TY - JOUR
T1 - Behavior of endogenous Tumor-associated macrophages assessed in vivo using a functionalized nanoparticle
AU - Leimgruber, Antoine
AU - Berger, Cedric
AU - Cortez-Retamozo, Virna
AU - Etzrodt, Martin
AU - Newton, Andita P.
AU - Waterman, Peter
AU - Figueiredo, Jose Luiz
AU - Kohler, Rainer H.
AU - Elpek, Natalie
AU - Mempel, Thorsten R.
AU - Swirski, Filip K.
AU - Nahrendorf, Matthias
AU - Weissleder, Ralph
AU - Pittet, Mikael J.
N1 - Funding Information:
Address all correspondence to: Ralph Weissleder or Mikael J. Pittet, Center for Systems Biology, Simches Research Bldg, 185 Cambridge St, Boston, MA 02114. E-mail: [email protected], [email protected] 1This work was funded in part by the National Institutes of Health (NIH) U54-CA126515 (to R.W.), NIH 5P50 CA86355 (to R.W. and M.J.P.), NIH U24-CA092782 (to R.W.), NIH U54-CA119349 (to R.W.), and Swiss NSF PBLAB-11555 (to A.L.). 2This article refers to supplementary materials, which are designated by Figures W1 to W4 and Videos W1 to W3 and are available online at www.neoplasia.com. 3A.L. and C.B. contributed equally to this work. Received 20 February 2009; Revised 20 February 2009; Accepted 22 February 2009 Copyright © 2009 Neoplasia Press, Inc. All rights reserved 1522-8002/09/$25.00 DOI 10.1593/neo.09356
PY - 2009/5
Y1 - 2009/5
N2 - Tumor-associated macrophages (TAMs) invade the tumor stroma in many cancers, yet their role is incompletely understood. To visualize and better understand these critical cells in tumor progression, we screened a portfolio of rationally selected, injectable agents to image endogenous TAMs ubiquitously in three different cancer models (colon carcinoma, lung adenocarcinoma, and soft tissue sarcoma). AMTA680, a functionally derivatized magnetofluorescent nanoparticle, labeled a subset of myeloid cells with an "M2" macrophage phenotype, whereas other neighboring cells, including tumor cells and a variety of other leukocytes, remained unlabeled. We further show that AMTA680-labeled endogenous TAMs are not altered and can be tracked noninvasively at different resolutions and using various imaging modalities, e.g., fluorescence molecular tomography, magnetic resonance imaging, and multiphoton and confocal intravital microscopy. Quantitative assessment of TAM distribution and activity in vivo identified that these cells cluster in delimited foci within tumors, show relatively low motility, and extend cytoplasmic protrusions for prolonged physical interactions with neighboring tumor cells. Noninvasive imaging can also be used to monitor TAM-depleting regimen quantitatively. Thus, AMTA680 or related cell-targeting agents represent appropriate injectable vehicles for in vivo analysis of the tumor microenvironment.
AB - Tumor-associated macrophages (TAMs) invade the tumor stroma in many cancers, yet their role is incompletely understood. To visualize and better understand these critical cells in tumor progression, we screened a portfolio of rationally selected, injectable agents to image endogenous TAMs ubiquitously in three different cancer models (colon carcinoma, lung adenocarcinoma, and soft tissue sarcoma). AMTA680, a functionally derivatized magnetofluorescent nanoparticle, labeled a subset of myeloid cells with an "M2" macrophage phenotype, whereas other neighboring cells, including tumor cells and a variety of other leukocytes, remained unlabeled. We further show that AMTA680-labeled endogenous TAMs are not altered and can be tracked noninvasively at different resolutions and using various imaging modalities, e.g., fluorescence molecular tomography, magnetic resonance imaging, and multiphoton and confocal intravital microscopy. Quantitative assessment of TAM distribution and activity in vivo identified that these cells cluster in delimited foci within tumors, show relatively low motility, and extend cytoplasmic protrusions for prolonged physical interactions with neighboring tumor cells. Noninvasive imaging can also be used to monitor TAM-depleting regimen quantitatively. Thus, AMTA680 or related cell-targeting agents represent appropriate injectable vehicles for in vivo analysis of the tumor microenvironment.
UR - https://www.scopus.com/pages/publications/65949097275
U2 - 10.1593/neo.09356
DO - 10.1593/neo.09356
M3 - Article
AN - SCOPUS:65949097275
SN - 1522-8002
VL - 11
SP - 459
EP - 468
JO - Neoplasia
JF - Neoplasia
IS - 5
ER -