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放射免疫疗法:近期成果与未来方向。

Radioimmunotherapy: recent results and future directions.

作者信息

Wilder R B, DeNardo G L, DeNardo S J

机构信息

Department of Radiation Oncology, University of California Davis School of Medicine, Sacramento, CA, USA.

出版信息

J Clin Oncol. 1996 Apr;14(4):1383-400. doi: 10.1200/JCO.1996.14.4.1383.

Abstract

PURPOSE

To review antibody structure, function, and production; suitable radioisotopes for radioimmunotherapy; challenges facing the field; recent clinical results; toxicity; and future directions.

DESIGN

The radioimmunotherapy literature was reviewed, with an emphasis on clinical results and future directions.

RESULTS

The highest complete response rates (overall, approximately 50%) have been achieved in patients with B-cell non-Hodgkin's lymphoma. Challenges that currently face radioimmunotherapy include circulating free antigen, binding of antibodies to nonspecific Fc receptors, insufficient tumor penetration, antigenic heterogeneity and insufficient antigen expression, antigenic modulation, and development of human antimouse antibodies. Possible approaches to these challenges, including high-dose radioimmunotherapy and chemotherapy followed by autologous bone marrow transplantation, the use of radionuclides such as yttrium 90 (90Y) and copper 67 (67Cu), and the development of humanized and bifunctional antibodies, are under investigation.

CONCLUSION

Although radioimmunotherapy is a relatively new field, substantial progress has been made. Additional research will ultimately resolve many of the challenges that currently face radioimmunotherapy and hopefully lead to the cure of some currently incurable malignancies.

摘要

目的

综述抗体的结构、功能及产生;适用于放射免疫治疗的放射性同位素;该领域面临的挑战;近期临床结果;毒性以及未来发展方向。

设计

对放射免疫治疗文献进行综述,重点关注临床结果和未来发展方向。

结果

B细胞非霍奇金淋巴瘤患者取得了最高的完全缓解率(总体约为50%)。放射免疫治疗目前面临的挑战包括循环游离抗原、抗体与非特异性Fc受体的结合、肿瘤穿透不足、抗原异质性和抗原表达不足、抗原调制以及人抗鼠抗体的产生。针对这些挑战的可能方法,包括高剂量放射免疫治疗和化疗后自体骨髓移植、使用钇90(90Y)和铜67(67Cu)等放射性核素以及开发人源化和双功能抗体,正在研究中。

结论

尽管放射免疫治疗是一个相对较新的领域,但已取得了实质性进展。进一步的研究最终将解决放射免疫治疗目前面临的许多挑战,并有望治愈一些目前无法治愈的恶性肿瘤。

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