Ambrosini Arnaud, Gracia Mélanie, Proag Amsha, Rayer Mégane, Monier Bruno, Suzanne Magali
LBCMCP UMR5088, Centre de Biologie Integrative (CBI), Université de Toulouse, CNRS, UPS, France.
LBCMCP UMR5088, Centre de Biologie Integrative (CBI), Université de Toulouse, CNRS, UPS, France.
Mech Dev. 2017 Apr;144(Pt A):33-42. doi: 10.1016/j.mod.2016.10.001. Epub 2016 Oct 19.
It is now well established that apoptosis is induced in response to mechanical strain. Indeed, increasing compressive forces induces apoptosis in confined spheroids of tumour cells, whereas releasing stress reduces apoptosis in spheroids cultivated in free suspension (Cheng et al., 2009). Apoptosis can also be induced by applying a 100 to 250MPa pressure, as shown in different cultured cells (for review, see (Frey et al., 2008)). During epithelium development, the pressure caused by a fast-growing clone can trigger apoptosis at the vicinity of the clone, mediating mechanical cell competition (Levayer et al., 2016). While the effect of strain has long been known for its role in apoptosis induction, the reciprocal mechanism has only recently been highlighted. First demonstrated at the cellular level, the effect of an apoptotic cell on its direct neighbours has been analysed in different kinds of monolayer epithelium (Gu et al., 2011; Rosenblatt et al., 2001; Kuipers et al., 2014; Lubkov & Bar-Sagi, 2014). More recently, the concept of a broader impact of apoptotic cell behaviours on tissue mechanical strain has emerged from the characterisation of tissue remodelling during Drosophila development (Toyama et al., 2008; Monier et al., 2015). In the present review, we summarize our current knowledge on the mechanical impact of apoptosis during tissue remodelling.
现在已经充分证实,细胞凋亡是对机械应变的一种反应。事实上,增加压缩力会诱导肿瘤细胞受限球体中的细胞凋亡,而释放压力则会减少在自由悬浮培养的球体中的细胞凋亡(Cheng等人,2009年)。如在不同培养细胞中所示,施加100至250MPa的压力也可诱导细胞凋亡(综述见(Frey等人,2008年))。在上皮发育过程中,快速生长的克隆所产生的压力可在克隆附近触发细胞凋亡,介导机械性细胞竞争(Levayer等人,2016年)。虽然应变的作用因其在诱导细胞凋亡中的作用早已为人所知,但反向机制直到最近才被凸显出来。首先在细胞水平得到证实,凋亡细胞对其直接相邻细胞的影响已在不同类型的单层上皮中进行了分析(Gu等人,2011年;Rosenblatt等人,2001年;Kuipers等人,2014年;Lubkov和Bar-Sagi,2014年)。最近,从果蝇发育过程中组织重塑的特征中出现了凋亡细胞行为对组织机械应变具有更广泛影响的概念(Toyama等人,2008年;Monier等人,2015年)。在本综述中,我们总结了目前关于细胞凋亡在组织重塑过程中的机械影响的知识。