Suriyagandhi Vennila, Ma Ying, Paparozzi Veronica, Guarnieri Tiziana, Di Pietro Biagio, Dimitri Giovanna Maria, Tieri Paolo, Sala Claudia, Lai Darong, Nardini Christine
Consiglio Nazionale delle Ricerche, Istituto per le Applicazioni del Calcolo "Mauro Picone" (IAC), 00185 Roma, Italy.
Department of Computer Science and Engineering, Southeast University, 211189 Nanjing, PR China.
Mechanobiol Med. 2024 Dec 14;3(1):100112. doi: 10.1016/j.mbm.2024.100112. eCollection 2025 Mar.
Mechanotransduction is the process that enables the conversion of mechanical cues into biochemical signaling. While all our cells are well known to be sensitive to such stimuli, the details of the systemic interaction between mechanical input and inflammation are not well integrated. Often, indeed, they are considered and studied in relatively compartmentalized areas, and we therefore argue here that to understand the relationship of mechanical stimuli with inflammation - with a high translational potential - it is crucial to offer and analyze a unified view of mechanotransduction. We therefore present here pathway representation, recollected with the standard systems biology markup language (SBML) and explored with network biology approaches, offering RAC1 as an exemplar and emerging molecule with potential for medical translation.
机械转导是一种能将机械信号转化为生化信号的过程。虽然我们都知道所有细胞都对这类刺激敏感,但机械输入与炎症之间的系统性相互作用细节尚未得到很好的整合。实际上,它们常常在相对分隔的领域中被研究,因此我们在此认为,为了理解具有高转化潜力的机械刺激与炎症之间的关系,提供并分析机械转导的统一观点至关重要。因此,我们在此展示了用标准系统生物学标记语言(SBML)整理并通过网络生物学方法探索的信号通路表示,以RAC1作为具有医学转化潜力的典型新兴分子进行展示。