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New Insights Into Erythropoietin and Epoetin Alfa: Mechanisms of Action, Target Tissues, and Clinical Applications

艾博汀阿尔法 促红细胞生成素 医学 红细胞生成 癌症 促红细胞生成素受体 贫血 内科学 药理学 肿瘤科
作者
Mitchell J. Weiss
出处
期刊:Oncologist [AlphaMed Press]
卷期号:8 (S3): 18-29 被引量:66
标识
DOI:10.1634/theoncologist.8-suppl_3-18
摘要

Abstract Learning Objectives After completing this course, the reader will be able to: Discuss the mechanism of action of endogenous erythropoietin and the therapeutic use of epoetin alfa to stimulate red blood cell production and improve the quality of life in patients with cancer. Explain how epoetin alfa is being investigated in alternate dosing regimens and for anemia prevention in patients with cancer. Describe how functional endogenous erythropoietin receptor signaling pathways have been demonstrated in numerous nonerythropoietic tissues, including in the central nervous system, and relate evidence for the roles of erythropoietin and epoetin alfa beyond erythropoiesis, including the therapeutic implications of these nonerythroid functions. Access and take the CME test online and receive one hour of AMA PRA category 1 credit at CME.TheOncologist.com Recombinant human erythropoietin (epoetin alfa) has proven beneficial for the treatment of various anemias. The mechanism of action of endogenous erythropoietin and the therapeutic use of epoetin alfa to stimulate red blood cell production and improve the quality of life in cancer patients are reviewed here. Epoetin alfa may also attenuate the cognitive dysfunction associated with cancer therapy. Interestingly, functional endogenous erythropoietin receptor signaling pathways have been demonstrated in numerous nonerythropoietic tissues. Of particular importance, epoetin alfa confers neurotrophic and neuroprotective effects in cultured neurons and in several animal models for neurologic disease. In one clinical trial, epoetin alfa appeared to limit functional and histologic damage in patients with stroke. Therefore, in cancer patients receiving chemotherapy, the beneficial effects of epoetin alfa could be mediated not only through enhanced erythrocyte production but also via direct effects on the nervous system. Further investigation into the nonerythropoietic effects of epoetin alfa could broaden its clinical utility for patients with cancer and also provide new therapies for various neurologic disorders.
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