Division of Applied Chemistry, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka, 565-0871, Japan.
Joint Research Laboratory (TOPPAN) for Advanced Cell Regulatory Chemistry, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka, 565-0871, Japan.
Adv Sci (Weinh). 2023 Oct;10(30):e2302637. doi: 10.1002/advs.202302637. Epub 2023 Sep 11.
Collagen is the most abundant protein in the human body and one of the main components of stromal tissues in tumors which have a high elastic modulus of over 50 kPa. Although collagen has been widely used as a cell culture scaffold for cancer cells, there have been limitations when attempting to fabricate a tough collagen gel with cells like a cancer stroma. Here, rapid gelation of a collagen solution within a few minutes by transition metal complexation is demonstrated. Type I collagen solution at neutral pH shows rapid gelation with a transparency of 81% and a high modulus of 1,781 kPa by mixing with K PtCl solution within 3 min. Other transition metal ions also show the same rapid gelation, but not basic metal ions. Interestingly, although type I to IV collagen molecules show rapid gelation, other extracellular matrices do not exhibit this phenomenon. Live imaging of colon cancer organoids in 3D culture indicates a collective migration property with modulating high elastic modulus, suggesting activation for metastasis progress. This technology will be useful as a new class of 3D culture for cells and organoids due to its facility for deep-live observation and mechanical stiffness adjustment.
胶原蛋白是人体内最丰富的蛋白质,也是弹性模量超过 50kPa 的肿瘤基质组织的主要成分之一。尽管胶原蛋白已被广泛用作癌细胞的细胞培养支架,但在尝试制造具有类似癌症基质的坚韧胶原凝胶时存在局限性。在这里,通过过渡金属络合,在几分钟内实现了胶原溶液的快速胶凝。在中性 pH 值下,I 型胶原溶液与 KPtCl 溶液混合 3 分钟内即可快速胶凝,透明度为 81%,弹性模量为 1781kPa。其他过渡金属离子也表现出相同的快速胶凝,但不是碱性金属离子。有趣的是,尽管 I 型到 IV 型胶原分子表现出快速胶凝,但其他细胞外基质则没有表现出这种现象。结肠类器官在 3D 培养中的活细胞成像表明具有调节高弹性模量的集体迁移特性,提示其可能有助于转移进展。由于其便于进行深层活细胞观察和机械刚度调节,该技术将成为细胞和类器官的一类新的 3D 培养方法。