111in -戊肽原位放疗。技术现状和观点。

K E McCarthy, E A Woltering, L B Anthony
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引用次数: 0

摘要

in - pentreotide (Octreoscan)和其他放射标记的生长抑素类似物在治疗分化良好的神经内分泌恶性肿瘤(如类癌或胰岛细胞肿瘤)中很有用。这些放射性肽与膜结合的生长抑素受体(sst 1-5)结合,这些受体在多种肿瘤中过度表达,特别是那些来自神经外胚层的肿瘤。影像学的进步允许通过结合放射性来无创地确定sst受体的存在[111]铟与生长抑素类似物dtpa - d -phe1-奥曲肽(戊曲肽)]。放射性标记的生长抑素类似物与膜受体结合并发生复合物的内化。释放生长抑素类似物为控制肿瘤疾病提供了一种新颖且毒性显著较低的方法,通过将靶向辐射特异性地传递给受体承载细胞,同时保留受体阴性细胞。高剂量(6-19.6 GBq) 111In-pentetreotide特异性靶向肿瘤生长抑素受体治疗85例转移性神经内分泌肿瘤患者的应答率为62-69%。客观反应包括生化和放射学反应,生存时间延长。本文将讨论和回顾迄今为止可获得的多中心数据,放射性标记生长抑素类似物的作用机制,剂量学,临床反应参数和毒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In situ radiotherapy with 111In-pentetreotide. State of the art and perspectives.

111In-pentetreotide (Octreoscan) and other radiolabeled somatostatin analogs are useful in the management of well differentiated neuroendocrine malignancies such as carcinoid or islet cell neoplasms. These radiopeptides bind to membrane bound somatostatin receptors (sst 1-5) which are over-expressed in a wide variety of neoplasms, especially those arising from the neuroectoderm. Imaging advances allow for the noninvasive determination of the presence of sst receptors by combining radioactivity [111Indium with a somatostatin analog, DTPA-D-phe1-octreotide (pentetreotide)]. Radiolabeled somatostatin analogs bind to membrane receptors and internalization of the complex occurs. Auger emitting somatostatin analogs offer a novel and significantly less toxic approach to controlling neoplastic diseases by delivering targeted radiation specifically to receptor bearing cells while sparing receptor negative cells. Responses of 62-69% in 85 patients with metastatic neuroendocrine tumors treated with high dose (6-19.6 GBq) 111In-pentetreotide, specifically targeting tumor somatostatin receptors, have been reported. Objective responses observed included biochemical and radiographic responses with prolonged survival. This article will discuss and review the multi-center data available to date, the mechanisms of action of radiolabeled somatostatin analogs, dosimetry, clinical response parameters, and toxicity.

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