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Raj K Puri - One of the best experts on this subject based on the ideXlab platform.
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Analysis of Biodistribution of Intracranially Infused Radiolabeled Interleukin-13 Receptor–Targeted Immunotoxin IL-13PE by SPECT/CT in an Orthotopic Mouse Model of
2016Co-Authors: Human Glioma, Bharat H. Joshi, Akiko Suzuki, Pamela Lel, Hisataka Kobayashi, Peter L. Choyke, Elaine M. Jagoda, Tomio Inoue, Raj K PuriAbstract:for Interleukin-13 receptor α2 (IL-13Rα2)–expressing tumors, has been administered intracranially by convection-enhanced delivery (CED) for glioma therapy in several clinical trials including a randomized phase 3 clinical trial. However, its intracranial distribution was not optimally evaluated. We investigated the intracranial distribution of radiolabeled IL-13PE after CED in a murine model of glioblastoma multiforme. Methods: IL-13PE was radiolabeled with Na125I and evaluated for its activity in vitro in receptor-positive U251 or-negative T98G human glioma cell lines. Gliomas were grown in nude mice after intracranial implantation with U251 cells, and 125I-IL-13PE was stereotactically administered by bolus or CED for 3 d, followed by micro-SPECT/CT imaging. SPECT images were evaluated quantita-tively and compared with histology and autoradiography results. Results: The radioiodination technique resulted in a specific and biologically active 125I-IL-13PE, which bound and was cytotoxic t
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analysis of biodistribution of intracranially infused radiolabeled Interleukin 13 receptor targeted immunotoxin il 13pe by spect ct in an orthotopic mouse model of human glioma
The Journal of Nuclear Medicine, 2014Co-Authors: Akiko Suzuki, Bharat H. Joshi, Pamela Leland, Hisataka Kobayashi, Peter L. Choyke, Elaine M. Jagoda, Tomio Inoue, Raj K PuriAbstract:Interleukin-13 Pseudomonas exotoxin (IL-13PE), a targeted agent for Interleukin-13 receptor α 2( IL-13Rα2)–expressing tumors, has been administered intracranially by convection-enhanced delivery (CED) for glioma therapy in several clinical trials including a randomized phase 3 clinical trial. However, its intracranial distribution was not optimally evaluated. We investigated the intracranial distribution of radiolabeled IL-13PE after CED in a murine model of glioblastoma multiforme. Methods: IL-13PE was radiolabeled with Na 125 I and evaluated for its activity in vitro in receptor-positive U251 or -negative T98G human glioma cell lines. Gliomas were grown in nude mice after intracranial implantation with U251 cells, and 125 I-IL-13PE was stereotactically administered by bolus or CED for 3 d, followed by micro-SPECT/CT imaging. SPECT images were evaluated quantitatively and compared with histology and autoradiography results. Results: The radioiodination technique resulted in a specific and biologically active 125I-IL-13PE, which bound and was cytotoxic to IL-13Rα2–positive but not to IL-13Rα2–negative tumor cells. Both the binding and the cytotoxic activities were blocked by a 100-fold excess of IL-13, which indicated the specificity of binding and cytotoxicity. SPECT/CT imaging revealed retention of 125I-IL-13PE administered by CED in U251 tumors and showed significantly higher volumes of distribution and maintained detectable drug levels for a longer period of time than the bolus route. These results were confirmed by autoradiography. Conclusion: IL-13PE can be radioiodinated without the loss of specificity, binding, or cytotoxic activity. Intracranial CED administration produces a higher volume of distribution for a longer period of time than the bolus route. Thus, CED of IL-13PE is superior to bolus injection in delivering the drug to the entire tumor.
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Interleukin 13 receptor alpha2 is a novel therapeutic target for human adrenocortical carcinoma
Cancer, 2012Co-Authors: Meenu Jain, Raj K Puri, Bharat H. Joshi, Lisa Zhang, Erin E Patterson, Naris Nilubol, Antonio Tito Fojo, Electron KebebewAbstract:Background Adrenocortical carcinoma (ACC) is a relatively rare but aggressive malignancy with limited therapeutic options. Previous genome wide expression studies have shown overexpression of Interleukin-13 receptor alpha2 (IL13Rα2) in some human malignancies.
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Interleukin 13 mediates signal transduction through Interleukin 13 receptor α2 in pancreatic ductal adenocarcinoma role of il 13 pseudomonas exotoxin in pancreatic cancer therapy
Clinical Cancer Research, 2010Co-Authors: Takeshi Shimamura, Syed R. Husain, Bharat H. Joshi, Toshio Fujisawa, Raj K PuriAbstract:Purpose: Interleukin-13 receptor α2 ( IL-13Rα2 ) is a tumor antigen that is overexpressed in certain human tumors. However, its significance and expression in pancreatic cancer is not known. It is also not known whether IL-13 can signal through IL-13Rα2 in cancer. Experimental Design: The expression of IL-13Rα2 was assessed in pancreatic cancer samples by immunohistochemistry and in cell lines by flow cytometry and reverse transcription-PCR. The role of IL-13Rα2 was examined by IL-13–induced signaling in pancreatic cancer cell lines. IL-13Rα2–positive tumors were targeted by IL-13PE cytotoxin in vitro and in vivo in an orthotopic murine model of human pancreatic cancer. Results: Of the pancreatic tumor samples 71% overexpressed moderate to high-density IL-13Rα2 chain compared with normal pancreatic samples. IL-13 induced transforming growth factor-β1 promoter activity in IL-13Rα2–positive tumor cells and in cells engineered to express IL-13Rα2 but not in IL-13Rα2–negative or RNA interference knockdown cells. c-Jun and c-Fos of the AP-1 family of nuclear factors were activated by IL-13 only in IL-13Rα2–positive cells. In the orthotopic mouse model, IL13-PE significantly decreased tumor growth when assessed by whole-body imaging and prolonged the mean survival time. Similar results were observed in mice xenografted with a surgically resected human pancreatic tumor sample. Conclusions: These results indicate that IL-13Rα2 is a functional receptor as IL-13 mediates signaling in human pancreatic cancer cell lines. IL-13 causes transforming growth factor-β activation via AP-1 pathway, which may cause tumor induced immunosuppression in the host. In addition, IL13-PE cytotoxin may be an effective therapeutic agent for the treatment of pancreatic cancer. Clin Cancer Res; 16(2); 577–86
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Interleukin 13 mediates signal transduction through Interleukin 13 receptor alpha2 in pancreatic ductal adenocarcinoma role of il 13 pseudomonas exotoxin in pancreatic cancer therapy
Clinical Cancer Research, 2010Co-Authors: Takeshi Shimamura, Syed R. Husain, Toshio Fujisawa, Bharat Joshi, Raj K PuriAbstract:Purpose: Interleukin-13 receptor α2 ( IL-13Rα2 ) is a tumor antigen that is overexpressed in certain human tumors. However, its significance and expression in pancreatic cancer is not known. It is also not known whether IL-13 can signal through IL-13Rα2 in cancer. Experimental Design: The expression of IL-13Rα2 was assessed in pancreatic cancer samples by immunohistochemistry and in cell lines by flow cytometry and reverse transcription-PCR. The role of IL-13Rα2 was examined by IL-13–induced signaling in pancreatic cancer cell lines. IL-13Rα2–positive tumors were targeted by IL-13PE cytotoxin in vitro and in vivo in an orthotopic murine model of human pancreatic cancer. Results: Of the pancreatic tumor samples 71% overexpressed moderate to high-density IL-13Rα2 chain compared with normal pancreatic samples. IL-13 induced transforming growth factor-β1 promoter activity in IL-13Rα2–positive tumor cells and in cells engineered to express IL-13Rα2 but not in IL-13Rα2–negative or RNA interference knockdown cells. c-Jun and c-Fos of the AP-1 family of nuclear factors were activated by IL-13 only in IL-13Rα2–positive cells. In the orthotopic mouse model, IL13-PE significantly decreased tumor growth when assessed by whole-body imaging and prolonged the mean survival time. Similar results were observed in mice xenografted with a surgically resected human pancreatic tumor sample. Conclusions: These results indicate that IL-13Rα2 is a functional receptor as IL-13 mediates signaling in human pancreatic cancer cell lines. IL-13 causes transforming growth factor-β activation via AP-1 pathway, which may cause tumor induced immunosuppression in the host. In addition, IL13-PE cytotoxin may be an effective therapeutic agent for the treatment of pancreatic cancer. Clin Cancer Res; 16(2); 577–86
Bharat H. Joshi - One of the best experts on this subject based on the ideXlab platform.
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Analysis of Biodistribution of Intracranially Infused Radiolabeled Interleukin-13 Receptor–Targeted Immunotoxin IL-13PE by SPECT/CT in an Orthotopic Mouse Model of
2016Co-Authors: Human Glioma, Bharat H. Joshi, Akiko Suzuki, Pamela Lel, Hisataka Kobayashi, Peter L. Choyke, Elaine M. Jagoda, Tomio Inoue, Raj K PuriAbstract:for Interleukin-13 receptor α2 (IL-13Rα2)–expressing tumors, has been administered intracranially by convection-enhanced delivery (CED) for glioma therapy in several clinical trials including a randomized phase 3 clinical trial. However, its intracranial distribution was not optimally evaluated. We investigated the intracranial distribution of radiolabeled IL-13PE after CED in a murine model of glioblastoma multiforme. Methods: IL-13PE was radiolabeled with Na125I and evaluated for its activity in vitro in receptor-positive U251 or-negative T98G human glioma cell lines. Gliomas were grown in nude mice after intracranial implantation with U251 cells, and 125I-IL-13PE was stereotactically administered by bolus or CED for 3 d, followed by micro-SPECT/CT imaging. SPECT images were evaluated quantita-tively and compared with histology and autoradiography results. Results: The radioiodination technique resulted in a specific and biologically active 125I-IL-13PE, which bound and was cytotoxic t
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analysis of biodistribution of intracranially infused radiolabeled Interleukin 13 receptor targeted immunotoxin il 13pe by spect ct in an orthotopic mouse model of human glioma
The Journal of Nuclear Medicine, 2014Co-Authors: Akiko Suzuki, Bharat H. Joshi, Pamela Leland, Hisataka Kobayashi, Peter L. Choyke, Elaine M. Jagoda, Tomio Inoue, Raj K PuriAbstract:Interleukin-13 Pseudomonas exotoxin (IL-13PE), a targeted agent for Interleukin-13 receptor α 2( IL-13Rα2)–expressing tumors, has been administered intracranially by convection-enhanced delivery (CED) for glioma therapy in several clinical trials including a randomized phase 3 clinical trial. However, its intracranial distribution was not optimally evaluated. We investigated the intracranial distribution of radiolabeled IL-13PE after CED in a murine model of glioblastoma multiforme. Methods: IL-13PE was radiolabeled with Na 125 I and evaluated for its activity in vitro in receptor-positive U251 or -negative T98G human glioma cell lines. Gliomas were grown in nude mice after intracranial implantation with U251 cells, and 125 I-IL-13PE was stereotactically administered by bolus or CED for 3 d, followed by micro-SPECT/CT imaging. SPECT images were evaluated quantitatively and compared with histology and autoradiography results. Results: The radioiodination technique resulted in a specific and biologically active 125I-IL-13PE, which bound and was cytotoxic to IL-13Rα2–positive but not to IL-13Rα2–negative tumor cells. Both the binding and the cytotoxic activities were blocked by a 100-fold excess of IL-13, which indicated the specificity of binding and cytotoxicity. SPECT/CT imaging revealed retention of 125I-IL-13PE administered by CED in U251 tumors and showed significantly higher volumes of distribution and maintained detectable drug levels for a longer period of time than the bolus route. These results were confirmed by autoradiography. Conclusion: IL-13PE can be radioiodinated without the loss of specificity, binding, or cytotoxic activity. Intracranial CED administration produces a higher volume of distribution for a longer period of time than the bolus route. Thus, CED of IL-13PE is superior to bolus injection in delivering the drug to the entire tumor.
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Interleukin 13 receptor alpha2 is a novel therapeutic target for human adrenocortical carcinoma
Cancer, 2012Co-Authors: Meenu Jain, Raj K Puri, Bharat H. Joshi, Lisa Zhang, Erin E Patterson, Naris Nilubol, Antonio Tito Fojo, Electron KebebewAbstract:Background Adrenocortical carcinoma (ACC) is a relatively rare but aggressive malignancy with limited therapeutic options. Previous genome wide expression studies have shown overexpression of Interleukin-13 receptor alpha2 (IL13Rα2) in some human malignancies.
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Interleukin 13 mediates signal transduction through Interleukin 13 receptor α2 in pancreatic ductal adenocarcinoma role of il 13 pseudomonas exotoxin in pancreatic cancer therapy
Clinical Cancer Research, 2010Co-Authors: Takeshi Shimamura, Syed R. Husain, Bharat H. Joshi, Toshio Fujisawa, Raj K PuriAbstract:Purpose: Interleukin-13 receptor α2 ( IL-13Rα2 ) is a tumor antigen that is overexpressed in certain human tumors. However, its significance and expression in pancreatic cancer is not known. It is also not known whether IL-13 can signal through IL-13Rα2 in cancer. Experimental Design: The expression of IL-13Rα2 was assessed in pancreatic cancer samples by immunohistochemistry and in cell lines by flow cytometry and reverse transcription-PCR. The role of IL-13Rα2 was examined by IL-13–induced signaling in pancreatic cancer cell lines. IL-13Rα2–positive tumors were targeted by IL-13PE cytotoxin in vitro and in vivo in an orthotopic murine model of human pancreatic cancer. Results: Of the pancreatic tumor samples 71% overexpressed moderate to high-density IL-13Rα2 chain compared with normal pancreatic samples. IL-13 induced transforming growth factor-β1 promoter activity in IL-13Rα2–positive tumor cells and in cells engineered to express IL-13Rα2 but not in IL-13Rα2–negative or RNA interference knockdown cells. c-Jun and c-Fos of the AP-1 family of nuclear factors were activated by IL-13 only in IL-13Rα2–positive cells. In the orthotopic mouse model, IL13-PE significantly decreased tumor growth when assessed by whole-body imaging and prolonged the mean survival time. Similar results were observed in mice xenografted with a surgically resected human pancreatic tumor sample. Conclusions: These results indicate that IL-13Rα2 is a functional receptor as IL-13 mediates signaling in human pancreatic cancer cell lines. IL-13 causes transforming growth factor-β activation via AP-1 pathway, which may cause tumor induced immunosuppression in the host. In addition, IL13-PE cytotoxin may be an effective therapeutic agent for the treatment of pancreatic cancer. Clin Cancer Res; 16(2); 577–86
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A Novel Role of Interleukin-13 Receptor α2 in Pancreatic Cancer Invasion and Metastasis
Cancer research, 2009Co-Authors: Toshio Fujisawa, Bharat H. Joshi, Atsushi Nakajima, Raj K PuriAbstract:Whereas Interleukin-13 receptor alpha2 chain (IL-13Ralpha2) is overexpressed in a variety of human solid cancers including pancreatic cancer, we investigated its significance in cancer invasion and metastasis. We used two pancreatic cancer cell lines, IL-13Ralpha2-negative HPAF-II and IL-13Ralpha2-positive HS766T, and generated IL-13Ralpha2 stably transfected HPAF-II as well as IL-13Ralpha2 RNA interference knocked-down HS766T cells. Ability of invasion and signal transduction was compared between IL-13Ralpha2-negative and IL-13Ralpha2-positive cells and tumor metastasis was assessed in murine model for human pancreatic cancer with orthotopic implantation of tumors. IL-13 treatment enhanced cell invasion in IL-13Ralpha2-positive cancer cell lines but not in IL-13Ralpha2-negative cell lines. Furthermore, gene transfer of IL-13Ralpha2 in negative cell lines enhanced invasion, whereas its silencing downmodulated invasion of pancreatic cell lines in a Matrigel invasion assay. In vivo study revealed that IL-13Ralpha2-positive cancer metastasized to lymph nodes, liver, and peritoneum at a significantly higher rate compared with IL-13Ralpha2-negative tumors. The expression of IL-13Ralpha2 in metastatic lesions was found to be increased compared with primary tumors, and mice with IL-13Ralpha2-positive cancer displayed cachexia and poor prognosis. Invasion and metastasis also correlated with increased matrix metalloproteinase protease activity in these cells. Mechanistically, IL-13 activated extracellular signal-regulated kinase 1/2 and activator protein-1 nuclear factors in IL-13Ralpha2-positive pancreatic cancer cell lines but not in IL-13Ralpha2-negative cell lines. Taken together, our results show for the first time that IL-13 can signal through IL-13Ralpha2 in pancreatic cancer cells and IL-13Ralpha2 may serve as a prognostic biomarker of invasion and metastasis in pancreatic cancer.
Waldemar Debinski - One of the best experts on this subject based on the ideXlab platform.
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An Interleukin 13 receptor α 2–specific peptide homes to human Glioblastoma multiforme xenografts
Neuro-oncology, 2011Co-Authors: Hetal Pandya, Denise M. Gibo, Shivank Garg, Steven J. Kridel, Waldemar DebinskiAbstract:Interleukin 13 receptor α 2 (IL-13Rα2) is a glioblastoma multiforme (GBM)-associated plasma membrane receptor, a brain tumor of dismal prognosis. Here, we isolated peptide ligands for IL-13Rα2 with use of a cyclic disulphide-constrained heptapeptide phages display library and 2 in vitro biopanning schemes with GBM cells that do (G26-H2 and SnB19-pcDNA cells) or do not (G26-V2 and SnB19-asIL-13Rα2 cells) over-express IL-13Rα2. We identified 3 peptide phages that bind to IL-13Rα2 in cellular and protein assays. One of the 3 peptide phages, termed Pep-1, bound to IL-13Rα2 with the highest specificity, surprisingly, also in a reducing environment. Pep-1 was thus synthesized and further analyzed in both linear and disulphide-constrained forms. The linear peptide bound to IL-13Rα2 more avidly than did the disulphide-constrained form and was efficiently internalized by IL-13Rα2-expressing GBM cells. The native ligand, IL-13, did not compete for the Pep-1 binding to the receptor and vice versa in any of the assays, indicating that the peptide might be binding to a site on the receptor different from the native ligand. Furthermore, we demonstrated by noninvasive near infrared fluorescence imaging in nude mice that Pep-1 binds and homes to both subcutaneous and orthotopic human GBM xenografts expressing IL-13Rα2 when injected by an intravenous route. Thus, we identified a linear heptapeptide specific for the IL-13Rα2 that is capable of crossing the blood-brain tumor barrier and homing to tumors. Pep-1 can be further developed for various applications in cancer and/or inflammatory diseases.
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Protein- and DNA-Based Active Immunotherapy Targeting Interleukin-13 Receptor Alpha2
Cancer biotherapy & radiopharmaceuticals, 2008Co-Authors: Akiva Mintz, A B Madhankumar, Denise M. Gibo, Nancy M. Cladel, Neil D. Christensen, Waldemar DebinskiAbstract:Abstract High-grade astrocytoma (HGA) is an invariably fatal malignancy with a mean survival of 14 months despite surgery, radiation, and chemotherapy. We have found that a restricted receptor for Interleukin-13 (IL-13), IL-13 receptor alpha 2 (IL13Rα2), is abundantly overexpressed in the vast majority of HGAs but is not appreciably expressed in normal tissue, with the exception of the testes. Therefore, IL-13Rα2 is a very attractive target for anti-HGA immunotherapy. In order to test protein and genetic vaccines that target IL13Rα2, we developed a G26-IL13Rα2-expressing syngeneic immunocompetent murine glioma model. Using this glioma model, mice were immunized with recombinant extracellular IL13Rα2 protein (IL13Rα2ex) or a DNA expression vector containing the gene for IL13Rα2 and were subsequently challenged with IL13Rα2(+) G26 tumors. Mice immunized with either recombinant or genetic IL13Rα2, but not mock-immunized controls, demonstrated complete protection against IL13Rα2(+) glioma growth and mortality...
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Interleukin 13 mutants of enhanced avidity toward the glioma associated receptor il13rα2
Neoplasia, 2004Co-Authors: A B Madhankumar, Akiva Mintz, Waldemar DebinskiAbstract:Interleukin 13 (IL13) binds a receptor that is highly overexpressed in malignant gliomas, IL13Ralpha2. IL13 protein is composed of four helices: alpha-helix A, B, C, and D, and we found a new "hot spot" in alpha-helix D that is crucial for the binding of IL13 to IL13Ralpha2. Lys-105 plus Lys-106 and Arg-109 represent this hot spot. In the current study, we have made substitutions at these three positions in IL13. We examined both neutralization of an IL13-based cytotoxin's glioma cell killing and direct receptor binding of the new IL13 mutants. We observed that Lys-105 and Arg-109 are critical for IL13 binding to IL13Ralpha2, indeed. However, new mutants of important properties were identified with regard to tumor targeting. IL13.K105R mutant, in which lysine was substituted by arginine, neutralized the killing of IL13Ralpha2-positive cells by IL13-based cytotoxin more efficiently than wild-type IL13. However, IL13.K105L or IL13.K105A was deprived of any such activity. Furthermore, IL13.K105R and IL13.R109K competed 77- and 27-fold better, respectively, with the binding of [(125)I]IL13 to the IL13Ralpha2 binding sites when compared with wild-type IL13. Thus, we have uncovered the first forms of IL13 of higher avidity toward IL13Ralpha2. These mutants should prove useful in the further design of anticancer diagnostics/therapeutics.
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molecular targeting with recombinant cytotoxins of Interleukin 13 receptor α2 expressing glioma
Journal of Neuro-oncology, 2003Co-Authors: Akiva Mintz, A B Madhankumar, Denise M. Gibo, Waldemar DebinskiAbstract:A restricted receptor for Interleukin 13 (IL-13R alpha2) is over-expressed in high-grade astrocytoma (HGA), but not in normal organs. In order to design and examine new anti-HGA therapies, which are molecularly directed against IL-13R alpha2, we established an IL-13R alpha2-expressing syngeneic immunocompetent murine model of HGA. The model was obtained by transfecting G-26 murine glioma cells with IL-13R alpha2. G-26-IL-13R alpha2(+) cells, but not mock-transfected cells, became susceptible to IL-13 mutant-based cytotoxic proteins that kill human HGA cells. G-26-IL-13R alpha2(+) cells maintained their tumorigenicity in immunocompetent C57BL/J6 mice and preserved their expression of IL-13R alpha2 in vivo. These characteristics of the G-26-IL-13R alpha2(+) tumors allowed us to test molecularly defined anti-glioma passive immunotherapy. A targeted recombinant chimera cytotoxin composed of multiply mutated IL-13 (IL-13.E13Y/R66D/S69D) and a derivative of Pseudomonas exotoxin (PE), PE1E, IL-13.E13Y/R66D/S69D-PE1E, was used in anti-tumor experiments. G-26-IL-13R alpha2(+) cells were killed by IL-13.E13Y/R66D/S69D-PE1E in an IL-4-independent fashion. To test the cytotoxin in vivo, G-26-IL-13R alpha2(+) tumors were established in C57BL/J6 mice and when the tumors reached a size of at least 50 mm3, the mice were treated with IL-13.E13Y/R66D/S69D-PE1E. In the mice treated with the targeted fusion cytotoxin, the tumors regressed and 80% of the animals were cured. This study documents the establishment of an IL-13R alpha2-positive model of HGA in immunocompetent rodents. Furthermore, the effectiveness and safety of the targeted IL-13-based cytotoxin against IL-13R alpha2-expressing tumors in a more clinically relevant in vivo HGA model is promising with regard to the future clinical utility of the cytotoxin.
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il 13rα2 is a glioma restricted receptor for Interleukin 13
Neoplasia, 2002Co-Authors: Akiva Mintz, Becky Slaglewebb, Denise M. Gibo, Neil D. Christensen, Waldemar DebinskiAbstract:We have found that binding sites for Interleukin-13 (IL-13) are overexpressed in a vast majority of high-grade astrocytomas (HGAs). These binding sites for IL-13 are distinct from the physiological receptor in that it does not bind IL-4. We also demonstrated that IL-13 receptor alpha 2 protein chain (IL-13Ralpha2), an IL-4-independent receptor for IL-13, is abundant among HGAs, but not in normal organs. To examine if IL-13Ralpha2 is the tumor-associated site for IL-13, we stably transfected normal Chinese hamster ovary (CHO) cells and glioma G-26 cells to express either human (h) or murine (m) IL-13Ralpha2. CHO-hIL-13Ralpha2(+) cells and G-26-h/mIL-13Ralpha2(+) cells, and not CHO and G-26 parental or mock-transfected cells, specifically bound IL-13 in an IL-4-independent manner. The IL-13Ralpha2(+) cells also became highly susceptible to the killing by an IL-13-based cytotoxic fusion protein. In loss of function studies, a HGA cell line, SNB-19, was transfected with antisense (as) hIL-13Ralpha2. as-SNB-19-hIL-13Ralpha2(+) cells lost their natural affinity towards IL-13 and became resistant to IL-13-based cytotoxins. The fact, that IL-13Ralpha2-positive cells bind IL-13 independent of IL-4, become susceptible to IL-13 cytotoxins, and cells deprived of IL-13Ralpha2 receptor lose these features, demonstrates that IL-13Ralpha2 is the brain tumor-associated receptor for IL-13.
Syed R. Husain - One of the best experts on this subject based on the ideXlab platform.
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Interleukin 13 mediates signal transduction through Interleukin 13 receptor alpha2 in pancreatic ductal adenocarcinoma role of il 13 pseudomonas exotoxin in pancreatic cancer therapy
Clinical Cancer Research, 2010Co-Authors: Takeshi Shimamura, Syed R. Husain, Toshio Fujisawa, Bharat Joshi, Raj K PuriAbstract:Purpose: Interleukin-13 receptor α2 ( IL-13Rα2 ) is a tumor antigen that is overexpressed in certain human tumors. However, its significance and expression in pancreatic cancer is not known. It is also not known whether IL-13 can signal through IL-13Rα2 in cancer. Experimental Design: The expression of IL-13Rα2 was assessed in pancreatic cancer samples by immunohistochemistry and in cell lines by flow cytometry and reverse transcription-PCR. The role of IL-13Rα2 was examined by IL-13–induced signaling in pancreatic cancer cell lines. IL-13Rα2–positive tumors were targeted by IL-13PE cytotoxin in vitro and in vivo in an orthotopic murine model of human pancreatic cancer. Results: Of the pancreatic tumor samples 71% overexpressed moderate to high-density IL-13Rα2 chain compared with normal pancreatic samples. IL-13 induced transforming growth factor-β1 promoter activity in IL-13Rα2–positive tumor cells and in cells engineered to express IL-13Rα2 but not in IL-13Rα2–negative or RNA interference knockdown cells. c-Jun and c-Fos of the AP-1 family of nuclear factors were activated by IL-13 only in IL-13Rα2–positive cells. In the orthotopic mouse model, IL13-PE significantly decreased tumor growth when assessed by whole-body imaging and prolonged the mean survival time. Similar results were observed in mice xenografted with a surgically resected human pancreatic tumor sample. Conclusions: These results indicate that IL-13Rα2 is a functional receptor as IL-13 mediates signaling in human pancreatic cancer cell lines. IL-13 causes transforming growth factor-β activation via AP-1 pathway, which may cause tumor induced immunosuppression in the host. In addition, IL13-PE cytotoxin may be an effective therapeutic agent for the treatment of pancreatic cancer. Clin Cancer Res; 16(2); 577–86
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Interleukin 13 mediates signal transduction through Interleukin 13 receptor α2 in pancreatic ductal adenocarcinoma role of il 13 pseudomonas exotoxin in pancreatic cancer therapy
Clinical Cancer Research, 2010Co-Authors: Takeshi Shimamura, Syed R. Husain, Bharat H. Joshi, Toshio Fujisawa, Raj K PuriAbstract:Purpose: Interleukin-13 receptor α2 ( IL-13Rα2 ) is a tumor antigen that is overexpressed in certain human tumors. However, its significance and expression in pancreatic cancer is not known. It is also not known whether IL-13 can signal through IL-13Rα2 in cancer. Experimental Design: The expression of IL-13Rα2 was assessed in pancreatic cancer samples by immunohistochemistry and in cell lines by flow cytometry and reverse transcription-PCR. The role of IL-13Rα2 was examined by IL-13–induced signaling in pancreatic cancer cell lines. IL-13Rα2–positive tumors were targeted by IL-13PE cytotoxin in vitro and in vivo in an orthotopic murine model of human pancreatic cancer. Results: Of the pancreatic tumor samples 71% overexpressed moderate to high-density IL-13Rα2 chain compared with normal pancreatic samples. IL-13 induced transforming growth factor-β1 promoter activity in IL-13Rα2–positive tumor cells and in cells engineered to express IL-13Rα2 but not in IL-13Rα2–negative or RNA interference knockdown cells. c-Jun and c-Fos of the AP-1 family of nuclear factors were activated by IL-13 only in IL-13Rα2–positive cells. In the orthotopic mouse model, IL13-PE significantly decreased tumor growth when assessed by whole-body imaging and prolonged the mean survival time. Similar results were observed in mice xenografted with a surgically resected human pancreatic tumor sample. Conclusions: These results indicate that IL-13Rα2 is a functional receptor as IL-13 mediates signaling in human pancreatic cancer cell lines. IL-13 causes transforming growth factor-β activation via AP-1 pathway, which may cause tumor induced immunosuppression in the host. In addition, IL13-PE cytotoxin may be an effective therapeutic agent for the treatment of pancreatic cancer. Clin Cancer Res; 16(2); 577–86
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Interleukin 13 receptor α2 chain
Cancer, 2006Co-Authors: Mitomu Kioi, Mariko Kawakami, Takeshi Shimamura, Syed R. Husain, Raj K PuriAbstract:BACKGROUND Epithelial ovarian cancer demonstrates high mortality due to diagnosis at an advanced stage. In the search for a biomarker for early diagnosis and a target for therapy, the issue of whether Interleukin-13 receptor (IL-13R), shown to be expressed on a variety of human cancers, is expressed in ovarian tumor samples was explored. In addition, whether this receptor serves as a biomarker and can be targeted by IL-13 cytotoxin was examined. METHODS IL-13R expression in 15 normal and 68 ovarian tumor tissue samples was determined by immunohistochemistry. Correlation between clinicopathologic features and IL-13R expression was analyzed. The efficacy of IL-13R-directed cytotoxin was determined in mice with subcutaneous, orthotopic, and peritoneal metastatic ovarian cancer. RESULTS Immunohistochemical analyses revealed that 83% of ovarian cancer specimens express IL-13Rα2, a high-affinity IL-13R subunit chain, whereas normal ovary samples expressed none or very low levels. The majority of clear cell ovarian carcinomas with the worst prognosis showed strong staining for IL-13Rα2. IL-13 cytotoxin was highly cytotoxic to the IGROV-1 ovarian cancer cell line in vitro, and it mediated significant antitumor activity against a xenografted tumor model. The antitumor effects were confirmed by treating orthotopically implanted or peritoneal metastatic ovarian tumors, which showed significant extension of survival in immunodeficient mice. IL-13 cytotoxin also prevented cachexia in treated mice. The soluble form of IL-13Rα2 was detected in the serum of mice with peritoneal metastasis, and the level decreased to baseline in the treated group. CONCLUSIONS IL-13Rα2 is a promising target for ovarian cancer therapy, and the soluble form of IL-13R may be a possible surrogate marker for disease monitoring. Cancer. Published 2006 by the American Cancer Society.
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Convection-enhanced delivery of Interleukin-13 receptor-directed cytotoxin for malignant glioma therapy.
Technology in cancer research & treatment, 2006Co-Authors: Mitomu Kioi, Syed R. Husain, David Croteau, Sandeep Kunwar, Raj K PuriAbstract:The treatment of patients with malignant brain tumors, in particular glioblastoma multiforme (GBM) is very challenging because of their diffuse infiltrative nature and the cytological heterogeneity. The median survival of patients with newly diagnosed GBM is only 12-15 months, and only 8-12% of them survive for two years. Novel approaches for brain tumor therapy are needed. Recently, targeted therapies have emerged as promising modality for cancer targeting. We have discovered that high affinity plasma membrane receptor for Interleukin-13 (IL-13), an immune regulatory cytokine, is over-expressed in 60-80% of malignant brain tumors. To target these IL-13R, we generated a chimeric fusion protein, composed of human IL-13 and mutated Pseudomonas exotoxin (PE), termed IL-13 cytotoxin (IL13-PE), and tested its cytotoxicity to IL-13R-expressing GBM cells. IL-13 cytotoxin was highly potent and selective in killing IL-13R-expressing GBM cells. In contrast, normal cells including brain, immune, and endothelial cells were generally not affected by this cytotoxin due to no or low expression of IL-13R. In vivo pre-clinical studies for safety and toxicity were also performed in mice, rats, and monkeys, and IL-13 cytotoxin was found to be well tolerated by both systemic and intracerebral administrations. IL-13 cytotoxin was found to mediate remarkable efficacy in animal models of human brain tumors. Encouraged by these pre-clinical studies, four Phase 1/2 clinical trials in adult patients with recurrent malignant glioma have been completed. These clinical trials involved convection-enhanced delivery (CED) of IL-13 cytotoxin either intratumoral or intraparenchymal after resection of tumor. CED is a novel loco-regional drug delivery method for intracranial tumors that relies on a continuous pressure gradient to distribute drug into interstitial space. This route of IL-13 cytotoxin administration appears to be very well tolerated and have a good risk-benefit profile. Most recently, a randomized controlled Phase 3 clinical trial (PRECISE) with intraparenchymal IL-13 cytotoxin administration was completed and subjects are being monitored for safety and survival.
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Interleukin-13 receptor as a unique target for anti-glioblastoma therapy.
International journal of cancer, 2001Co-Authors: Syed R. Husain, Bharat H. Joshi, Raj K PuriAbstract:Surgery, radiotherapy and chemotherapy have minimally altered survival of glioblastoma patients. We explored a specific approach for glioblastoma therapy in which cellular Interleukin-13 (IL-13) receptors were targeted by an IL-13 cytotoxin. A wide array of human glioblastoma cell lines expressing the receptor for IL-13 were effectively killed by an IL-13 cytotoxin, a chimeric protein composed of human IL-13 and a mutated form of Pseudomonas exotoxin (termed IL13-PE38QQR or IL-13 toxin). Daily (qd) intratumoral injections of IL-13 toxin (50 and 100 microg/kg/day) for 5 consecutive days into subcutaneous human U251 glioblastoma tumors (approx. 30 mm(2)) in nude mice resulted in complete regression of tumors in 4/5 and 5/5 mice, respectively. Tumor regression persisted for at least 221 days postimplantation. Three alternate day injections (qod) of IL-13 toxin (250 microg/kg/day) into other subcutaneous U87 glioblastoma tumors also produced durable complete responses (CR) in all 5 mice. Twice daily (bid) intraperitoneal injections of IL-13 toxin at 25 or 50 microg/kg/dose for 5 days (total doses = 10) regressed U251 tumors by 45% and 58% with 1/5 and 2/5 CRs, respectively, on day 54. Intraperitoneal administration of IL-13 toxin with an identical schedule at a dose of 50 microg/kg injected into mice bearing U87 xenografts reduced tumor burden by one-half on day 36. Similar doses (25 or 50 microg/kg) with a daily schedule (qd x 5) by the intravenous route also suppressed growth of U251 subcutaneous tumors by 75% and 81% with 1/6 CR in either group by day 34. All mice tolerated therapy well without any visible signs of toxicity. On the basis of these studies, we have initiated a Phase I clinical trial using IL13-PE38QQR in patients with recurrent glioblastoma. Published 2001 Wiley-Liss, Inc.
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Interleukin 13 mediates signal transduction through Interleukin 13 receptor α2 in pancreatic ductal adenocarcinoma role of il 13 pseudomonas exotoxin in pancreatic cancer therapy
Clinical Cancer Research, 2010Co-Authors: Takeshi Shimamura, Syed R. Husain, Bharat H. Joshi, Toshio Fujisawa, Raj K PuriAbstract:Purpose: Interleukin-13 receptor α2 ( IL-13Rα2 ) is a tumor antigen that is overexpressed in certain human tumors. However, its significance and expression in pancreatic cancer is not known. It is also not known whether IL-13 can signal through IL-13Rα2 in cancer. Experimental Design: The expression of IL-13Rα2 was assessed in pancreatic cancer samples by immunohistochemistry and in cell lines by flow cytometry and reverse transcription-PCR. The role of IL-13Rα2 was examined by IL-13–induced signaling in pancreatic cancer cell lines. IL-13Rα2–positive tumors were targeted by IL-13PE cytotoxin in vitro and in vivo in an orthotopic murine model of human pancreatic cancer. Results: Of the pancreatic tumor samples 71% overexpressed moderate to high-density IL-13Rα2 chain compared with normal pancreatic samples. IL-13 induced transforming growth factor-β1 promoter activity in IL-13Rα2–positive tumor cells and in cells engineered to express IL-13Rα2 but not in IL-13Rα2–negative or RNA interference knockdown cells. c-Jun and c-Fos of the AP-1 family of nuclear factors were activated by IL-13 only in IL-13Rα2–positive cells. In the orthotopic mouse model, IL13-PE significantly decreased tumor growth when assessed by whole-body imaging and prolonged the mean survival time. Similar results were observed in mice xenografted with a surgically resected human pancreatic tumor sample. Conclusions: These results indicate that IL-13Rα2 is a functional receptor as IL-13 mediates signaling in human pancreatic cancer cell lines. IL-13 causes transforming growth factor-β activation via AP-1 pathway, which may cause tumor induced immunosuppression in the host. In addition, IL13-PE cytotoxin may be an effective therapeutic agent for the treatment of pancreatic cancer. Clin Cancer Res; 16(2); 577–86
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Interleukin 13 mediates signal transduction through Interleukin 13 receptor alpha2 in pancreatic ductal adenocarcinoma role of il 13 pseudomonas exotoxin in pancreatic cancer therapy
Clinical Cancer Research, 2010Co-Authors: Takeshi Shimamura, Syed R. Husain, Toshio Fujisawa, Bharat Joshi, Raj K PuriAbstract:Purpose: Interleukin-13 receptor α2 ( IL-13Rα2 ) is a tumor antigen that is overexpressed in certain human tumors. However, its significance and expression in pancreatic cancer is not known. It is also not known whether IL-13 can signal through IL-13Rα2 in cancer. Experimental Design: The expression of IL-13Rα2 was assessed in pancreatic cancer samples by immunohistochemistry and in cell lines by flow cytometry and reverse transcription-PCR. The role of IL-13Rα2 was examined by IL-13–induced signaling in pancreatic cancer cell lines. IL-13Rα2–positive tumors were targeted by IL-13PE cytotoxin in vitro and in vivo in an orthotopic murine model of human pancreatic cancer. Results: Of the pancreatic tumor samples 71% overexpressed moderate to high-density IL-13Rα2 chain compared with normal pancreatic samples. IL-13 induced transforming growth factor-β1 promoter activity in IL-13Rα2–positive tumor cells and in cells engineered to express IL-13Rα2 but not in IL-13Rα2–negative or RNA interference knockdown cells. c-Jun and c-Fos of the AP-1 family of nuclear factors were activated by IL-13 only in IL-13Rα2–positive cells. In the orthotopic mouse model, IL13-PE significantly decreased tumor growth when assessed by whole-body imaging and prolonged the mean survival time. Similar results were observed in mice xenografted with a surgically resected human pancreatic tumor sample. Conclusions: These results indicate that IL-13Rα2 is a functional receptor as IL-13 mediates signaling in human pancreatic cancer cell lines. IL-13 causes transforming growth factor-β activation via AP-1 pathway, which may cause tumor induced immunosuppression in the host. In addition, IL13-PE cytotoxin may be an effective therapeutic agent for the treatment of pancreatic cancer. Clin Cancer Res; 16(2); 577–86
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A Novel Role of Interleukin-13 Receptor α2 in Pancreatic Cancer Invasion and Metastasis
Cancer research, 2009Co-Authors: Toshio Fujisawa, Bharat H. Joshi, Atsushi Nakajima, Raj K PuriAbstract:Whereas Interleukin-13 receptor alpha2 chain (IL-13Ralpha2) is overexpressed in a variety of human solid cancers including pancreatic cancer, we investigated its significance in cancer invasion and metastasis. We used two pancreatic cancer cell lines, IL-13Ralpha2-negative HPAF-II and IL-13Ralpha2-positive HS766T, and generated IL-13Ralpha2 stably transfected HPAF-II as well as IL-13Ralpha2 RNA interference knocked-down HS766T cells. Ability of invasion and signal transduction was compared between IL-13Ralpha2-negative and IL-13Ralpha2-positive cells and tumor metastasis was assessed in murine model for human pancreatic cancer with orthotopic implantation of tumors. IL-13 treatment enhanced cell invasion in IL-13Ralpha2-positive cancer cell lines but not in IL-13Ralpha2-negative cell lines. Furthermore, gene transfer of IL-13Ralpha2 in negative cell lines enhanced invasion, whereas its silencing downmodulated invasion of pancreatic cell lines in a Matrigel invasion assay. In vivo study revealed that IL-13Ralpha2-positive cancer metastasized to lymph nodes, liver, and peritoneum at a significantly higher rate compared with IL-13Ralpha2-negative tumors. The expression of IL-13Ralpha2 in metastatic lesions was found to be increased compared with primary tumors, and mice with IL-13Ralpha2-positive cancer displayed cachexia and poor prognosis. Invasion and metastasis also correlated with increased matrix metalloproteinase protease activity in these cells. Mechanistically, IL-13 activated extracellular signal-regulated kinase 1/2 and activator protein-1 nuclear factors in IL-13Ralpha2-positive pancreatic cancer cell lines but not in IL-13Ralpha2-negative cell lines. Taken together, our results show for the first time that IL-13 can signal through IL-13Ralpha2 in pancreatic cancer cells and IL-13Ralpha2 may serve as a prognostic biomarker of invasion and metastasis in pancreatic cancer.