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The Contributions of Paul Ehrlich to Pharmacology: A Tribute on the Occasion of the Centenary of His Nobel Prize

机译:保罗·埃里希(Paul Ehrlich)对药理学的贡献:纪念百年诺贝尔奖获得者

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摘要

On the centenary of Paul Ehrlich's Nobel Prize, this German researcher deserves to be remembered as a pioneer in a large number of scientific disciplines. As a result of his enthusiasm and scientific abilities, dedication, and contacts with other scientists of his time, he was able to make countless contributions in fields as diverse as histology, haematology, immunology, oncology, microbiology and pharmacology, among others. Although the Swedish award was meant to recognize the standardization of the manufacture of antidiphtheria serum, it was the discovery of arsphenamine (Salvarsan) for the treatment of syphilis which won him wider international acclaim. From a pharmacological perspective, Ehrlich's outstanding contributions include dissemination of the ‘magic bullet’ concept for the synthesis of antibacterials, introduction of concepts such as chemoreceptor and chemotherapy, and linking the chemical structure of compounds to their pharmacological activity. These achievements took place within the framework he established for the transition from experimental pharmacology to therapeutic pharmacology. He introduced a modern research system based on the synthesis of multiple chemical structures for pharmacological screening in animal models of disease states. These contributions were undoubtedly decisive in propitiating the wider development of antibiotics decades later. For these reasons, it is fitting to mark the 100th anniversary of the Nobel Prize awarded to this great scientist by commemorating the importance of his contributions to the advance of pharmacology.
机译:在保罗·埃里希(Paul Ehrlich)的诺贝尔奖一百周年之际,这位德国研究人员应被铭记为众多科学学科的先驱。由于他的热情和科学能力,奉献精神以及与他那个时代其他科学家的联系,他能够在组织学,血液学,免疫学,肿瘤学,微生物学和药理学等众多领域做出无数贡献。尽管瑞典大奖旨在表彰抗白喉血清生产的标准化,但发现用于治疗梅毒的阿斯非明(Salvarsan)使他在国际上赢得了广泛赞誉。从药理学的角度来看,Ehrlich的杰出贡献包括传播了用于合成抗菌剂的“魔弹”概念,引入了化学感受器和化学疗法等概念,并将化合物的化学结构与其药理活性联系起来。这些成就发生在他建立的从实验药理学向治疗药理学过渡的框架内。他介绍了一种基于多种化学结构合成的现代研究系统,用于疾病状态动物模型的药理筛选。这些贡献无疑在数十年后推动抗生素的更广泛发展中起决定性作用。由于这些原因,通过纪念诺贝尔奖授予这位伟大的科学家100周年纪念,以纪念他对药理学进步的重要性是恰当的。

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