Results 11 to 20 of about 1,505,630 (287)
Acute myeloid leukemia (AML) is one of the lethal hematological malignancies with high relapse rates and poor prognosis. Since chimeric antigen receptor cellular therapy has exhibited remarkable therapeutic outcomes in B‐cell malignancies, many studies ...
Yue Huang, Mi Shao, Yiyun Wang, He Huang
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Chimeric Antigen Receptor T-Cell Revolution Remodeling Immunity to Conquer Autoimmune Disease [PDF]
Chimeric antigen receptor T (CAR-T) cell therapy, a groundbreaking technology in tumor immunotherapy, has demonstrated unprecedented potential in the field of autoimmune diseases in recent years.
Wenxia Shao +3 more
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Chimeric antigen receptor modified T cell–based immunotherapy is revolutionizing the field of cancer treatment. However, its potential in treating bile duct carcinoma has not been fully explored.
Jie-Ying Xu +9 more
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Antigen-induced chimeric antigen receptor multimerization amplifies on-tumor cytotoxicity
Ligand-induced receptor dimerization or oligomerization is a widespread mechanism for ensuring communication specificity, safeguarding receptor activation, and facilitating amplification of signal transduction across the cellular membrane.
Yan Sun +15 more
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Chimeric antigen receptor–engineered T cells for liver cancers, progress and obstacles
Chimeric antigen receptor–engineered T cells therapy has become the hottest topic of immunotherapy, as its great successes achieved in treating refractory hematological malignancies.
Keyu Li +3 more
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Pre-clinical evaluation of CD38 chimeric antigen receptor engineered T cells for the treatment of multiple myeloma [PDF]
Adoptive transfer of chimeric antigen receptor-transduced T cells is a promising strategy for cancer immunotherapy. The CD38 molecule, with its high expression on multiple myeloma cells, appears a suitable target for antibody therapy.
Esther Drent +13 more
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Tisagenlecleucel Model‐Based Cellular Kinetic Analysis of Chimeric Antigen Receptor–T Cells [PDF]
Tisagenlecleucel is a chimeric antigen receptor–T cell therapy that facilitates the killing of CD19+ B cells. A model was developed for the kinetics of tisagenlecleucel and the impact of therapies for treating cytokine release syndrome (tocilizumab and ...
Andrew M. Stein +15 more
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Co-stimulation is critical to the function of chimeric antigen receptor (CAR) T-cells. Previously, we demonstrated that dual co-stimulation can be effectively harnessed by a parallel (p)CAR architecture in which a CD28-containing second generation CAR is
Leena Halim +13 more
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Genome Editing as a Vehicle to Drive Successful Chimeric Antigen Receptor T Cell Therapies to the Clinic [PDF]
Chimeric antigen receptor (CAR) T cells have emerged as an effective therapy for patients with relapsed and refractory haematological malignancies. However, there are many challenges preventing clinical efficacy and thus broader translation of this ...
Caitlin R Hopkins, Joseph A Fraietta
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