The end of autophagic cell death?
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- Type
- review
- Published
- 2012-01-01
- Cited by
- 292
- References
- 27
- Access
- Open access
- OpenAlex
- https://openalex.org/W2078444317
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:207508990
Keywords
Autophagy, ATG5, Programmed cell death, Biology, Cell biology
References
- Mitochondrial control of cell death
- Caspase-independent cell death
- The apoptosis-necrosis paradox. Apoptogenic proteases activated after mitochondrial permeability transition determine the mode of cell death
- Growth factor regulation of autophagy and cell survival in the absence of apoptosis.
- Interdigital cell death can occur through a necrotic and caspase-independent pathway.
- Classification of cell death
- Autophagic cell death: the story of a misnomer
- Autophagy fights disease through cellular self-digestion
- Oncogenic Ras-induced expression of Noxa and Beclin-1 promotes autophagic cell death and limits clonogenic survival.
- The apoptosis/autophagy paradox: autophagic vacuolization before apoptotic death
- Autophagy Is a Critical Mechanism for the Induction of the Antileukemic Effects of Arsenic Trioxide*
- Larval midgut destruction in Drosophila: Not dependent on caspases but suppressed by the loss of autophagy
- Redundant cell death mechanisms as relics and backups
- A first insight into the molecular mechanisms of apoptosis.
- Association and dissociation of autophagy, apoptosis and necrosis by systematic chemical study
- Activated Ras requires autophagy to maintain oxidative metabolism and tumorigenesis.
- A molecule targeting VHL-deficient Renal Cell Carcinoma that induces autophagy
- Autophagy in the pathogenesis of disease.
- The Pan-Bcl-2 Inhibitor (−)-Gossypol Triggers Autophagic Cell Death in Malignant Glioma
- Alternative cell death mechanisms in development and beyond.
Cited by
- Why is autophagy important for melanoma? Molecular mechanisms and therapeutic implications.
- Autophagy in Vascular Disease
- Polyphenol-rich extract of Pimenta dioica berries (Allspice) kills breast cancer cells by autophagy and delays growth of triple negative breast cancer in athymic mice
- Efficacy of the dual PI3K and mTOR inhibitor NVP-BEZ235 in combination with imatinib mesylate against chronic myelogenous leukemia cell lines
- Lysosomal Membrande Stability and Cathepsins in Cell Death
- Small Heat Shock Protein Beta-1 (HSPB1) Is Upregulated and Regulates Autophagy and Apoptosis of Renal Tubular Cells in Acute Kidney Injury
- Toward establishing a morphological and ultrastructural characterization of proembryogenic masses and early somatic embryos of Araucaria angustifolia (Bert.) O. Kuntze
- Merkel cell polyomavirus positive merkel cell carcinoma -- from diagnosis to therapy
- Rôle de la caspase-1 dans les phénomènes de mort cellulaire dans le cancer colorectal
- Novel Mechanism of Breast Cancer Prevention and Treatment Using Natural Extract of Pimenta Dioica
- Nuclear ULK1 promotes cell death in response to oxidative stress through PARP1
- Dihydroceramides: From Bit Players to Lead Actors*
- Hidden Behind Autophagy: The Unconventional Roles of ATG Proteins
- Live to die another way: modes of programmed cell death and the signals emanating from dying cells
- A role of autophagy in Trypanosoma brucei cell death
- Cognitive deficits induced by multi-walled carbon nanotubes via the autophagic pathway.
- Bcl-2:Beclin 1 complex: multiple, mechanisms regulating autophagy/apoptosis toggle switch.
- Fc receptor-dependent mechanisms of monoclonal antibody therapy of cancer.
- Autophagy and the Kidney: Implications for Ischemia-Reperfusion Injury and Therapy.
- Bak and Mcl-1 are essential for Temozolomide induced cell death in human glioma
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