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Sano, Y.

Publications and source records attributed to Sano, Y..

2 recordsLinked to original sources

Multi-organ signaling mobilizes tumor-associated erythroid cells expressing immune checkpoint molecules

Hematopoietic-derived cells are integral components of the tumor microenvironment and serve as critical mediators of tumor-host interactions. Cells derived from myeloid and lymphoid lineages perform well-established functions linked to cancer development, progression and response to therapy. It is unclear whether erythroid cells exert such host cell functions in cancer, but emerging evidence points to this possibility. Here we show that tumor-promoting environmental stress and tumor-induced physiological disruption trigger renal erythropoietin production and erythropoietin-dependent expansion of splenic erythroid cell populations in mice. These erythroid cells display molecular features indicative of an immature erythroid phenotype and express immune checkpoint molecules. Erythroid cells with similar properties are present in mouse and human tumor tissues. Antibody-mediated erythropoietin blockade or erythroid cell depletion reduces tumor growth. These findings reveal the potential of erythropoietin and erythroid cells as targets for cancer treatment.

cancer biology

An in-vitro BBB-on-a-chip open model of human blood-brain barrier enabling advanced optical imaging

ABSTRACTWe describe here the design and implementation of an in-vitro BBB-on-a-chip open model system capable of reconstituting the microenvironment of the blood brain barrier. This system allows controlled unidirectional flow of nutrients and biologicals on the lumen of the artificial microvessel. This BBB-on-a-chip is suitable for high resolution electron microscopy and it is amenable for quantitative 3D live fluorescence imaging using spinning confocal disk or lattice light sheet microscopy (LLSM) to follow, for example the transcytosis across the BBB-like barrier of fluorescently-tagged biological, viruses or nanoparticles.Competing Interest StatementG.M. and B.O. are employees and shareholders of Biogen. T.K. is a visiting scientist at Biogen.View Full Text

bioengineering