首次使用 89Zr 标记的白细胞进行人体感染成像,并将扫描质量与[99mTc]Tc-HMPAO 标记的白细胞进行比较

Maryke Kahts, Beverley Summers, Akhona Nkokheli Ndlela, A. Gutta, Phumudzo Nemutaduni, Andrew More, Aman Parsoo, T. Ebenhan, J. Zeevaart, Omer Aras, M. Sathekge
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A first-in-human study with [89Zr]Zr-oxine-leukocytes in four healthy volunteers was reported in 2022. Our first-in-human study utilising the cell surface labelling approach aimed to image infection in patients with the use of 89Zr-labelled leukocytes, using p-isothiocyanatobenzyl-desferrioxamine B (Df-Bz-NCS) as a bifunctional chelating agent, and to compare the scan quality and biodistribution of [89Zr]Zr-Df-Bz-NCS-labelled leukocytes on PET images to SPECT images obtained with [99mTc]Tc-HMPAO-labelled leukocytes.Leukocytes were isolated from whole-blood samples of eight patients with clinically and/or radiologically confirmed infection. Isolated leukocytes were labelled with [99mTc]Tc-HMPAO according to standardised methods, and [89Zr]Zr-Df-Bz-NCS according to our previously published radiolabelling method. 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引用次数: 0

摘要

核医学感染成像常规使用锝-99m 六甲基丙胺肟([99mTc]Tc-HMPAO)放射性标记的白细胞和单光子发射计算机断层扫描(SPECT)。正电子发射计算机断层扫描(PET)比 SPECT 更灵敏,图像质量更高。锆-89(89Zr)是一种正电子发射体,半衰期为 78.4 小时,这与完整细胞的生物半衰期和缓慢的生物分布相吻合,并允许延迟 PET 成像,以便更准确地将标记的白细胞生物分布到感染灶。据报道,2022 年在四名健康志愿者中首次进行了[89Zr]Zr-氧-白细胞的人体研究。我们首次采用细胞表面标记方法进行人体研究,旨在使用对异硫氰基苄基去铁胺 B(Df-Bz-NCS)作为双功能螯合剂,利用 89Zr 标记的白细胞对患者的感染情况进行成像、并比较 PET 图像上[89Zr]Zr-Df-Bz-NCS 标记的白细胞与 SPECT 图像上[99mTc]Tc-HMPAO 标记的白细胞的扫描质量和生物分布。从八名经临床和/或放射学证实感染的患者的全血样本中分离出白细胞。分离的白细胞按照标准化方法进行[99mTc]Tc-HMPAO标记,并按照我们之前公布的放射性标记方法进行[89Zr]Zr-Df-Bz-NCS标记。七名患者在注射[99mTc]Tc-HMPAO标记的白细胞后2小时和18小时进行了全身SPECT成像,在注射[89Zr]Zr-Df-Bz-NCS标记的白细胞后3小时和24小时进行了全身PET/CT成像。标记效率很高(81.7% ± 3.6%; n = 8)。观察到[89Zr]Zr-Df-Bz-NCS 标记的白细胞平均存活率很高(88.98% ± 12.51%)。患者的白细胞计数对[89Zr]Zr-Df-Bz-NCS-白细胞标记效率的影响不大。就准确检测感染的能力而言,[99mTc]Tc-HMPAO 和[89Zr]Zr-Df-Bz-NCS 标记的白细胞在七名患者中有两名患者的表现相似,而在一名股骨髓炎患者中,[99mTc]Tc-HMPAO 标记的白细胞优于[89Zr]Zr-Df-Bz-NCS 标记的白细胞。然而,在两例肺部病理病例中,[89Zr]Zr-Df-Bz-NCS 标记的白细胞显示出更好的病理吸收。虽然这项研究中[89Zr]Zr-Df-Bz-NCS-白细胞标记方面值得注意,但由于静脉注射的[89Zr]Zr-Df-Bz-NCS-白细胞被肺部捕获,感染成像并没有产生令人信服的积极结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
First-in-human infection imaging with 89Zr-labelled leukocytes and comparison of scan quality with [99mTc]Tc-HMPAO-labelled leukocytes
Nuclear medicine infection imaging is routinely performed with the use of leukocytes radiolabelled with technetium-99m hexamethylpropyleneamine oxime ([99mTc]Tc-HMPAO) and single-photon emission computed tomography (SPECT). Positron emission tomography (PET) is more sensitive than SPECT and results in higher-quality images. Zirconium-89 (89Zr) is a positron emitter with a half-life of 78.4 h, which translates to the biological half-life and slow biodistribution of intact cells and allows delayed PET imaging for more accurate biodistribution of the labelled leukocytes to infection foci. A first-in-human study with [89Zr]Zr-oxine-leukocytes in four healthy volunteers was reported in 2022. Our first-in-human study utilising the cell surface labelling approach aimed to image infection in patients with the use of 89Zr-labelled leukocytes, using p-isothiocyanatobenzyl-desferrioxamine B (Df-Bz-NCS) as a bifunctional chelating agent, and to compare the scan quality and biodistribution of [89Zr]Zr-Df-Bz-NCS-labelled leukocytes on PET images to SPECT images obtained with [99mTc]Tc-HMPAO-labelled leukocytes.Leukocytes were isolated from whole-blood samples of eight patients with clinically and/or radiologically confirmed infection. Isolated leukocytes were labelled with [99mTc]Tc-HMPAO according to standardised methods, and [89Zr]Zr-Df-Bz-NCS according to our previously published radiolabelling method. Whole-body SPECT imaging was performed 2 and 18 h post injection of [99mTc]Tc-HMPAO-labelled leukocytes, and whole-body PET/CT was performed 3 and 24 h post injection of [89Zr]Zr-Df-Bz-NCS-labelled leukocytes in seven patients.Successful [89Zr]Zr-Df-Bz-NCS-leukocyte labelling was achieved. High labelling efficiencies were obtained (81.7% ± 3.6%; n = 8). A mean high viability of [89Zr]Zr-Df-Bz-NCS-labelled leukocytes was observed (88.98% ± 12.51%). The [89Zr]Zr-Df-Bz-NCS-leukocyte labelling efficiency was not significantly affected by the white blood cell count of the patient. The performance of [99mTc]Tc-HMPAO- and [89Zr]Zr-Df-Bz-NCS-labelled leukocytes, in terms of the ability to accurately detect infection, were similar in two out of seven patients, and [99mTc]Tc-HMPAO-labelled leukocytes outperformed [89Zr]Zr-Df-Bz-NCS-labelled leukocytes in one patient with femoral osteomyelitis. However, in two cases of pulmonary pathology, [89Zr]Zr-Df-Bz-NCS-labelled leukocytes demonstrated improved pathological uptake. No skeletal activity was observed in any of the patients imaged with [89Zr]Zr-Df-Bz-NCS-labelled leukocytes, illustrating the in vivo stability of the radiolabel.Although the [89Zr]Zr-Df-Bz-NCS-leukocyte labelling aspect of this study was noteworthy, infection imaging did not yield convincingly positive results due to the pulmonary trapping of intravenously administered [89Zr]Zr-Df-Bz-NCS-labelled leukocytes.
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