Leclech Claire, Barakat Abdul I
LadHyX, CNRS, Ecole Polytechnique, Institut Polytechnique de Paris, Palaiseau, France.
Bioessays. 2023 Jun;45(6):e2300017. doi: 10.1002/bies.202300017. Epub 2023 Apr 12.
Constraining collective cell migration in vitro using different types of engineered substrates such as microstructured surfaces or adhesive patterns of different shapes and sizes often leads to the emergence of specific patterns of motion. Recently, analogies between the behavior of cellular assemblies and that of active fluids have enabled significant advances in our understanding of collective cell migration; however, the physiological relevance and potential functional consequences of the resulting migration patterns remain elusive. Here we describe the different patterns of collective cell migration that have been reported in vitro in response to geometrical constraints, explore the in vivo pertinence of the in vitro systems used to impose the geometrical constraints, and discuss the potential physiological ramifications of the collective migration patterns that emerge as a result of physical constraints. We conclude by highlighting key upcoming challenges in the exciting field of constrained collective cell migration.
使用不同类型的工程化基质(如微结构化表面或不同形状和尺寸的粘附图案)在体外限制集体细胞迁移,通常会导致出现特定的运动模式。最近,细胞聚集体行为与活性流体行为之间的类比使我们在理解集体细胞迁移方面取得了重大进展;然而,由此产生的迁移模式的生理相关性和潜在功能后果仍然难以捉摸。在这里,我们描述了体外报道的响应几何约束的集体细胞迁移的不同模式,探讨了用于施加几何约束的体外系统在体内的相关性,并讨论了由于物理约束而出现的集体迁移模式的潜在生理影响。我们通过强调受限集体细胞迁移这一令人兴奋的领域中即将面临的关键挑战来结束本文。