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Titlebook: Antineoplastic and Immunosuppressive Agents; Part I Alan C. Sartorelli (Professor),David G. Johns Book 1974 Springer-Verlag Berlin · Heidel

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Fused Salt Electrolysis and Electrothermicsllular processes. No exploitable unique biochemical processes have been discovered which make neoplastic cells more sensitive to chemotherapeutic agents than dividing normal cells. The selectivity of most antineoplastic agents depends, in part at least, upon particular differences in cell growth kinetics and pharmacologic effects of drug exposure.
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Electrodeposition and Surface Finishing neoplastic disease, demonstrates that such selectivity can be achieved even in man. However, the large number of patients who still die of malignant disease testify that selectivity of drug action is not attained with sufficient frequency or reliability.
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Rational Design of Pyrimidine Nucleoside Analogshe chemotherapeutic approach to oncology has been rather empirical with the major successes being noted with drugs which are generally more toxic to rapidly proliferating cells. Most of these cytotoxic anticancer agents act primarily as inhibitors of nucleic acid synthesis at various sites and by different mechanisms.
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Book 1974on the basic and applied pharmacology and biochemical mechanism of action of antineoplastic and immunosuppressive agents. The logarithmic growth of knowledge in this field has made it progressively more difficult to do justice to all aspects of this topic, and it is possible that the present handboo
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Electrochemical Crystal Growth,f folate biochemistry, and second, by consideration of new areas of considerable promise, more truly rational approaches will be discussed which could greatly enhance the therapeutic utility of these agents.
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Rational Design of Folic Acid Antagonistsf folate biochemistry, and second, by consideration of new areas of considerable promise, more truly rational approaches will be discussed which could greatly enhance the therapeutic utility of these agents.
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