Evaluation of the antioxidative response of diatoms grown on emerging steroidal contaminants

With increasing anthropic activities, a myriad of typical contaminants from industries, hospitals, and municipal discharges have been found which fail to be categorized under regulatory standards and are hence considered contaminants of “emerging concern”. Since these pollutants are not removed effe...

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Published inEnvironmental monitoring and assessment Vol. 195; no. 7; p. 820
Main Authors Singh, Pankaj Kumar, Bhattacharjya, Raya, Lakshmi, N Jaya, Thakur, Indu Shekhar, Tiwari, Archana
Format Journal Article
LanguageEnglish
Published Cham Springer International Publishing 01.07.2023
Springer Nature B.V
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Abstract With increasing anthropic activities, a myriad of typical contaminants from industries, hospitals, and municipal discharges have been found which fail to be categorized under regulatory standards and are hence considered contaminants of “emerging concern”. Since these pollutants are not removed effectively even by the conventional treatment systems, they tend to inflict potential threats to both human and aquatic life. However, microalgae-mediated remediation strategies have recently gained worldwide importance owing to their role in carbon fixation, low operational cost, and production of high-value products. In this study, centric diatom Chaetoceros neogracilis was exposed to different concentrations of estradiol (E2)-induced synthetic media ranging from 0 to 2 mg L −1 , and its impact on the antioxidative system of algae was investigated. The results demonstrate that the nutrient stress caused a strong oxidative response elevating the superoxide dismutase (SOD) activity and malondialdehyde (MDA) content in the 2 mg L −1 E2-treated diatom cultures. However, the specific activity of the H 2 O 2 radical scavenging enzymes like catalase (CAT) was inhibited by the E2 treatment, while that of ascorbate peroxidase (APX) remained comparable to the control (0 mg L −1 of E2). Thus, the study reveals the scope of diatoms as potential indicators of environmental stress even under the varying concentration of a single contaminant (E2).
AbstractList With increasing anthropic activities, a myriad of typical contaminants from industries, hospitals, and municipal discharges have been found which fail to be categorized under regulatory standards and are hence considered contaminants of "emerging concern". Since these pollutants are not removed effectively even by the conventional treatment systems, they tend to inflict potential threats to both human and aquatic life. However, microalgae-mediated remediation strategies have recently gained worldwide importance owing to their role in carbon fixation, low operational cost, and production of high-value products. In this study, centric diatom Chaetoceros neogracilis was exposed to different concentrations of estradiol (E2)-induced synthetic media ranging from 0 to 2 mg L , and its impact on the antioxidative system of algae was investigated. The results demonstrate that the nutrient stress caused a strong oxidative response elevating the superoxide dismutase (SOD) activity and malondialdehyde (MDA) content in the 2 mg L E2-treated diatom cultures. However, the specific activity of the H O radical scavenging enzymes like catalase (CAT) was inhibited by the E2 treatment, while that of ascorbate peroxidase (APX) remained comparable to the control (0 mg L of E2). Thus, the study reveals the scope of diatoms as potential indicators of environmental stress even under the varying concentration of a single contaminant (E2).
With increasing anthropic activities, a myriad of typical contaminants from industries, hospitals, and municipal discharges have been found which fail to be categorized under regulatory standards and are hence considered contaminants of “emerging concern”. Since these pollutants are not removed effectively even by the conventional treatment systems, they tend to inflict potential threats to both human and aquatic life. However, microalgae-mediated remediation strategies have recently gained worldwide importance owing to their role in carbon fixation, low operational cost, and production of high-value products. In this study, centric diatom Chaetoceros neogracilis was exposed to different concentrations of estradiol (E2)-induced synthetic media ranging from 0 to 2 mg L −1 , and its impact on the antioxidative system of algae was investigated. The results demonstrate that the nutrient stress caused a strong oxidative response elevating the superoxide dismutase (SOD) activity and malondialdehyde (MDA) content in the 2 mg L −1 E2-treated diatom cultures. However, the specific activity of the H 2 O 2 radical scavenging enzymes like catalase (CAT) was inhibited by the E2 treatment, while that of ascorbate peroxidase (APX) remained comparable to the control (0 mg L −1 of E2). Thus, the study reveals the scope of diatoms as potential indicators of environmental stress even under the varying concentration of a single contaminant (E2).
With increasing anthropic activities, a myriad of typical contaminants from industries, hospitals, and municipal discharges have been found which fail to be categorized under regulatory standards and are hence considered contaminants of “emerging concern”. Since these pollutants are not removed effectively even by the conventional treatment systems, they tend to inflict potential threats to both human and aquatic life. However, microalgae-mediated remediation strategies have recently gained worldwide importance owing to their role in carbon fixation, low operational cost, and production of high-value products. In this study, centric diatom Chaetoceros neogracilis was exposed to different concentrations of estradiol (E2)-induced synthetic media ranging from 0 to 2 mg L−1, and its impact on the antioxidative system of algae was investigated. The results demonstrate that the nutrient stress caused a strong oxidative response elevating the superoxide dismutase (SOD) activity and malondialdehyde (MDA) content in the 2 mg L−1 E2-treated diatom cultures. However, the specific activity of the H2O2 radical scavenging enzymes like catalase (CAT) was inhibited by the E2 treatment, while that of ascorbate peroxidase (APX) remained comparable to the control (0 mg L−1 of E2). Thus, the study reveals the scope of diatoms as potential indicators of environmental stress even under the varying concentration of a single contaminant (E2).
ArticleNumber 820
Author Singh, Pankaj Kumar
Tiwari, Archana
Lakshmi, N Jaya
Thakur, Indu Shekhar
Bhattacharjya, Raya
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2023. The Author(s), under exclusive licence to Springer Nature Switzerland AG.
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Keywords Endocrine disruptors
Diatoms
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Emerging contaminants
Antioxidative response
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PublicationSubtitle An International Journal Devoted to Progress in the Use of Monitoring Data in Assessing Environmental Risks to Humans and the Environment
PublicationTitle Environmental monitoring and assessment
PublicationTitleAbbrev Environ Monit Assess
PublicationTitleAlternate Environ Monit Assess
PublicationYear 2023
Publisher Springer International Publishing
Springer Nature B.V
Publisher_xml – name: Springer International Publishing
– name: Springer Nature B.V
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Snippet With increasing anthropic activities, a myriad of typical contaminants from industries, hospitals, and municipal discharges have been found which fail to be...
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SubjectTerms 17β-Estradiol
Algae
Antioxidants - metabolism
Aquatic organisms
Ascorbate Peroxidases - metabolism
Ascorbic acid
Atmospheric Protection/Air Quality Control/Air Pollution
Bacillariophyceae
Biodegradation
Carbon fixation
Catalase
Catalase - metabolism
Contaminants
Diatoms
Diatoms - metabolism
Earth and Environmental Science
Ecology
Ecotoxicology
Effluents
Endocrine disruptors
Environment
Environmental indicators
Environmental Management
Environmental Monitoring
Environmental science
Environmental stress
Enzymes
Estrogens
Humans
Hydrogen Peroxide
L-Ascorbate peroxidase
Laboratories
Marine microorganisms
Metabolism
Monitoring/Environmental Analysis
Operating costs
Oxidative Stress
Peroxidase
Personal grooming
Phytoplankton
Plankton
Pollutants
Scavenging
Sex hormones
Steroids
Superoxide dismutase
Superoxide Dismutase - metabolism
System effectiveness
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Title Evaluation of the antioxidative response of diatoms grown on emerging steroidal contaminants
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