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用于α-klotho成像的锆-89正电子发射断层显像技术的研发

Development of zirconium-89 PET for imaging of alpha-klotho.

作者信息

Lau Wei Ling, Liang Christopher, Liu Han, Singh Karanveer, Mukherjee Jogeshwar

机构信息

Nephrology, Department of Medicine, University of California-Irvine Irvine, CA 92697, USA.

Preclinical Imaging, Radiological Sciences, University of California-Irvine Irvine, CA 92697, USA.

出版信息

Am J Nucl Med Mol Imaging. 2020 Apr 15;10(2):95-105. eCollection 2020.

Abstract

Alpha-klotho is a single-pass membrane protein primarily expressed by the kidneys. Klotho deficiency in chronic kidney disease contributes to an accelerated aging phenotype. We report here development of [Zr]DFO-anti-klotho positron emission tomography (PET) imaging as a novel non-invasive method for assessing whole-body alpha-klotho distribution. Rat monoclonal anti-mouse klotho antibody was reacted with SCN-Bn-deferoxamine (DFO) and was radiolabeled using Zirconium-89. testing of [Zr]DFO-anti-mKlotho was done in a distal convoluted tubule kidney cell line and with 40-micron whole kidney sections from C57BL/6J mice. Competitive binding was assessed in co-incubation studies with unlabeled anti-mKlotho antibody. For testing, C57BL/6J mice were injected retro-orbitally with [Zr]DFO-anti-mKlotho and were scanned using Inveon PET/CT. Autoradiographs of kidney sections were obtained post-imaging on select animals. Radiochemical yield of [Zr]DFO-anti-mKlotho was >70% and radiochemical purity was confirmed by iTLC. Specific binding in the kidney cell line was reduced by 60% in the presence of unlabeled anti-mKlotho. In the PET/CT scans, initial uptake of [Zr]DFO-anti-mKlotho was observed in the intestines and liver. Selective retention of radioactivity was observed in the kidneys in the subsequent 24, 48, and 72 hrs scans with cortical binding of [Zr]DFO-anti-mKlotho clearly visualized. Sites of lower alpha-klotho expression were not visualized. In summary, we have successfully synthesized [Zr]DFO-anti-mKlotho and our initial and studies in mice demonstrate selective binding in the kidney cortex, which is known to express high levels of alpha-klotho. PET imaging promises to be a novel tool for evaluation of alpha-klotho distribution.

摘要

α-klotho是一种单次跨膜蛋白,主要由肾脏表达。慢性肾病中的Klotho缺乏会导致加速衰老的表型。我们在此报告[Zr]DFO-抗klotho正电子发射断层扫描(PET)成像技术的开发,这是一种评估全身α-klotho分布的新型非侵入性方法。大鼠单克隆抗小鼠klotho抗体与SCN-Bn-去铁胺(DFO)反应,并使用锆-89进行放射性标记。[Zr]DFO-抗mKlotho在远曲小管肾细胞系和来自C57BL/6J小鼠的40微米全肾切片中进行测试。在与未标记的抗mKlotho抗体的共孵育研究中评估竞争性结合。为了进行测试,将[Zr]DFO-抗mKlotho经眶后注射到C57BL/6J小鼠体内,并使用Inveon PET/CT进行扫描。在选定的动物成像后获得肾脏切片的放射自显影片。[Zr]DFO-抗mKlotho的放射化学产率>70%,放射化学纯度通过即时薄层色谱法确认。在未标记的抗mKlotho存在下,肾细胞系中的特异性结合降低了60%。在PET/CT扫描中,在肠道和肝脏中观察到[Zr]DFO-抗mKlotho的初始摄取。在随后的24、48和72小时扫描中,在肾脏中观察到放射性的选择性保留,[Zr]DFO-抗mKlotho的皮质结合清晰可见。较低α-klotho表达的部位未显影。总之,我们成功合成了[Zr]DFO-抗mKlotho,并且我们在小鼠中的初步成像和研究表明在已知表达高水平α-klotho的肾皮质中有选择性结合。PET成像有望成为评估α-klotho分布的一种新型工具。

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