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101. Innate immune memory in the brain shapes neurological disease hallmarks

102. Author response: Differences in the inflammatory proteome of East African and Western European adults and associations with environmental and dietary factors

103. Author Correction: Trained immunity, tolerance, priming and differentiation: distinct immunological processes

105. Epigenomic Profiling of Human CD4+ T Cells Supports a Linear Differentiation Model and Highlights Molecular Regulators of Memory Development

111. Mannose receptor induces T-cell tolerance via inhibition of CD45 and up-regulation of CTLA-4

112. Specification of tissue-resident macrophages during organogenesis

117. Building Trust in Medical Use of Artificial Intelligence – The Swarm Learning Principle.

118. Supplementary Data from Blood-Based Gene Expression Signatures in Non–Small Cell Lung Cancer

119. Supplementary Figure 1 from Cancer-Induced Immunosuppression: IL-18–Elicited Immunoablative NK Cells

121. Supplementary Table 2 from Cancer-Induced Immunosuppression: IL-18–Elicited Immunoablative NK Cells

122. Supplementary Figure 1 from IL-18 Induces PD-1–Dependent Immunosuppression in Cancer

124. Data from The Dendritic Cell–like Functions of IFN-Producing Killer Dendritic Cells Reside in the CD11b+ Subset and Are Licensed by Tumor Cells

125. Supplementary Figures 1 - 7 from CCL2/CCR2-Dependent Recruitment of Functional Antigen-Presenting Cells into Tumors upon Chemotherapy

126. Supplementary Figure Legends 1-12, Table Legends 1-4, Results from Cancer Vaccine Enhanced, Non–Tumor-Reactive CD8+ T Cells Exhibit a Distinct Molecular Program Associated with “Division Arrest Anergy”

127. Supplementary Table 1 from Cancer-Induced Immunosuppression: IL-18–Elicited Immunoablative NK Cells

128. Supplementary Figure 3 from Cancer-Induced Immunosuppression: IL-18–Elicited Immunoablative NK Cells

130. Supplementary Figure 2 from IL-18 Induces PD-1–Dependent Immunosuppression in Cancer

131. Data from CCL2/CCR2-Dependent Recruitment of Functional Antigen-Presenting Cells into Tumors upon Chemotherapy

132. Supplementary Figure 2 from Cancer-Induced Immunosuppression: IL-18–Elicited Immunoablative NK Cells

133. Supplementary Figure Legend from CCL2/CCR2-Dependent Recruitment of Functional Antigen-Presenting Cells into Tumors upon Chemotherapy

134. Supplementary Figure 1 from The Dendritic Cell–like Functions of IFN-Producing Killer Dendritic Cells Reside in the CD11b+ Subset and Are Licensed by Tumor Cells

135. Supplementary Figure 2 from The Dendritic Cell–like Functions of IFN-Producing Killer Dendritic Cells Reside in the CD11b+ Subset and Are Licensed by Tumor Cells

136. Data from IL-18 Induces PD-1–Dependent Immunosuppression in Cancer

138. Supplementary Figure 4 from Cancer-Induced Immunosuppression: IL-18–Elicited Immunoablative NK Cells

139. Data from Cancer-Induced Immunosuppression: IL-18–Elicited Immunoablative NK Cells

140. Supplementary Figure Legends 1-2 from The Dendritic Cell–like Functions of IFN-Producing Killer Dendritic Cells Reside in the CD11b+ Subset and Are Licensed by Tumor Cells

141. Supplementary Figure Legends 1-4 from Cancer-Induced Immunosuppression: IL-18–Elicited Immunoablative NK Cells

142. Single-cell analysis reveals dynamics of human B cell differentiation and identifies novel B and antibody-secreting cell intermediates

143. Fetal liver macrophages contribute to the hematopoietic stem cell niche by controlling granulopoiesis

144. Author response: Single-cell analysis reveals dynamics of human B cell differentiation and identifies novel B and antibody-secreting cell intermediates

145. Investigating the Chromatin Accessibility of Targeted Tissue Cell Populations with Laser Capture Microdissection Coupled to ATAC-Seq

150. A chronic low dose of [DELTA]9-tetrahydrocannabinol (THC) restores cognitive function in old mice

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