three editions of the book Chemická léciva (Chemical Drugs). The research programme of the Institute solved the development of novel local anaesthetic and antituberculous agents. After the disestablishment of the Faculty of Pharmacy in Brno, the development of pharmaceutical chemistry, continued at the Department of Pharmaceutical Chemistry, Comenius University, Bratislava, and beginning with 1969 at Charles University Faculty of Pharmacy in Hradec Králové.

Czechoslovakia↗

Bioconjugation in pharmaceutical chemistry.

Polymer conjugation is of increasing interest in pharmaceutical chemistry for delivering drugs of simple structure or complex compounds such peptides, enzymes and oligonucleotides. For long time drugs, mainly with antitumoral activity, have been coupled to natural or synthetic polymers with the purpose of increasing their blood permanence time, taking advantage of the increased mass that reduces kidney ultrafiltration. However only recently complex constructs were devised that exploit the 'enhanced permeability and retention' (EPR) effect for an efficient tumor targeting, the high molecular weight for adsorption or receptor mediated endocytosis and finally a lysosomotropic targeting, taking advantage of acid labile bonds or cathepsin susceptible polypeptide spacers between polymer and drug. New original, very active conjugates of this type, as those based on poly(hydroxyacrylate) polymers, are already in advanced state of development. Labile oligonucleotides, including antisense drugs, were also successfully coupled to polymers in view of an increased cell penetration and stabilization towards nucleases. However, the most active research activity resides in the field of polypeptides and proteins delivery, mainly for the two following reasons: first of all because a great number of therapeutically interesting compounds are now being produced by genetic engineering in large quantity and, secondly, because these products are difficult to administer to patients for several inherent drawbacks. Proteins are in fact easily digested by many endo- and exo-peptidases present in blood or in other body districts; most of them are immunogenic to some extent and, finally, they are rapidly excreted by kidney ultrafiltration. Covalent polymer conjugation at protein surface was demonstrated to reduce or eliminate these problems, since the bound polymer behaves like a shield hindering the approach of proteolytic enzymes, antibodies, or antigen processing cell. Furthermore, the increase of the molecular weight of the conjugate allows to overcome the kidney elimination threshold. Many successful results were already obtained in peptides and proteins, conjugated mainly to water soluble or amphiphilic polymers like poly(ethylene glycol) (PEG), dextrans, or styrenemaleic acid anhydride. Among the most successful are the conjugates of asparaginase, interleukin-2 or -6 and neocarcinostatin, to remind some antitumor agents, adenosine deaminase employed in a genetic desease treatment, superoxide dismutase as scavenger of toxic radicals, hemoglobin as oxygen carrier and urokinase and streptokinase as proteins with antithrombotic activity. In pharmaceutical chemistry the conjugation with polymers is also of great importance for synthetic applications since many enzymes without loss of catalytic activity become soluble in organic solvents where many drug precursors are. The various and often difficult chemical problems encountered in conjugation of so many different products prompted the development of many synthetic procedures, all characterized by high specificity and mild condition of reaction, now known as 'bioconjugation chemistry'. Bioconjugation developed also the design of new tailor-made polymers with the wanted molecular weight, shape, structure and with the functional groups needed for coupling at the wanted positions in the chain.

Animals↗