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Protein Kinase C-α and ERK1/2 Mediate Mitochondrial Dysfunction, Decreases  in Active Na+ Transport, and Cisplatin-induced Apoptosis in Renal Cells* -  Journal of Biological Chemistry
Protein Kinase C-α and ERK1/2 Mediate Mitochondrial Dysfunction, Decreases in Active Na+ Transport, and Cisplatin-induced Apoptosis in Renal Cells* - Journal of Biological Chemistry

Effect of oligomycin ( a) and STS (b-e) on cellular TMRE uptake in D283...  | Download Scientific Diagram
Effect of oligomycin ( a) and STS (b-e) on cellular TMRE uptake in D283... | Download Scientific Diagram

Reactive oxygen species induce swelling and cytochrome c release but not  transmembrane depolarization in isolated rat brain mitochondria - Galindo -  2003 - British Journal of Pharmacology - Wiley Online Library
Reactive oxygen species induce swelling and cytochrome c release but not transmembrane depolarization in isolated rat brain mitochondria - Galindo - 2003 - British Journal of Pharmacology - Wiley Online Library

Suppression of Endothelial Cell Apoptosis by High Density Lipoproteins  (HDL) and HDL-associated Lysosphingolipids* - Journal of Biological  Chemistry
Suppression of Endothelial Cell Apoptosis by High Density Lipoproteins (HDL) and HDL-associated Lysosphingolipids* - Journal of Biological Chemistry

Reactive oxygen species induce swelling and cytochrome c release but not  transmembrane depolarization in isolated rat brain mitochondria - Galindo -  2003 - British Journal of Pharmacology - Wiley Online Library
Reactive oxygen species induce swelling and cytochrome c release but not transmembrane depolarization in isolated rat brain mitochondria - Galindo - 2003 - British Journal of Pharmacology - Wiley Online Library

Glucose metabolism determines resistance of cancer cells to bioenergetic  crisis after cytochrome‐c release | Molecular Systems Biology
Glucose metabolism determines resistance of cancer cells to bioenergetic crisis after cytochrome‐c release | Molecular Systems Biology

Glucose metabolism determines resistance of cancer cells to bioenergetic  crisis after cytochrome‐c release | Molecular Systems Biology
Glucose metabolism determines resistance of cancer cells to bioenergetic crisis after cytochrome‐c release | Molecular Systems Biology

Staurosporine induces hyperpolarization of rat hippocampal neurons. a,... |  Download Scientific Diagram
Staurosporine induces hyperpolarization of rat hippocampal neurons. a,... | Download Scientific Diagram

Dissipation of Potassium and Proton Gradients Inhibits Mitochondrial  Hyperpolarization and Cytochrome c Release during Neural Apoptosis |  Journal of Neuroscience
Dissipation of Potassium and Proton Gradients Inhibits Mitochondrial Hyperpolarization and Cytochrome c Release during Neural Apoptosis | Journal of Neuroscience

Ceramide‐induced apoptosis of D283 medulloblastoma cells requires  mitochondrial respiratory chain activity but occurs independently of  caspases and is not sensitive to Bcl‐xL overexpression - Poppe - 2002 -  Journal of Neurochemistry -
Ceramide‐induced apoptosis of D283 medulloblastoma cells requires mitochondrial respiratory chain activity but occurs independently of caspases and is not sensitive to Bcl‐xL overexpression - Poppe - 2002 - Journal of Neurochemistry -

Ceramide‐induced apoptosis of D283 medulloblastoma cells requires  mitochondrial respiratory chain activity but occurs independently of  caspases and is not sensitive to Bcl‐xL overexpression - Poppe - 2002 -  Journal of Neurochemistry -
Ceramide‐induced apoptosis of D283 medulloblastoma cells requires mitochondrial respiratory chain activity but occurs independently of caspases and is not sensitive to Bcl‐xL overexpression - Poppe - 2002 - Journal of Neurochemistry -

Ceramide‐induced apoptosis of D283 medulloblastoma cells requires  mitochondrial respiratory chain activity but occurs independently of  caspases and is not sensitive to Bcl‐xL overexpression - Poppe - 2002 -  Journal of Neurochemistry -
Ceramide‐induced apoptosis of D283 medulloblastoma cells requires mitochondrial respiratory chain activity but occurs independently of caspases and is not sensitive to Bcl‐xL overexpression - Poppe - 2002 - Journal of Neurochemistry -

Dissipation of Potassium and Proton Gradients Inhibits Mitochondrial  Hyperpolarization and Cytochrome c Release during Neural Apoptosis |  Journal of Neuroscience
Dissipation of Potassium and Proton Gradients Inhibits Mitochondrial Hyperpolarization and Cytochrome c Release during Neural Apoptosis | Journal of Neuroscience

Ceramide‐induced apoptosis of D283 medulloblastoma cells requires  mitochondrial respiratory chain activity but occurs independently of  caspases and is not sensitive to Bcl‐xL overexpression - Poppe - 2002 -  Journal of Neurochemistry -
Ceramide‐induced apoptosis of D283 medulloblastoma cells requires mitochondrial respiratory chain activity but occurs independently of caspases and is not sensitive to Bcl‐xL overexpression - Poppe - 2002 - Journal of Neurochemistry -

Glucose metabolism determines resistance of cancer cells to bioenergetic  crisis after cytochrome‐c release | Molecular Systems Biology
Glucose metabolism determines resistance of cancer cells to bioenergetic crisis after cytochrome‐c release | Molecular Systems Biology

PDF) Apoptosis induced by proteasome inhibition in cancer cells:  predominant role of the p53/PUMA pathway
PDF) Apoptosis induced by proteasome inhibition in cancer cells: predominant role of the p53/PUMA pathway

Apoptosis induced by proteasome inhibition in cancer cells: predominant  role of the p53/PUMA pathway | Oncogene
Apoptosis induced by proteasome inhibition in cancer cells: predominant role of the p53/PUMA pathway | Oncogene

Apoptosis induced by proteasome inhibition in cancer cells: predominant  role of the p53/PUMA pathway | Oncogene
Apoptosis induced by proteasome inhibition in cancer cells: predominant role of the p53/PUMA pathway | Oncogene

Fig. 3. | Dissipation of Potassium and Proton Gradients Inhibits  Mitochondrial Hyperpolarization and Cytochrome c Release during Neural  Apoptosis | Journal of Neuroscience
Fig. 3. | Dissipation of Potassium and Proton Gradients Inhibits Mitochondrial Hyperpolarization and Cytochrome c Release during Neural Apoptosis | Journal of Neuroscience

Glucose metabolism determines resistance of cancer cells to bioenergetic  crisis after cytochrome‐c release | Molecular Systems Biology
Glucose metabolism determines resistance of cancer cells to bioenergetic crisis after cytochrome‐c release | Molecular Systems Biology

Glucose metabolism determines resistance of cancer cells to bioenergetic  crisis after cytochrome‐c release | Molecular Systems Biology
Glucose metabolism determines resistance of cancer cells to bioenergetic crisis after cytochrome‐c release | Molecular Systems Biology

Ceramide and neurodegeneration: Susceptibility of neurons and  oligodendrocytes to cell damage and death - Journal of the Neurological  Sciences
Ceramide and neurodegeneration: Susceptibility of neurons and oligodendrocytes to cell damage and death - Journal of the Neurological Sciences

Diversity in the Mechanisms of Neuronal Cell Death: Neuron
Diversity in the Mechanisms of Neuronal Cell Death: Neuron