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Tumors Responsive to Autophagy-Inhibition: Identification and Biomarkers
by
Rouschop, Kasper M.A.
, Keulers, Tom G.H.
, Barbeau, Lydie M.O.
in
Amino acids
/ Autophagy
/ Biological markers
/ Biomarkers
/ Brain cancer
/ Cancer therapies
/ Genes
/ Head & neck cancer
/ Health aspects
/ Homeostasis
/ Hypoxia
/ Kinases
/ Laryngeal cancer
/ Lysosomes
/ Macromolecules
/ Metabolism
/ Metabolites
/ Mutation
/ Patients
/ Phagocytosis
/ Proteins
/ Radiation therapy
/ Review
/ Tumors
2020
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Tumors Responsive to Autophagy-Inhibition: Identification and Biomarkers
by
Rouschop, Kasper M.A.
, Keulers, Tom G.H.
, Barbeau, Lydie M.O.
in
Amino acids
/ Autophagy
/ Biological markers
/ Biomarkers
/ Brain cancer
/ Cancer therapies
/ Genes
/ Head & neck cancer
/ Health aspects
/ Homeostasis
/ Hypoxia
/ Kinases
/ Laryngeal cancer
/ Lysosomes
/ Macromolecules
/ Metabolism
/ Metabolites
/ Mutation
/ Patients
/ Phagocytosis
/ Proteins
/ Radiation therapy
/ Review
/ Tumors
2020
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Do you wish to request the book?
Tumors Responsive to Autophagy-Inhibition: Identification and Biomarkers
by
Rouschop, Kasper M.A.
, Keulers, Tom G.H.
, Barbeau, Lydie M.O.
in
Amino acids
/ Autophagy
/ Biological markers
/ Biomarkers
/ Brain cancer
/ Cancer therapies
/ Genes
/ Head & neck cancer
/ Health aspects
/ Homeostasis
/ Hypoxia
/ Kinases
/ Laryngeal cancer
/ Lysosomes
/ Macromolecules
/ Metabolism
/ Metabolites
/ Mutation
/ Patients
/ Phagocytosis
/ Proteins
/ Radiation therapy
/ Review
/ Tumors
2020
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Tumors Responsive to Autophagy-Inhibition: Identification and Biomarkers
Journal Article
Tumors Responsive to Autophagy-Inhibition: Identification and Biomarkers
2020
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Overview
Recent advances in cancer treatment modalities reveal the limitations of the prevalent “one-size-fits-all” therapies and emphasize the necessity to develop personalized approaches. In this perspective, identification of predictive biomarkers and intrinsic vulnerabilities are an important advancement for further therapeutic strategies. Autophagy is an important lysosomal degradation and recycling pathway that provides energy and macromolecular precursors to maintain cellular homeostasis. Although all cells require autophagy, several genetic and/or cellular changes elevate the dependence of cancer cells on autophagy for their survival and indicates that autophagy inhibition in these tumors could provide a favorable addition to current therapies. In this context, we review the current literature on tumor (sub)types with elevated dependence on autophagy for their survival and highlight an exploitable vulnerability. We provide an inventory of microenvironmental factors, genetic alterations and therapies that may be exploited with autophagy-targeted approaches to improve efficacy of conventional anti-tumor therapies.
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