Cell Autonomous Toxicity

Cell-autonomous toxicity is cellular injury or death caused by a toxic agent acting directly within the affected cell, rather than through signals from neighboring cells. The agent may enter or accumulate in the cell, disrupt essential processes such as mitochondrial function, protein homeostasis, or membrane integrity, and trigger stress responses that culminate in apoptosis, necrosis, or loss of function. Studying this mechanism helps distinguish intrinsic cellular susceptibility from non-cell-autonomous effects mediated by tissue signals or inflammation. In biology, cell-autonomous toxicity assays support genetic screening, disease modeling, therapeutic safety testing, and the identification of cellular pathways that determine responses to drugs or environmental toxins.

Cell Autonomous Toxicity - Related Videos

Research

JoVE Journal - Biology

Autonomously Bioluminescent Mammalian Cells for Continuous and Real-time Monitoring of Cytotoxicity

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Cited by 7 •

2013

Mammalian cells expressing the bacterial bioluminescence gene cassette (lux) produce light autonomously. The resulting bioluminescent dynamics upon chemical exposure have been demonstrated to reflect the treatment effects on cellular growth and metabolism, making these cells an inexpensive, continuous, real-time toxicity screening tool that can easily be adapted for high-throughput automation.

Research

JoVE Journal - Medicine
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Quantitative Autonomic Testing

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Cited by 179 •

2011

Standardized, comprehensive and fully quantitative testing of autonomic functions is described. The autonomic tests consist of evaluation of all three major autonomic domains including cardiovagal, adrenergic and sudomotor. The severity and distribution of dysautonomia is quantitated using Composite Autonomic Severity Scores.

Kupffer Cell Isolation for Nanoparticle Toxicity Testing

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Cited by 28 •

2015

Liver macrophages, named Kupffer cells, are responsible for the capture of circulating nanoparticles. We describe here a method, of high cell purity and yield, for Kupffer cell isolation. The modified LDH assay is used here to measure the toxicity induced by carbon nanotubes in Kupffer cells.

Investigating the Spreading and Toxicity of Prion-like Proteins Using the Metazoan Model Organism C. elegans

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Cited by 189 •

2015

Prion-like propagation of protein aggregates has recently emerged as being implicated in many neurodegenerative diseases. The goal of this protocol is to describe, how to use the nematode C. elegans as a model system to monitor protein spreading and to investigate prion-like phenomena.

Stable and Efficient Genetic Modification of Cells in the Adult Mouse V-SVZ for the Analysis of Neural Stem Cell Autonomous and Non-autonomous Effects

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Cited by 2 •

2016

Here we describe a procedure based on the use of lentiviral particles for the long-term genetic modification of neural stem cells and/or their adjacent ependymal cells in the adult ventricular-subventricular neurogenic niche which allows the separate analysis of cell autonomous and non-autonomous, niche-dependent effects on neural stem cells.

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