Toxic Effects

Toxic effects are harmful biological responses caused by exposure to a drug, chemical, or other substance, and their study is essential for evaluating pharmacological safety. They arise when exposure, dose, or duration overwhelms protective mechanisms, allowing compounds or their metabolites to disrupt receptors, enzymes, cellular membranes, or organ function. Pharmacologists assess these effects by examining dose-response relationships, toxicokinetics, and changes in tissues or physiological systems. This knowledge supports safer drug development, helps identify adverse reactions and therapeutic limits, and guides the selection of appropriate doses while clarifying how substances produce injury at the cellular and systemic levels.

Toxic Effects - Related Videos

Research

JoVE EoE - Neurotherapeutics

Evaluating the Neuroprotective Effects of a Test Compound Against Alpha-Synuclein Toxicity in Rat Embryonic Neurons

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2025

Start with a primary midbrain culture from rat embryos, containing dopaminergic neurons that overexpress mutated alpha-synuclein.Replace the media in the treatment wells with fresh media containing the test compound, and that in the control wells with plain media. Then incubate.In the control, alpha-synuclein forms toxic aggregates in dopaminergic neurons, causing neurite retraction and leading to neuronal death.In the treatment, the test compound interacts with alpha-synuclein, prevents its...

Gap Junctional Intercellular Communication: A Functional Biomarker to Assess Adverse Effects of Toxicants and Toxins, and Health Benefits of Natural Products

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Cited by 15 •

2016

This protocol describes a scalpel loading-fluorescent dye transfer technique that measures intercellular communication through gap junction channels. Gap junctional intercellular communication is a major cellular process by which tissue homeostasis is maintained and disruption of this cell signaling has adverse health effects.

Using Caenorhabditis elegans for Studying Trans- and Multi-Generational Effects of Toxicants

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Cited by 9 •

2019

Trans- and multi-generational effects of persistent chemicals are essential in judging their long-term consequences in the environment and on the human health. We provide novel detailed methods for studying trans- and multi-generational effects using free-living nematode Caenorhabditis elegans.

Embryo-Based Chemical Toxicity Screen: Assessing Effects on Developing Zebrafish Embryos

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2023

In this article, zebrafish embryos are used for chemical toxicity screening. Chemical toxicity is correlated with phenotype readouts. The sample protocol shows a methodological approach of performing the chemical toxicity screening.

Research

JoVE Journal - Neuroscience
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Assaying β-amyloid Toxicity using a Transgenic C. elegans Model

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Cited by 76 •

2010

The intensely studied nematode worm Caenorhabditis elegans can be transgenically engineered to express the human β-amyloid peptide (Aβ). Induced expression of Aβ in C. elegans muscle leads to a rapid, reproducible paralysis phenotype that can be used to monitor treatments that modulate Aβ toxicity.

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