Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 20 de 2.273
Filter
1.
PeerJ ; 12: e17216, 2024.
Article in English | MEDLINE | ID: mdl-38699190

ABSTRACT

This study is the first to determine the levels of heavy metals in commercially important fish species, namely Lates niloticus and Oreochromis niloticus and the potential human health risks associated with their consumption. A total of 120 fish samples were collected from the lower Omo river and Omo delta, with 60 samples from each water source. The fish tissue samples (liver and muscle) were analyzed using a flame atomic absorption spectrometer for nine heavy metals (Cd, Co, Cr, Cu, Fe, Mn, Ni, Pb, and Zn). The human health risk assessment tools used were the target hazard quotient (THQ), the hazard index (HI), and the target cancer risk (TCR). The mean levels of heavy metals detected in the liver and muscle of L. niloticus from the lower Omo river generally occurred in the order Fe > Zn > Pb> Cu > Mn> Cr > Co > Ni and Pb > Cu > Mn > Co > Ni, respectively. The mean levels of metals in the muscle and liver tissues of O. niloticus were in the order Fe > Pb > Zn > Mn > Cu > Cr > Co > Ni and Pb > Zn > Mn > Fe > Cu > Co > Ni, respectively. Similarly, the mean levels of heavy metals detected in the liver and muscle of L. niloticus from Omo delta occurred in the order Fe > Zn > Pb > Cu > Mn > Cr > Co > Ni and Fe > Pb > Zn > Mn > Cu > Co > Cr > Ni, respectively. The mean levels in the muscle and liver tissues of O. niloticus from the Omo delta were in the order Fe > Pb > Zn > Mn > Cu > Cr > Co > Ni and Pb > Fe > Zn > Mn > Co > Cu > Ni, respectively. The study revealed that the THQ values were below 1, indicating that consumption of L. niloticus and O. niloticus from the studied sites does not pose a potential non-carcinogenic health risk. Although the TCR values for Pb in this study were within the tolerable range, it's mean concentration in the muscle and liver tissues of both fish species from the two water bodies exceeded the permissible limit established by FAO/WHO. This is a warning sign for early intervention, and it emphasizes the need for regular monitoring of freshwater fish. Therefore, it is imperative to investigate the pollution levels and human health risks of heavy metals in fish tissues from lower Omo river and Omo delta for environmental and public health concerns.


Subject(s)
Food Contamination , Lakes , Metals, Heavy , Rivers , Water Pollutants, Chemical , Metals, Heavy/analysis , Humans , Animals , Rivers/chemistry , Risk Assessment , Water Pollutants, Chemical/analysis , Water Pollutants, Chemical/adverse effects , Food Contamination/analysis , Lakes/chemistry , Ethiopia , Fishes , Environmental Monitoring/methods , Liver/chemistry , Liver/metabolism , Cichlids/metabolism , Muscles/chemistry , Muscles/metabolism
2.
Commun Biol ; 7(1): 585, 2024 May 16.
Article in English | MEDLINE | ID: mdl-38755288

ABSTRACT

Exposure to pollutants is a potentially crucial but overlooked driver of population declines in shorebirds along the East Asian-Australasian Flyway. We combined knowledge of moult strategy and life history with a standardised sampling protocol to assess mercury (Hg) contamination in 984 individuals across 33 migratory shorebird species on an intercontinental scale. Over one-third of the samples exceeded toxicity benchmarks. Feather Hg was best explained by moulting region, while habitat preference (coastal obligate vs. non-coastal obligate), the proportion of invertebrates in the diet and foraging stratum (foraging mostly on the surface vs. at depth) also contributed, but were less pronounced. Feather Hg was substantially higher in South China (Mai Po and Leizhou), Australia and the Yellow Sea than in temperate and Arctic breeding ranges. Non-coastal obligate species (Tringa genus) frequently encountered in freshwater habitats were at the highest risk. It is important to continue and expand biomonitoring research to assess how other pollutants might impact shorebirds.


Subject(s)
Animal Migration , Mercury , Animals , Mercury/analysis , Mercury/toxicity , Birds , Environmental Monitoring , Australia , Water Pollutants, Chemical/analysis , Water Pollutants, Chemical/adverse effects , Feathers/chemistry , Ecosystem , Environmental Pollutants/analysis , Charadriiformes , China , East Asian People
4.
Huan Jing Ke Xue ; 45(1): 131-139, 2024 Jan 08.
Article in Chinese | MEDLINE | ID: mdl-38216465

ABSTRACT

Long-term exposure to arsenic can lead to functional damage to many organs and can be life-threatening. It is of great significance to analyze the distribution characteristics of arsenic in water and evaluate its potential risk for preventing and controlling human health hazards caused by water-derived arsenic. Based on the published data from 2000 to 2022, the geographical distribution characteristics of arsenic in drinking water across China were systematically analyzed in detail, and the health risk of arsenic in drinking water was quantitatively assessed using disability-adjusted life years (DALYs), which represent the burden of disease. The results showed that the average concentration of arsenic in drinking water in China was (2.88 ±0.33) µg·L-1, which was lower than the limit of 10 µg·L-1 set by the standard for drinking water quality (GB 5749-2022). Nevertheless, the arsenic in drinking water in some provinces, including Shanxi, Inner Mongolia, and Ningxia, was still higher than the limit. The arsenic concentration in drinking water in northern China was higher than that in southern China, and that in rural areas was higher than that in cities. The estimated health risk of arsenic in drinking water (1.63×10-6 DALYs per person-year) was higher than the acceptable risk level of waterborne exposure of 1.0×10-6 DALYs per person-year set by the World Health Organization. The personal health risks related to arsenic in drinking water in the six geographical regions were ranked as follows:North China > Northeast China > Central South China > Northwest China > Southwest China > East China. Almost all (99.4%) of the health burden associated with water arsenic was attributable to skin and lung cancer, which caused 2 905.25 and 1 513.96 DALYs per year, respectively. Most (78.0%) of the health burden was borne by people aged 45 years or older. In addition, given the proportion of each age group in the total population, older persons over the age of 60 bear a higher drinking-water-associated arsenic burden at the individual level than others, and attention should be consequently paid to them when controlling the risk of arsenic in water.


Subject(s)
Arsenic , Drinking Water , Water Pollutants, Chemical , Humans , Aged , Aged, 80 and over , Arsenic/analysis , Drinking Water/adverse effects , Disability-Adjusted Life Years , Risk Assessment , Water Pollutants, Chemical/adverse effects , Water Pollutants, Chemical/analysis , China/epidemiology
5.
Environ Monit Assess ; 195(12): 1512, 2023 Nov 22.
Article in English | MEDLINE | ID: mdl-37989793

ABSTRACT

Phenol, known for its bioaccumulative nature and severe toxicity to riverine organisms, poses complex challenges for ecological risk assessment. To tackle this issue, we developed a three-stage incremental assessment method, providing an integrated perspective on phenol toxicity risk for aquatic organisms. The findings indicated that phenol concentrations were generally higher in the aquatic environments of northern rivers, such as the Hun River, Taizi River, and Liao River, compared to those in southern China. The evaluation results at individual points showed that the ecological risk of phenol to aquatic organisms ranked from high to low during rainy, dry, and normal seasons, showing seasonal variation characteristics. Regarding spatial variation along the river, the ecological risk of phenol gradually increased from upper reaches, peaked in the middle reaches, and then decreased in the lower reaches. Considering the different species types, fish face a higher risk of toxic effects of phenol than invertebrates when exposed to phenol over a long period of time, probably due to the bioaccumulative nature of phenol. To address ecological risk control at the watershed scale, there is an urgent need to revise China's current river water quality standards. It is essential to increase the emphasis on ecological risk control for aquatic organisms. Developing more targeted and refined ecological risk control strategies for river phenols is crucial to maintain a healthier and more vibrant river ecosystem.


Subject(s)
Ecosystem , Phenol , Water Pollutants, Chemical , Animals , Aquatic Organisms , Biota , China , Environmental Monitoring/methods , Phenol/adverse effects , Risk Assessment/methods , Rivers , Water Pollutants, Chemical/adverse effects
6.
Environ Int ; 179: 108140, 2023 09.
Article in English | MEDLINE | ID: mdl-37595537

ABSTRACT

Antibiotics are emerging pollutants that have detrimental effects on both target and non-target organisms in the environment. However, current methods for environmental risk assessment primarily focus on the risk to non-target organisms in ecosystems, overlooking a crucial risk of antibiotics - the induction of resistance in targeted bacteria. To address this oversight, we have incorporated resistance (R) risk with persistence, bioaccumulation and toxicity (PBT) to establish a more comprehensive PBTR (persistence, bioaccumulation, toxicity, and resistance) framework for antibiotic-specific risk assessment. Using the PBTR framework, we evaluated 74 antibiotics detected in Chinese seawater from 2000 to 2021, and identified priority antibiotics. Our analysis revealed that the priority antibiotics with R risk accounted for the largest proportion (50% to 70%), followed by P risk (40% to 58%), T risk (16% to 35%) and B risk (0 to 13%). To further categorize these priority antibiotics, we assigned them a risk level according to their fulfillment of criteria related to P, B, T, and R. Antibiotics meeting all four indicators were classified as Grade I, representing the highest risk level. Grade II and Grade III were assigned to antibiotics meeting three or two indicators, respectively. Antibiotics meeting only one indicator were classified as Grade IV, representing the lowest risk level. The majority of priority antibiotics fell into Grade IV, indicating low risk (55% to 79%), followed by Grade III (16% to 45%). The highest risk antibiotic identified in this study was clindamycin (CLIN), categorized as Grade II, in the East China Sea. Our findings aligned with previous studies for 25 antibiotics, affirming the validity of the PBTR framework. Moreover, we identified 13 new priority antibiotics, highlighting the advancement of this approach. This study provides a feasible screening strategy and monitoring recommendations for priority antibiotics in Chinese seawater.


Subject(s)
Anti-Bacterial Agents , Bioaccumulation , Drug Resistance, Microbial , Seawater , Water Pollutants, Chemical , Anti-Bacterial Agents/adverse effects , Anti-Bacterial Agents/analysis , Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/toxicity , Ecosystem , Seawater/analysis , Water Pollution, Chemical , Water Pollutants, Chemical/adverse effects , Water Pollutants, Chemical/analysis , Water Pollutants, Chemical/pharmacology , Water Pollutants, Chemical/toxicity , China
7.
BMC Public Health ; 23(1): 71, 2023 01 10.
Article in English | MEDLINE | ID: mdl-36627610

ABSTRACT

BACKGROUND: Arsenic in drinking water is a global public health concern. This study aims to investigate the association between chronic low-level exposure to arsenic in drinking water and health outcomes in the volcanic area of Mt. Amiata in Italy, using a residential cohort study design. METHODS: Chronic exposure to arsenic in drinking water was evaluated using monitoring data collected by the water supplier. A time-weighted average arsenic exposure was estimated for the period 2005-2010. The population-based cohort included people living in five municipalities in the Mt. Amiata area between 01/01/1998 and 31/12/2019. Residence addresses were georeferenced and each subject was matched with arsenic exposure and socio-economic status. Mortality and hospital discharge data were selected from administrative health databases. Cox proportional hazard models were used to test the associations between arsenic exposure and outcomes, with age as the temporal axis and adjusting for gender, socio-economic status and calendar period. RESULTS: The residential cohort was composed of 30,910 subjects for a total of 407,213 person-years. Analyses reported risk increases associated with exposure to arsenic concentrations in drinking water > 10 µg/l for non-accidental mortality (HR = 1.07 95%CI:1.01-1.13) and malignant neoplasms in women (HR = 1.14 95%CI:0.97-1.35). Long-term exposure to arsenic concentrations > 10 µg/l resulted positively associated with several hospitalization outcomes: non-accidental causes (HR = 1.06 95%CI:1.03-1.09), malignant neoplasms (HR = 1.10 95%CI:1.02-1.19), lung cancer (HR = 1.85 95%CI:1.14-3.02) and breast cancer (HR = 1.23 95%CI:0.99-1.51), endocrine disorders (HR = 1.13 95%CI:1.02-1.26), cardiovascular (HR = 1.12 95%CI:1.06-1.18) and respiratory diseases (HR = 1.10 95%CI:1.03-1.18). Some risk excesses were also observed for an exposure to arsenic levels below the regulatory standard, with evidence of exposure-related trends. CONCLUSIONS: Our population-based cohort study in the volcanic area of Mt. Amiata showed that chronic exposure to arsenic concentrations in drinking water above the current regulatory limit was associated with a plurality of outcomes, in terms of both mortality and hospitalization. Moreover, some signs of associations emerge even at very low levels of exposure, ​​below the current regulatory limit, highlighting the need to monitor arsenic concentrations continuously and implement policies to reduce concentrations in the environment as far as possible.


Subject(s)
Arsenic , Drinking Water , Lung Neoplasms , Water Pollutants, Chemical , Humans , Female , Arsenic/toxicity , Arsenic/analysis , Drinking Water/analysis , Cohort Studies , Environmental Exposure , Cause of Death , Italy/epidemiology , Hospitalization , Water Pollutants, Chemical/adverse effects , Water Pollutants, Chemical/analysis
8.
JAMA ; 328(18): 1795-1797, 2022 11 08.
Article in English | MEDLINE | ID: mdl-36260342

ABSTRACT

This Medical News article discusses new EPA advisories for a class of synthetic chemical compounds known as PFAS, which are ubiquitous in the environment and in humans, as well as new National Academies guidance on expanded testing for exposure.


Subject(s)
Environmental Exposure , United States Environmental Protection Agency , Water Pollutants, Chemical , Water Pollution, Chemical , Water Supply , Environmental Exposure/prevention & control , Environmental Exposure/standards , Water Supply/standards , United States Environmental Protection Agency/standards , United States , Water Pollution, Chemical/prevention & control , Water Pollutants, Chemical/adverse effects , Water Pollutants, Chemical/standards
12.
Article in English | MEDLINE | ID: mdl-35805555

ABSTRACT

Heavy metal contamination in coastal waters may pose a serious threat to aquatic products and human health. This study aimed to gain a better understanding of the pollution-induced by heavy metals in Haikou Bay and adjacent seas and assessed the potential ecological risk. The spatial distributions of heavy metals including Cu, Pb, Zn, Cd, Cr, Hg, and As were analyzed in the surface and bottom water, surface sediment, and five species of fish collected from Haikou Bay and adjacent seas. For seawater, the results showed that the horizontal distribution of the seven heavy metal elements in the study area had no uniform pattern due to the influence of complex factors, such as land-based runoff, port shipping, and ocean current movement. In contrast, the vertical distribution of these heavy metal elements, except for Zn and Cd, showed high concentrations in the surface water and low concentrations in the bottom water. Due to the symbiotic relationship between Zn and Cd, the distributions of these two elements were similar in the study areas. Different from the complex distribution of heavy metals in water, the highest concentrations of these elements in surface sediment all occurred at station 11 except for Pb. Our study revealed that organic carbon and sulfide are important factors affecting the heavy metal concentrations in the surface sediments. Heavy metals in waters and surface sediment were lower than the quality standard of class I according to the China National Standard for Seawater Quality and the sediment quality, except for Zn in water, suggesting that the seawater and surface sediment in Haikou Bay and adjacent seas has not been polluted by heavy metals. Additionally, the heavy metal As was the main element affecting the quality of fish in this study area, and attention should be paid in the future. The target hazard quotient (THQ) values of seven heavy metal elements in fish were all lower than 1.0, indicating that eating fish in this area will not pose a risk to human health. These results provide valuable information for further understanding the status of heavy metal pollution in Haikou Bay and adjacent seas and the development of targeted conversation measures for the environment and fish consumers.


Subject(s)
Geologic Sediments/chemistry , Metals, Heavy/analysis , Seawater/chemistry , Water Pollutants, Chemical/analysis , Animals , Bays , China , Environmental Monitoring/methods , Fishes/metabolism , Geologic Sediments/analysis , Metals, Heavy/adverse effects , Oceans and Seas , Risk Assessment , Water Pollutants, Chemical/adverse effects
13.
J Health Econ ; 84: 102644, 2022 07.
Article in English | MEDLINE | ID: mdl-35732085

ABSTRACT

The recent lead-in-water crisis in Newark has renewed concerns about the crisis being a widespread problem in the nation. Using data on the exact home addresses of pregnant women residing in the city combined with information on the spatial boundary separating areas within the city serviced by two water treatment plants, we exploit an exogenous change in water chemistry that resulted in lead leaching into the tap water of one plant's service area, but not the other's, to identify a causal effect of prenatal lead exposure on fetal health. We find robust evidence of adverse health impacts, which has important policy implications in light of the substantial number of lead water pipes that remain in use as part of our aging infrastructure and the cost-benefit calculus of lead abatement interventions.


Subject(s)
Drinking Water , Water Pollutants, Chemical , Water Purification , Drinking Water/adverse effects , Female , Humans , Parturition , Pregnancy , Water Pollutants, Chemical/adverse effects , Water Pollutants, Chemical/analysis , Water Supply
14.
Arch Environ Contam Toxicol ; 82(3): 330-340, 2022 Apr.
Article in English | MEDLINE | ID: mdl-35138446

ABSTRACT

Sugarcane crops are dependent on chemicals for maintaining plantations. Therefore, environmental consequences concern adjacent areas that can be affected by contaminants in common use, including pesticides and vinasse (i.e., a by-product from the ethanol industry). This study aimed to evaluate phytotoxicity through two plant bioassays with water from mesocosms contaminated with the herbicide 2,4-D (447.0 µg L-1), the insecticide fipronil (63.5 µg L-1), and sugarcane vinasse (1.3%). First, the germination test (4 d) with Eruca sativa L. assessed water samples collected three times after the contamination (2 h, 14 d, and 30 d), considering germination, shoot, and root growth. The results from this bioassay indicated higher phytotoxicity for 2,4-D as it fully inhibited the shoot and root growth even in low concentrations (0.2 µg L-1). However, no significant effect was reported for fipronil and vinasse. Also, the 2,4-D effects drastically decreased due to an expressive concentration reduction (99.4% after 30 d in mixture with vinasse). Second, the irrigation test with Phaseolus vulgaris L. and Zea mays L. considered shoot and root growth and biomass under 21 days after plants emergence. The herbicide 2,4-D inhibited the initial growth of tested species, especially the roots (up to 45% inhibition). Furthermore, sugarcane vinasse caused harmful effects on plant growth (up to 31% inhibition). Therefore, our data showed that these contaminants could inhibit plant germination and initial growth under our tested conditions. These evaluations can endorse risk assessments and water management in sugarcane crops surrounding areas.


Subject(s)
Pesticides , Saccharum , Distillation , Ethanol , Germination/drug effects , Pesticides/toxicity , Seeds , Water , Water Pollutants, Chemical/adverse effects , Water Pollution, Chemical/adverse effects
15.
Int J Mol Sci ; 23(4)2022 Feb 09.
Article in English | MEDLINE | ID: mdl-35216042

ABSTRACT

In aquatic organisms, cadmium exposure occurs from ovum to death and the route of absorption is particularly wide, being represented by skin, gills and gastrointestinal tract, through which contaminated water and/or preys are ingested. It is known that cadmium interferes with the gut; however, less information is available on cadmium effects on an important component of the gut, namely goblet cells, specialized in mucus synthesis. In the present work, we studied the effects of two sublethal cadmium concentrations on the gut mucosa of Danio rerio. Particular attention was paid to changes in the distribution of glycan residues, and in metallothionein expression in intestinal cells. The results show that cadmium interferes with gut mucosa and goblet cells features. The effects are dose- and site-dependent, the anterior gut being more markedly affected than the midgut. Cadmium modifies the presence and/or distribution of glycans in the brush border and cytoplasm of enterocytes and in the goblet cells' cytoplasm and alters the metallothionein expression and localization. The results suggest a significant interference of cadmium with mucosal efficiency, representing a health risk for the organism in direct contact with contamination and indirectly for the trophic chain.


Subject(s)
Cadmium/adverse effects , Gastrointestinal Tract/drug effects , Zebrafish/metabolism , Animals , Gastrointestinal Tract/metabolism , Gills/drug effects , Gills/metabolism , Liver/drug effects , Liver/metabolism , Metallothionein/metabolism , Water Pollutants, Chemical/adverse effects , Zinc/metabolism
16.
Sci Rep ; 12(1): 1468, 2022 01 27.
Article in English | MEDLINE | ID: mdl-35087129

ABSTRACT

Investigations of encounters between corals and microplastics have, to date, used particle concentrations that are several orders of magnitude above environmentally relevant levels. Here we investigate whether concentrations closer to values reported in tropical coral reefs affect sediment shedding and heterotrophy in reef-building corals. We show that single-pulse microplastic deposition elicits significantly more coral polyp retraction than comparable amounts of calcareous sediments. When deposited separately from sediments, microplastics remain longer on corals than sediments, through stronger adhesion and longer periods of examination by the coral polyps. Contamination of sediments with microplastics does not retard corals' sediment clearing rates. Rather, sediments speed-up microplastic shedding, possibly affecting its electrostatic behaviour. Heterotrophy rates are three times higher than microplastic ingestion rates when corals encounter microzooplankton (Artemia salina cysts) and microplastics separately. Exposed to cysts-microplastic combinations, corals feed preferentially on cysts regardless of microplastic concentration. Chronic-exposure experiments should test whether our conclusions hold true under environmental conditions typical of inshore marginal coral reefs.


Subject(s)
Anthozoa/metabolism , Microplastics/adverse effects , Water Pollutants, Chemical/adverse effects , Animals , Artemia/metabolism , Coral Reefs , Geologic Sediments/chemistry , Heterotrophic Processes , Microplastics/chemistry , Static Electricity , Water Pollutants, Chemical/chemistry , Zooplankton/metabolism
17.
Toxicol Appl Pharmacol ; 436: 115880, 2022 02 01.
Article in English | MEDLINE | ID: mdl-35016909

ABSTRACT

Intestinal injury assessment of hexavalent chromium (Cr-VI) in humans is crucial for quantifying assessment of adverse health risk posed by the intake of Cr (VI)-contaminated water. To overcome the deficiency in simulating human gastric reduction and intestinal absorption, we modified the constituents of simulated gastric fluid in in vitro digestion method by adding reductants glutathione (18 µM) and ascorbic acid (180 µM), which incorporated with human intestinal epithelial model to construct an in vitro gastrointestinal digestion (IVGD) model for intestinal injury assessment. Cr-VI bioaccessibility results from IVGD model showed that weak gastric acidity significantly increased the intestinal accessible Cr-VI dose by 22.41-38.43 folds. The time-course intestinal absorption indicated prolongation of intestinal exposure destroyed the intestinal epithelium, and 24 h after Cr-VI treatment was a good time point to perform intestinal absorption and toxicity assessment. A series of cell-based bioassays provided initial warning of adverse effect, suggesting that epithelial integrity exhibited greatest sensitivity to Cr-VI exposure and might be used as a sensitive marker for the toxicity assessment of oral exposure to Cr-VI. Notably, this study provides a feasible strategy for delineation of Cr-VI biotransformation and intestinal injury following ingestion exposure, which contributes to address the toxicity data gap of low-dose exposure in humans and puts forward a reference for intestinal toxicity assessment of other chemicals.


Subject(s)
Chromium/adverse effects , Digestion/drug effects , Intestinal Diseases/chemically induced , Intestines/drug effects , Biotransformation/drug effects , Caco-2 Cells , Cell Line, Tumor , HT29 Cells , Humans , Water Pollutants, Chemical/adverse effects
18.
Mol Cell Endocrinol ; 539: 111415, 2022 01 01.
Article in English | MEDLINE | ID: mdl-34339825

ABSTRACT

Sex hormones, such as androgens, estrogens and progestins are naturally occurring compounds that tightly regulate endocrine systems in a variety of living organisms. Uncontrolled environmental exposure to these hormones or their biological and synthetic mimetics has been widely documented. Furthermore, water contaminants penetrate soil to affect flora, fauna and ultimately humans. Because endocrine systems evolved to respond to very small changes in hormone levels, the low levels found in the environment cannot be ignored. The combined actions of sex hormones with glucocorticoids and other nuclear receptors disruptors creates additional level of complexity including the newly described "dynamic assisted loading" mechanism. We reviewed the extensive literature pertaining to world-wide detection of these disruptors and created a detailed Table on the development and current status of methods used for their analysis.


Subject(s)
Endocrine Disruptors/adverse effects , Gonadal Steroid Hormones/adverse effects , Animals , Endocrine Disruptors/analysis , Glucocorticoids/adverse effects , Humans , Water Pollutants, Chemical/adverse effects , Water Pollutants, Chemical/analysis
19.
Environ Toxicol Pharmacol ; 90: 103795, 2022 Feb.
Article in English | MEDLINE | ID: mdl-34971800

ABSTRACT

We tested concentration-dependence of selected gene transcripts (cat, gst, hsp70, hsp90, mt and sod) for evaluation as biomarkers of chemical stress. Contrary to the common approach of factorial designs and few exposure concentrations, we used regression across a high-resolution concentration series. Specifically, freshwater mussels (Anodonta anatina) were acutely (96 h) exposed to Cu (13 nominal concentrations, measuring 0.13-1 600 µg/L), and transcripts were measured by RT-qPCR. In digestive glands, cat, hsp90 and mt decreased with water Cu (p < 0.05), but response magnitudes saturated at < 2-fold decreases. In gills, gst, hsp70, hsp90 and mt increased with water Cu (p < 0.05). While hsp70, hsp90 and mt exceeded 2-fold increases within the exposure range, high Cu concentrations were required (38-160 µg/L). Although gill responses were generally more robust compared to digestive glands, overall small response magnitudes and moderate sensitivity may set limit for potential application as general biomarkers of chemical stress.


Subject(s)
Anodonta/drug effects , Biomarkers , Copper/toxicity , Animals , Anodonta/genetics , Anodonta/metabolism , Copper/administration & dosage , Digestive System , Fresh Water , Gills , Water Pollutants, Chemical/adverse effects
20.
Sci Rep ; 11(1): 23691, 2021 12 08.
Article in English | MEDLINE | ID: mdl-34880360

ABSTRACT

Real-time quantitative reverse transcription polymerase chain reaction (qRT-PCR), a primary approach for evaluating gene expression, requires an appropriate normalization strategy to confirm relative gene expression levels by comparison, and rule out variations that might occur in analytical procedures. The best option is to use a reference gene whose expression level is stable across various experimental conditions to compare the mRNA levels of a target gene. However, there is limited information on how the reference gene is differentially expressed at different ages (growth) in small invertebrates with notable changes such as molting. In this study, expression profiles of nine candidate reference genes from the brackish water flea, Diaphanosoma celebensis, were evaluated under diverse exposure to toxicants and according to growth. As a result, four different algorithms showed similar stabilities of genes for chemical exposures in the case of limited conditions using the same developmental stage (H2A was stable, whereas Act was fairly unstable in adults), while the results according to age showed a significantly different pattern in suite of candidate reference genes. This affected the results of genes EcRA and GST, which are involved in development and detoxification mechanisms, respectively. Our finding is the first step towards establishing a standardized real-time qRT-PCR analysis of this environmentally important invertebrate that has potential for aquatic ecotoxicology, particularly in estuarine environments.


Subject(s)
Environmental Exposure , Gene Expression Regulation/drug effects , Genes, Insect , Saline Waters , Siphonaptera/drug effects , Siphonaptera/genetics , Water Pollutants, Chemical/adverse effects , Animals , Environmental Exposure/adverse effects , Gene Expression Profiling , Real-Time Polymerase Chain Reaction , Saline Waters/chemistry
SELECTION OF CITATIONS
SEARCH DETAIL
...