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用于改善连接子结构的紫杉醇-抗体偶联物的位点特异性追踪药物释放及生物分布

Site-specifically traced drug release and biodistribution of a paclitaxel-antibody conjugate toward improvement of the linker structure.

作者信息

Safavy Ahmad, Georg Gunda I, Vander Velde David, Raisch Kevin P, Safavy Kamellia, Carpenter Mark, Wang Wenquan, Bonner James A, Khazaeli M B, Buchsbaum Donald J

机构信息

Department of Radiation Oncology and Medicine, Biostatistics and Bioinformatics Unit, and Comprehensive Cancer Center, University of Alabama at Birmingham, Birmingham, Alabama 35294, USA.

出版信息

Bioconjug Chem. 2004 Nov-Dec;15(6):1264-74. doi: 10.1021/bc049868v.

Abstract

Tumor-directed drug delivery is a promising strategy in cancer treatment, and in this field, monoclonal antibodies constitute an important class of targeting vehicles. A critical issue in the design of targeting conjugates is the timing of the release of the cytotoxic payload, with the ideal situation being the release at the maximum tumor uptake of the targeting molecule. A site-specific radiolabeling technique was used to elucidate the biodistribution and in vivo drug release pattern of an antibody conjugate of paclitaxel (PTX, 1, Figure 1) in which the drug and the antibody moieties were connected by a succinate (SX) linker. In this new method, a metabolite of PTX, 3'-(4-hydroxyphenyl)paclitaxel (3'-OH-PTX, 2, Figure 1) was used as a tyrosine mimic for the synthesis of the drug site-labeled conjugate (DSL, [(125)I]-3'-OH-PTXSXC225). This was achieved by iodogen (125)I-labeling of 3'-OH-PTXSX and subsequent conjugation to C225. The antibody site-labeled conjugate (ASL, PTXSX-[(125)I]-C225) was prepared by direct radioiodination of PTXSXC225. Biodistribution of these compounds was studied in Balb/c nude mice bearing DU-145 human prostate carcinoma xenografts. While the 4 and 24 h tumor uptake (in percent injected dose per gram of tissue, %ID/g) for [(125)I]-3'-OH-PTXSXC225 were 3.3 +/- 1.5 and 1.7 +/- 0.6%ID/g, the PTXSX-[(125)I]-C225 showed tumor uptake values of 3.8 +/- 4.2 and 14.8 +/- 4.2%ID/g at these time points. This difference in the tumor uptake over time indicates an early cleavage of the drug with respect to the antibody tumor localization. This was further confirmed by an in vitro drug release kinetics study leading to a half-life of about 2 h for PTXSXC225 under physiological conditions. To increase the stability of the PTX-MAb bond, a new conjugate (PTXGLC225) with glutaric acid (GL) as the linker was synthesized. Under the same conditions, the PTXGLC225 showed a 16-fold increase in the half-life (t(1/2)) of the drug release. The effect of the increased t(1/2) of this compound on the antitumor activity of the conjugate was tested in a DU-145 human prostate tumor-implanted mouse model. In comparison to a previous similar experiment with PTXSXC225, better antitumor activity was observed for the PTXGLC225 conjugate as compared to controls. These results demonstrated the first time use of radioiodinated 3'-OH-PTX for in vivo tracing of a paclitaxel conjugate and application of the resulting information to the design of a therapeutically more useful PTX-MAb linker.

摘要

肿瘤导向药物递送是癌症治疗中一种很有前景的策略,在该领域中,单克隆抗体构成了一类重要的靶向载体。靶向缀合物设计中的一个关键问题是细胞毒性载荷的释放时机,理想情况是在靶向分子的肿瘤摄取量达到最大值时释放。采用一种位点特异性放射性标记技术来阐明紫杉醇(PTX,1,图1)抗体缀合物的生物分布和体内药物释放模式,其中药物和抗体部分通过琥珀酸(SX)连接子相连。在这种新方法中,PTX的一种代谢物3'-(4-羟基苯基)紫杉醇(3'-OH-PTX,2,图1)被用作酪氨酸模拟物,用于合成药物位点标记的缀合物(DSL,[(125)I]-3'-OH-PTXSXC225)。这是通过碘代生成法对3'-OH-PTXSX进行(125)I标记,随后与C225偶联来实现的。抗体位点标记的缀合物(ASL,PTXSX-[(125)I]-C225)通过对PTXSXC225直接进行放射性碘化制备。在携带DU-145人前列腺癌异种移植瘤的Balb/c裸鼠中研究了这些化合物的生物分布。[(125)I]-3'-OH-PTXSXC_{225}在4小时和24小时的肿瘤摄取量(每克组织注射剂量的百分比,%ID/g)分别为3.3±1.5和1.7±0.6%ID/g,而PTXSX-[(125)I]-C_{225}在这些时间点的肿瘤摄取量分别为3.8±4.2和14.8±4.2%ID/g。随着时间推移,肿瘤摄取量的这种差异表明药物相对于抗体在肿瘤部位的定位发生了早期裂解。体外药物释放动力学研究进一步证实了这一点,该研究表明PTXSXC_{225}在生理条件下的半衰期约为2小时。为了提高PTX与单克隆抗体(MAb)键的稳定性,合成了一种以戊二酸(GL)作为连接子的新缀合物(PTXGLC_{225})。在相同条件下,PTXGLC_{225}的药物释放半衰期(t_{1/2})增加了16倍。在DU-145人前列腺肿瘤植入小鼠模型中测试了该化合物增加的t_{1/2}对缀合物抗肿瘤活性的影响。与之前用PTXSXC_{225}进行类似实验相比,PTXGLC_{225}缀合物与对照组相比表现出更好的抗肿瘤活性。这些结果首次证明了放射性碘化的3'-OH-PTX用于体内追踪紫杉醇缀合物,并将所得信息应用于设计治疗上更有用的PTX-MAb连接子。

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