Objective:Natural killer(NK)cells have gained considerable attention due to their potential in treating"cold tumors,"and are therefore considered as one of the new strategies for curing cancer,by using world...Objective:Natural killer(NK)cells have gained considerable attention due to their potential in treating"cold tumors,"and are therefore considered as one of the new strategies for curing cancer,by using worldwide development of their new possibilities and interventions with NK cell-related therapeutic products.Methods:We constructed a trispecific killer engager(TriKE)consisting of anti-CD16,IL-15,and anti-CD19.This TriKE was designed to attract CD19^(+)tumor cells to CD16^(+)NK cells,whereas IL-15 sustained the proliferation,development,and survival of NK cells.Results:Treatment with 161519 TriKE in the presence of CD19^(+)targets upregulated expression of CD69,CD107 a,TRAIL,IFN-γ,and TNF-α in NK cells,and significantly improved the proliferation and cytotoxicity of NK cells.NK cells"armed"with 161519 TriKE showed stronger cytolysis against CD19+targets compared with that of"unarmed"NK cells.A preclinical model of B-cell lymphoma in human peripheral blood mononuclear cell-reconstituted xenograft mice showed significant inhibition of tumor growth and prolonged overall survival after treatment with 161519 TriKE,when compared with that in control mice or mice treated with 1619 BiKE.Combined use of IL-2 was a more effective treatment with 1619 BiKE,when compared with that using 161519 TriKE.Conclusions:The newly generated 161519 TriKE enhanced the proliferation,activation,cytokine secretion,and cytotoxicity of NK cells in the presence of CD19+tumor cells.The 161519 TriKE aided inhibition of tumor growth and prolonged the overall survival of murine xenografts,and could be used to treat CD19-positive cancers.展开更多
T cell engaging bispecific antibody(TCB)is an effective immunotherapy for cancer treatment.Through co-targeting CD3 and tumor-associated antigen(TAA),TCB can redirect CD3+T cells to eliminate tumor cells regardless of...T cell engaging bispecific antibody(TCB)is an effective immunotherapy for cancer treatment.Through co-targeting CD3 and tumor-associated antigen(TAA),TCB can redirect CD3+T cells to eliminate tumor cells regardless of the specificity of T cell receptor.Tissue factor(TF)is a TAA that involved in tumor progression.Here,we designed and characterized a novel TCB targeting TF(TF-TCB)for the treatment of TF-positive tumors.In vitro,robust T cell activation,tumor cell lysis and T cell proliferation were induced by TF-TCB.The tumor cell lysis activity was dependent upon both CD3 and TF binding moieties of the TF-TCB,and was related to TF expression level of tumor cells.In vivo,in both tumor cell/human peripheral blood mononuclear cells(PBMC)co-grafting model and established tumor models with poor T cell infiltration,tumor growth was strongly inhibited by TF-TCB.T cell infiltration into tumors was induced during the treatment.Furthermore,efficacy of TF-TCB was further improved by combination with immune checkpoint inhibitors.For the first time,our results validated the feasibility of using TF as a target for TCB and highlighted the potential for TF-TCB to demonstrate efficacy in solid tumor treatment.展开更多
Recently,bispecific T-cell engagers(BiTEs)and chimeric antigen receptor-modified T cells(CAR-Ts)have been shown to have high therapeutic efficacy in hematological tumors.CD87 is highly expressed in solid tumors with a...Recently,bispecific T-cell engagers(BiTEs)and chimeric antigen receptor-modified T cells(CAR-Ts)have been shown to have high therapeutic efficacy in hematological tumors.CD87 is highly expressed in solid tumors with an oncogenic function.To assess their cytotoxic effects on invasive nonfunctioning pituitary adenomas(iNFPAs),we first examined CD87 expression and its effects on the metabolism of iNFPA cells.We generated CD87-specific BiTE and CAR/IL-12 T cells,and their cytotoxic effects on iNFPAs cells and in mouse models were determined.CD87 had high expression in i NFPA tissue and cell samples but was undetected in noncancerous brain samples.CD87×CD3 BiTE and CD87 CAR/IL-12 T-cells showed antigenic specificity and exerted satisfactory cytotoxic effects,decreasing tumor cell proliferation in vitro and reducing existing tumors in experimental mice.Overall,the above findings suggest that CD87 is a promising target for the immunotherapeutic management of iNFPAs using anti-CD87 BiTE and CD87-specific CAR/IL-12 T cells.展开更多
By binding to multiple antigens simultaneously,multispecific antibodies are expected to substantially improve both the activity and long-term efficacy of antibody-based immunotherapy.Immune cell engagers,a subclass of...By binding to multiple antigens simultaneously,multispecific antibodies are expected to substantially improve both the activity and long-term efficacy of antibody-based immunotherapy.Immune cell engagers,a subclass of antibody-based constructs,consist of engineered structures designed to bridge immune effector cells to their target,thereby redirecting the immune response toward the tumor cells or infected cells.The increasing number of recent clinical trials evaluating immune cell engagers reflects the important role of these molecules in new therapeutic approaches for cancer and infections.In this review,we discuss how different immune cell types(T and natural killer lymphocytes,as well as myeloid cells)can be bound by immune cell engagers in immunotherapy for cancer and infectious diseases.Furthermore,we explore the preclinical and clinical advancements of these constructs,and we discuss the challenges in translating the current knowledge from cancer to the virology field.Finally,we speculate on the promising future directions that immune cell engagers may take in cancer treatment and antiviral therapy.展开更多
基金supported by grants from the National Key R&D Program of China(Grant No.2019YFA0508502)the CAMS Innovation Fund for Medical Sciences(Grant No.2019-I2M-5-073)the National Natural Science Foundation of China(Grant Nos.81788101,81972679,and 81821001)。
文摘Objective:Natural killer(NK)cells have gained considerable attention due to their potential in treating"cold tumors,"and are therefore considered as one of the new strategies for curing cancer,by using worldwide development of their new possibilities and interventions with NK cell-related therapeutic products.Methods:We constructed a trispecific killer engager(TriKE)consisting of anti-CD16,IL-15,and anti-CD19.This TriKE was designed to attract CD19^(+)tumor cells to CD16^(+)NK cells,whereas IL-15 sustained the proliferation,development,and survival of NK cells.Results:Treatment with 161519 TriKE in the presence of CD19^(+)targets upregulated expression of CD69,CD107 a,TRAIL,IFN-γ,and TNF-α in NK cells,and significantly improved the proliferation and cytotoxicity of NK cells.NK cells"armed"with 161519 TriKE showed stronger cytolysis against CD19+targets compared with that of"unarmed"NK cells.A preclinical model of B-cell lymphoma in human peripheral blood mononuclear cell-reconstituted xenograft mice showed significant inhibition of tumor growth and prolonged overall survival after treatment with 161519 TriKE,when compared with that in control mice or mice treated with 1619 BiKE.Combined use of IL-2 was a more effective treatment with 1619 BiKE,when compared with that using 161519 TriKE.Conclusions:The newly generated 161519 TriKE enhanced the proliferation,activation,cytokine secretion,and cytotoxicity of NK cells in the presence of CD19+tumor cells.The 161519 TriKE aided inhibition of tumor growth and prolonged the overall survival of murine xenografts,and could be used to treat CD19-positive cancers.
基金This work was supported by the National Natural Science Foundation of China(Nos.81773621 and 82073751)the National Science and Technology Major Project(No.2019ZX09201001,China).
文摘T cell engaging bispecific antibody(TCB)is an effective immunotherapy for cancer treatment.Through co-targeting CD3 and tumor-associated antigen(TAA),TCB can redirect CD3+T cells to eliminate tumor cells regardless of the specificity of T cell receptor.Tissue factor(TF)is a TAA that involved in tumor progression.Here,we designed and characterized a novel TCB targeting TF(TF-TCB)for the treatment of TF-positive tumors.In vitro,robust T cell activation,tumor cell lysis and T cell proliferation were induced by TF-TCB.The tumor cell lysis activity was dependent upon both CD3 and TF binding moieties of the TF-TCB,and was related to TF expression level of tumor cells.In vivo,in both tumor cell/human peripheral blood mononuclear cells(PBMC)co-grafting model and established tumor models with poor T cell infiltration,tumor growth was strongly inhibited by TF-TCB.T cell infiltration into tumors was induced during the treatment.Furthermore,efficacy of TF-TCB was further improved by combination with immune checkpoint inhibitors.For the first time,our results validated the feasibility of using TF as a target for TCB and highlighted the potential for TF-TCB to demonstrate efficacy in solid tumor treatment.
基金supported by the National Key Research and Development Program of China(2021YFE0114300)the National Key Basic Research Program of China(973 Program)(2014CB541603)+1 种基金the National High Technology Research and Development Program of China(863 Program)(2013AA020106)the National Natural Science Foundation of China(82171475,82170799)。
文摘Recently,bispecific T-cell engagers(BiTEs)and chimeric antigen receptor-modified T cells(CAR-Ts)have been shown to have high therapeutic efficacy in hematological tumors.CD87 is highly expressed in solid tumors with an oncogenic function.To assess their cytotoxic effects on invasive nonfunctioning pituitary adenomas(iNFPAs),we first examined CD87 expression and its effects on the metabolism of iNFPA cells.We generated CD87-specific BiTE and CAR/IL-12 T cells,and their cytotoxic effects on iNFPAs cells and in mouse models were determined.CD87 had high expression in i NFPA tissue and cell samples but was undetected in noncancerous brain samples.CD87×CD3 BiTE and CD87 CAR/IL-12 T-cells showed antigenic specificity and exerted satisfactory cytotoxic effects,decreasing tumor cell proliferation in vitro and reducing existing tumors in experimental mice.Overall,the above findings suggest that CD87 is a promising target for the immunotherapeutic management of iNFPAs using anti-CD87 BiTE and CD87-specific CAR/IL-12 T cells.
基金CR is supported by a grant from the National Research Fund Luxembourg(FNR),Doctoral Training Unit"i2TRON",PRIDE19/14254520,project 20200831.
文摘By binding to multiple antigens simultaneously,multispecific antibodies are expected to substantially improve both the activity and long-term efficacy of antibody-based immunotherapy.Immune cell engagers,a subclass of antibody-based constructs,consist of engineered structures designed to bridge immune effector cells to their target,thereby redirecting the immune response toward the tumor cells or infected cells.The increasing number of recent clinical trials evaluating immune cell engagers reflects the important role of these molecules in new therapeutic approaches for cancer and infections.In this review,we discuss how different immune cell types(T and natural killer lymphocytes,as well as myeloid cells)can be bound by immune cell engagers in immunotherapy for cancer and infectious diseases.Furthermore,we explore the preclinical and clinical advancements of these constructs,and we discuss the challenges in translating the current knowledge from cancer to the virology field.Finally,we speculate on the promising future directions that immune cell engagers may take in cancer treatment and antiviral therapy.