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由化学未修饰的生物聚合物组成的任意形状的微凝胶。

Arbitrarily-shaped microgels composed of chemically unmodified biopolymers.

机构信息

University of Chemistry and Technology, Department of Chemical Engineering, Technicka 5, 16628, Prague, Czech Republic.

出版信息

Biomater Sci. 2020 Jun 7;8(11):3044-3051. doi: 10.1039/c9bm02056j. Epub 2020 Apr 20.

Abstract

Biohydrogels, composed of naturally occurring biopolymers are typically preferred over their synthetic analogues in bioapplications thanks to their biocompatibility, bioactivity, mechanical or degradation properties. Shaping biohydrogels on the single-cell length scales (micrometers) is a key ability needed to create bioequivalent artificial cell/tissue constructs and cannot be achieved with current methods. This work introduces a method for photolithographic synthesis of arbitrarily shaped microgels composed purely of a biopolymer of choice. The biopolymer is mixed with a sacrificial photocrosslinkable polymer, and the mixture is photocrosslinked in a lithographic process, yielding anisotropic microgels with the biopolymer entrapped in the network. Subsequent ionic or covalent biopolymer crosslinking followed by template cleavage yields a microgel composed purely of a biopolymer with the 3D shape dictated by the photocrosslinking process. Method feasibility is demonstrated with two model polysaccharide biopolymers (alginate, chitosan) using suitable crosslinking methods. Next, alginate microgels were used as microtaggants on a pharmaceutical oral solid dose formulation to prevent its counterfeiting. Since the alginate is approved as an additive in the food and pharmaceutical industries, the presented tagging system can be implemented in practical use much easier than systems comprising synthetic polymers.

摘要

生物水凝胶由天然存在的生物聚合物组成,由于其生物相容性、生物活性、机械或降解特性,通常优于其合成类似物,在生物应用中得到广泛应用。在单细胞长度尺度(微米)上对生物水凝胶进行塑形是创建具有生物等效性的人工细胞/组织构建体的关键能力,而目前的方法无法实现。这项工作介绍了一种用于光聚合合成任意形状的微凝胶的方法,这些微凝胶完全由所选的生物聚合物组成。将生物聚合物与可牺牲的光交联聚合物混合,并在光刻过程中进行光交联,得到具有生物聚合物的各向异性微凝胶,生物聚合物被包裹在网络中。随后的离子或共价生物聚合物交联,然后模板裂解,得到由生物聚合物组成的微凝胶,其 3D 形状由光交联过程决定。使用两种模型多糖生物聚合物(海藻酸盐、壳聚糖)和合适的交联方法证明了该方法的可行性。接下来,海藻酸盐微凝胶被用作药物口服固体制剂的微标记物,以防止其伪造。由于海藻酸盐被批准为食品和制药工业的添加剂,因此与包含合成聚合物的系统相比,所提出的标记系统可以更容易地在实际应用中实施。

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