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Promising Agromaterials Based on Biodegradable Polymers: Polylactide and Poly-3-Hydroxybutyrate

Electrospun fabrics have unique properties due to their uniform morphology and high surface area to volume ratio. Ultrathin nonwoven fabrics are produced for many applications: biomedical, nanosensors, tissue engineering and filtration systems. In this work, nonwoven polylactide, polylactide/natural...

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Autores principales: Tertyshnaya, Yulia Victorovna, Podzorova, Maria Victorovna, Varyan, Ivetta Aramovna, Tcherdyntsev, Victor Victorovich, Zadorozhnyy, Mikhail Yurievich, Medvedeva, Elena Valerievna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9963028/
https://www.ncbi.nlm.nih.gov/pubmed/36850312
http://dx.doi.org/10.3390/polym15041029
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author Tertyshnaya, Yulia Victorovna
Podzorova, Maria Victorovna
Varyan, Ivetta Aramovna
Tcherdyntsev, Victor Victorovich
Zadorozhnyy, Mikhail Yurievich
Medvedeva, Elena Valerievna
author_facet Tertyshnaya, Yulia Victorovna
Podzorova, Maria Victorovna
Varyan, Ivetta Aramovna
Tcherdyntsev, Victor Victorovich
Zadorozhnyy, Mikhail Yurievich
Medvedeva, Elena Valerievna
author_sort Tertyshnaya, Yulia Victorovna
collection PubMed
description Electrospun fabrics have unique properties due to their uniform morphology and high surface area to volume ratio. Ultrathin nonwoven fabrics are produced for many applications: biomedical, nanosensors, tissue engineering and filtration systems. In this work, nonwoven polylactide, polylactide/natural rubber, poly-3-hydroxybutyrate, and poly-3-hydroxybutyrate/nitrile butadiene rubber fabrics were prepared by electrospinning methods. The obtained fabric samples were used as substrates for the growth of winter wheat seeds “Yubileinaya 100” (Triticum aestivum L.). The stimulating effect of polymer substrates on seed germination and plant growth was shown. The structure and properties of nonwoven agromaterials were controlled by differential scanning calorimetry, IR-spectroscopy, and optical microscopy. The mechanical properties of the obtained fabrics before and after their utilization as substrates were studied. After the wheat growing experiment, the degree of crystallinity of PHB and PHB/NBR samples decreased by 12% and they completely lost their mechanical properties. It is shown that the main factors providing the efficiency of seed growth technology on polymer substrates are the chemical nature and structure of the biodegradable matrix.
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spelling pubmed-99630282023-02-26 Promising Agromaterials Based on Biodegradable Polymers: Polylactide and Poly-3-Hydroxybutyrate Tertyshnaya, Yulia Victorovna Podzorova, Maria Victorovna Varyan, Ivetta Aramovna Tcherdyntsev, Victor Victorovich Zadorozhnyy, Mikhail Yurievich Medvedeva, Elena Valerievna Polymers (Basel) Article Electrospun fabrics have unique properties due to their uniform morphology and high surface area to volume ratio. Ultrathin nonwoven fabrics are produced for many applications: biomedical, nanosensors, tissue engineering and filtration systems. In this work, nonwoven polylactide, polylactide/natural rubber, poly-3-hydroxybutyrate, and poly-3-hydroxybutyrate/nitrile butadiene rubber fabrics were prepared by electrospinning methods. The obtained fabric samples were used as substrates for the growth of winter wheat seeds “Yubileinaya 100” (Triticum aestivum L.). The stimulating effect of polymer substrates on seed germination and plant growth was shown. The structure and properties of nonwoven agromaterials were controlled by differential scanning calorimetry, IR-spectroscopy, and optical microscopy. The mechanical properties of the obtained fabrics before and after their utilization as substrates were studied. After the wheat growing experiment, the degree of crystallinity of PHB and PHB/NBR samples decreased by 12% and they completely lost their mechanical properties. It is shown that the main factors providing the efficiency of seed growth technology on polymer substrates are the chemical nature and structure of the biodegradable matrix. MDPI 2023-02-18 /pmc/articles/PMC9963028/ /pubmed/36850312 http://dx.doi.org/10.3390/polym15041029 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tertyshnaya, Yulia Victorovna
Podzorova, Maria Victorovna
Varyan, Ivetta Aramovna
Tcherdyntsev, Victor Victorovich
Zadorozhnyy, Mikhail Yurievich
Medvedeva, Elena Valerievna
Promising Agromaterials Based on Biodegradable Polymers: Polylactide and Poly-3-Hydroxybutyrate
title Promising Agromaterials Based on Biodegradable Polymers: Polylactide and Poly-3-Hydroxybutyrate
title_full Promising Agromaterials Based on Biodegradable Polymers: Polylactide and Poly-3-Hydroxybutyrate
title_fullStr Promising Agromaterials Based on Biodegradable Polymers: Polylactide and Poly-3-Hydroxybutyrate
title_full_unstemmed Promising Agromaterials Based on Biodegradable Polymers: Polylactide and Poly-3-Hydroxybutyrate
title_short Promising Agromaterials Based on Biodegradable Polymers: Polylactide and Poly-3-Hydroxybutyrate
title_sort promising agromaterials based on biodegradable polymers: polylactide and poly-3-hydroxybutyrate
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9963028/
https://www.ncbi.nlm.nih.gov/pubmed/36850312
http://dx.doi.org/10.3390/polym15041029
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