Showing posts with label 1994-05. Show all posts
Showing posts with label 1994-05. Show all posts

Sunday, 30 March 2014

#391: Dioxin Reassessed--Part 2

=======================Electronic Edition========================
RACHEL'S HAZARDOUS WASTE NEWS #391
---May 26, 1994---
News and resources for environmental justice.
==========
Environmental Research Foundation
P.O. Box 5036, Annapolis, MD 21403
Fax (410) 263-8944; Internet: erf@igc.apc.org
==========
RACHEL-4CM = DIOXIN FOCUSED DIRECTORY
Remote Access Chemical Hazards Electronic Library.
Dioxinnz.com
=======================Original Source========================

After three years of study, U.S. Environmental Protection Agency [EPA] is about to publish a 9-volume draft "scientific reassessment" of dioxin and other dioxin-like chemicals, including dibenzofurans and some PCBs [polychlorinated biphenyls]. PCBs are industrial poisons now banned in the U.S. because of widespread environmental damage. Dioxins and furans are highly toxic byproducts of certain industrial operations including incineration, tire burning, combustion of coal and oil, manufacture of paper and some pesticides, metal smelting, and perhaps diesel engine exhausts [pgs. 6-9]. There are probably other sources as well. Dioxins and furans are created when chlorine combines with other chemicals at high temperatures.

A copy of EPA's summary volume (Chapter 9) was leaked to the press in mid-May. We obtained a copy and reported some of its findings and conclusions last week, focusing on the cancer hazard. This week, we bring you more, stressing non-cancer effects. [Page numbers inside square brackets refer to EPA's draft of Chapter 9, dated May 2, 1994.]

According to EPA, nature produces only small amounts of dioxin. The vast majority of dioxin is created by human economic activities. Since about 1920, industrial emissions, and inattention to the potent toxic effects of dioxin-like chemicals, have allowed the environment to become widely contaminated with significant quantities of dioxins, furans and PCBs. As a result, all Americans eat and breathe small but important amounts of dioxin every day.

Human exposure to dioxin begins early in life. A human fetus lives in the womb enclosed inside a fluid-filled sac called the placenta, which provides a barrier to many poisons that the mother might ingest. Unlike many other poisons, dioxin crosses the placenta and begins affecting the fetus [pg. 23]. The human body retains dioxin, so a "body burden" begins accumulating in each of us during our early months in the womb. [1]

In humans and other species, it is the growing embryo or fetus that is most sensitive to the toxic effects of dioxin-like chemicals. 

EPA: "A general finding in fish, bird, and mammalian species is that the embryo or fetus is more sensitive to TCDD-induced mortality than the adult. [TCDD is a shorthand name for dioxin.] Thus the timing of TCDD exposure during the life history of an animal can greatly influence its susceptibility to overt dioxin toxicity." [pg. 36]

Growth occurs in two ways: cells multiply, and cells of one type turn into cells of another type (a process called differentiation). Thus some cells become eyes and other cells become fingers by differentiation. Dioxin-like chemicals can disrupt both cell multiplication and cell differentiation.

"Of particular interest to the risk assessment process is the fact that a wide variety of developmental events, crossing three vertebrate classes and several species within each class, can be perturbed, suggesting that dioxin has the potential to disrupt a large number of critical developmental events at specific developmental stages. Not only can these changes lead to increases in embryo/fetal mortality, but they can disrupt organ system structure and irreversibly impair organ function." [pgs. 34-35]. In other words, damage that occurs in the womb can last a lifetime.

After a baby (or animal) is born, rapid growth continues, so sensitivity to the toxic effects of dioxin continues as well. Human infants who breast feed get a particularly high dose of dioxins. EPA's report calculates that an infant who breast feeds for a year will receive 4% to 12% of his or her full lifetime dose of dioxin during that one year [pgs. 15, 21]. (Despite the presence of dioxin-like chemicals in human milk, breast feeding is still the best way to nourish an infant; all of the alternatives are worse. [2])

Although dioxin can presumably interfere with every bodily system in the growing infant, there is evidence that the developing immune system is one of the most sensitive to disruption by low-level exposure to dioxin-like chemicals. EPA says, "Furthermore, since TCDD [dioxin] alters the normal differentiation of immune system cells, the human embryo may be very susceptible to long-term impairment of immune function from in utero [in the womb] effects of TCDD on developing immune tissue." [pg. 39]

EPA points out that, "Impairment of the immune system can be considered an adverse outcome in its own right, being responsible for induced pathologies." [pg. 51] And: "Concern over the potential toxic effects of chemicals on the immune system arises from the critical role that the immune system plays in maintaining health. It is well recognized that suppressed immunological function can result in increased incidence and severity of infectious diseases as well as some types of cancer. Conversely, the inappropriate enhancement of immune function or the generation of misdirected immune responses can precipitate or exacerbate the development of allergic and autoimmune diseases." [pg. 37] In other words, there are two ways your immune system can malfunction: it can be depressed and fail to protect you against bacteria, parasites, viruses and cancer. Or it can become too active and start to attack you; this creates autoimmune diseases like asthma, diabetes, and lupus.

EPA clearly considers these immune system hazards important; the report spends considerable time discussing them: "Animal host resistance models that mimic human disease are available and have been used to assess the effect of TCDD on altered host resistance [to disease]. Results from host resistance studies provide evidence that exposure to TCDD results in increased susceptibility to bacterial, viral, parasitic, and neoplastic [cancer] disease. These effects are observed at relatively low doses and likely result from TCDD-induced suppression of immunological function." [pg. 38]

The immune system is as complex as the brain and central nervous system. [3] Scientists speak of two basic parts of the immune system: those that work via cells (called "cell-mediated") and those that work in the blood stream without entering cells (called "humoral").

EPA: "Both cell-mediated and humoral immune responses are suppressed following TCDD exposure, suggesting that there are multiple cellular targets within the immune system that are altered by TCDD. Evidence also suggests that the immune system is indirectly targeted by TCDD-induced changes in nonlymphoid tissues." [pg. 38]

EPA goes on: "One potentially important indirect mechanism is via effects on the endocrine system. Several endocrine hormones have been shown to regulate immune responses, including glucocorticoids, sex steroids, thyroxine, growth hormone, and prolactin. Importantly, TCDD and other related compounds have been shown to alter the activity of all of these hormones." [pg. 38]

The EPA's draft report speaks of "a window of sensitivity of biological processes." [pg. 48] In other words, there are certain times during the life of an animal (or human) when it is more sensitive to dioxin's effects than at other times. The perinatal period (shortly before or shortly after birth) is one such "window of sensitivity." But there are evidently other such "windows." EPA suggests that any time the immune system begins to respond to a challenge, disruption by dioxin can have far-reaching effects: "It is important to consider, however, that if an acute exposure to TCDD even temporarily raises the TCDD body burden at the time when an immune response is initiated, there may be a risk of adverse impacts even though the total body burden may indicate a relatively low average TCDD level." [pgs. 38-39] Thus even a short-term exposure to dioxin at the wrong time might cause disease in a person by suppressing the immune system, even though the person's average lifetime body burden of dioxin may not be greatly increased.

Dioxin may also cause inheritable genetic changes: "While dioxin and related compounds are not generally considered to be 'genotoxic' in traditional terms, both empirical data and the results of modeling efforts suggest that they may be functioning indirectly to produce irreversible genetic changes in exposed cells." [pg. 33]

EPA's draft report emphasizes that most people get their daily dose of dioxin from their food (about 90% from meat, fish and dairy products) [pg. 12]. However, people who live near sources of dioxin emissions (listed in our first paragraph, above), should consider that inhalation may be an important hazard for them. 

EPA says, "The use of incineration as a means of solid and hazardous waste management results in the emission of contaminated particles that may contain TCDD and related compounds into the environment. Thus, exposure to TCDD and related compounds may result from inhalation of contaminated fly ash, dust and soil. Systemic effects occur in animals after pulmonary exposure to TCDD, suggesting that transpulmonary [lung] absorption of 2,3,7,8-TCDD does occur. Further results suggest that the transpulmonary absorption of 2,3,7,8-TCDD and 2,3,7,8-TBDD was similar to that observed following oral exposure.... these data provide support for the inference that efficient absorption will occur when particles containing dioxin and related compounds are inhaled by humans." [pgs. 17-18]

How much dioxin is "safe"? 
EPA: "The USEPA has frequently defined a reference dose (RfD) for toxic chemicals to represent a scientific estimate of the dose below which no appreciable risk of non-cancer effects is likely to occur following chronic exposures. In the case of dioxin and related compounds, calculation of an RfD based on human and animal data and including standard uncertainty factors to account for species differences and sensitive subpopulations would result in a reference intake levels on the order of 10-100 times below the current estimates of daily intake in the general population." [pg. 51]

How much dioxin is "safe"? 
EPA's answers: For cancer hazards? Three hundred to 600 times less than we all now take in every day. (See RHWN #390.) For non-cancer hazards? Ten to 100 times less than we all now take in every day.

EPA's "dioxin reasessment" raises one key public policy question: How much additional dioxin is acceptable in the environment? To us, the answer seems clear: zero. To protect public health, no new sources can be allowed, and present sources must be sharply reduced.

--Peter Montague, Ph.D.

===============


[1] The "half-life" of dioxins in humans is somewhere between 5.8 years and 7 years [pgs. 13, 20]. (The half-life is the time it takes for half of today's dioxin intake to be excreted.) Therefore, dioxin builds up in our bodies as we age.


[2] See, for example, Natalie Angier, "Mother's Milk Found to Be Potent Cocktail of Hormones," N.Y. TIMES May 24, 1994, pgs. C1, C10.

[3] Lydia Woods Schindler, UNDERSTANDING THE IMMUNE SYSTEM [NIH Publication No. 88-529] (Bethesda, Md.: National Institutes of Health, July, 1988).

Descriptor terms: epa; dioxin reassessment; studies; dibenzofurans; furans; pcbs; tire burning; coal; oil; fossil fuels; paper; pesticides; metal smelting; smelters; diesel; chlorine; infants; fetuses; immune system; immunotoxicity; asthma; lupus; diabetes; incineration; msw; hazardous waste; inhalation; air pollution;

#390: Dioxin Reassessed--Part 1

=======================Electronic Edition========================
RACHEL'S HAZARDOUS WASTE NEWS #390 
---May 19, 1994---
News and resources for environmental justice.
==========
Environmental Research Foundation
P.O. Box 5036, Annapolis, MD 21403
Fax (410) 263-8944; Internet: erf@igc.apc.org
==========
RACHEL-4CM = DIOXIN FOCUSED DIRECTORY
Remote Access Chemical Hazards Electronic Library.
Dioxinnz.com
=======================Original Source========================

For three years, U.S. Environmental Protection Agency [EPA] has been reassessing the toxicity of dioxin and other dioxin-like chemicals, including dibenzofurans and some PCBs [polychlorinated biphenyls]. PCBs are industrial chemicals now banned in the U.S. because of widespread environmental damage. Dioxins and furans are unwanted byproducts of many industrial operations including incineration, tire burning, combustion of coal and oil, manufacture of paper and some pesticides, and metal smelting. Dioxins and furans are created when chlorine combines with other chemicals at high temperatures.

In 1990, the paper and chlorine industries campaigned to force EPA to undertake a thorough review of dioxin science (RHWN #275). It is now abundantly clear that the reassessment has not turned out the way those industries hoped it would. We have obtained two drafts of the EPA's summary report of its dioxin reassessment titled, "Chapter 9. Risk Characterization of Dioxin and Related Compounds," dated March 7, and May 2, 1994. Some conclusions of the May 2 draft were reported in the NEW YORK TIMES May 11, 1994. [1] What follows here is based entirely on the EPA's May 2 draft. Page numbers inside square brackets refer to that draft.

EPA has identified 30 dioxin-like chemicals (7 true dioxins, 10 furans, and 13 PCBs) that have dioxin-like characteristics. EPA's draft report describes the toxicity of all these 30 chemicals taken together; in this discussion we refer to them as simply dioxin.

EPA has concluded that:
** For non-cancer effects, such as damage to the reproductive, endocrine, and immune systems, in birds, fish and mammals, including humans, dioxin is much more toxic than previously believed [pg. 35].

The agency says, "Indeed, these compounds are extremely potent in producing a variety of effects in experimental animals based on traditional toxicology studies at levels hundreds or thousands of times lower than most chemicals of environmental interest." [pg. 1] And: "There is adequate evidence from studies in human populations as well as in laboratory animals and from ancillary experimental data to support the inference that humans are likely to respond with a plethora [an abundance] of effects from exposure to dioxin and related compounds." [pg. 49]

Dioxin's most powerful effects are seen in the reproductive system, the endocrine (hormone) system, and the immune system. Most sensitive of all are newborn infants and fetuses exposed while in the womb. "In mammals, postnatal functional alterations involving learning behavior and the developing reproductive system appear to be the developmental events most sensitive to perinatal dioxin exposure. The developing immune system may also be highly sensitive." [pg. 36] In other words, dioxin exposure of mammals (including humans) shortly before or shortly after birth ("perinatal") are most likely to impair intellectual development and the immune system. The immune system protects against bacterial and viral disease, and cancer, so damage to the immune system can invite other serious diseases.

** Some of dioxin's powerful effects are observable in humans at dioxin exposure levels already occurring in the U.S. population. [pgs. 34, 37, and Table 9-3 following pg. 43] EPA says, "Some of the effects of dioxin and related compounds have been observed in laboratory animals and humans at or near levels to which people in the general population are exposed." [pg. 47] And: "In humans, subtle changes in enzyme activity indicating liver changes, in levels of circulating reproductive hormones in males, in reduced glucose tolerance, and in cellular changes related to immune function suggest the potential for adverse impacts on human metabolism, reproductive biology, and immune competence at or within one order of magnitude of average background body burden levels." [pgs. 49-50] In other words, average levels of dioxin already present in the bodies of average Americans --or levels not more than 10 times as high as average levels --seem to be capable of damaging the immune system, reducing sex hormones in the blood stream of men, interfering with glucose metabolism (a condition suggestive of diabetes), and causing other negative changes in health and well being.

Table 9-3 shows that the average amount of dioxin in Americans is 9 nanograms per kilogram (ng/kg) of body weight; a nanogram is a billionth of a gram and there are 28 grams in an ounce. Table 9-3 also shows that sex hormones are diminished in men with 13 ng/kg; altered glucose tolerance has been observed in humans with 14 ng/kg; decreased growth is observable in humans having 47 ng/kg; endometriosis is produced in monkeys having 27 ng/kg.

Within the general public, some people are receiving lower-than-average doses of dioxin and others are receiving higher-than-average doses because of their diets, living near facilities emitting dioxin, exposures at work, and so forth. EPA says, "Some more highly exposed members of the population may be at risk for a number of adverse effects including developmental toxicity, reduced reproductive capacity in males based on decreased sperm counts, higher probability of experiencing endometriosis in women, reduced ability to withstand immunological challenge, and others." [pg. 50]

** Dioxin's cancer effects are worse than previously thought. EPA now says flatly, dioxin is "likely to present a cancer hazard to humans" [pg. 52]. And dioxin "probably increases cancer mortality of several types" in humans, EPA says. [pg. 31]

EPA shows numerically that existing levels of dioxin may be a significant cancer hazard: "Modeling estimates suggest that, if dioxin and related compounds are adding to human cancer burden, current background exposure may result in upper bound population cancer risk estimates in the range of one in ten thousand (10**-4) to one in a thousand (10**-3) attributable to exposure to dioxin and related compounds." [pgs. 43-44] In other words, EPA's best estimate is that existing levels of dioxin in the U.S. population may be sufficient to cause cancer in somewhere between one-in-every-thousand people and one-in-every-ten-thousand people each year. Since there are 250 million Americans, EPA is saying that existing dioxin levels may be causing somewhere between 25,000 and 250,000 new cancers each year. There are about one million new cancers diagnosed each year in the U.S. [see RHWN #385], so EPA's best estimate is that dioxin now present in the American people may be responsible for somewhere between 2.5% and 25% of all cancers.

[[The following is a rewording of this article from a greenleft publication:
"EPA's best estimate is that existing levels of dioxin in the US population may be sufficient to cause cancer in somewhere between one in 10,000 people and one in 1000 people during a lifetime (70 years). Since there are 250 million Americans, EPA is saying that existing dioxin levels may be causing somewhere between 25,000 and 250,000 cancers in a lifetime (70 years), or 350 to 3500 new cancers each year.

If EPA's estimate of the dioxin cancer hazard is correct, an individual's lifetime probability of getting cancer from dioxin in the US falls in the range of 1 in 1700 to 1 in 3300. This is the same risk you would get from 300 to 600 chest x-rays."]]

Another way to estimate the size of the cancer hazard is to note that EPA says the amount of dioxins sufficient to create a one-in-a-million cancer hazard is daily intake of 0.01 picograms of dioxin per kilogram of body weight [pg. 43]. (A picogram is a trillionth of a gram.) Average daily intake of total dioxins among Americans is 3 to 6 picograms per kilogram of body weight [pg. 50], or 300 to 600 times the one-in-a-million hazard level. This means that, in the U.S. population of 250 million, our average daily dose of dioxin in food and air may be causing somewhere between 75,000 and 150,000 cancers each year. Thus both ways of estimating the cancer hazard force the conclusion that dioxins may already be a major cancer hazard for Americans.

Dioxins are produced in very small quantities, if at all, by nature. EPA says, "...the presence of dioxin-like compounds in the environment occurs primarily as a result of industrial practices." [pg. 6]

EPA identifies 4 major sources of dioxin in the environment:
(1) COMBUSTION AND INCINERATION SOURCES. 
This category includes incineration of municipal solid waste, sewage sludge, hospital wastes and hazardous wastes; metallurgical operations, such as high-temperature steel production, smelting operations, and scrap metal recovery furnaces; and the burning of coal, wood, petroleum products and used tires for power or energy generation. Cigarette smoke, crematories, volcanoes and forest fires are "minor sources," says EPA. [pg. 7] (Forest fires release dioxins that have been discharged by industrial smoke stacks and have fallen onto the leaves of trees; by similar means, leaf compost can be contaminated by dioxins [pg. 8].)

(2) CHEMICAL MANUFACTURING/PROCESSING SOURCES. 
Dioxins and dioxin-like compounds are created by the manufacture of chlorine and such chlorinated compounds as chlorinated phenols, PCBs, phenoxy herbi-cides (e.g., 2,4,5-T, 2,4-D and 11 others), chlorinated benzenes, chlorinated aliphatic compounds, chlorinated catalysts, and halogenated diphenyl ethers. [pg. 7] Although manufacture of many chlorinated phenols, and PCBs, ceased in the U.S. around 1980, use and disposal are continuing both inside and outside the U.S. Large quantities of PCBs are in "storage" in leaking landfills; another billion pounds of PCBs (about 1/3 of all PCBs ever manufactured) simply cannot be accounted for (see RHWN #327).

(3) INDUSTRIAL/MUNICIPAL PROCESSES: 
Dioxin-like compounds are created during chlorination of naturally-occurring phenolic compounds, such as those in wood pulp. Chlorine bleaching in the manufacture of bleached pulp and paper has resulted in dioxins in paper products as well as in liquid and solid wastes from this industry. [pg. 7]

(4) RESERVOIR SOURCES: 
Dioxin degrades very slowly once it is released into the environment. Therefore past releases of dioxin have accumulated in various "reservoirs," such as soils, sediments, organic matter, and waste disposal sites. (The Hyde Park Landfill on the edge of the Niagara River bordering New York and Canada has been estimated to contain as much as a ton of dioxins. See RHWN #188.) When dioxins move from these reservoirs they can become "new sources" of dioxin for a particular locale. All together, these sources emit some 14,000 grams (30.9 pounds) of total dioxins each year in the U.S. [pg. 8] But the amount of dioxins falling on the surface of the U.S. each year is estimated to be between 20,000 and 50,000 grams (44.1 to 110.2 pounds) [pg. 9]. Obviously some important sources of dioxin have not yet been identified. Dioxins may be arriving from other countries, carried on the wind. EPA simply doesn't know.

Dioxins fall out of the atmosphere onto the land and water and are then incorporated into the food chain, or they are discharged directly into waterways and incorporated into food chains. They tend to concentrate as they move upward in the food chain; over 90% of the dioxins in our bodies enter with our food. The major sources of dioxin to humans are meat, fish and dairy products, though inhalation may be important near some emission sources, such as some incinerators.

[To be continued.] #391

  --Peter Montague, Ph.D.

===============


[1] Keith Schneider, "Fetal Harm, Not Cancer, Is Called The Primary Threat From Dioxin," NEW YORK TIMES May 11, 1994, pgs. A1, A20.


Descriptor terms: dioxin; tcdd; 2,3,7,8-tetrachlorodibenzo-p-dioxin; dibenzofurans; furans; dioxins; pcbs; polychlorinated biphenyls; epa reassessment; studies; risk characterization; risk assessment; reprodctive disorders; endocrine disrupters; endocrine system; immune system; immune disorders; immunotoxicity; toxins; poisons; hormones; sex hormones; endometriosis; cancer; diabetes; glucose intolerance; sperm counts; incineration; smelters; smelting; fossil fuels; coal; oil; wood; tires; rubber tires; forest fires; leaf composting; medical wastes; infectious wastes; hospital wastes; sewage sludge; hazardous waste; municipal solid waste; msw; cigarettes; tobacco; volcanoes; cremation; crematories; chlorine; phenoxy herbicides; pesticides; paper; pulp; bleaching; landfilling; hyde park; niagara river; new york; canada; ny; cn; inhalation; food; meat; fish; dairy products; milk; cheese; food safety;