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基于时空的使用涂有特定菌种的表面改性碳酸钙微球去除亚甲蓝的响应

Spatiotemporal based response for methylene blue removal using surface modified calcium carbonate microspheres coated with sp.

作者信息

Deghiedy Noha M, El-Bastawisy Hanan S, Gomaa Ola M

机构信息

Radiation Polymer Department, National Center for Radiation Research and Technology (NCRRT), Egyptian Atomic Energy Authority (EAEA) Cairo Egypt.

Drug Radiation Research Department, National Center for Radiation Research and Technology (NCRRT), Egyptian Atomic Energy Authority (EAEA) Cairo Egypt.

出版信息

RSC Adv. 2023 Jan 10;13(3):1842-1852. doi: 10.1039/d2ra05466c. eCollection 2023 Jan 6.

Abstract

Calcium carbonate microspheres are attractive for their biocompatibility, high loading capacity and easy preparation. They can be used in biomedicine and catalytic applications. In the present work, calcium carbonate microspheres were surface modified with polyvinylpyrrolidone (PVP) followed by irradiation at 5 kGy prior to coating with sp. cells. To provide cell protection and internal energy storage, polyhydroxybutyrate (PHB) was induced using 3 factors 2 levels factorial design where the order of effect on PHB% was pH > incubation time > glucose concentration. The highest production was 81.68 PHB% at pH 9, 20 g L glucose and 4 days incubation time. sp. cells grown under PHB optimal conditions were used to coat the surface modified calcium carbonate microspheres. Characterization was performed using X-ray diffraction, Fourier Transform Infrared Spectroscopy, Dynamic light Scattering, Zeta potential and Scanning Electron Microscopy. The results obtained confirm the formation and coating of microspheres of 2.34 μm and -16 mV. The prepared microspheres were used in bioremoval of methylene blue dye, the results showed spatiotemporal response for MB-microsphere interaction, where PHB induced sp. coated microspheres initially adsorb MB to its outer surface within 1 h but decolorization takes place when the incubation time extends to 18 h. The microspheres can be reused up to 3 times with the same efficiency and with no desorption. These results suggest that the surface modified calcium carbonate can be tailored according to the requirement which can be delivery of biomaterial, bioadsorption or bioremediation.

摘要

碳酸钙微球因其生物相容性、高负载能力和易于制备而备受关注。它们可用于生物医学和催化应用。在本研究中,先用聚乙烯吡咯烷酮(PVP)对碳酸钙微球进行表面改性,然后在5 kGy剂量下辐照,再用sp. 细胞进行包被。为了提供细胞保护和内部能量储存,采用三因素二水平析因设计诱导聚羟基丁酸酯(PHB)的产生,对PHB%影响的顺序为pH>培养时间>葡萄糖浓度。在pH 9、葡萄糖浓度20 g/L和培养4天的条件下,最高产量为81.68%的PHB。在PHB最佳条件下生长的sp. 细胞用于包被表面改性的碳酸钙微球。使用X射线衍射、傅里叶变换红外光谱、动态光散射、zeta电位和扫描电子显微镜进行表征。所得结果证实形成了粒径为2.34μm、zeta电位为 -16 mV的微球并完成了包被。制备的微球用于亚甲基蓝染料的生物去除,结果表明MB与微球相互作用具有时空响应,其中PHB诱导的sp. 包被微球最初在1小时内将MB吸附到其外表面,但当培养时间延长至18小时时发生脱色。微球可重复使用多达3次,效率相同且无解吸现象。这些结果表明,表面改性的碳酸钙可以根据需求进行定制,可用于生物材料递送、生物吸附或生物修复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7715/9830531/7368f1540dd7/d2ra05466c-f1.jpg

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