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Bacterial synthesis of biodegradable polyhydroxyalkanoates

Journal of Applied Microbiology · 2007 · Vol. 102(6) · pp. 1437–1449
Rob VerlindenDavid HillM.A. KenwardCraig D. WilliamsIza Radecka

Abstract

Various bacterial species accumulate intracellular polyhydroxyalkanoates (PHAs) granules as energy and carbon reserves inside their cells. PHAs are biodegradable, environmentally friendly and biocompatible thermoplastics. Varying in toughness and flexibility, depending on their formulation, they can be used in various ways similar to many nonbiodegradable petrochemical plastics currently in use. They can be used either in pure form or as additives to oil-derived plastics such as polyethylene. However, these bioplastics are currently far more expensive than petrochemically based plastics and are therefore used mostly in applications that conventional plastics cannot perform, such as medical applications. PHAs are immunologically inert and are only slowly degraded in human tissue, which means they can be used as devices inside the body. Recent research has focused on the use of alternative substrates, novel extraction methods, genetically enhanced species and mixed cultures with a view to make PHAs more commercially attractive.

biodegradable polymer synthesis and propertiesMicroplastics and Plastic PollutionGraphene and Nanomaterials ApplicationsPolyhydroxyalkanoatesBioplasticBiocompatible materialEnvironmentally friendlyBiochemical engineeringPetrochemicalToughnessFlexibility (engineering)Materials scienceBiodegradation

MeSH terms

PolyhydroxybutyratesBacteriaBiocompatible MaterialsBiodegradation, EnvironmentalBiotechnologyCarbonFermentationHydroxybutyratesIndustrial MicrobiologyModels, BiologicalPlasticsPolyestersMetabolic Networks and Pathways
Citations
770
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10.72
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References
134
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99%
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References
Taxonomy of the genus Cupriavidus: a tale of lost and found
INTERNATIONAL JOURNAL OF SYSTEMATIC AND EVOLUTIONARY MICROBIOLOGY · 2004 · 512 citations
Bacterial polyhydroxyalkanoates
Biotechnology and Bioengineering · 1996 · 435 citations
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