1510 Multiomic functional biomarkers for cancer prediction and early detection
Article 2023 en
Authors
MF
Marine Fidelle
DS
Deborah Suissa
RB
Roxanne Birebent
Abstract
2 min read
<h3>Background</h3> CD4<sup>+</sup> T cells play essential roles in the development and regulation of autoimmune diseases and cancer. Recently, we have developed single-domain antibodies that bind with high affinity to human CD4 receptor without affecting T cell function. The lead candidate was radiolabeled with NODAGA and Cu-64 (<sup>64</sup>Cu-αCD4-sdAb) for PET imaging. The aim of this study was to evaluate the applicability of our <sup>64</sup>Cu-αCD4-sdAb to visualize and differentiate minimal changes in the CD4<sup>+</sup> immune infiltrate during cancer immunotherapy and in inflamed tissue. <h3>Methods</h3> <sup>64</sup>Cu-αCD4-sdAb was administered intravenously in two orthotopic cancer models and a cutaneous Delayed-Type-Hypersensitivity-Reaction (cDTHR) model. In the first approach, PyMT breast cancer and B16 melanoma cells were implanted in C57BL/6J human-CD4 knock-in (hCD4<sup>KI</sup>) or wildtype (WT) mice. A subgroup of animals was additionally treated with therapeutic αPD1/α41BB antibodies. To induce cDTHR, hCD4<sup>KI</sup> mice were sensitized at the abdomen and repetitively challenged at one ear with trinitrochlorobenzene (TNCB). <sup>64</sup>Cu-αCD4-sdAb PET/MRI was conducted 24 h after the 5<sup>th</sup> TNCB-ear challenge and organs of interest were harvested for <i>ex vivo</i> biodistribution, immunohistochemistry or mass cytometry (CyTOF) analyses immediately after the last imaging time-point. <h3>Results</h3> Dynamic <sup>64</sup>Cu-αCD4-sdAb PET/MRI of PyMT tumors over 6 h revealed the best differentiation between hCD4<sup>KI</sup> and WT mice at 1.5 h and 3 h imaging time-point post tracer injection. In line with <i>ex vivo</i> analyses of intratumoral CD4<sup>+</sup> cell densities, αPD1/α41BB-treated PyMT tumors of hCD4<sup>KI</sup> mice showed significantly higher <sup>64</sup>Cu-αCD4-sdAb uptake (0.46±0.01%ID/ml) compared to untreated littermates (0.30±0.03%ID/ml) and PyMT tumors of WT mice (0.21±0.02%ID/ml). In contrast, B16 tumors with histologically almost absent CD4<sup>+</sup> cell infiltrates yielded an uptake of 0.23±0.02%ID/ml similar to WT mice. In the cDTHR model, the <sup>64</sup>Cu-αCD4-sdAb uptake in the inflamed ears was 3-fold higher compared to control ears. Importantly, a control sdAb tracer did not reveal such differences in the inflamed and non-inflamed ears, excluding relevant non-specific perfusion effects. Immunohistochemistry revealed a rare number of CD4+ cells in the inflamed tissues being detectable by out extremely sensitive PET/MRI approach. <h3>Conclusions</h3> Due to the important role of CD4<sup>+</sup> cells in health and disease, precise non-invasive imaging approaches to visualize and monitor CD4<sup>+</sup> cells <i>in vivo</i> are urgently needed. Our newly developed <sup>64</sup>Cu-αCD4-sdAb PET tracer is able to detect small amounts of CD4<sup>+</sup>-cell infiltrates in both cancer and cDTHR models, pointing out its potential to serve as a versatile probe for a broad range of T cell-associated diseases. <h3>Ethics Approval</h3> All animal experiments were carried out in accordance with the German Animal Welfare Act and with consent of regulatory authorities (Regierungspräsidium Tübingen).
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