| Literature DB >> 34766000 |
Andrei Molotkov1, Nikunj Bhatt1, Mikhail Doubrovin1, John Castrillon1, Christopher Massa2, Adam Gerber2, Jeanine D'Armiento2, Monica Goldklang2, Akiva Mintz1.
Abstract
Inflammatory changes caused by viruses, bacteria, exposure to toxins, commonly used drugs and even surgical intervention have the potential of causing abnormal epithelial permeability, which is manifest as infiltrative processes on computed tomography (CT), including the widespread infiltrates seen in COVID-19 pneumonia and acute respiratory distress syndrome (ARDS). We utilized a previously published mouse model of ARDS, intranasal delivery of LPS, to induce the alveolar-capillary barrier permeability seen in lung disease. We intravenously injected mice with Cy7 or 68-Gallium (68Ga) labeled mouse albumin and imaged using optical imaging (OI)/CT and PET. We observed significantly increased lung levels of Cy7-albumin on 3D OI/CT, which matched the abnormal appearance on microCT. This uptake correlated with fluorescence seen on sectioned lungs. To examine the translational potential of these findings, we radiolabeled albumin with 68Ga. We found that in mice with LPS-induced lung injury, 68Ga-albumin PET correlated with our optical imaging findings and demonstrated abnormal activity in the lung fields, indicative of abnormal epithelial permeability. These findings indicate 68Ga-albumin can be utilized as a sensitive translational radiotracer for quantifying the abnormal epithelial permeability that is seen in various lung pathologies, including COVID-19 induced pneumonia and ARDS. The ability to use Cy7-albumin 3D OI/CT imaging as a preclinical translational surrogate for 68Ga-albumin offers an accessible high throughput means to rapidly screen potential therapeutics against lung diseases that clinically manifest with endothelial permeability.Entities:
Keywords: 68Ga-albumin; ARDS; COVID; PET
Year: 2020 PMID: 34766000 PMCID: PMC7749789 DOI: 10.1186/s43556-020-00020-1
Source DB: PubMed Journal: Mol Biomed ISSN: 2662-8651
Fig. 13D OI/CT detection of LPS-induced lung inflammation using Cy7-albumin. a representative coronal images of Cy7-albumin uptake in the lungs of the PBS (top, n = 4) and LPS (bottom, n = 5) treated mice 24 h post injection. CT (left panels) and fusion 3D OI/CT (right panels) are shown. Note that infiltrates visible on CT (red arrows) are co-localized with Cy7-albumin accumulation detected by the 3D optical scan. b Cy7-albumin is detected in dissected lungs of mice treated with LPS (n = 5) or PBS (n = 4, control). *, p < 0.01
Fig. 2Cy7-albumin uptake in lung parenchyma of mice 72 h after PBS or LPS treatment visualized under a fluorescent microscope. Bronchovascular bundles (arrows) are visualized on H&E stained sections. Note considerable accumulation of Cy7-albumin (red) in parenchyma of LPS-damaged lungs 24 h post injection. Scale bars, 250 μm
Fig. 3Dynamic 4 h PET imaging after injection of 68Ga-albumin. a representative coronal images of a 240 min dynamic 68Ga-albumin PET scan in an untreated B6 mouse (n = 4). b dynamic 68Ga-albumin activity in the heart, liver and lungs of untreated B6 mice (n = 4). c biodistribution of 68Ga-albumin in tissues of untreated B6 mice (n = 4) ~ 4.5 h after injection
Fig. 468Ga-albumin PET uptake in an LPS model of ARDS. a representative whole body coronal 68Ga-albumin PET/CT images 4 h after injection demonstrating significantly increased lung activity in LPS treated lungs compared to control, which only demonstrated physiologic uptake in the blood pool (heart) and liver. b quantification of 68Ga-albumin lung uptake on PET/CT axial images was derived by drawing ROIs on the CT image (*) and calculating the %ID/g from the corresponding PET scan. c 68Ga-albumin lung uptake calculated from PET/CT images (as shown in b). ROIs from lungs were compared between mice treated with intranasal LPS (n = 4) and intranasal PBS (n = 3), demonstrating significantly higher uptake in lungs of mice treated with LPS. *, p < 0.01
Fig. 5a PET scans of dissected lungs from LPS (n = 4) and PBS (n = 3) treated mice ~ 4.5 h after 68Ga-albumin injection. b quantification of uptake from (a). *p < 0.01