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dendritic cells

CCL17 Aggravates Myocardial Injury by Suppressing Recruitment of Regulatory T Cells

[Circulation] Investigators utilized mouse models of reperfused myocardial infarction, angiotensin II and phenylephrine infusion, and diphtheria toxin cardiomyocyte ablation to investigate C-C chemokine ligand 17.

Human Invariant Natural Killer T Cells Promote Tolerance by Preferential Apoptosis Induction of Conventional Dendritic Cells

[Haematologica] Dendritic cells were either generated from monocytes or isolated directly from blood of healthy donors or graft-versus-host disease patients and co-cultured in a mixed lymphocyte reaction with T cells obtained from healthy donors or transplantation bags.

Cytosolic dsRNA Improves Neonatal Innate Immune Responses to Adjuvants in Use in Pediatric Vaccines

[Journal of Leukocyte Biology] Researchers showed that myeloid cells from cord blood could be activated to express T cell costimulatory markers, and also to produced Th1 promoting cytokines.

Akeso’s Ligufalimab And Ivonescimab Obtained Approval To Initiate A Phase II Trial

[Akeso, Inc. (PR Newswire, Inc.)] Akeso, Inc. announced that Ligufalimab and Ivonescimab have obtained approval from the Center for Drug Evaluation of the National Medical Products Administration of the People's Republic of China to initiate a Phase II clinical trial with chemotherapy as first-line therapy for unresectable locally advanced or metastatic triple negative breast cancer.

Integrative Bioinformatics and Experimental Analysis Revealed TEAD as Novel Prognostic Target for Hepatocellular Carcinoma and Its Roles in Ferroptosis Regulation

[Aging] Investigators indicated that TEAD2/4 were significantly upregulated in HCC compared with normal tissues. Downregulation of TEAD2 promoted the death of HCC cells through inducing ferroptosis by iron accumulation and subsequent oxidative damage.

Sialic Acid Blockade in Dendritic Cells Enhances CD8+ T Cell Responses by Facilitating High-Avidity Interactions

[Cellular and Molecular Life Sciences] Scientists established cultures of murine bone marrow-derived dendritic cells that lacked sialic acid expression using a sialic acid-blocking mimetic Ac53FaxNeu5Ac.

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