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Bioengineering (Basel, Switzerland)|October 22, 2021
Biotechnological Conversion of Grape Pomace to Poly(3-hydroxybutyrate) by Moderately Thermophilic Bacterium Tepidimonas taiwanensisXenie Kourilova, Iva Pernicova, Michaela Vidlakova, et al.
International Journal of Biological Macromolecules|November 26, 2022
Biosynthesis of versatile PHA copolymers by thermophilic members of the genus AneurinibacillusVeronika Rehakova, Iva Pernicova, Xenie Kourilova, et al.
Polymers|May 28, 2022
Degradation of P(3HB-co-4HB) Films in Simulated Body FluidsJuraj Vodicka, Monika Wikarska, Monika Trudicova, et al.
Plos One|June 18, 2016
Accumulation of Poly(3-hydroxybutyrate) Helps Bacterial Cells to Survive FreezingStanislav Obruca, Petr Sedlacek, Vladislav Krzyzanek, et al.
FEMS Microbiology Letters|May 19, 2016
Accumulation of PHA granules in Cupriavidus necator as seen by confocal fluorescence microscopyFilip Mravec, Stanislav Obruca, Vladislav Krzyzanek, et al.
Journal of Applied Microbiology|June 16, 2026
Effect of PHA on Viability and Stress Resilience in Rhodospirillum rubrumViktorie-Alexandra Pacasova, Eva Slaninova, Katerina Mrazova, et al.
Applied Microbiology and Biotechnology|January 10, 2019
What keeps polyhydroxyalkanoates in bacterial cells amorphous? A derivation from stress exposure experimentsPetr Sedlacek, Eva Slaninova, Vojtech Enev, et al.
Applied Microbiology and Biotechnology|January 20, 2018
Light scattering on PHA granules protects bacterial cells against the harmful effects of UV radiationEva Slaninova, Petr Sedlacek, Filip Mravec, et al.
New Biotechnology|January 31, 2021
Brewer's spent grain as a no-cost substrate for polyhydroxyalkanoates production: Assessment of pretreatment strategies and different bacterial strainsCarlos Corchado-Lopo, Oscar Martínez-Avila, Elisabet Marti, et al.
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