Preclinical evaluation of Affibody molecule for PET imaging of human pancreatic islets derived from stem cells

IF 3.1 3区 医学 Q1 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING EJNMMI Research Pub Date : 2023-12-15 DOI:10.1186/s13550-023-01057-3
Pierre Cheung, Julia Thorngren, Bo Zhang, Svitlana Vasylovska, Francesco Lechi, Jonas Persson, Stefan Ståhl, John Löfblom, Olle Korsgren, Jonas Eriksson, Joey Lau, Olof Eriksson
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Abstract

Beta-cell replacement methods such as transplantation of isolated donor islets have been proposed as a curative treatment of type 1 diabetes, but widespread application is challenging due to shortages of donor tissue and the need for continuous immunosuppressive treatments. Stem-cell-derived islets have been suggested as an alternative source of beta cells, but face transplantation protocols optimization difficulties, mainly due to a lack of available methods and markers to directly monitor grafts survival, as well as their localization and function. Molecular imaging techniques and particularly positron emission tomography has been suggested as a tool for monitoring the fate of islets after clinical transplantation. The integral membrane protein DGCR2 has been demonstrated to be a potential pancreatic islet biomarker, with specific expression on insulin-positive human embryonic stem-cell-derived pancreatic progenitor cells. The candidate Affibody molecule ZDGCR2:AM106 was radiolabeled with fluorine-18 using a novel click chemistry-based approach. The resulting positron emission tomography tracer [18F]ZDGCR2:AM106 was evaluated for binding to recombinant human DGCR2 and cryosections of stem-cell-derived islets, as well as in vivo using an immune-deficient mouse model transplanted with stem-cell-derived islets. Biodistribution of the [18F]ZDGCR2:AM106 was also assessed in healthy rats and pigs. [18F]ZDGCR2:AM106 was successfully synthesized with high radiochemical purity and yield via a pretargeting approach. [18F]ZDGCR2:AM106 retained binding to recombinant human DCGR2 as well as to cryosectioned stem-cell-derived islets, but in vivo binding to native pancreatic tissue in both rat and pig was low. However, in vivo uptake of [18F]ZDGCR2:AM106 in stem-cell-derived islets transplanted in the immunodeficient mice was observed, albeit only within the early imaging frames after injection of the radiotracer. Targeting of DGCR2 is a promising approach for in vivo detection of stem-cell-derived islets grafts by molecular imaging. The synthesis of [18F]ZDGCR2:AM106 was successfully performed via a pretargeting method to label a site-specific covalently bonded fluorine-18 to the Affibody molecule. However, the rapid washout of [18F]ZDGCR2:AM106 from the stem-cell-derived islets graft indicates that dissociation kinetics can be improved. Further studies using alternative binders of similar classes with improved binding potential are warranted.
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用于干细胞提取的人胰岛 PET 成像的 Affibody 分子的临床前评估
移植分离的供体胰岛等β细胞替代方法已被提出作为治疗1型糖尿病的方法,但由于供体组织短缺和需要持续的免疫抑制治疗,广泛应用具有挑战性。有人建议将干细胞衍生的胰岛作为β细胞的替代来源,但移植方案的优化面临困难,主要原因是缺乏可用的方法和标记物来直接监测移植物的存活及其定位和功能。分子成像技术,特别是正电子发射断层扫描被认为是监测临床移植后胰岛命运的一种工具。积分膜蛋白 DGCR2 已被证明是一种潜在的胰岛生物标志物,在胰岛素阳性的人类胚胎干细胞衍生的胰腺祖细胞上有特异性表达。候选 Affibody 分子 ZDGCR2:AM106 采用基于点击化学的新方法用氟-18 进行了放射性标记。评估了由此产生的正电子发射断层扫描示踪剂[18F]ZDGCR2:AM106与重组人DGCR2和干细胞衍生胰岛的冷冻切片的结合情况,以及使用移植了干细胞衍生胰岛的免疫缺陷小鼠模型的体内结合情况。还在健康大鼠和猪体内评估了[18F]ZDGCR2:AM106的生物分布。通过预靶向方法成功合成了[18F]ZDGCR2:AM106,其放射化学纯度和产量都很高。[18F]ZDGCR2:AM106与重组人DCGR2以及冷冻干细胞衍生胰岛的结合率保持不变,但与大鼠和猪的原生胰腺组织的体内结合率较低。不过,在移植到免疫缺陷小鼠体内的干细胞衍生胰岛中,观察到了[18F]ZDGCR2:AM106的体内摄取,尽管只是在注射放射性示踪剂后的早期成像框架内。靶向 DGCR2 是通过分子成像在体内检测干细胞胰岛移植的一种可行方法。[18F]ZDGCR2:AM106的合成是通过一种预靶向方法成功完成的,该方法是将特定位点共价键氟-18标记到Affibody分子上。然而,[18F]ZDGCR2:AM106从干细胞衍生的胰岛移植物中迅速冲出表明,解离动力学还可以改进。有必要使用具有更好结合潜力的类似类别的替代结合剂进行进一步研究。
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来源期刊
EJNMMI Research
EJNMMI Research RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING&nb-
CiteScore
5.90
自引率
3.10%
发文量
72
审稿时长
13 weeks
期刊介绍: EJNMMI Research publishes new basic, translational and clinical research in the field of nuclear medicine and molecular imaging. Regular features include original research articles, rapid communication of preliminary data on innovative research, interesting case reports, editorials, and letters to the editor. Educational articles on basic sciences, fundamental aspects and controversy related to pre-clinical and clinical research or ethical aspects of research are also welcome. Timely reviews provide updates on current applications, issues in imaging research and translational aspects of nuclear medicine and molecular imaging technologies. The main emphasis is placed on the development of targeted imaging with radiopharmaceuticals within the broader context of molecular probes to enhance understanding and characterisation of the complex biological processes underlying disease and to develop, test and guide new treatment modalities, including radionuclide therapy.
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