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101. Neutrophils Kill Antibody-Opsonized Cancer Cells by Trogoptosis

104. Human and murine splenic neutrophils are potent phagocytes of IgG-opsonized red blood cells

105. Anti-SIRP alpha antibodies as a potential new tool for cancer immunotherapy

107. SIRPα + dendritic cells regulate homeostasis of fibroblastic reticular cells via TNF receptor ligands in the adult spleen

108. Donor SIRPα polymorphism modulates the innate immune response to allogeneic grafts

111. Anti-SIRPα antibodies as a potential new tool for cancer immunotherapy

112. SIRPα+ dendritic cells promote the development of fibroblastic reticular cells in murine peripheral lymph nodes.

113. Lack of SIRP alpha phosphorylation and concomitantly reduced SHP-2-PI3K-Akt2 signaling decrease osteoblast differentiation

114. Promotion of Intestinal Epithelial Cell Turnover by Commensal Bacteria: Role of Short-Chain Fatty Acids

115. Small GTP-Binding Proteins

119. Promotion of Intestinal Epithelial Cell Turnover by Commensal Bacteria: Role of Short-Chain Fatty Acids

120. Non-Hematopoietic and Hematopoietic SIRPα Signaling Differently Regulates Murine B Cell Maturation in Bone Marrow and Spleen

121. Lack of non-hematopoietic SIRPα signaling disturbs the splenic marginal zone architecture resulting in accumulation and displacement of marginal zone B cells

122. CD47‐signal regulatory protein α signaling system and its application to cancer immunotherapy.

126. Shp2 in Forebrain Neurons Regulates Synaptic Plasticity, Locomotion, and Memory Formation in Mice

127. Signal regulatory protein alpha is present in several neutrophil granule populations and is rapidly mobilized to the cell surface to negatively fine-tune neutrophil accumulation in inflammation

128. Signal Regulatory Protein-β1 : A Microglial Modulator of Phagocytosis in Alzheimer’s Disease

129. Macrophage NADPH Oxidase Activation and ROS Production Is Positively Regulated By Shp2 Phosphatase Function

131. The BALB/c-specific polymorphic SIRPA enhances its affinity for human CD47, inhibiting phagocytosis against human cells to promote xenogeneic engraftment

135. Signal Regulatory Protein Alpha Is Present in Several Neutrophil Granule Populations and Is Rapidly Mobilized to the Cell Surface to Negatively Fine-Tune Neutrophil Accumulation in Inflammation

136. Lack of CD47 impairs bone cell differentiation and results in an osteopenic phenotype in vivo due to impaired signal regulatory protein α (SIRPα) signaling

137. The absence of CD47 promotes nerve fiber growth from cultured ventral mesencephalic dopamine neurons

138. Signal regulatory protein α regulates the homeostasis of T lymphocytes in the spleen.

139. Stress-evoked tyrosine phosphorylation of signal regulatory protein α regulates behavioral immobility in the forced swim test

140. Essential roles of SHPS-1 in induction of contact hypersensitivity of skin.

141. BALB/c- Specific L29V Polymorphism In SIRPA Determines The Efficient Engraftment Of Human Hematopoiesis In Xenogeneic Model

143. SIRPα signaling regulates podocyte structure and function

145. Polymorphic Sirpa is the genetic determinant for NOD-based mouse lines to achieve efficient human cell engraftment

146. Mutational analysis of the mechanism of negative regulation by SRC homology 2 domain-containing protein tyrosine phosphatase substrate-1 of phagocytosis in macrophages.

147. CD47 promotes neuronal development through Src- and FRG/Vav2-mediated activation of Rac and Cdc42.

148. Enhanced phagocytosis of CD47-deficient red blood cells by splenic macrophages requires SHPS-1.

149. Negative regulation of phagocytosis in macrophages by the CD47-SHPS-1 system.

150. Hypothermia-dependent and -independent effects of forced swim on the phosphorylation states of signaling molecules in mouse hippocampus

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