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Microinjection for the ex Vivo Modification of Cells with Artificial Organelles

机译:用人造细胞器进行细胞的exVivo修饰的显微注射

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摘要

Microinjection is extensively used across fields to deliver material intracellularly. Here we address the fundamental aspects of introducing exogenous organelles into cells to endow them with artificial functions. Nanocarriers encapsulating biologically active cargo or extreme intraluminal pH were injected directly into the cytosol of cells, where they bypassed subcellular processing pathways and remained intact for several days. Nano carriers' size was found to dictate their intracellular distribution pattern upon injection, with larger vesicles adopting polarized agglomerated distributions and smaller colloids spreading evenly in the cytosol. This in turn determined the symmetry or asymmetry of their dilution following cell division, ultimately affecting the intracellular dose at a cell population level. As an example of microinjection's applicability, a cell type relevant for cell-based therapies (dendritic cells) was injected with vesicles, and its migratory properties were studied in a co-culture system mimicking lymphatic capillaries.
机译:显微注射广泛地跨越田地以递送内部材料。在这里,我们解决了将外源细胞器引入细胞以赋予它们的基本方面,以赋予它们的人工功能。将生物活性货物或极端腔内pH包封的纳米载体直接注射到细胞的细胞溶胶中,在那里它们绕过亚细胞加工途径并保持完整几天。发现纳米载体的大小在注射时决定了它们的细胞内分布图案,具有较大的囊泡,采用偏振凝聚的分布和较小的胶体在细胞溶溶胶中均匀地扩散。这反过来确定其在细胞分裂后稀释的对称性或不对称性,最终影响细胞内剂量在细胞群体水平。作为显微注射的适用性的一个例子,用囊泡注入基于细胞的疗法(树突状细胞)的细胞型,并在模拟淋巴细胞模仿淋巴细胞的共培养系统中研究了其迁移性质。

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