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Addendum

Increased recovery and improved purity of PHA from recombinant Cupriavidus necator

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Pages 115-118 | Published online: 01 Mar 2012

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Hatice Ogutcu, Ferhat Kantar, Burak Alaylar, Yasemin Numanoglu Cevik & Medine Gulluce. (2022) Isolation and Characterization of Hydrocarbon and Petroleum Degrading Bacteria from Polluted Soil with Petroleum and Derivatives by MALDI-TOF MS Method. Geomicrobiology Journal 39:9, pages 757-766.
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S. González-Rojo, A.I. Paniagua-García & R. Díez-Antolínez. (2023) Biotransformation of starch-based wastewater into bioplastics: Optimization of poly(3-hydroxybutyrate) production by Cupriavidus necator DSM 545 using potato wastewater hydrolysate. Water Research 247, pages 120766.
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Fernando Guzmán-Lagunes, Phavit Wongsirichot, James Winterburn, Carlos Guerrero Sanchez & Carmina Montiel. (2023) Polyhydroxyalkanoates Production: A Challenge for the Plastic Industry. Industrial & Engineering Chemistry Research 62:44, pages 18133-18158.
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Suchintan Mondal, Usman T. Syed, Cátia Gil, Loic Hilliou, Anouk F. Duque, Maria A. M. Reis & Carla Brazinha. (2023) A novel sustainable PHA downstream method. Green Chemistry 25:3, pages 1137-1149.
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Yuqi Zou, Mingfeng Yang, Qiuyue Tao, Keliang Zhu, Xiang Liu, Chunli Wan, Marie K. Harder, Qun Yan, Bo Liang, Ioanna Ntaikou, Georgia Antonopoulou, Gerasimos Lyberatos & Yi Zhang. (2023) Recovery of polyhydroxyalkanoates (PHAs) polymers from a mixed microbial culture through combined ultrasonic disruption and alkaline digestion. Journal of Environmental Management 326, pages 116786.
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S. Prasanth, R. Sivaranjani, P. Abishek, K. J. Rupesh, M. Swathi, S. Sudalai & A. Arumugam. (2022) Polyhydroxyalkanoate production and optimization: utilization of novel non-edible oil feedstock, economic analysis. Biomass Conversion and Biorefinery.
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Shikha Guleria, Harpreet Singh, Vamika Sharma, Neha Bhardwaj, Shailendra Kumar Arya, Sanjeev Puri & Madhu Khatri. (2022) Polyhydroxyalkanoates production from domestic waste feedstock: A sustainable approach towards bio-economy. Journal of Cleaner Production 340, pages 130661.
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Pema Lhamo, Shishir Kumar Behera & Biswanath Mahanty. (2021) Process optimization, metabolic engineering interventions and commercialization of microbial polyhydroxyalkanoates production – A state‐of‐the art review. Biotechnology Journal 16:9, pages 2100136.
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Dillirani Nagarajan, Ganies Riza Aristya, Yu-Ju Lin, Jui-Jen Chang, Hong-Wei Yen & Jo-Shu Chang. (2021) Microbial cell factories for the production of polyhydroxyalkanoates. Essays in Biochemistry 65:2, pages 337-353.
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Neethu Sheri Kurian & Bannhi Das. (2021) Comparative analysis of various extraction processes based on economy, eco-friendly, purity and recovery of polyhydroxyalkanoate: A review. International Journal of Biological Macromolecules 183, pages 1881-1890.
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Giorgia Pagliano, Paola Galletti, Chiara Samorì, Agnese Zaghini & Cristian Torri. (2021) Recovery of Polyhydroxyalkanoates From Single and Mixed Microbial Cultures: A Review. Frontiers in Bioengineering and Biotechnology 9.
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Brandi Brown, Cheryl Immethun, Mark Wilkins & Rajib Saha. (2020) Rhodopseudomonas palustris CGA009 polyhydroxybutyrate production from a lignin aromatic and quantification via flow cytometry. Bioresource Technology Reports 11, pages 100474.
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Giorgio Mannina, Dario Presti, Gabriela Montiel-Jarillo, Julián Carrera & María Eugenia Suárez-Ojeda. (2020) Recovery of polyhydroxyalkanoates (PHAs) from wastewater: A review. Bioresource Technology 297, pages 122478.
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Cristina Pérez-Rivero, J. Pablo López-Gómez & Ipsita Roy. (2019) A sustainable approach for the downstream processing of bacterial polyhydroxyalkanoates: State-of-the-art and latest developments. Biochemical Engineering Journal 150, pages 107283.
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M. H. Haddadi, R. Asadolahi & B. Negahdari. (2019) The bioextraction of bioplastics with focus on polyhydroxybutyrate: a review. International Journal of Environmental Science and Technology 16:7, pages 3935-3948.
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Andrés García, Diana Pérez, Manuel Castro, Viviana Urtuvia, Tania Castillo, Alvaro Díaz‐Barrera, Guadalupe Espín & Carlos Peña. (2019) Production and recovery of poly‐3‐hydroxybutyrate [P(3HB)] of ultra‐high molecular weight using fed‐batch cultures of Azotobacter vinelandii OPNA strain . Journal of Chemical Technology & Biotechnology 94:6, pages 1853-1860.
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Guozhan Jiang, Brian Johnston, David Townrow, Iza Radecka, Martin Koller, Paweł Chaber, Grażyna Adamus & Marek Kowalczuk. (2018) Biomass Extraction Using Non-Chlorinated Solvents for Biocompatibility Improvement of Polyhydroxyalkanoates. Polymers 10:7, pages 731.
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Manish Kumar, Pooja Ghosh, Khushboo Khosla & Indu Shekhar Thakur. (2018) Recovery of polyhydroxyalkanoates from municipal secondary wastewater sludge. Bioresource Technology 255, pages 111-115.
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Asieh Aramvash, Fatemeh Moazzeni Zavareh & Narges Gholami Banadkuki. (2018) Comparison of different solvents for extraction of polyhydroxybutyrate from Cupriavidus necator . Engineering in Life Sciences 18:1, pages 20-28.
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Kirti M. Yenkie, Wenzhao Wu & Christos T. Maravelias. (2017) Synthesis and analysis of separation networks for the recovery of intracellular chemicals generated from microbial-based conversions. Biotechnology for Biofuels 10:1.
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Constantina Kourmentza, Jersson Plácido, Nikolaos Venetsaneas, Anna Burniol-Figols, Cristiano Varrone, Hariklia N. Gavala & Maria A. M. Reis. (2017) Recent Advances and Challenges towards Sustainable Polyhydroxyalkanoate (PHA) Production. Bioengineering 4:4, pages 55.
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Asieh Aramvash, Narges Gholami-Banadkuki & Mansooreh-Sadat Seyedkarimi. (2016) An efficient method for the application of PHA-poor solvents to extract polyhydroxybutyrate from Cupriavidus necator . Biotechnology Progress 32:6, pages 1480-1486.
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Isaac Vizcaino-Caston, Catherine A. Kelly, Annabel V.L. Fitzgerald, Gary A. Leeke, Mike Jenkins & Tim W. Overton. (2016) Development of a rapid method to isolate polyhydroxyalkanoates from bacteria for screening studies. Journal of Bioscience and Bioengineering 121:1, pages 101-104.
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