Spatio-Temporal Changes of Extracellular Matrix (ECM) Stiffness in the Development of the Leech Hirudo verbana
Basic science published in Int J Mol Sci (2022)
Abstract
The invertebrate leech Hirudo verbana represents a powerful experimental animal model for improving the knowledge about the functional interaction between the extracellular matrix (ECM) and cells within the tissue microenvironment (TME), and the key role played by ECM stiffness during development and growth. Indeed, the medicinal leech is characterized by a simple anatomical organization reproducing many aspects of the basic biological processes of vertebrates and in which a rapid spatiotemporal development is well established and easily assessed. Our results show that ECM structural organization, as well as the amount of fibrillar and non-fibrillar collagen are deeply different from hatching leeches to adult ones. In addition, the changes in ECM remodelling occurring during the different leech developmental stages, leads to a gradient of stiffness regulating both the path of migratory cells and their fates. The ability of cells to perceive and respond to changes in ECM composition and mechanics strictly depend on nuclear or cytoplasmic expression of Yes-Associated Protein 1 (YAP1), a key mediator converting mechanical signals into transcriptional outputs, expression, and activation.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Zusammenfassung
ECM architecture and collagen content evolve through Hirudo verbana development creating a stiffness gradient regulating cellular fate via YAP1 mechanotransduction.
Warum dies für die Hirudotherapie relevant ist
This study examined the spatio-temporal changes in extracellular matrix (ECM) stiffness and composition during the development and growth of the leech Hirudo verbana. While it utilizes a species central to ASH's focus, the research investigates basic developmental biology, showing that ECM stiffness gradients regulate cell migration and fate via YAP1 expression. It does not explore the leech secretome, salivary compounds, or any therapeutic applications relevant to hirudotherapy. Consequently, its relevance to ASH is highly indirect, serving strictly as a biological characterization of the leech as an experimental animal model rather than providing clinical or therapeutic insights.
Zitation
Spatio-Temporal Changes of Extracellular Matrix (ECM) Stiffness in the Development of the Leech Hirudo verbana.
Pulze L et al. · International journal of molecular sciences, 2022
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