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可调水凝胶粘弹性调节人神经成熟。

Tunable hydrogel viscoelasticity modulates human neural maturation.

机构信息

Institute for Stem Cell Biology and Regenerative Medicine, Stanford University School of Medicine, Stanford, CA, USA.

Complex in Vitro Systems, Safety Assessment, Genentech Inc., South San Francisco, CA, USA.

出版信息

Sci Adv. 2023 Oct 20;9(42):eadh8313. doi: 10.1126/sciadv.adh8313.

Abstract

Human-induced pluripotent stem cells (hiPSCs) have emerged as a promising in vitro model system for studying neurodevelopment. However, current models remain limited in their ability to incorporate tunable biomechanical signaling cues imparted by the extracellular matrix (ECM). The native brain ECM is viscoelastic and stress-relaxing, exhibiting a time-dependent response to an applied force. To recapitulate the remodelability of the neural ECM, we developed a family of protein-engineered hydrogels that exhibit tunable stress relaxation rates. hiPSC-derived neural progenitor cells (NPCs) encapsulated within these gels underwent relaxation rate-dependent maturation. Specifically, NPCs within hydrogels with faster stress relaxation rates extended longer, more complex neuritic projections, exhibited decreased metabolic activity, and expressed higher levels of genes associated with neural maturation. By inhibiting actin polymerization, we observed decreased neuritic projections and a concomitant decrease in neural maturation gene expression. Together, these results suggest that microenvironmental viscoelasticity is sufficient to bias human NPC maturation.

摘要

人诱导多能干细胞(hiPSCs)已成为研究神经发育的有前途的体外模型系统。然而,当前的模型在整合细胞外基质(ECM)赋予的可调生物力学信号方面仍然存在局限性。天然脑 ECM 具有粘弹性和应力松弛性,对施加的力表现出时间依赖性响应。为了再现神经 ECM 的可重塑性,我们开发了一系列具有可调应力松弛率的蛋白工程水凝胶。封装在这些凝胶中的 hiPSC 衍生的神经祖细胞(NPC)经历了松弛率依赖性成熟。具体而言,在具有更快的应力松弛率的水凝胶中的 NPC 延伸出更长、更复杂的神经突投射,表现出降低的代谢活性,并表达与神经成熟相关的基因水平更高。通过抑制肌动蛋白聚合,我们观察到神经突投射减少,同时神经成熟基因表达减少。总之,这些结果表明,微环境粘弹性足以影响人 NPC 成熟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e205/10588948/60fa2e726fe4/sciadv.adh8313-f1.jpg

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