What makes chemicals poisonous?
Several factors can influence the degree of poisoning caused by a chemical. These factors are as follows:
- context Route of entry into the body
- context Amount or dose entering the body
- context Toxicity of the chemical
- context Removal from the body
- context Biological variation
What is meant by the rate of removal from the body?
Some workplace chemicals which enter the body are excreted from the body unchanged. Others are broken down. The breakdown products may be more or less harmful than the original chemical. Other chemicals are stored temporarily in body organs and are removed over a short period of time. Eventually, most chemicals and their breakdown products are removed as waste in the feces, urine, sweat or exhaled breath. A few chemicals, such as graphite or silica dusts can be inhaled into the lungs, where they lodge for many years and may never be completely removed.
As a general rule, there is less risk of chemically caused harm if the body can do one or both of the following:
- context break down the chemical into less harmful chemicals
- context rapidly remove the chemical from the body.
How are we exposed to amounts of chemicals sufficient to cause poisoning?
There are two main ways that too much of a chemical can enter the body and cause poisonous effects:
By sudden or short term-exposures
A one-time exposure to relatively large amounts of the chemical can overwhelm the body. In the workplace, this exposure may happen through improper handling of the chemical or when there is a spill or a leak from a valve or pipe carrying chemicals. It might also happen during maintenance or cleaning of equipment that normally contains chemicals (such as a solvent vat). The harmful effects caused by one-time, sudden, high exposures are often called acute toxicity effects. Some examples of acute toxicity are listed below:
- context Inhalation of high concentrations of acid vapours might cause serious burns in the mouth and the airways leading to the lungs.
- context Skin contact with certain organic solvents that are absorbed through the skin may cause dizziness and nausea.
- context Inhalation of dusts can irritate the respiratory tract, dryness in the throat, and coughing.
By repeated exposures over a long period of time
Repeated exposure over a long period of time can also cause too much of the chemical to enter the body and produce poisoning. This kind of poisoning occurs because the exposure is repeated day after day over many years. The exposure levels may be too small to cause acute toxicity. Harmful effects caused by repeated exposure situations are sometimes called chronic toxicity effects. The following are some examples of chronic toxicity:
- context Inhalation of certain acid vapours at concentrations may, over long periods of time, cause loss of tooth enamel, eventually leading to extensive tooth decay.
- context Inhalation and skin absorption of some organic solvents may, over long periods of time, cause damage to nerve tissue.
- context Repeated exposure to dusts containing quartz can cause scar tissue in the lungs. This effect eventually leads to severe and permanent lung damage.
What else do we know about acute and chronic toxicity?
Most chemicals can cause both acute and chronic toxicity depending on the conditions of exposure. The adverse acute and chronic health effects caused by the chemical can be quite different. It is not usually possible to predict what the chronic toxicity of a chemical might be by looking at its acute toxicity or vice versa.
Chronic toxicity
Much of the knowledge we have about chronic toxicity comes from animal experiments. In addition, much has been learned from studying groups of people occupationally exposed to a chemical for many years. As a general rule, chronic toxicity appears many years after exposure first begins. The health effects occur because the exposure has taken place repeatedly over many years. Chronic toxicity is thought to occur in one of two main ways. These two ways can be explained by using sodium fluoride and n-hexane as examples.
Repeated exposure to some chemicals for long periods of time may cause cancer. Often, people express concern about cancer developing after a one-time exposure to a cancer-causing agent. While there is no absolute proof that cancer will not occur from a one-time exposure, most of the evidence indicates that repeated exposure over a long period of time is necessary before cancer develops.
- context Sodium fluoride, at very low concentrations (such as in toothpaste or drinking water), causes no noticeable harmful health effects, even after years of exposure. At these low levels, the effects are considered beneficial for teeth. However, if much higher concentrations of sodium fluoride enter the body repeatedly, they deposit and build up in the bones. At first, the amount of fluoride in the bone may not cause any problems, but after years of repeated high exposure, symptoms of bone disease may appear.
- context On the other hand, the chemical n-hexane is not deposited or accumulated in the body. It is broken down in the liver. One of the breakdown products can attack nerve cells in the fingers and toes. These kinds of cells are not replaced by the body easily. With continued exposure for many years, the damage to the nerve cells increases until a point is reached where symptoms appear in the fingers and toes.
What are the differences between toxicity and hazard?
There is a tendency to believe that if only small amounts of a chemical are needed to cause poisoning, then the risks associated with exposure to the chemical are very high. This case is not necessarily so. A high-toxicity chemical can have a low risk to health if it is used with proper precautions. On the other hand, it is possible that a chemical of low toxicity may present a high risk to health if it is used inappropriately or incorrectly. Toxicity is a measure of the poisoning strength and is an unchanging characteristic of a chemical.
Risk is not the same. It is a variable feature. Risk is defined as the chance or probability that a person will be harmed or experience an adverse health effect if exposed to a hazard. It is the combination of the likelihood of the occurrence of a harm and the severity of that harm. In this discussion, the risk is the likelihood that a chemical will cause poisoning, given its toxicity strength and the amounts and manner in which it is used, stored and handled. The toxicity (hazard) of a chemical cannot be changed, but the risk it presents can be controlled and minimized.