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Efficacy of Recombinant Methioninase (rMETase) on Recalcitrant Cancer Patient-Derived Orthotopic Xenograft (PDOX) Mouse Models: A Review
by
Han, Qinghong
, Tan, Yuying
, Igarashi, Kentaro
, Kawaguchi, Kei
, Unno, Michiaki
, Li, Shukuan
, Murakami, Takashi
, Hoffman, Robert M.
in
Animal models
/ Animals
/ Cancer
/ Cancer therapies
/ Carbon-Sulfur Lyases - administration & dosage
/ Carbon-Sulfur Lyases - therapeutic use
/ Cell cycle
/ Chemotherapy
/ Cloning
/ Cytotoxic agents
/ Cytotoxicity
/ DNA methylation
/ E coli
/ G2 phase
/ Humans
/ Laboratories
/ Melanoma
/ Methionine
/ Methionine - metabolism
/ methionine dependence
/ Mice, Nude
/ Neoplasms - drug therapy
/ nude mice
/ Oral administration
/ orthotopic implantation
/ Ovaries
/ Pancreatic cancer
/ patient-derived tumor
/ Prostate
/ recombinant methioninase
/ Recombinant Proteins - administration & dosage
/ Recombinant Proteins - therapeutic use
/ Review
/ Salmonella
/ Sarcoma
/ Treatment Outcome
/ Tumors
/ Xenograft Model Antitumor Assays
/ Xenografts
2019
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Efficacy of Recombinant Methioninase (rMETase) on Recalcitrant Cancer Patient-Derived Orthotopic Xenograft (PDOX) Mouse Models: A Review
by
Han, Qinghong
, Tan, Yuying
, Igarashi, Kentaro
, Kawaguchi, Kei
, Unno, Michiaki
, Li, Shukuan
, Murakami, Takashi
, Hoffman, Robert M.
in
Animal models
/ Animals
/ Cancer
/ Cancer therapies
/ Carbon-Sulfur Lyases - administration & dosage
/ Carbon-Sulfur Lyases - therapeutic use
/ Cell cycle
/ Chemotherapy
/ Cloning
/ Cytotoxic agents
/ Cytotoxicity
/ DNA methylation
/ E coli
/ G2 phase
/ Humans
/ Laboratories
/ Melanoma
/ Methionine
/ Methionine - metabolism
/ methionine dependence
/ Mice, Nude
/ Neoplasms - drug therapy
/ nude mice
/ Oral administration
/ orthotopic implantation
/ Ovaries
/ Pancreatic cancer
/ patient-derived tumor
/ Prostate
/ recombinant methioninase
/ Recombinant Proteins - administration & dosage
/ Recombinant Proteins - therapeutic use
/ Review
/ Salmonella
/ Sarcoma
/ Treatment Outcome
/ Tumors
/ Xenograft Model Antitumor Assays
/ Xenografts
2019
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Efficacy of Recombinant Methioninase (rMETase) on Recalcitrant Cancer Patient-Derived Orthotopic Xenograft (PDOX) Mouse Models: A Review
by
Han, Qinghong
, Tan, Yuying
, Igarashi, Kentaro
, Kawaguchi, Kei
, Unno, Michiaki
, Li, Shukuan
, Murakami, Takashi
, Hoffman, Robert M.
in
Animal models
/ Animals
/ Cancer
/ Cancer therapies
/ Carbon-Sulfur Lyases - administration & dosage
/ Carbon-Sulfur Lyases - therapeutic use
/ Cell cycle
/ Chemotherapy
/ Cloning
/ Cytotoxic agents
/ Cytotoxicity
/ DNA methylation
/ E coli
/ G2 phase
/ Humans
/ Laboratories
/ Melanoma
/ Methionine
/ Methionine - metabolism
/ methionine dependence
/ Mice, Nude
/ Neoplasms - drug therapy
/ nude mice
/ Oral administration
/ orthotopic implantation
/ Ovaries
/ Pancreatic cancer
/ patient-derived tumor
/ Prostate
/ recombinant methioninase
/ Recombinant Proteins - administration & dosage
/ Recombinant Proteins - therapeutic use
/ Review
/ Salmonella
/ Sarcoma
/ Treatment Outcome
/ Tumors
/ Xenograft Model Antitumor Assays
/ Xenografts
2019
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Efficacy of Recombinant Methioninase (rMETase) on Recalcitrant Cancer Patient-Derived Orthotopic Xenograft (PDOX) Mouse Models: A Review
Journal Article
Efficacy of Recombinant Methioninase (rMETase) on Recalcitrant Cancer Patient-Derived Orthotopic Xenograft (PDOX) Mouse Models: A Review
2019
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Overview
An excessive requirement for methionine (MET), termed MET dependence, appears to be a general metabolic defect in cancer and has been shown to be a very effective therapeutic target. MET restriction (MR) has inhibited the growth of all major cancer types by selectively arresting cancer cells in the late-S/G2 phase, when they also become highly sensitive to cytotoxic agents. Recombinant methioninase (rMETase) has been developed to effect MR. The present review describes the efficacy of rMETase on patient-derived orthotopic xenograft (PDOX) models of recalcitrant cancer, including the surprising result that rMETase administrated orally can be highly effective.
Publisher
MDPI AG,MDPI
Subject
/ Animals
/ Cancer
/ Carbon-Sulfur Lyases - administration & dosage
/ Carbon-Sulfur Lyases - therapeutic use
/ Cloning
/ E coli
/ G2 phase
/ Humans
/ Melanoma
/ Ovaries
/ Prostate
/ Recombinant Proteins - administration & dosage
/ Recombinant Proteins - therapeutic use
/ Review
/ Sarcoma
/ Tumors
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