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Multimodal image coregistration and inducible selective cell ablation to evaluate imaging ligands

机译:多峰图像融合和诱导性选择性细胞消融以评估成像配体

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摘要

We combined multimodal imaging (bioluminescence, X-ray computed tomography, and PET), tomographic reconstruction of bioluminescent sources, and two unique, complementary models to evaluate three previously synthesized PET radiotracers thought to target pancreatic beta cells. The three radiotracers {[18F]fluoropropyl-(+)-dihydrotetrabenazine ([18F]FP-DTBZ), [18F](+)-2-oxiranyl-3-isobutyl-9-(3-fluoropropoxy)-10-methoxy-2,3,4,6,7,11b-hexahydro-1H-pyrido[2,1-a]isoquinoline (18F-AV-266), and (2S,3R,11bR)-9-(3-fluoropropoxy)-2-(hydroxymethyl)-3-isobutyl-10-methoxy-2,3,4,6,7,11b-hexahydro-1H-pyrido[2,1-a]isoquinolin-2-ol (18F-AV-300)} bind vesicular monoamine transporter 2. Tomographic reconstruction of the bioluminescent signal in mice expressing luciferase only in pancreatic beta cells was used to delineate the pancreas and was coregistered with PET and X-ray computed tomography images. This strategy enabled unambiguous identification of the pancreas on PET images, permitting accurate quantification of the pancreatic PET signal. We show here that, after conditional, specific, and rapid mouse beta-cell ablation, beta-cell loss was detected by bioluminescence imaging but not by PET imaging, given that the pancreatic signal provided by three PET radiotracers was not altered. To determine whether these ligands bound human beta cells in vivo, we imaged mice transplanted with luciferase-expressing human islets. The human islets were imaged by bioluminescence but not with the PET ligands, indicating that these vesicular monoamine transporter 2-directed ligands did not specifically bind beta cells. These data demonstrate the utility of coregistered multimodal imaging as a platform for evaluation and validation of candidate ligands for imaging islets.
机译:我们结合了多模式成像(生物发光,X射线计算机断层摄影和PET),生物发光源的断层摄影重建以及两个独特的互补模型,以评估三个先前合成的被认为靶向胰腺β细胞的PET放射性示踪剂。三种放射性示踪剂{[ 18 F]氟丙基-(+)-二氢丁苯那嗪([ 18 F] FP-DTBZ,[ 18 F] (+)-2-环氧乙烷基-3-异丁基-9-(3-氟丙氧基)-10-甲氧基-2,3,4,6,7,11b-六氢-1H-吡啶[2,1-a]异喹啉( 18 F-AV-266)和(2S,3R,11bR)-9-(3-氟丙氧基)-2-(羟甲基)-3-异丁基-10-甲氧基-2,3, 4,6,7,11b-六氢-1H-吡啶并[2,1-a]异喹啉-2-醇( 18 F-AV-300)}结合囊泡单胺转运蛋白2。小鼠仅在胰岛β细胞中表达萤光素酶的生物发光信号用于描绘胰腺,并与PET和X射线计算机断层扫描图像共同配准。这种策略可以在PET图像上明确识别胰腺,从而可以准确量化胰腺PET信号。我们在这里显示,经过条件的,特异性的和快速的小鼠β细胞消融后,假定由三个PET放射性示踪剂提供的胰腺信号未改变,则通过生物发光成像而非PET成像检测到了β细胞丢失。为了确定这些配体是否在体内结合人β细胞,我们对移植有表达荧光素酶的人胰岛的小鼠进行了成像。通过生物发光而不是用PET配体对人类胰岛成像,表明这些囊泡单胺转运蛋白2定向配体没有特异性结合β细胞。这些数据证明了共同注册的多峰成像作为评估和验证胰岛候选配体的平台的实用性。

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