Javascript must be enabled to continue!
Antitumor Activity of Human CD34+ Cells Expressing Membrane-Bound Tumor Necrosis Factor-Related Apoptosis-Inducing Ligand (mTRAIL).
View through CrossRef
Abstract
Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) is expected to play a key role in anti-cancer therapy due to its high cancer cell-specificity and potent antitumor activity. The clinical development of soluble (s)TRAIL is however hampered by several limitations, includingshort plasma half-life;liver toxicity;tumor cell resistance.
To overcome these limitations, we used CD34+ cells transduced with an adenovirus encoding the full-length human TRAIL gene (CD34−TRAIL+) as vehicles for intra-tumor delivery of membrane-bound (m)TRAIL. The mean (±SD) transduction efficiency of CD34+ cells exposed to a multiplicity of infection (MOI) of 500 was 83 ± 8% (range 70 – 95%) with a cell viability ≥85%. In vitro, exposure of the sTRAIL-sensitive KMS-11 cell line to CD34−TRAIL+, but not mock-transduced CD34+ cells consistently resulted in caspase-3, -8, and -9 activation and in PARP cleavage, as well as in potent induction of apoptosis (up to 80% after a 48-hour co-culture). Exposure of the sTRAIL-resistant JVM-2 cell line to CD34−TRAIL+ cells resulted in significant levels of tumor cell death (up to 50% after a 48-hour co-culture). Studies in nonobese diabetic/severe combined immunodeficient (NOD/SCID) mice xenografted with KMS-11 cell line showed that CD34−TRAIL+ cells significantly increased the median survival of mice bearing early-stage (92 vs 55 days, P ≤ 0.0001) and advanced-stage (83 vs 55 days, P ≤ 0.0001) disease, as compared with controls. Additionally, CD34−TRAIL+ cells significantly prolonged the median survival of mice xenografted with the sTRAIL-resistant JVM-2 (40 vs 31 days, P ≤ 0.0001) and SU-DHL-4V (38 vs 30 days, P ≤ 0.0001) cell lines. No obvious toxicity was observed upon administration of CD34−TRAIL+ cells. Histological analysis of subcutaneous lymphoma revealed an efficient tumor homing of transduced cells and high level expression of the agonistic TRAIL-R2 receptor by tumor endothelial cells. Following injection of CD34−TRAIL+ cells, but not mock-transduced CD34+ cells, TUNEL staining revealed increasing amounts of apoptotic cells with a 21-fold increase of the apoptotic index at 120 hour post-injection. Additionally, CD34−TRAIL+ cells induced signs of vascular damage leading to a progressive disintegration of the vascular bed, suggesting that tumor endothelial cells represent an early target of CD34−TRAIL+ cells. Our experiments show that:in vitro, the co-culture of tumor cells and CD34−TRAIL+ cells resulted in a marked apoptosis of both sTRAIL-sensitive and sTRAIL-resistant tumor cells;in vivo, injection of CD34−TRAIL+ cells in mice bearing advanced-stage tumors as well as sTRAIL-resistant tumors was associated with a significant prolongation of survival.
These results show that CD34−TRAIL+ cells might be an efficient vehicle for mTRAIL delivery to tumors, where they exert a potent antitumor effect possibly mediated by both direct tumor cell killing and indirect vascular-disrupting mechanisms.
Title: Antitumor Activity of Human CD34+ Cells Expressing Membrane-Bound Tumor Necrosis Factor-Related Apoptosis-Inducing Ligand (mTRAIL).
Description:
Abstract
Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) is expected to play a key role in anti-cancer therapy due to its high cancer cell-specificity and potent antitumor activity.
The clinical development of soluble (s)TRAIL is however hampered by several limitations, includingshort plasma half-life;liver toxicity;tumor cell resistance.
To overcome these limitations, we used CD34+ cells transduced with an adenovirus encoding the full-length human TRAIL gene (CD34−TRAIL+) as vehicles for intra-tumor delivery of membrane-bound (m)TRAIL.
The mean (±SD) transduction efficiency of CD34+ cells exposed to a multiplicity of infection (MOI) of 500 was 83 ± 8% (range 70 – 95%) with a cell viability ≥85%.
In vitro, exposure of the sTRAIL-sensitive KMS-11 cell line to CD34−TRAIL+, but not mock-transduced CD34+ cells consistently resulted in caspase-3, -8, and -9 activation and in PARP cleavage, as well as in potent induction of apoptosis (up to 80% after a 48-hour co-culture).
Exposure of the sTRAIL-resistant JVM-2 cell line to CD34−TRAIL+ cells resulted in significant levels of tumor cell death (up to 50% after a 48-hour co-culture).
Studies in nonobese diabetic/severe combined immunodeficient (NOD/SCID) mice xenografted with KMS-11 cell line showed that CD34−TRAIL+ cells significantly increased the median survival of mice bearing early-stage (92 vs 55 days, P ≤ 0.
0001) and advanced-stage (83 vs 55 days, P ≤ 0.
0001) disease, as compared with controls.
Additionally, CD34−TRAIL+ cells significantly prolonged the median survival of mice xenografted with the sTRAIL-resistant JVM-2 (40 vs 31 days, P ≤ 0.
0001) and SU-DHL-4V (38 vs 30 days, P ≤ 0.
0001) cell lines.
No obvious toxicity was observed upon administration of CD34−TRAIL+ cells.
Histological analysis of subcutaneous lymphoma revealed an efficient tumor homing of transduced cells and high level expression of the agonistic TRAIL-R2 receptor by tumor endothelial cells.
Following injection of CD34−TRAIL+ cells, but not mock-transduced CD34+ cells, TUNEL staining revealed increasing amounts of apoptotic cells with a 21-fold increase of the apoptotic index at 120 hour post-injection.
Additionally, CD34−TRAIL+ cells induced signs of vascular damage leading to a progressive disintegration of the vascular bed, suggesting that tumor endothelial cells represent an early target of CD34−TRAIL+ cells.
Our experiments show that:in vitro, the co-culture of tumor cells and CD34−TRAIL+ cells resulted in a marked apoptosis of both sTRAIL-sensitive and sTRAIL-resistant tumor cells;in vivo, injection of CD34−TRAIL+ cells in mice bearing advanced-stage tumors as well as sTRAIL-resistant tumors was associated with a significant prolongation of survival.
These results show that CD34−TRAIL+ cells might be an efficient vehicle for mTRAIL delivery to tumors, where they exert a potent antitumor effect possibly mediated by both direct tumor cell killing and indirect vascular-disrupting mechanisms.
Related Results
Disulfram/Copper Complex May Enhance Its Cytotoxic Effect on CD34+CD38- KG1-Alpha Cells By Down Regulating the Expression of HIF1-Alpha in the Co-Cultured MSCs
Disulfram/Copper Complex May Enhance Its Cytotoxic Effect on CD34+CD38- KG1-Alpha Cells By Down Regulating the Expression of HIF1-Alpha in the Co-Cultured MSCs
Abstract
Backgroud We had reported that Disulfram/copper complex (DS/ Cu) had a potent and selective anti-leukemia property in vitro against leukemia stem-like cells...
Higher Percentage of CD34+CD38− Cells Detected by Multiparameter Flow Cytometry From Leukapheresis Products Predict Unsustained Complete Remission in AML
Higher Percentage of CD34+CD38− Cells Detected by Multiparameter Flow Cytometry From Leukapheresis Products Predict Unsustained Complete Remission in AML
Abstract
Abstract 1485
Aim:
Myeloablative chemotherapy followed by autologous PBSCT remains one treatment strateg...
Complex Collision Tumors: A Systematic Review
Complex Collision Tumors: A Systematic Review
Abstract
Introduction: A collision tumor consists of two distinct neoplastic components located within the same organ, separated by stromal tissue, without histological intermixing...
Isolation and Characterization of a CD34+ Sub-Clone in B-Cell Lymphoma
Isolation and Characterization of a CD34+ Sub-Clone in B-Cell Lymphoma
Non-Hodgkin's lymphoma (NHL) is the most common hematological malignancy in the US. Many types remain incurable despite response to initial therapy and achievement of complete remi...
Recovery of Viable CD34+ Cells from Cryopreserved Haemopoietic Stem Cell Products.
Recovery of Viable CD34+ Cells from Cryopreserved Haemopoietic Stem Cell Products.
Abstract
The recovery of viable CD34+ cells reinfused into patients at the time of autologous or allogeneic transplantation is clinically an important variable, whic...
CD34 negative HLA‐DR negative acute myeloid leukaemia: A higher association with NPM1 and FLT3‐ITD mutations
CD34 negative HLA‐DR negative acute myeloid leukaemia: A higher association with NPM1 and FLT3‐ITD mutations
AbstractIntroductionCD34 and HLA‐DR negativity is often used as a characteristic immunophenotypic feature of acute promyelocytic leukaemia (APL) that differentiates APL from other ...
Nature Products Enhance NKG2D Ligands Expression of CD123+CD34+CD38− Leukemia Stem Cells for Stimulating Cytotoxicity of NKG2D+ Cells to Themselves
Nature Products Enhance NKG2D Ligands Expression of CD123+CD34+CD38− Leukemia Stem Cells for Stimulating Cytotoxicity of NKG2D+ Cells to Themselves
Abstract
CD123+CD34+CD38− leukemia cells regarded as leukemia stem cells, not only refractory to chemotherapeutics but also resistant to immune response such as cyto...
Absolute Number of Transplanted CD34+ Cells Expressing c-mpl (CD110) Correlates with Speed of Platelet Engraftment Following Autologous Stem Cell Transplantation.
Absolute Number of Transplanted CD34+ Cells Expressing c-mpl (CD110) Correlates with Speed of Platelet Engraftment Following Autologous Stem Cell Transplantation.
Abstract
Recovery of neutrophil numbers after peripheral blood stem cell transplantation (PBSCT) is closely associated with graft CD34+ cell dose. Predicting the spe...

