Abstract
The changes in b-cell mass (BCM) during the development and progression of diabetes could potentially be measured by radionuclide imaging using radiolabeled exendin. In this study, we investigated the potential of 111 In-diethylenetriaminepentaacetic acid-exendin-3 ( 111 In-exendin) in a rat model that closely mimics the development of type 1 diabetes (T1D) in humans: BioBreeding diabetes-prone (BBDP) rats. BBDP rats of 4-18 weeks of age were injected intravenously with 111 In-exendin, and single-photon emission computed tomography (SPECT) images were acquired. The accumulation of the radiotracer was measured as well as the BCM and grade of insulitis by histology. 111 In-exendin accumulated specifically in the islets, resulting in a linear correlation with the BCM (%) (Pearson r = 0.89, P 0.0001, and r = 0.64 for SPECT). Insulitis did not have an influence on this correlation. These results indicate that 111 In-exendin is a promising tracer to determine the BCM during the development of T1D, irrespective of the degree of insulitis.
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CITATION STYLE
Brom, M., Joosten, L., Frielink, C., Peeters, H., Bos, D., Van Zanten, M., … Gotthardt, M. (2018). Validation of 111 In-exendin SPECT for the determination of the B-cell mass in biobreeding diabetes-prone rats. In Diabetes (Vol. 67, pp. 2012–2018). American Diabetes Association Inc. https://doi.org/10.2337/db17-1312
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