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具有从纳米颗粒到纳米/微球等不同晶体形态的细胞定制碳酸钙颗粒。

Cell-tailored calcium carbonate particles with different crystal forms from nanoparticle to nano/microsphere.

作者信息

Chang Yi, Han Huijuan, Liu Tingting, Yuan Shibao, Chen Shuting, Guo Yuming, Yang Lin, Ma Xiaoming

机构信息

Key Laboratory of Green Chemical Media and Reactions, Ministry of Education, Henan Normal University Xinxiang Henan 453007 P. R. China

School of Chemistry and Chemical Engineering, Henan Institute of Science and Technology Xinxiang Henan 453007 P. R. China.

出版信息

RSC Adv. 2020 Nov 27;10(70):43233-43241. doi: 10.1039/d0ra07393h. eCollection 2020 Nov 23.

Abstract

Inspired by biomineralization, the first synthesis of size-tunable calcium carbonates from nanoparticles (YC-CaCO NPs) to nano/microspheres (YC-CaCO N/MSs) with a porous structure was accomplished using a facile method under the mediation of the secretion from yeast cells (YCs). The biomolecules derived from the secretion of YCs were used as conditioning and stabilizing agents to control the biosynthesis of the YC-CaCO materials. The morphology and crystal forms of YC-CaCO materials can be affected by the biomolecules from the secretion of YCs. With increasing concentrations of biomolecules, the morphologies of the obtained CaCO materials changed from nanoparticles to nano/microspheres with a porous structure, while the crystal forms transformed from amorphous to calcite. Functional investigations showed that YC-CaCO NSs with a porous structure effectively acted as anticancer drug carriers with accurate and selective drug release in tumor tissue, which suggests that they have great potential to function as a therapeutic delivery system. These application features are mainly attributed to the satisfactory biocompatibility and biodegradability, high drug-loading capacity, and pH-dependent sustained drug release performance of the porous YC-CaCO NSs. The biomimetic synthesis strategy of YC-CaCO materials mediated by YC secretion not only helps to shed light on the biomineralization mechanism in organisms, but may also lead to a new means of biosynthesizing organic-inorganic nanocomposites.

摘要

受生物矿化启发,在酵母细胞(YCs)分泌物的介导下,采用简便方法首次实现了从纳米颗粒(YC - CaCO NPs)到具有多孔结构的纳米/微球(YC - CaCO N/MSs)的尺寸可调碳酸钙的合成。源自YCs分泌物的生物分子用作调节和稳定剂,以控制YC - CaCO材料的生物合成。YC - CaCO材料的形态和晶体形式会受到YCs分泌物中生物分子的影响。随着生物分子浓度的增加,所获得的CaCO材料的形态从纳米颗粒变为具有多孔结构的纳米/微球,而晶体形式从无定形转变为方解石。功能研究表明,具有多孔结构的YC - CaCO NSs有效地充当抗癌药物载体,在肿瘤组织中实现精确和选择性药物释放,这表明它们具有作为治疗递送系统发挥作用的巨大潜力。这些应用特性主要归因于多孔YC - CaCO NSs令人满意的生物相容性和生物降解性、高载药量以及pH依赖性持续药物释放性能。由YCs分泌物介导的YC - CaCO材料的仿生合成策略不仅有助于阐明生物体中的生物矿化机制,还可能导致一种生物合成有机 - 无机纳米复合材料的新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7bc/9058178/ec2dab4e76f2/d0ra07393h-f1.jpg

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