Biodegradation of Polyacrylamide and Its Derivatives
Both single microbial species as well as mixed populations have been investigated for degradation. Biodegradation of polyacrylamide begins with amidase catalysed deamination of polyacrylamide to
Microbial degradation of polyacrylamide and the deamination product polyacrylate. International Biodeterioration & Biodegradation 2025, 139, 24-33. DOI: 10.1016/j.ibiod.2025.02.005. MingChen Ding, Yugui Han, Yigang Liu, Yefei Wang, Peng Zhao, Yujing Yuan. Oil recovery performance of a modified HAPAM with lower hydrophobicity, higher molecular
Microbial degradation of polyacrylamide and the
Microbial degradation of polyacrylamide and the deamination product polyacrylate Author: Nyyssölä, Antti, Ahlgren, Jonni Source: International biodeterioration & biodegradation 2025 v.139 pp. 24-33 ISSN: 0964-8305 Subject:
Microbial degradation of polyacrylamide and the deamination product polyacrylate. There are nevertheless reports on microbial growth with polyacrylamide and polyacrylate as the carbon sources. Several aerobic bacteria isolated from polyacrylamide and polyacrylate containing environments, as well as from soil, have been shown to catabolize
Biodegradation of Polyacrylamide and Its Derivatives
Although polyacrylamide (PAM) and its derivatives have many useful applications, their release in nature can have impacts on the environment and human health, thus bioremediation approaches for residual PAM are urgently needed. Biodegradation of PAM and its derivatives has been studied only in the last two decades, with most emphasis on acrylamide biodegradation.
Acrylamide, a neurotoxic monomer with extensive industrial applications was found to be degraded by the microorganisms present in a tropical garden soil. A bacterium capable of degrading acrylamide was isolated from this soil by enrichment. It was found to be aerobic, gram-negative, motile, short rod and identified as Pseudomonas sp. The bacterium degraded high concentrations of acrylamide (4
Biodegradation of polyacrylamide by anaerobic digestion
Polyacrylamide (PAM) used in sludge dewatering widely exists in high-solid anaerobic digestion. Degradation of polyacrylamide accompanied with accumulation of its toxic monomer is important to disposition of biogas residues. The potential of anaerobic digestion activity in microbial utilization of PAM was investigated in this study.
Maxwell, et al., “Overexpression of PCSK9 accelerates the degradation of the LDLR in a post-endoplasmic reticulum compartment”, PNAS, vol. 102(6), pp. 2069-2074 (2005). Maxwell, et al., “Novel putative SREBP and LXR target genes identified by microarray analysis in liver of cholesterol-fed mice”, J. Lipid Res., vol. 44, pp. 2109-2119
Full text of "Microbial Diversity, Form and Function
Full text of "Microbial Diversity, Form and Function in Prokaryotes by Oladele Ogunseitan" See other formats
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US Patent # 7,195,900. Cloning and expression of D-amino
The present invention is directed to a nucleotide sequence encoding D-amino oxidase (D-AAO, EC 1.4.3.3) from Arthrobacter protophormiae. This may be inserted into an expression and used to transform a microbial host. The transformed microbial hosts ecomically produce D-AAO which may be used to oxidize D-amino acids.
PMID: 30099645 [PubMed - as supplied by publisher] (Source: Journal of Industrial Microbiology and Biotechnology) Correction to: Rational design of engineered microbial cell surface multi-enzyme co-display system for sustainable NADH regeneration from low-cost biomass.
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