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Development and applications of microbial ecogenomic indicators for monitoring water quality: report of a workshop assessing the state of the science, research needs and future directions.

This article brings forth recommendations from a workshop sponsored by the U.S. Environmental Protection Agency's Science to Achieve Results (STAR) and Environmental Monitoring and Assessment (EMAP) Programs and by the Council of State Governments, held during May 2002 in Kansas City, Kansas. The workshop assembled microbial ecologists and environmental scientists to determine what research and science is needed to bring existing molecular biological approaches and newer technologies arising from microbial genomic research into environmental monitoring and water quality assessments. Development of genomics and proteomics technologies for environmental science is a very new area having potential to improve environmental water quality assessments. The workshop participants noted that microbial ecologists are already using molecular biological methods well suited for monitoring and water quality assessments and anticipate that genomics-enabled technologies could be made available for monitoring within a decade. Recommendations arising from the workshop include needs for (i) identification of informative microbial gene sequences, (ii) improved understandings of linkages between indicator taxa, gene expression and environmental condition, (iii) technological advancements towards field application, and (iv) development of the appropriate databases.

Animals↗

Biotechnology and food allergy.

The production of genetically modified foods for an increasingly informed and selective consumer requires the coordinated activities of both the companies developing the transgenic food and regulatory authorities to ensure that these foods are at least as safe as the traditional foods they are supplementing in the diet. Although the size and complexity of the food sector ensures that no single player can control the process from seed production through farming and processing to final products marketed in a retail outlet, checks and balances are in place to ensure that transgenic foods will provide a convenient, wholesome, tasty, safe, affordable food source. Ultimately, it is the responsibility of companies developing the genetically modified food to provide relevant data to regulatory agencies, such as the US Department of Agriculture, Environmental Protection Agency, and Food and Drug Administration, to confirm that the transgenic product is reasonably safe for the consumer, as zero risk from allergen sensitization is nonexistent.

Animals↗

Some considerations concerning multimedia-multipollutant risk assessment methodology: use of epidemiologic data for non-cancer risk assessment in Russia.

The highly industrialized small town of Verkhnyaya Pyshma (in the Urals region of Russia) was chosen as the site of a multimedia-multipollutant risk assessment using the U.S. Environmental Protection Agency methodology. The assessment was based on routine environmental pollution monitoring data for ambient air, soils, drinking water, and food, and the international environmental epidemiology literature. Using an a priori set of the preliminary health-based criteria, we selected nine pollutants for risk assessment: total suspended particles (TSP), sulfur dioxide, nitrogen dioxide, benzo(a)pyrene (BaP), ammonia arsenic, copper, cadmium, and lead. We used dose-response functions derived from epidemiologic studies to assess individual and population risks for TSP, SO2, NO2, As, Cd, and Pb. We assessed both cancer (for BaP, As, and Cd) and non-cancer (for all the chosen pollutants but BaP) responses, but in this paper we discuss only the assessments of noncarcinogenic risks due to TSP, SO2, NO2, Pb, and Cd as examples of how the quantitative estimates of health effects can be produced by using a risk function approach. We also schematically present a modified conceptual model of multimedia-multipollutant risk assessment taking into account the experience gained with this study.

Adolescent↗

Chronic inhalation toxicity and carcinogenicity testing of respirable fibrous particles. Workshop report.

On May 8-10, 1995, a workshop on chronic inhalation toxicity and carcinogenicity testing of respirable fibrous particles was held in Chapel Hill, North Carolina. The workshop was sponsored by the Office of Pollution Prevention and Toxics, U.S. Environmental Protection Agency (EPA), in collaboration with the National Institute of Environmental Health Sciences (NIEHS), the National Institute for Occupational Safety and Health (NIOSH), and the Occupational Safety and Health Administration (OSHA). The goal of the workshop was to obtain input from the scientific community on a number of issues related to fiber testing. Major issues for discussion were: (i) the optimal design and conduct of studies of the health effects of chronic inhalation exposure of animals to fibers; (ii) preliminary studies which would be useful guides in designing the chronic exposure study; (iii) mechanistic studies which would be important adjuncts to the chronic exposure study to enable better interpretation of study results and extrapolation of potential effects in exposed humans; and (iv) available screening tests which can be used to develop a minimum data set for (a) making decisions about the potential health hazard of the fibers and (b) prioritizing the need for further testing in a chronic inhalation study. After extensive discussion and debate of the workshop issues, the general consensus of the expert panel is that chronic inhalation studies of fibers in the rat are the most appropriate tests for predicting inhalation hazard and risk of fibers to humans. A number of guidances specific for the design and conduct of prechronic and chronic inhalation studies of fibers in rodents were recommended. For instance, it was recommended that along with other information (decrease in body weight, systemic toxicity, etc.), data should be obtained on lung burdens and bronchoalveolar lavage fluid analysis to assist in establishing the chronic exposure levels. Lung burden data are also important for quantifying aspects of risk assessment related to dosimetric adjustments before extrapolation. Although mechanistic studies are not recommended as part of the standard chronic inhalation studies, the expert panel stressed the need for obtaining mechanistic information as far as possible during the course of subchronic or chronic inhalation studies. At present, no single assay and battery of short-term assays can predict the outcome of a chronic inhalation bioassay with respect to carcinogenic effects. Meanwhile, several short-term in vitro and in vivo studies that may be useful to assess the relative potential of fibrous substances to cause lung toxicity/carcinogenicity have been identified.

Administration, Inhalation↗

Chemistry and fate of fenvalerate and esfenvalerate.

Fenvalerate is listed under Class IV of the U.S. Food and Drug Administration (USFDA) Surveillance Index Classification, indicating a low hazard potential to humans from both exposure and toxicological standpoints; thus, minimal monitoring is required (Reed 1981; Eisler 1992). To date, monitoring efforts have been of limited value in evaluating concentrations of fenvalerate and its subsequent risk to the environment. Few regulations currently exist for protection of sensitive natural resources against fenvalerate or esfenvalerate, although current application rates may be lethal to many nontarget species, including bees, fish, and aquatic invertebrates. Additional monitoring is recommended to measure residues in the environment and evaluate risks associated with use. It is clear that both fenvalerate and esfenvalerate are considerably less harmful to the environment and most nontarget organisms than most other insecticides. They are considerably less persistent and more selective in their toxicity, except for their high degree of toxicity to fish and aquatic invertebrates. However, they are moderately persistent in soils and, because of low water solubilities, high octanol-water partition coefficients (Kow), and moderate persistence, both fenvalerate and esfenvalerate have been identified as having the potential to accumulate in aquatic sediments and biota (Nowell et al. 1999). Numerous studies of fenvalerate dynamics in soils indicate that it is relatively immobile and readily degraded. In almost all cases, the degradation products formed are less toxic than the parent insecticide. However, some degradation products from fenvalerate may demonstrate elevated toxicity, and more research into and increased monitoring of abiotic degradation may be warranted. Results from environmental monitoring are minimal at best and do not adequately support research done in the laboratory. These results are critical for accurately determining the risk these insecticides pose to the environment. The pyrethroids are poised to fill the gap left in the insecticide market with the impending suspension of many of the organophosphates and possibly at least some carbamates. One agent, chlorpyrifos, has already been heavily restricted by the U.S. Environmental Protection Agency (USEPA), and one manufacturer has ceased production. The environmental risk posed by both fenvalerate and esfenvalerate can change significantly with increased application, and current information is not sufficient to adequately assess the risk that a dramatic rise in use would pose. Future efforts should focus on increased environmental monitoring and research on esfenvalerate fate with increased and repeated application. Pyrethroids, including fenvalerate and esfenvalerate, have also recently been linked to endocrine disruption (Garey and Wolff 1998; Go et al. 1999). Endocrine disruption is an emerging field, and more research is essential in documenting and managing these types of effects. Research into the bioavailability and dynamics of esfenvalerate at the sediment-water interface is also of key importance. Current information indicates that resuspension or desorption from soils should be minimal, but this is not equivalent to the fraction of sediment-sorbed esfenvalerate that may be bioavailable to sensitive aquatic species. In terms of risk, fenvalerate and esfenvalerate are significant improvements over many of their predecessors, but it is clear that more information is needed to fully support this conclusion.

Animals↗

Application of toxicological risk assessment principles to the chemical constituents of cigarette smoke.

OBJECTIVE: To provide a hazard prioritisation for reported chemical constituents of cigarette smoke using toxicological risk assessment principles and assumptions. The purpose is to inform prevention efforts using harm reduction. DATA SOURCES: International Agency for Research on Cancer Monographs; California and US Environmental Protection Agency cancer potency factors (CPFs) and reference exposure levels; scientific journals and government reports from the USA, Canada, and New Zealand. STUDY SELECTION: This was an inclusive review of studies reporting yields of cigarette smoke constituents using standard ISO methods. DATA EXTRACTION: Where possible, the midpoint of reported ranges of yields was used. DATA SYNTHESIS: Data on 158 compounds in cigarette smoke were found. Of these, 45 were known or suspected human carcinogens. Cancer potency factors were available for 40 of these compounds and reference exposure levels (RELs) for non-cancer effects were found for 17. A cancer risk index (CRI) was calculated by multiplying yield levels with CPFs. A non-cancer risk index (NCRI) was calculated by dividing yield levels with RELs. Gas phase constituents dominate both CRI and NCRI for cigarette smoke. The contribution of 1,3-butadiene (BDE) to CRI was more than twice that of the next highest contributing carcinogen (acrylonitrile) using potencies from the State of California EPA. Using those potencies from the USEPA, BDE ranked third behind arsenic and acetaldehyde. A comparison of CRI estimates with estimates of smoking related cancer deaths in the USA showed that the CRI underestimates the observed cancer rates by about fivefold using ISO yields in the exposure estimate. CONCLUSIONS: The application of toxicological risk assessment methods to cigarette smoke provides a plausible and objective framework for the prioritisation of carcinogens and other toxicant hazards in cigarette smoke. However, this framework does not enable the prediction of actual cancer risk for a number of reasons that are discussed. Further, the lack of toxicology data on cardiovascular end points for specific chemicals makes the use of this framework less useful for cardiovascular toxicity. The bases for these priorities need to be constantly re-evaluated as new toxicology information emerges.

Dioxins↗

The good, the bad, and the ugly: weighing the risks and benefits of seafood consumption.

The health benefits that long chain omega-3 fatty acids contribute in the reduction of coronary heart disease are well established through a number of scientific publications. A number of studies are also examining their potential role in mitigating other diseases and health conditions such as Alzheimer's and mental disorders. Some of the latest research have shown the importance of omega-3 fatty acids such as docosahexaenoic acid in cognitive development in infants. Extensive scientific research and recommendations to consume fish regularly from professional societies, health organizations, and government agencies consistently support dietary guidance to consume fish regularly. Nevertheless, increasingly consumers are being warned to eliminate or minimize their consumption of certain species. The warnings, which have been issued due to risks associated with chemical contaminates such as mercury, PCB, and dioxin in fish, have received extensive coverage in news articles and stories in popular magazines. There have been a series of mixed messages to the consumer about the benefits or risks in eating seafood. In some cases, the warnings have been issued by government agencies such as the Food and Drug Administration and Environmental Protection Agency's Joint Fish Advisory on methylmercury. In other cases, the warnings have come from advocacy groups and others. Unfortunately, the advice is often miscommunicated and misunderstood by consumers. The emerging news about the benefits and risks of fish consumption will be discussed in the context of their impacts on consumer's health and well-being.

Animals↗

Use of QSARs in international decision-making frameworks to predict ecologic effects and environmental fate of chemical substances.

This article is a review of the use, by regulatory agencies and authorities, of quantitative structure-activity relationships (QSARs) to predict ecologic effects and environmental fate of chemicals. For many years, the U.S. Environmental Protection Agency has been the most prominent regulatory agency using QSARs to predict the ecologic effects and environmental fate of chemicals. However, as increasing numbers of standard QSAR methods are developed and validated to predict ecologic effects and environmental fate of chemicals, it is anticipated that more regulatory agencies and authorities will find them to be acceptable alternatives to chemical testing.

Decision Making, Organizational↗

Strategic biomonitoring initiatives: moving the science forward.

Biomonitoring programs in the United States and Europe demonstrate the vast array of data that are publicly available for the evaluation of exposure trends, identification of susceptible populations, detection of emerging chemical risks, the conduct of epidemiology studies, and evaluation of risk reduction strategies. To cultivate international discussion on these issues, the ILSI Health and Environmental Sciences Institute convened a scientific session at its annual meeting in January 2006 on "Integration of Biomonitoring Exposure Data into the Risk Assessment Process." This Forum paper presents perspectives from session speakers on the biomonitoring activities of the Centers for Disease Control and Prevention, the U.S. Environmental Protection Agency, the National Research Council Committee on Human Biomonitoring for Environmental Toxicants, the German Commission on Human Biomonitoring, and the Health and Environmental Sciences Institute Biomonitoring Technical Committee. Speakers noted that better estimates of biological concentrations of substances in the tissues of human populations can be combined with other exposure indices, as well as epidemiological and toxicologic data, to improve risk estimates. With this type of combined data, the potential also exists to define exposure levels at which hazard and risk are of minimal concern. Limitations in interpreting biomonitoring data were discussed, including the need for different criteria for applying biomonitoring data for exposure assessment, risk assessment, risk management, or disease prevention purposes. As efforts and resources are expended to improve the ability to apply biomonitoring exposure data in the risk assessment process, it is equally important to communicate the significance of such data to the public.

Environmental Monitoring↗

Safety assessments and public concern for genetically modified food products: the American view.

In the relatively short time since their commercial introduction in 1996, genetically modified (GM) crops have been rapidly adopted in the United States GM crops are regulated through a coordinated framework developed in 1992 and administered by three agencies-the US Department of Agriculture (USDA) that ensures the products are safe to grow, the Environmental Protection Agency (EPA) that ensures the products are safe for the environment, and the Food and Drug Administration (FDA) that ensures the products are safe to eat. Rigorous food and environmental safety assessments must be completed before GM crops can be commercialized. Fifty-one products have been reviewed by the FDA, including several varieties of corn, soybeans, canola, cotton, rice, sugar beets, potatoes, tomatoes, squash, papaya, and flax. Because FDA considers these crops "substantially equivalent" to their conventional counterparts, no special labeling is required for GM crops in the United States and they are managed as commodities with no segregation or identity preservation. GM crops have thus made their way through commodity distribution channels into thousands of ingredients used in processed foods. It has been estimated that 70% to 85% of processed foods on supermarket shelves in the United States today contain one or more ingredients potentially derived from GM crops. The food industry and retail industry have been monitoring the opinions of their consumers on the GM issue for the past several years. Numerous independent groups have also surveyed consumer concerns about GM foods. The results of these surveys are shared and discussed here.

Animals↗

Still moving toward environmental justice.

Three years in the making, the Institute of Medicine report Toward Environmental Justice was funded by a consortium of agencies, including the NIEHS, the Centers for Disease Control and Prevention, the U.S. Environmental Protection Agency, and the U.S. Department of Energy. The independent review was authored by a 15-member committee that represented academia, public interest, medicine, law, and industry. The committee met with stakeholders, citizens, public officials, and industry representatives around the United States to assess the need for better research, education, and health policy related to environmental justice. The report investigates the situation of groups of individuals suspected of having disproportionately high levels of exposure to environmental stressors such as chemicals, biologics, allergenics, toxicants, light, noise, odors, and particulate matter. The report calls for more research to help identify and verify the environmental etiologies of diseases. It also recommends that citizens be recruited to participate in the design and execution of the research, and that communication during all phases of the research be open and reciprocal.

Environmental Health↗

[Environmental characterization: air pollution].

During the years of the epidemiological group-diagnostic examination (1982-1986) it was attempted to characterize the atmospheric air pollution in the industrial Rhine-Main area (Wiesbaden and Frankfurt) and, in comparison, in two control areas (Freiburg with the adjacent High Black Forest and the Starnberg area). For this the measurements of the air measuring stations of the network for emissions of the German Umweltbundesamt (Federal Environmental Protection Agency) at Berlin and Frankfurt were used and well as those of the Hessische Landesanstalt für Umwelt, Wiesbaden (Hessian Office for Environmental Protection); Landesanstalt für Umweltschutz Baden-Württemberg, Karlsruhe (Regional Office for Environmental Protection of Baden-Württemberg); Bayerische Landesanstalt für Umweltschutz (Bavarian Office for Environmental Protection, Munich), were used. The comparison of the different measuring components used shows the pollutant concentration in the air at the measuring stations in Wiesbaden and Frankfurt attains the highest values. Opposed to that, the pollutant concentration in the areas Freiburg with the adjacent Black Forest and in the region of Starnberg can be judged to be relatively low. No statement can, unfortunately, be made on the heavy metal burden in the air of the Starnberg area, since heavy metal in the air have not been analysed.

Air Pollution↗

Protocol for laboratory testing of crude-oil bioremediation products in freshwater conditions.

In 1993, the Environmental Protection Agency, National Risk Management Research Laboratory (EPA, NRMRL), with the National Environmental Technology Application Center (NETAC), developed a protocol for evaluation of bioremediation products in marine environments [18]. The marine protocol was adapted for application in freshwater environments by using a chemically defined medium and an oil-degrading consortium as a positive control. Four products were tested using the modified protocol: two with nutrients and an oleophilic component; one with nutrients, sorbent, and organisms; and one microbial stimulant. A separate experiment evaluated the use of HEPES and MOPSO buffers as replacements for phosphate buffer. The oleophilic nutrient products yielded oil degradation similar to the positive control, with an average alkane removal of 97.1+/-2.3% and an aromatic hydrocarbon removal of 64.8+/-1.2%. The positive control, which received inoculum plus nutrients, demonstrated alkane degradation of 98.9+/-0.1% and aromatic degradation of 52.9+/-0.1%. The sorbent-based product with inoculum failed to demonstrate oil degradation, while the microbial stimulant showed less oil degradation than the positive control. Replacement of phosphate buffer with other buffers had no significant effect on one product's performance. Differences in product performance were easily distinguishable using the protocol, and performance targets for alkane and aromatic hydrocarbon degradation are suggested.

Alkanes↗

The 1999 Fresno particulate matter exposure studies: comparison of community, outdoor, and residential PM mass measurements.

Two collaborative studies have been conducted by the U.S. Environmental Protection Agency (EPA) National Exposure Research Laboratory (NERL) and National Health and Environmental Effects Research Laboratory to determine personal exposures and physiological responses to particulate matter (PM) of elderly persons living in a retirement facility in Fresno, CA. Measurements of PM and other criteria air pollutants were made inside selected individual residences within the retirement facility and at a central outdoor site on the premises. In addition, personal PM exposure monitoring was conducted for a subset of the participants, and ambient PM monitoring data were available for comparison from the NERL PM research monitoring platform in central Fresno. Both a winter (February 1-28, 1999) and a spring (April 19-May 16, 1999) study were completed so that seasonal effects could be evaluated. During the spring study, a more robust personal exposure component was added, as well as a more detailed evaluation of physical factors, such as air-exchange rate, that are known to influence the penetration of particles into the indoor environment. In this paper, comparisons are made among measured personal PM exposures and PM mass concentrations measured at the NERL Fresno Platform site, outside on the premises of the retirement facility, and inside selected residential apartments at the facility during the two 28-day study periods. The arithmetic daily mean personal PM2.5 exposure during the winter study period was 13.3 micrograms/m3, compared with 9.7, 20.5, and 21.7 micrograms/m3 for daily mean overall apartment, outdoor, and ambient (i.e., platform) concentrations, respectively. The daily mean personal PM2.5 exposure during the spring study period was 11.1 micrograms/m3, compared with 8.0, 10.1, and 8.6 micrograms/m3 for the daily mean apartment, outdoor, and ambient concentrations, respectively.

Aged↗

Chlorinated hydrocarbon pesticides and mercury in coastal biota, Puerto Rico and the U.S. Virgin Islands--1972-74.

Baseline levels of mercury and chlorinated hydrocarbons were determined for Caribbean coastal biota as part of the U.S. Environmental Protection Agency estuarine monitoring program. Forty-one percent of the 150 environmental samples taken had significant levels of these compounds. Concentrations of chlorinated hydrocarbons suggest spatial and temporal variations within the plant or animal. In some cases residues in biota could be related to the land-use practices in the sampled watershed.

Animals↗

Communicating exposure and health effects results to study subjects, the community and the public: strategies and challenges.

The Mickey Leland National Urban Air Toxics Research Center sponsored a Symposium in August 2002 that focused on the communication of health effects results from community studies involving exposure to hazardous substances in the environment. Some of the audiences identified for presentation of study results were the study subjects, the community, and the general public. Principles and approaches to communicating findings were discussed, as were the challenges that may confront researchers in developing and implementing a communication plan. The Symposium included four sessions. The first was an overview session where Timothy McDaniels (University of British Columbia) described risk communication as a decision-aiding process. In the second session, case studies were presented by Timothy Buckley (Johns Hopkins University), Jane Hoppin (National Institute of Environmental Health Sciences), and Anne-Marie Nicol (University of British Columbia). Approaches and strategies used by different stakeholders to communicate study results was the topic for a panel discussion at the third session. Panelists included: James Collins (The Dow Chemical Company), Mary White (Agency for Toxic Substances and Disease Registry), Richard Clapp (Boston University), Valerie Zartarian (Environmental Protection Agency), Pamela Williams (Chemrisk), and Tina Bahadori (American Chemistry Council). The final session was a summary presentation on lessons learned given by Rebecca Parkin of George Washington University, in which she synthesized the preceding presentations and formulated guidelines for effective risk communication in community research studies.

Communication↗

Patterns and concentrations of PM10 in a mountainous basin region.

In this study, continuous data of PM10 (particles with aerodynamic diameter < 10 microns) concentration measurements for a 4-yr period were analyzed. These measurements have been carried out in the Eordea Basin, an industrial area in the northwestern mountainous region of Greece. The annual, monthly, and diurnal patterns are presented and investigated regarding the prevailing meteorological conditions and atmospheric processes that affect the ambient concentrations of PM10. The effect of wind on controlling PM10 concentration is also discussed. Based on the data analysis, an attempt is made to provide useful information about air quality levels, taking into account U.S. Environmental Protection Agency air quality standards.

Air Pollution↗