Matrix as an Interstitial Transport System
Матрикс как система интерстициального транспорта
2014-02-27
SCID: 54.1/ead35pef
Discuss with AI
cell-to-cell communicationextracellular matrixextracellular microRNA transportinterstitial transporttunneling nanotubes
Figures from the paper
Abstract (AI)
The extracellular matrix (ECM) is best known for its function as a structural scaffold for the tissue and more recently as a microenvironment to sequester growth factors and cytokines allowing for rapid and localized changes in their activity in the absence of new protein synthesis. In this review, we explore this and additional new aspects of ECM function in mediating cell-to-cell communications. Fibrillar and nonfibrillar components of ECM can limit and facilitate the transport of molecules through the extracellular space while also regulating interstitial hydrostatic pressure. In turn, transmembrane communications via molecules, such as ECM metalloproteinase inducer, thrombospondins, and integrins, can further mediate cell response to extracellular cues and affect ECM composition and tissue remodeling. Other means of cell-to-cell communication include extracellular microRNA transport and its contribution to gene expression in target cells and the nanotube formation between distant cells, which has recently emerged as a novel conduit for intercellular organelle sharing thereby influencing cell survival and function. The information summarized and discussed here are not limited to the cardiovascular ECM but encompass ECM in general with specific references to the cardiovascular system.
Key Findings
1
ECM-sequestered growth factors and cytokines enable rapid, localized changes in signaling without requiring new protein synthesis.
2
Extracellular microRNAs and intercellular nanotubes provide additional communication routes, including gene regulation in target cells and organelle sharing that influences cell survival and function.
3
Fibrillar and nonfibrillar ECM components can either restrict or facilitate molecular transport through extracellular spaces and regulate interstitial hydrostatic pressure.
4
The extracellular matrix functions not only as a structural scaffold but also as a dynamic regulator of cell-to-cell communication.
5
Transmembrane mediators including ECM metalloproteinase inducer, thrombospondins, and integrins link extracellular cues to cellular responses, ECM composition, and tissue remodeling.
Research Object
Extracellular matrix (ECM) as an interstitial transport system and mediator of cell-to-cell communication
Research Subject
ECM-mediated transport of molecules and regulation of intercellular signaling, hydrostatic pressure, tissue remodeling, and cell function
Publication Details
Publication Date
2014-02-27
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest