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177LuLu-PSMA-617 Salivary Gland Uptake Characterized by Quantitative In Vitro Autoradiography

机译:177Lu Lu-PSMA-617唾液腺摄取的体外放射自显影定量研究

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摘要

Irradiation of salivary glands remains the main dose-limiting side effect of therapeutic PSMA-inhibitors, especially when using alpha emitters. Thus, further advances in radiopharmaceutical design and therapy strategies are needed to reduce salivary gland uptake, thereby allowing the administration of higher doses and potentially resulting in improved response rates and better tumor control. As the uptake mechanism remains unknown, this work investigates the salivary gland uptake of [177Lu]Lu-PSMA-617 by autoradiography studies on pig salivary gland tissue and on PSMA-overexpressing LNCaP cell membrane pellets. Displacement studies were performed with non-labeled PSMA-617 and 2-PMPA, respectively. The uptake of [177Lu]Lu-PSMA-617 in glandular areas was determined to be partly PSMA-specific, with a high non-specific uptake fraction. The study emphasizes that [177Lu]Lu-PSMA-617 accumulation in pig salivary glands can be attributed to a combination of both specific and non-specific uptake mechanisms. The observation is of high impact for future design of novel radiopharmaceuticals addressing the dose-limiting salivary gland irradiation of current alpha endoradiotherapy in prostate cancer.
机译:唾液腺的辐射仍然是治疗性PSMA抑制剂的主要剂量限制副作用,尤其是在使用α发射体时。因此,需要放射性药物设计和治疗策略的进一步发展以减少唾液腺的摄取,从而允许更高剂量的给药,并可能导致改善的反应率和更好的肿瘤控制。由于摄取机制仍然未知,这项工作通过放射自显影研究对猪唾液腺组织和过表达PSMA的LNCaP细胞膜沉淀物进行了[ 177 Lu] Lu-PSMA-617唾液腺摄取的研究。位移研究分别使用未标记的PSMA-617和2-PMPA进行。腺体对[ 177 Lu] Lu-PSMA-617的吸收被确定为部分PSMA特异性的,具有较高的非特异性吸收率。该研究强调,[ 177 Lu] Lu-PSMA-617在猪唾液腺中的积累可归因于特异性和非特异性摄取机制的结合。该观察结果对解决目前前列腺癌中现有α内放射疗法的限制性唾液腺辐射的新型放射性药物的未来设计具有重大影响。

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