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Novel IDH1-Targeted Glioma Therapies
by
Siegelin, Markus D.
, Nguyen, Trang T. T.
, Shang, Enyuan
, Karpel-Massler, Georg
in
Acute myeloid leukemia
/ Adenosine triphosphate
/ Antineoplastic Agents - pharmacology
/ Bcl-2 protein
/ Biosynthesis
/ Blood-brain barrier
/ Blood-Brain Barrier - metabolism
/ Brain cancer
/ Brain Neoplasms - drug therapy
/ Brain Neoplasms - metabolism
/ Brain tumors
/ Cell Line, Tumor
/ Cholangiocarcinoma
/ Dehydrogenases
/ DNA methylation
/ Enzymatic activity
/ Enzyme Inhibitors - pharmacology
/ Enzymes
/ Glioma
/ Glioma - drug therapy
/ Glioma - metabolism
/ Glutamine
/ Glutamine - metabolism
/ Glutarates - metabolism
/ Humans
/ Immune system
/ Isocitrate dehydrogenase
/ Isocitrate Dehydrogenase - metabolism
/ Leading Article
/ Lethality
/ Leukemia
/ Medical prognosis
/ Medicine
/ Medicine & Public Health
/ Metabolism
/ Mutants
/ Mutation
/ Mutation - genetics
/ Myeloid leukemia
/ Neurology
/ Neurosciences
/ Pharmacotherapy
/ Point mutation
/ Poly(ADP-ribose) polymerase
/ Poly(ADP-ribose) Polymerases - metabolism
/ Prognosis
/ Psychiatry
/ Psychopharmacology
/ Regulatory approval
/ Ribose
/ Roles
/ Tumorigenesis
/ Tumors
/ Vaccines
2019
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Novel IDH1-Targeted Glioma Therapies
by
Siegelin, Markus D.
, Nguyen, Trang T. T.
, Shang, Enyuan
, Karpel-Massler, Georg
in
Acute myeloid leukemia
/ Adenosine triphosphate
/ Antineoplastic Agents - pharmacology
/ Bcl-2 protein
/ Biosynthesis
/ Blood-brain barrier
/ Blood-Brain Barrier - metabolism
/ Brain cancer
/ Brain Neoplasms - drug therapy
/ Brain Neoplasms - metabolism
/ Brain tumors
/ Cell Line, Tumor
/ Cholangiocarcinoma
/ Dehydrogenases
/ DNA methylation
/ Enzymatic activity
/ Enzyme Inhibitors - pharmacology
/ Enzymes
/ Glioma
/ Glioma - drug therapy
/ Glioma - metabolism
/ Glutamine
/ Glutamine - metabolism
/ Glutarates - metabolism
/ Humans
/ Immune system
/ Isocitrate dehydrogenase
/ Isocitrate Dehydrogenase - metabolism
/ Leading Article
/ Lethality
/ Leukemia
/ Medical prognosis
/ Medicine
/ Medicine & Public Health
/ Metabolism
/ Mutants
/ Mutation
/ Mutation - genetics
/ Myeloid leukemia
/ Neurology
/ Neurosciences
/ Pharmacotherapy
/ Point mutation
/ Poly(ADP-ribose) polymerase
/ Poly(ADP-ribose) Polymerases - metabolism
/ Prognosis
/ Psychiatry
/ Psychopharmacology
/ Regulatory approval
/ Ribose
/ Roles
/ Tumorigenesis
/ Tumors
/ Vaccines
2019
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Novel IDH1-Targeted Glioma Therapies
by
Siegelin, Markus D.
, Nguyen, Trang T. T.
, Shang, Enyuan
, Karpel-Massler, Georg
in
Acute myeloid leukemia
/ Adenosine triphosphate
/ Antineoplastic Agents - pharmacology
/ Bcl-2 protein
/ Biosynthesis
/ Blood-brain barrier
/ Blood-Brain Barrier - metabolism
/ Brain cancer
/ Brain Neoplasms - drug therapy
/ Brain Neoplasms - metabolism
/ Brain tumors
/ Cell Line, Tumor
/ Cholangiocarcinoma
/ Dehydrogenases
/ DNA methylation
/ Enzymatic activity
/ Enzyme Inhibitors - pharmacology
/ Enzymes
/ Glioma
/ Glioma - drug therapy
/ Glioma - metabolism
/ Glutamine
/ Glutamine - metabolism
/ Glutarates - metabolism
/ Humans
/ Immune system
/ Isocitrate dehydrogenase
/ Isocitrate Dehydrogenase - metabolism
/ Leading Article
/ Lethality
/ Leukemia
/ Medical prognosis
/ Medicine
/ Medicine & Public Health
/ Metabolism
/ Mutants
/ Mutation
/ Mutation - genetics
/ Myeloid leukemia
/ Neurology
/ Neurosciences
/ Pharmacotherapy
/ Point mutation
/ Poly(ADP-ribose) polymerase
/ Poly(ADP-ribose) Polymerases - metabolism
/ Prognosis
/ Psychiatry
/ Psychopharmacology
/ Regulatory approval
/ Ribose
/ Roles
/ Tumorigenesis
/ Tumors
/ Vaccines
2019
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Journal Article
Novel IDH1-Targeted Glioma Therapies
2019
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Overview
Mutations in the isocitrate dehydrogenase (IDH) 1 gene are commonly found in human glioma, with the majority of low-grade gliomas harboring a recurrent point mutation (IDH1 R132H). Mutant IDH reveals an altered enzymatic activity leading to the synthesis of 2-hydroxyglutarate, which has been implicated in epigenetic mechanisms of oncogenesis. Nevertheless, it is unclear exactly how IDH mutations drive glioma initiation and progression, and it is also not clear why tumors with this mutation generally have a better prognosis than IDH wild-type tumors. Recognition of the high frequency of IDH mutations in glioma [and also in other malignancies, including acute myeloid leukemia (AML) and cholangiocarcinoma] have led to the development of a number of targeted agents that can inhibit these enzymes. Enasidenib and ivosidenib have both gained regulatory approval for IDH mutant AML. Both agents are still in early clinical phases for glioma therapy, as are a number of additional candidates (including AG-881, BAY1436032, and DS1001). A marked clinical problem in the development of these agents is overcoming the blood–brain barrier. An alternative approach to target the IDH1 mutation is by the induction of synthetic lethality with compounds that target poly (ADP-ribose) polymerase (PARP), glutamine metabolism, and the Bcl-2 family of proteins. We conclude that within the last decade, several approaches have been devised to therapeutically target the IDH1 mutation, and that, potentially, both IDH1 inhibitors and synthetic lethal approaches might be relevant for future therapies.
Publisher
Springer International Publishing,Springer Nature B.V
Subject
/ Antineoplastic Agents - pharmacology
/ Blood-Brain Barrier - metabolism
/ Brain Neoplasms - drug therapy
/ Brain Neoplasms - metabolism
/ Enzyme Inhibitors - pharmacology
/ Enzymes
/ Glioma
/ Humans
/ Isocitrate Dehydrogenase - metabolism
/ Leukemia
/ Medicine
/ Mutants
/ Mutation
/ Poly(ADP-ribose) Polymerases - metabolism
/ Ribose
/ Roles
/ Tumors
/ Vaccines
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