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负载于涂覆纤维素衍生物的电纺聚(3-羟基丁酸酯)纤维中用于可持续农业应用。

Encapsulation of in Electrospun Poly(3-hydroxybutyrate) Fibers Coated with Cellulose Derivatives for Sustainable Agricultural Applications.

作者信息

Tsekova Petya, Nachev Nasko, Valcheva Iliyana, Draganova Donka, Naydenov Mladen, Spasova Mariya, Stoilova Olya

机构信息

Laboratory of Bioactive Polymers, Institute of Polymers, Bulgarian Academy of Sciences, Akad. G. Bonchev St., bl. 103A, 1113 Sofia, Bulgaria.

Biodinamika Ltd., 4000 Plovdiv, Bulgaria.

出版信息

Polymers (Basel). 2024 Sep 28;16(19):2749. doi: 10.3390/polym16192749.

Abstract

One of the latest trends in sustainable agriculture is the use of beneficial microorganisms to stimulate plant growth and biologically control phytopathogens. , a Gram-positive soil bacterium, is recognized for its valuable properties in various biotechnological and agricultural applications. This study presents, for the first time, the successful encapsulation of within electrospun poly(3-hydroxybutyrate) (PHB) fibers, which are dip-coated with cellulose derivatives. In that way, the obtained fibrous biohybrid materials actively ensure the viability of the encapsulated biocontrol agent during storage and promote its normal growth when exposed to moisture. Aqueous solutions of the cellulose derivatives-sodium carboxymethyl cellulose and 2-hydroxyethyl cellulose, were used to dip-coat the electrospun PHB fibers. The study examined the effects of the type and molecular weight of these cellulose derivatives on film formation, mechanical properties, bacterial encapsulation, and growth. Scanning electron microscopy (SEM) was utilized to observe the morphology of the biohybrid materials and the encapsulated . Additionally, ATR-FTIR spectroscopy confirmed the surface chemical composition of the biohybrid materials and verified the successful coating of PHB fibers. Mechanical testing revealed that the coating enhanced the mechanical properties of the fibrous materials and depends on the molecular weight of the used cellulose derivatives. Viability tests demonstrated that the encapsulated exhibited normal growth from the prepared materials. These findings suggest that the developed fibrous biohybrid materials hold significant promise as biocontrol formulations for plant protection and growth promotion in sustainable agriculture.

摘要

可持续农业的最新趋势之一是利用有益微生物来刺激植物生长并对植物病原体进行生物防治。[具体细菌名称]是一种革兰氏阳性土壤细菌,因其在各种生物技术和农业应用中的宝贵特性而受到认可。本研究首次成功地将[具体细菌名称]封装在静电纺丝聚(3-羟基丁酸酯)(PHB)纤维中,这些纤维用纤维素衍生物进行浸涂。通过这种方式,所获得的纤维状生物杂化材料在储存期间能有效确保封装的生物防治剂的活力,并在接触水分时促进其正常生长。纤维素衍生物——羧甲基纤维素钠和2-羟乙基纤维素的水溶液被用于浸涂静电纺丝的PHB纤维。该研究考察了这些纤维素衍生物的类型和分子量对成膜、机械性能、细菌封装和生长的影响。利用扫描电子显微镜(SEM)观察生物杂化材料和封装的[具体细菌名称]的形态。此外,衰减全反射傅里叶变换红外光谱(ATR-FTIR)证实了生物杂化材料的表面化学成分,并验证了PHB纤维的成功涂层。机械测试表明,涂层增强了纤维材料的机械性能,且这取决于所用纤维素衍生物的分子量。活力测试表明,封装的[具体细菌名称]从制备的材料中表现出正常生长。这些发现表明,所开发的纤维状生物杂化材料作为可持续农业中植物保护和生长促进的生物防治制剂具有巨大的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59e8/11479013/cfa87266efa3/polymers-16-02749-sch001.jpg

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