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      Intravital microscopy of the lung: minimizing invasiveness

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      Journal of Biophotonics
      Wiley-Blackwell

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          Two-photon laser scanning fluorescence microscopy

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            Patrolling monocytes control tumor metastasis to the lung.

            The immune system plays an important role in regulating tumor growth and metastasis. Classical monocytes promote tumorigenesis and cancer metastasis, but how nonclassical "patrolling" monocytes (PMo) interact with tumors is unknown. Here we show that PMo are enriched in the microvasculature of the lung and reduce tumor metastasis to lung in multiple mouse metastatic tumor models. Nr4a1-deficient mice, which specifically lack PMo, showed increased lung metastasis in vivo. Transfer of Nr4a1-proficient PMo into Nr4a1-deficient mice prevented tumor invasion in the lung. PMo established early interactions with metastasizing tumor cells, scavenged tumor material from the lung vasculature, and promoted natural killer cell recruitment and activation. Thus, PMo contribute to cancer immunosurveillance and may be targets for cancer immunotherapy.
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              Intravital imaging.

              Until recently, the idea of observing life deep within the tissues of a living mouse, at a resolution sufficient to pick out cellular behaviors and molecular signals underlying them, remained a much-coveted dream. Now, a new era of intravital fluorescence microscopy has dawned. In this Primer, we review the technologies that made this revolution possible and demonstrate how intravital imaging is beginning to provide quantitative and dynamic insights into cell biology, immunology, tumor biology, and neurobiology. Copyright © 2011 Elsevier Inc. All rights reserved.
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                Author and article information

                Journal
                Journal of Biophotonics
                J. Biophoton
                Wiley-Blackwell
                1864063X
                September 2016
                September 2016
                : 9
                : 9
                : 868-878
                Article
                10.1002/jbio.201500246
                aa1fa71c-060a-4afa-9322-d352a2b9ceb6
                © 2016

                http://doi.wiley.com/10.1002/tdm_license_1.1

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