State Key Laboratory of Mechanical System and Vibration, Shanghai Jiao Tong University, Shanghai, 200240, China.
Institute of Medical Robotics, School of Biomedical Engineering, Shanghai Jiao Tong University, No.800 Dongchuan Road, Shanghai, 200240, China.
Adv Sci (Weinh). 2024 Apr;11(14):e2308396. doi: 10.1002/advs.202308396. Epub 2024 Feb 2.
Cell-laden hydrogel fibers/tubules are one of the fundamentals of tissue engineering. They have been proven as a promising method for constructing biomimetic tissues, such as muscle fibers, nerve conduits, tendon and vessels, etc. However, current hydrogel fiber/tubule production methods have limitations in ordered cell arrangements, thus impeding the biomimetic configurations. Acoustic cell patterning is a cell manipulation method that has good biocompatibility, wide tunability, and is contact-free. However, there are few studies on acoustic cell patterning for fiber production, especially on the radial figure cell arrangements, which mimic many native tissue-like cell arrangements. Here, an acoustic cell patterning system that can be used to produce hydrogel fibers/tubules with tunable cell patterns is shown. Cells can be pre-patterned in the liquid hydrogel before being extruded as cross-linked hydrogel fibers/tubules. The radial patterns can be tuned with different complexities based on the acoustic resonances. Cell viability assays after 72 h confirm good cell viability and proliferation. Considering the biocompatibility and reliability, the present method can be further used for a variety of biomimetic fabrications.
细胞负载水凝胶纤维/管是组织工程的基础之一。它们已被证明是构建仿生组织的一种很有前途的方法,例如肌肉纤维、神经导管、肌腱和血管等。然而,目前的水凝胶纤维/管生产方法在有序的细胞排列方面存在局限性,从而阻碍了仿生结构的形成。声控细胞图案化是一种细胞操作方法,具有良好的生物相容性、广泛的可调性且无需接触。然而,用于纤维生产的声控细胞图案化研究较少,特别是在模仿许多天然组织样细胞排列的辐射状图案细胞排列方面。本文展示了一种可用于生产具有可调细胞图案的水凝胶纤维/管的声控细胞图案化系统。细胞可以在被挤出之前预先在液体水凝胶中进行图案化,形成交联水凝胶纤维/管。可以根据声共振来调整辐射状图案的复杂性。72 小时后的细胞活力测定证实了良好的细胞活力和增殖。考虑到生物相容性和可靠性,本方法可以进一步用于各种仿生制造。