Noninvasive imaging of immune responses
Author(s) -
Mohammad Rashidian,
Edmund J. Keliher,
Angelina M. Bilate,
João N. Duarte,
Gregory R. Wojtkiewicz,
Johanne T. Jacobsen,
Juanjo Cragnolini,
Lee Kim Swee,
Gabriel D. Victora,
Ralph Weissleder,
Hidde L. Ploegh
Publication year - 2015
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.1502609112
Subject(s) - immune system , mhc class i , stromal cell , biology , antibody , integrin alpha m , myeloid , flow cytometry , single domain antibody , mhc class ii , major histocompatibility complex , immunology , cancer research , microbiology and biotechnology
At their margins, tumors often contain neutrophils, dendritic cells, and activated macrophages, which express class II MHC and CD11b products. The interplay between stromal cells, tumor cells, and migratory cells such as lymphocytes creates opportunities for noninvasive imaging of immune responses. We developed alpaca-derived antibody fragments specific for mouse class II MHC and CD11b products, expressed on the surface of a variety of myeloid cells. We validated these reagents by flow cytometry and two-photon microscopy to obtain images at cellular resolution. To enable noninvasive imaging of the targeted cell populations, we developed a method to site-specifically label VHHs [the variable domain (VH) of a camelid heavy-chain only antibody] with (18)F or (64)Cu. Radiolabeled VHHs rapidly cleared the circulation (t1/2 ≈ 20 min) and clearly visualized lymphoid organs. We used VHHs to explore the possibility of imaging inflammation in both xenogeneic and syngeneic tumor models, which resulted in detection of tumors with remarkable specificity. We also imaged the infiltration of myeloid cells upon injection of complete Freund's adjuvant. Both anti-class II MHC and anti-CD11b VHHs detected inflammation with excellent specificity. Given the ease of manufacture and labeling of VHHs, we believe that this method could transform the manner in which antitumor responses and/or infectious events may be tracked.
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