Structural insights, biocatalytic characteristics, and application prospects of lignin-modifying enzymes for sustainable biotechnology DOI Creative Commons

Anil Kumar Singh,

Hafiz M.N. Iqbal, Nunzio Cardullo

et al.

International Journal of Biological Macromolecules, Journal Year: 2023, Volume and Issue: 242, P. 124968 - 124968

Published: May 20, 2023

Lignin modifying enzymes (LMEs) have gained widespread recognition in depolymerization of lignin polymers by oxidative cleavage. LMEs are a robust class biocatalysts that include peroxidase (LiP), manganese (MnP), versatile (VP), laccase (LAC), and dye-decolorizing (DyP). Members the family act on phenolic, non-phenolic substrates been widely researched for valorization lignin, cleavage xenobiotics phenolics. implementation biotechnological industrial sectors has sparked significant attention, although its potential future applications remain underexploited. To understand mechanism sustainable pollution mitigation, several studies undertaken to assess feasibility correlating diverse pollutants binding intermolecular interactions at molecular level. However, further investigation is required fully comprehend underlying mechanism. In this review we presented key structural functional features LMEs, including computational aspects, as well advanced biotechnology research. Furthermore, concluding remarks look ahead, use coupled with framework, built upon artificial intelligence (AI) machine learning (ML), emphasized recent milestone environmental

Language: Английский

Enhanced Wastewater Treatment by Immobilized Enzymes DOI Creative Commons
Jakub Zdarta, Katarzyna Jankowska,

Karolina Bachosz

et al.

Current Pollution Reports, Journal Year: 2021, Volume and Issue: 7(2), P. 167 - 179

Published: April 20, 2021

Abstract Purpose of Review In the presented review, we have summarized recent achievements on use immobilized oxidoreductases for biodegradation hazardous organic pollutants including mainly dyes, pharmaceuticals, phenols, and bisphenols. order to facilitate process optimization achievement high removal rates, effect various conditions has been highlighted discussed. Recent Findings Current reports clearly show that are capable efficient conversion pollutants, usually reaching over 90% rate. Further, enzymes showed great recyclability potential, allowing their reuse in numerous catalytic cycles. Summary Collected data indicates as an biocatalytic tools phenolic compounds, making them a promising option future water purification. Data shows, however, both immobilization affect efficiency; therefore, is required achieve rates. Nevertheless, demonstrated trends several issues be solved near-future research, large-scale application wastewater treatment.

Language: Английский

Citations

79

Mitigation of environmentally-related hazardous pollutants from water matrices using nanostructured materials – A review DOI
Muhammad Bilal, Tahir Rasheed,

Shahid Mehmood

et al.

Chemosphere, Journal Year: 2020, Volume and Issue: 253, P. 126770 - 126770

Published: April 12, 2020

Language: Английский

Citations

75

Impact of microbial inoculants combined with humic acid on the fate of estrogens during pig manure composting under low-temperature conditions DOI Creative Commons
Shanshan Sun, Yousif Abdelrahman Yousif Abdellah, Lei Miao

et al.

Journal of Hazardous Materials, Journal Year: 2021, Volume and Issue: 424, P. 127713 - 127713

Published: Nov. 18, 2021

Language: Английский

Citations

67

Endocrine disrupting chemicals in the environment: Environmental sources, biological effects, remediation techniques, and perspective DOI
Yuxin Chen, Jian Yang, Bin Yao

et al.

Environmental Pollution, Journal Year: 2022, Volume and Issue: 310, P. 119918 - 119918

Published: Aug. 8, 2022

Language: Английский

Citations

64

The Environmental and Health Impacts of Steroids and Hormones in Wastewater Effluent, as Well as Existing Removal Technologies: A Review DOI Creative Commons
Munshi Md. Shafwat Yazdan, Raaghul Kumar,

S W Leung

et al.

Ecologies, Journal Year: 2022, Volume and Issue: 3(2), P. 206 - 224

Published: June 12, 2022

Micro-pollutants especially estrogens, progesterone, androgens, glucocorticoids, and growth hormones, are biological chemical impurities that find their way into natural aquatic environments in trace quantities (ng/L), possess a significant disturbance by impacting human life. Due to the progress analysis detection techniques, these elements have been observed quantified several studies. However, as result of limited methods management technology, adverse effects micro-pollutants surface coastal water is largely unknown. For this study, compounds hormones selected according high frequent value environmental waters. The concentration steroid ranges from 0.1–196 ng/L (estrogens), less than 0.1 439 (progesterone), 0.06–86 ± 2 (androgens), 433 (glucocorticoids), 26.6 ng/g 100 (growth hormones), percentage removal efficiency varies 10% 99%, measurement was found be very low. Here, we report future studies necessary detect entry routes water, well explore technological approaches which able resolve issue permanently.

Language: Английский

Citations

63

Denitrification performance of nitrate–dependent ferrous (Fe2+) oxidizing Aquabacterium sp. XL4: Adsorption mechanisms of bio–precipitation of phenol and estradiol DOI
Liang Xu, Junfeng Su, Amjad Ali

et al.

Journal of Hazardous Materials, Journal Year: 2021, Volume and Issue: 427, P. 127918 - 127918

Published: Nov. 27, 2021

Language: Английский

Citations

60

Enzyme immobilization on biomass-derived carbon materials as a sustainable approach towards environmental applications DOI
Geethanjali Bijoy, Rijo Rajeev, Libina Benny

et al.

Chemosphere, Journal Year: 2022, Volume and Issue: 307, P. 135759 - 135759

Published: July 21, 2022

Language: Английский

Citations

55

Minimizing the environmental impact of unused pharmaceuticals: Review focused on prevention DOI Creative Commons
Milica Paut Kusturica, M Jevtić,

Jovana Trifunovic Ristovski

et al.

Frontiers in Environmental Science, Journal Year: 2022, Volume and Issue: 10

Published: Dec. 16, 2022

Pharmaceuticals are essential for human health, but they become an environmental concern when entering the environment which occurs residues excreted after consumption or unused pharmaceuticals discarded improperly. Although there no developed detection methods all that reach ecosystem, certain groups have been proven to cause adverse effects on ecosystems, including increased mortality in aquatic species and changes physiology, behavior, reproduction. Particular attention is devoted these of their impact. In this review, authors suggest measures reduction environment, with a strong emphasis prevention. Various policy interventions recommended across lifecycle source-directed, user-orientated, waste management measures, prevent creation household pharmaceutical ensure environmentally friendly ways disposal. Preventive include rational consumption, prescribing greener drugs, designing benign easily biodegradable, improved disease prevention, personalized medicine, enhanced dimensioning pack sizes, marketplaces redistribution pharmaceuticals. The next step unavoidable so proper collection disposal utmost importance. Finally, educating health professionals public partnership between healthcare scientists vital significance stages pharmaceuticals’ lifecycle. Minimalization level will benefit life.

Language: Английский

Citations

41

Composting municipal solid waste and animal manure in response to the current fertilizer crisis - a recent review DOI
Rebeka Pajura

The Science of The Total Environment, Journal Year: 2023, Volume and Issue: 912, P. 169221 - 169221

Published: Dec. 14, 2023

Language: Английский

Citations

34

Sequestration of steroidal estrogen in aqueous samples using an adsorption mechanism: a systemic scientometric review DOI Creative Commons
Ajibola A. Bayode, Chijioke Olisah, Stephen Sunday Emmanuel

et al.

RSC Advances, Journal Year: 2023, Volume and Issue: 13(33), P. 22675 - 22697

Published: Jan. 1, 2023

Steroidal estrogens (SEs) pose a significant threat to the aquatic environment in this era because they interfere with human body's normal metabolic functions, calls for their sequestration.

Language: Английский

Citations

23