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Progressive Biocatalysts for the Treatment of Aqueous Systems Containing Pharmaceutical Pollutants

Life 2023 18 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 45 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Olga Senko, Елена Ефременко Елена Ефременко Елена Ефременко Елена Ефременко Olga Senko, Olga Senko, Елена Ефременко Елена Ефременко Елена Ефременко Ilya Lyagin, Ilya Lyagin, Olga Senko, Olga Maslova, Ilya Lyagin, Nikolay Stepanov, Nikolay Stepanov, Olga Senko, Nikolay Stepanov, Nikolay Stepanov, Nikolay Stepanov, Nikolay Stepanov, Aysel Aslanli, Aysel Aslanli, Olga Maslova, Olga Maslova, Olga Senko, Olga Senko, Olga Senko, Olga Senko, Nikolay Stepanov, Olga Maslova, Nikolay Stepanov, Nikolay Stepanov, Aysel Aslanli, Olga Maslova, Olga Senko, Olga Maslova, Olga Senko, Aysel Aslanli, Aysel Aslanli, Елена Ефременко Nikolay Stepanov, Ilya Lyagin, Ilya Lyagin, Ilya Lyagin, Aysel Aslanli, Nikolay Stepanov, Елена Ефременко Aysel Aslanli, Olga Senko, Olga Maslova, Ilya Lyagin, Olga Maslova, Olga Maslova, Olga Senko, Olga Maslova, Olga Maslova, Aysel Aslanli, Nikolay Stepanov, Olga Senko, Елена Ефременко Ilya Lyagin, Ilya Lyagin, Aysel Aslanli, Aysel Aslanli, Ilya Lyagin, Olga Maslova, Olga Maslova, Nikolay Stepanov, Елена Ефременко Ilya Lyagin, Елена Ефременко Aysel Aslanli, Aysel Aslanli, Елена Ефременко Елена Ефременко

Summary

This review covers the occurrence of pharmaceutical pollutants across diverse water sources and evaluates biological treatment approaches including enzymes and whole cells as catalysts for their degradation, identifying promising biocatalysts and knowledge gaps for effective pharmaceutical wastewater treatment.

Body Systems
Study Type Environmental

The review focuses on the appearance of various pharmaceutical pollutants in various water sources, which dictates the need to use various methods for effective purification and biodegradation of the compounds. The use of various biological catalysts (enzymes and cells) is discussed as one of the progressive approaches to solving problems in this area. Antibiotics, hormones, pharmaceuticals containing halogen, nonsteroidal anti-inflammatory drugs, analgesics and antiepileptic drugs are among the substrates for the biocatalysts in water purification processes that can be carried out. The use of enzymes in soluble and immobilized forms as effective biocatalysts for the biodegradation of various pharmaceutical compounds (PCPs) has been analyzed. Various living cells (bacteria, fungi, microalgae) taken as separate cultures or components of natural or artificial consortia can be involved in biocatalytic processes under aerobic or anaerobic conditions. Cells as biocatalysts introduced into water treatment systems in suspended or immobilized form are used for deep biodegradation of PCPs. The potential of combinations of biocatalysts with physical-chemical methods of wastewater treatment is evaluated in relation to the effective removing of PCPs. The review analyzes recent results and the main current trends in the development of biocatalytic approaches to biodegradation of PCPs, the pros and cons of the processes and the biocatalysts used.

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