负磁泳引导培养表面的单向细胞图案

Melike Cagan-Algan , Muge Anil-Inevi , Seren Kecili , Ece Inal , H. Cumhur Tekin , Gulistan Mese , Engin Ozcivici
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引用次数: 0

摘要

细胞图案化是组织工程中的一个重要工具,使细胞定向沉积到特定位置以实现生物学相关性。传统的细胞图谱技术通常涉及耗时的修改或生物打印,可能会影响细胞的活力。本研究提出了一种新颖的单步磁成像系统,用于使用负磁电泳进行无标记线性细胞成像。定制的磁性系统和培养室可以在不修改底物的情况下在表面上快速(3小时)印迹细胞。该方法使用安全浓度的顺磁剂(5 mm钆螯合物,Gadobutrol)实现了厚度为1 mm的线性图案。这些模式在48小时内保持结构完整性,并成功地与成骨和脂肪分化方案相结合。这种具有成本效益的非接触式操作技术有望在组织工程、药物发现和基础细胞生物学研究中得到广泛应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Negative magnetophoresis guided unidirectional cell patterning on culture surface
Cell patterning is a significant tool in tissue engineering, enabling the directed deposition of cells into specific locations to achieve biological relevance. Conventional cell patterning techniques often involve time-consuming modifications or bioprinting, potentially affecting cell viability. This study presents a novel, single-step magnetic patterning system for label-free linear cell patterning using negative magnetophoresis. A custom magnetic system and culture chamber enabled the rapid (3 h) imprinting of cells on a surface without substrate modification. This approach achieved linear patterns with a thickness of ∼1 mm using a safe concentration of a paramagnetic agent (5 mM Gadolinium chelate, Gadobutrol). The patterns maintained structural integrity for 48 h and were successfully combined with osteogenic and adipogenic differentiation protocols. This cost-effective and contactless manipulation technique holds promise for diverse applications in tissue engineering, drug discovery, and fundamental cell biology research.
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来源期刊
Biomedical engineering advances
Biomedical engineering advances Bioengineering, Biomedical Engineering
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