Shielding properties of the kombucha-derived bacterial cellulose

IF 4.8 2区 工程技术 Q1 MATERIALS SCIENCE, PAPER & WOOD Cellulose Pub Date : 2024-12-03 DOI:10.1007/s10570-024-06265-1
Agata M. Kołodziejczyk, Michał Silarski, Mateusz Kaczmarek, Mateusz Harasymczuk, Katarzyna Dziedzic-Kocurek, Tadeusz Uhl
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Abstract

Living organisms are constantly exposed to cosmic, terrestrial, and internal sources of radiation. As a result, they have developed natural radioprotective mechanisms. However, in some cases, these mechanisms may not be sufficient. Elevated doses and prolonged exposure to radiation, such as during radiotherapy or in extreme environments like spaceflight, can cause damage to DNA and increase the abundance of reactive oxygen species, which can affect biological processes. In contrast to synthetic ingredients, naturally produced radioprotective materials have good biocompatibility and are easy to recycle. This work investigates the radioprotective properties of the hydrogel biofilm produced by the kombucha microbial consortium. The shielding properties of kombucha’s bacterial cellulose (KBC) were examined using gamma quanta with energies ranging from 122 to 1408 keV and an AmBe neutron source. The native form of KBC contains more than 80% water content. To enhance the radioprotection of kombucha’s biofilm, metallic components (K, Fe, Mxenes) and biological additives were tested. Rhodobacter sphaeroides and Synechocystis sp. PCC6803, which are resistant to oxidative stress, were added to the cultivation media. Physical properties were characterized using microscopy, ion leaching, and contact angle measurements. Post-processed dried KBC wristbands were analyzed for absorption parameters to enhance protective shielding. Possible levels of radioprotection for various types of bacterial cellulose thickness and forms were computed based on the obtained results. The findings encourage the use of bacterial cellulose in a circular economy for future bioregenerative systems.

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红茶菌衍生细菌纤维素的屏蔽性能
生物体不断地暴露在宇宙、陆地和内部的辐射源中。因此,它们形成了天然的辐射防护机制。然而,在某些情况下,这些机制可能还不够。高剂量和长时间暴露于辐射,如在放射治疗期间或在太空飞行等极端环境中,会对DNA造成损害,并增加活性氧的丰度,从而影响生物过程。与合成材料相比,天然生产的放射性防护材料具有良好的生物相容性,易于回收利用。本研究探讨了由康普茶微生物联合体生产的水凝胶生物膜的辐射防护性能。利用能量为122 ~ 1408 keV的伽马量子和AmBe中子源,研究了康普茶细菌纤维素(KBC)的屏蔽性能。天然形式的KBC含有80%以上的水分。为提高康普茶生物膜的防辐射能力,对康普茶生物膜中的金属成分(K、Fe、Mxenes)和生物添加剂进行了检测。在培养基中加入抗氧化应激的球形红杆菌(Rhodobacter sphahaeroides)和聚囊菌(Synechocystis sp. PCC6803)。物理性质通过显微镜、离子浸出和接触角测量来表征。分析了后处理干燥的KBC腕带的吸收参数,以增强防护屏蔽。根据所得结果计算了不同类型细菌纤维素厚度和形式的可能辐射防护水平。这一发现鼓励了细菌纤维素在循环经济中用于未来的生物再生系统。
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来源期刊
Cellulose
Cellulose 工程技术-材料科学:纺织
CiteScore
10.10
自引率
10.50%
发文量
580
审稿时长
3-8 weeks
期刊介绍: Cellulose is an international journal devoted to the dissemination of research and scientific and technological progress in the field of cellulose and related naturally occurring polymers. The journal is concerned with the pure and applied science of cellulose and related materials, and also with the development of relevant new technologies. This includes the chemistry, biochemistry, physics and materials science of cellulose and its sources, including wood and other biomass resources, and their derivatives. Coverage extends to the conversion of these polymers and resources into manufactured goods, such as pulp, paper, textiles, and manufactured as well natural fibers, and to the chemistry of materials used in their processing. Cellulose publishes review articles, research papers, and technical notes.
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