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合成及 Lu 标记 HER2 靶向 A9 肽的首个反向模拟物:一种更优的变体。

Synthesis and Lu Labeling of the First Retro Analog of the HER2-Targeting A9 Peptide: A Superior Variant.

机构信息

Radiopharmaceuticals Division, Bhabha Atomic Research Centre, Mumbai, Maharashtra 400085, India.

Homi Bhabha National Institute, Mumbai 400094, India.

出版信息

Bioconjug Chem. 2023 Sep 20;34(9):1576-1584. doi: 10.1021/acs.bioconjchem.3c00265. Epub 2023 Jun 28.

Abstract

The retro analog of the HER2-targeting A9 peptide was synthesized by coupling amino acids in a reverse fashion and switching the N-terminal in the original sequence of the L-A9 peptide (QDVNTAVAW) to the C-terminal in rL-A9 (WAVATNVDQ). Modification in the backbone resulted in higher conformational stability of the retro peptide as evident from CD spectra. Molecular docking analysis revealed a higher HER2 binding affinity of [Lu]Lu-DOTA-rL-A9 than the original radiopeptide [Lu]Lu-DOTA-L-A9. Enormously enhanced metabolic stability of the retro analog led to significant elevation in tumor uptake and retention. SPECT imaging studies corroborated biodistribution results demonstrating a remarkably higher tumor signal for [Lu]Lu-DOTA-rL-A9. The presently studied retro probe has promising efficiency for clinical screening.

摘要

通过反向偶联氨基酸并将原始 L-A9 肽(QDVNTAVAW)序列中的 N 端切换到 rL-A9 的 C 端,合成了 HER2 靶向 A9 肽的 retro 类似物。骨干的修饰导致 retro 肽的构象稳定性更高,这从 CD 光谱中可以明显看出。分子对接分析表明,与原始放射性肽 [Lu]Lu-DOTA-L-A9 相比,[Lu]Lu-DOTA-rL-A9 对 HER2 的结合亲和力更高。 retro 类似物的代谢稳定性大大提高,导致肿瘤摄取和滞留显著增加。SPECT 成像研究证实了生物分布结果,表明 [Lu]Lu-DOTA-rL-A9 的肿瘤信号显著更高。目前研究的 retro 探针具有用于临床筛查的有前途的效率。

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