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Preparation of Well-Dispersed Chitosan/Alginate Hollow Multilayered Microcapsules for Enhanced Cellular Internalization

机译:分散良好的壳聚糖/藻酸盐空心多层微胶囊的制备用于增强细胞内在化

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摘要

Hollow multilayered capsules have shown massive potential for being used in the biomedical and biotechnology fields, in applications such as cellular internalization, intracellular trafficking, drug delivery, or tissue engineering. In particular, hollow microcapsules, developed by resorting to porous calcium carbonate sacrificial templates, natural-origin building blocks and the prominent Layer-by-Layer (LbL) technology, have attracted increasing attention owing to their key features. However, these microcapsules revealed a great tendency to aggregate, which represents a major hurdle when aiming for cellular internalization and intracellular therapeutics delivery. Herein, we report the preparation of well-dispersed polysaccharide-based hollow multilayered microcapsules by combining the LbL technique with an optimized purification process. Cationic chitosan (CHT) and anionic alginate (ALG) were chosen as the marine origin polysaccharides due to their biocompatibility and structural similarity to the extracellular matrices of living tissues. Moreover, the inexpensive and highly versatile LbL technology was used to fabricate core-shell microparticles and hollow multilayered microcapsules, with precise control over their composition and physicochemical properties, by repeating the alternate deposition of both materials. The microcapsules’ synthesis procedure was optimized to extensively reduce their natural aggregation tendency, as shown by the morphological analysis monitored by advanced microscopy techniques. The well-dispersed microcapsules showed an enhanced uptake by fibroblasts, opening new perspectives for cellular internalization.
机译:空心多层胶囊在生物医学和生物技术领域中显示出巨大的潜力,可用于细胞内在化,细胞内运输,药物递送或组织工程等应用。尤其是,通过使用多孔碳酸钙牺牲模板,天然来源的构建基块和突出的逐层(LbL)技术开发的中空微胶囊由于其关键特性而受到越来越多的关注。然而,这些微胶囊显示出很大的聚集趋势,这代表着针对细胞内在化和细胞内治疗剂递送的主要障碍。在这里,我们报告通过结合LbL技术与优化的纯化过程制备良好分散的多糖基空心多层微胶囊。阳离子壳聚糖(CHT)和阴离子藻酸盐(ALG)被选为海洋来源的多糖,因为它们具有生物相容性,并且与活组织的细胞外基质结构相似。此外,通过重复两种材料的交替沉积,使用廉价且用途广泛的LbL技术来制造核-壳微粒和中空多层微胶囊,并对其组成和理化性质进行精确控制。如先进的显微镜技术监测的形态分析所示,微胶囊的合成程序经过优化,可大大降低其天然聚集趋势。分散良好的微胶囊显示出成纤维细胞的摄取增加,为细胞内化打开了新的前景。

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