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Σφίγγω σωστά Ξεμπερδεύω cd47 functions as a removal marker on aged erythrocytes Επιβεβαίωση χίλια πληρωμή

CD47 overexpression is associated with decreased neutrophil  apoptosis/phagocytosis and poor prognosis in non-small-cell lung cancer  patients | British Journal of Cancer
CD47 overexpression is associated with decreased neutrophil apoptosis/phagocytosis and poor prognosis in non-small-cell lung cancer patients | British Journal of Cancer

Role of CD47 as a Marker of Self on Red Blood Cells | Science
Role of CD47 as a Marker of Self on Red Blood Cells | Science

Recognition of red blood cells' biochemical integrity by iron-recycling...  | Download Scientific Diagram
Recognition of red blood cells' biochemical integrity by iron-recycling... | Download Scientific Diagram

Frontiers | From the Cradle to the Grave: The Role of Macrophages in  Erythropoiesis and Erythrophagocytosis
Frontiers | From the Cradle to the Grave: The Role of Macrophages in Erythropoiesis and Erythrophagocytosis

Recent Advances of Tumor Therapy Based on the CD47-SIRPα Axis | Molecular  Pharmaceutics
Recent Advances of Tumor Therapy Based on the CD47-SIRPα Axis | Molecular Pharmaceutics

Evaluation of the role of CD47 in sickle cell disease | SpringerLink
Evaluation of the role of CD47 in sickle cell disease | SpringerLink

How the spleen reshapes and retains young and old red blood cells: A  computational investigation | PLOS Computational Biology
How the spleen reshapes and retains young and old red blood cells: A computational investigation | PLOS Computational Biology

CD47 functions as a molecular switch for erythrocyte phagocytosis -  ScienceDirect
CD47 functions as a molecular switch for erythrocyte phagocytosis - ScienceDirect

Frontiers | Therapeutic Targeting of the Macrophage Immune Checkpoint CD47  in Myeloid Malignancies
Frontiers | Therapeutic Targeting of the Macrophage Immune Checkpoint CD47 in Myeloid Malignancies

CD47-targeted cancer immunogene therapy: Secreted SIRPα-Fc fusion protein  eradicates tumors by macrophage and NK cell activation: Molecular Therapy -  Oncolytics
CD47-targeted cancer immunogene therapy: Secreted SIRPα-Fc fusion protein eradicates tumors by macrophage and NK cell activation: Molecular Therapy - Oncolytics

Aging‐associated changes in CD47 arrangement and interaction with  thrombospondin‐1 on red blood cells visualized by super‐resolution imaging  - Wang - 2020 - Aging Cell - Wiley Online Library
Aging‐associated changes in CD47 arrangement and interaction with thrombospondin‐1 on red blood cells visualized by super‐resolution imaging - Wang - 2020 - Aging Cell - Wiley Online Library

Anti-leukemic activity and tolerability of anti-human CD47 monoclonal  antibodies | Blood Cancer Journal
Anti-leukemic activity and tolerability of anti-human CD47 monoclonal antibodies | Blood Cancer Journal

CD47: the next checkpoint target for cancer immunotherapy - ScienceDirect
CD47: the next checkpoint target for cancer immunotherapy - ScienceDirect

Red Blood Cell Membrane Bioengineered Zr-89 Labelled Hollow Mesoporous  Silica Nanosphere for Overcoming Phagocytosis | Scientific Reports
Red Blood Cell Membrane Bioengineered Zr-89 Labelled Hollow Mesoporous Silica Nanosphere for Overcoming Phagocytosis | Scientific Reports

CD47 Is Upregulated on Circulating Hematopoietic Stem Cells and Leukemia  Cells to Avoid Phagocytosis: Cell
CD47 Is Upregulated on Circulating Hematopoietic Stem Cells and Leukemia Cells to Avoid Phagocytosis: Cell

Splenic Dendritic Cells Survey Red Blood Cells for Missing Self-CD47 to  Trigger Adaptive Immune Responses - ScienceDirect
Splenic Dendritic Cells Survey Red Blood Cells for Missing Self-CD47 to Trigger Adaptive Immune Responses - ScienceDirect

Macrophage LRP1 (Low-Density Lipoprotein Receptor-Related Protein 1) Is  Required for the Effect of CD47 Blockade on Efferocytosis and  Atherogenesis—Brief Report | Arteriosclerosis, Thrombosis, and Vascular  Biology
Macrophage LRP1 (Low-Density Lipoprotein Receptor-Related Protein 1) Is Required for the Effect of CD47 Blockade on Efferocytosis and Atherogenesis—Brief Report | Arteriosclerosis, Thrombosis, and Vascular Biology

Role of macrophages in erythropoiesis. In the erythroid niche,... |  Download Scientific Diagram
Role of macrophages in erythropoiesis. In the erythroid niche,... | Download Scientific Diagram

Thrombospondin-1/CD47 signaling modulates transmembrane cation conductance,  survival, and deformability of human red blood cells | Cell Communication  and Signaling | Full Text
Thrombospondin-1/CD47 signaling modulates transmembrane cation conductance, survival, and deformability of human red blood cells | Cell Communication and Signaling | Full Text

IJMS | Free Full-Text | Erythrocytes: Central Actors in Multiple Scenes of  Atherosclerosis
IJMS | Free Full-Text | Erythrocytes: Central Actors in Multiple Scenes of Atherosclerosis

The CD47-SIRPα Immune Checkpoint - ScienceDirect
The CD47-SIRPα Immune Checkpoint - ScienceDirect

CD47 expression in different age cohorts of erythrocytes. Mice were... |  Download Scientific Diagram
CD47 expression in different age cohorts of erythrocytes. Mice were... | Download Scientific Diagram

CD47 functions as a removal marker on aged erythrocytes
CD47 functions as a removal marker on aged erythrocytes

Therapeutic modulation of the CD47-SIRPα axis in the pediatric tumor  microenvironment: working up an appetite
Therapeutic modulation of the CD47-SIRPα axis in the pediatric tumor microenvironment: working up an appetite

Cancers | Free Full-Text | Cancer Therapy Targeting CD47/SIRPα
Cancers | Free Full-Text | Cancer Therapy Targeting CD47/SIRPα

Aging‐associated changes in CD47 arrangement and interaction with  thrombospondin‐1 on red blood cells visualized by super‐resolution imaging  - Wang - 2020 - Aging Cell - Wiley Online Library
Aging‐associated changes in CD47 arrangement and interaction with thrombospondin‐1 on red blood cells visualized by super‐resolution imaging - Wang - 2020 - Aging Cell - Wiley Online Library

Role of CD47 as a Marker of Self on Red Blood Cells
Role of CD47 as a Marker of Self on Red Blood Cells