arrow
返回

Targeted α-therapy:: past, present, future?

delete2007-01-01
delete129
delete
OA
AI
M
Martin W. Brechbiel *
DOI:10.1039/b704726fdelete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
Monoclonal antibodies have become a viable strategy for the delivery of therapeutic, particle emitting radionuclides specifically to tumor cells to either augment anti-tumor action of the native antibodies or to solely take advantage of their action as targeting vectors. Proper and rational selection of radionuclide and antibody combinations is critical to making radioimmunotherapy ( RIT) a standard therapeutic modality due to the fundamental and significant differences in the emission of either alpha- and beta-particles. The alpha-particle has a short path length ( 50-80 mu m) that is characterized by high linear energy transfer ( 100 keV mu m(-1)). Actively targeted alpha-therapy potentially offers a more specific tumor cell killing action with less collateral damage to the surrounding normal tissues than beta-emitters. These properties make targeted alpha-therapy an appropriate therapy to eliminate minimal residual or micrometastatic disease. RIT using alpha-emitters such as Bi-213, At-211, Ac-225, and others has demonstrated significant activity in both in vitro and in vivo model systems. Limited numbers of clinical trials have progressed to demonstrate safety, feasibility, and therapeutic activity of targeted alpha-therapy, despite having to traverse complex obstacles. Further advances may require more potent isotopes, additional sources and more efficient means of isotope production. Refinements in chelation and/or radiolabeling chemistry combined with rational improvements of isotope delivery, targeting vectors, molecular targets, and identification of appropriate clinical applications remain as active areas of research. Ultimately, randomized trials comparing targeted alpha-therapy combined with integration into existing standards of care treatment regimens will determine the clinical utility of this modality.
Keyword:
BIFUNCTIONAL CHELATING-AGENT
IN-VIVO STABILITY
MONOCLONAL-ANTIBODIES
PARTICLE RADIOIMMUNOTHERAPY
EMITTING RADIONUCLIDE
CARCINOMA XENOGRAFTS
MAMMALIAN-CELLS
ACETIC ACIDS
BI-213
RADIOTOXICITY

期刊

Dalton Transactions 封面图
Dalton Transactions
IF:
3.3
论文数:
3.3W
被引数:
7.5W

机构

暂无机构信息
引用论文

引用论文

Origin and deposition of organic matter in continental chert of the Middle Permian Gufeng Formation in the northeastern Yangtze platform
err2007-09-01
err0
PREAI
errMasamichi Takebe; Masao Kametaka; Yukio Takayanagi; Koichi Mimura; Kenichiro Sugitani; Koshi Yamamoto
err分享
err收藏
Multisite Lymphaticovenular Anastomosis Using Vein Graft for Uterine Cancer-Related Lymphedema After Pelvic Lymphadenectomy
err2015-10-29
err0
PREAI
errTakumi Yamamoto; Hidehiko Yoshimatsu; Nana Yamamoto; Ai Yokoyama; Takao Numahata; Isao Koshima
err分享
err收藏
213Bi-[DOTA0,Tyr3]octreotide peptide receptor radionuclide therapy of pancreatic tumors in a preclinical animal model
err2006-02-07
err97
errOAAI
errNorenberg, JP; Krenning, BJ; Konings, IRHM; Kusewitt, DF; Nayak, TK; Anderson, TL; de Jong, M; Garmestani, K; Brechbiel, MW; Kvols, LK
err分享
err收藏
err分享
err收藏
Antibody-targeted radiation cancer therapy
err2004-06-01
err363
errOAAI
errMilenic, DE; Brady, ED; Brechbiel, MW
err分享
err收藏
Anomia without dyslexia in Chinese
err2008-01-17
err0
PREAI
errBrendan S. Weekes; May Jane Chen; Yin Wen Gang
err分享
err收藏
err分享
err收藏
学者 查看更多内容