| Literature DB >> 25587131 |
Christoph M Griessinger1, Andreas Maurer1, Christian Kesenheimer1, Rainer Kehlbach2, Gerald Reischl1, Walter Ehrlichmann1, Daniel Bukala1, Maren Harant1, Funda Cay1, Jürgen Brück3, Renate Nordin3, Ursula Kohlhofer4, Hans-Georg Rammensee5, Leticia Quintanilla-Martinez4, Martin Schaller3, Martin Röcken3, Bernd J Pichler6, Manfred Kneilling7.
Abstract
T cells are key players in inflammation, autoimmune diseases, and immunotherapy. Thus, holistic and noninvasive in vivo characterizations of the temporal distribution and homing dynamics of lymphocytes in mammals are of special interest. Herein, we show that PET-based T-cell labeling facilitates quantitative, highly sensitive, and holistic monitoring of T-cell homing patterns in vivo. We developed a new T-cell receptor (TCR)-specific labeling approach for the intracellular labeling of mouse T cells. We found that continuous TCR plasma membrane turnover and the endocytosis of the specific (64)Cu-monoclonal antibody (mAb)-TCR complex enables a stable labeling of T cells. The TCR-mAb complex was internalized within 24 h, whereas antigen recognition was not impaired. Harmful effects of the label on the viability, DNA-damage and apoptosis-necrosis induction, could be minimized while yielding a high contrast in in vivo PET images. We were able to follow and quantify the specific homing of systemically applied (64)Cu-labeled chicken ovalbumin (cOVA)-TCR transgenic T cells into the pulmonary and perithymic lymph nodes (LNs) of mice with cOVA-induced airway delayed-type hypersensitivity reaction (DTHR) but not into pulmonary and perithymic LNs of naïve control mice or mice diseased from turkey or pheasant OVA-induced DTHR. Our protocol provides consequent advancements in the detection of small accumulations of immune cells in single LNs and specific homing to the sites of inflammation by PET using the internalization of TCR-specific mAbs as a specific label of T cells. Thus, our labeling approach is applicable to other cells with constant membrane receptor turnover.Entities:
Keywords: PET imaging; airway DTHR; antibody-based cell labeling; in vivo cell tracking; mouse T cells
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Year: 2015 PMID: 25587131 PMCID: PMC4313850 DOI: 10.1073/pnas.1418391112
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205