利用超分子方法设计模块化水凝胶平台用于培养原生质体-从一般组织工程到细胞农业。

IF 3.2 3区 生物学 Q3 MATERIALS SCIENCE, BIOMATERIALS
Maritza M Rovers, Erik J Slootweg, Ferdinand C O Los, Patricia Y W Dankers
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引用次数: 0

摘要

原生质体向植物细胞的再生和进一步向植物的再生是农业生物技术领域面临的挑战。受哺乳动物组织工程的启发,植物组织工程提出了一个战略转变,即使用完全合成材料为基础的培养平台来引导原生质体培养。本文选择了一种超分子材料方法来设计原生质体的模块化培养方法。作为模块化构建块的超分子单体允许制造各种水凝胶配方并研究不同的原生质体培养;包括在超分子水凝胶上的2D培养,在溶液中使用超分子纤维的2.5D培养,以及在散装水凝胶或微凝胶中封装的3D培养。重要的是,在二维原生质体培养中,需要用肽添加剂来显示超分子水凝胶的生物活性功能化。11天后,生物活性水凝胶诱导原生质体增大,这在原始水凝胶中是不存在的。在3D中培养的原生质体则呈现相反的效果,显示出生物活性添加剂导致的质体溶解。有趣的是,在2.5D中,超分子纤维中较低的生物活性添加剂浓度刺激了原生质体的扩大,表现出与2D相似的形态变化。最后,展示了原生质体在超分子微凝胶中的包封。这项工作展示了模块化设计各种合成平台以促进细胞农业的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using a Supramolecular Approach to Engineer Modular Hydrogel Platforms for Culturing Protoplasts - from General Tissue Engineering to Cellular Agriculture.

Protoplast regeneration into plant cells and further into plants is an ongoing challenge in agricultural biotechnology. Inspired by mammalian tissue engineering, a strategic shift is proposed in plant tissue engineering to steer protoplast culture using fully synthetic materials-based culture platforms. Here a supramolecular materials method to engineer modular culture methods for protoplasts is chosen to use. Supramolecular monomers as modular building blocks allow to make various hydrogel formulations and to study different protoplast cultures; including 2D cultures on top of supramolecular hydrogels, 2.5D cultures using supramolecular fibers in solution, and 3D cultures when encapsulated in bulk hydrogels or microgels. Importantly, the need is shown for bioactive functionalization of the supramolecular hydrogels with a peptide additive in 2D protoplast cultures. After 11 days, the bioactive hydrogel induced protoplast enlargement, which is absent on pristine hydrogels. The opposite effect is present for protoplasts cultured in 3D, showing plasmolysis as a result of the bioactive additive. Interestingly, in 2.5D lower bioactive additive concentrations in supramolecular fibers stimulated protoplast enlargement, demonstrated by similar morphological changes as in 2D. Finally, protoplast encapsulation in supramolecular microgels is showcased. This work demonstrates the potential to modularly engineer various synthetic platforms to facilitate cellular agriculture.

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来源期刊
Advanced biology
Advanced biology Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (all)
CiteScore
6.60
自引率
0.00%
发文量
130
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