ArticleAmerican journal of physiology. Cell physiology2014
P2Y2 nucleotide receptor activation enhances the aggregation and self-organization of dispersed salivary epithelial cells.
Article in American journal of physiology. Cell physiology, 2014. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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Who cites it
9 citing papers in PubMed, 15 citations in OpenAlex.
- A genome-wide genetic screen reveals the P2Y2-integrin axis as a stabilizer of EGFR mutants in non-small cell lung cancer (NSCLC).Science advances · 2026Article
- Pharmacological characterization of P2Y receptor subtypes - an update.Purinergic signalling · 2024Review
- Therapeutic potential for P2YPurinergic signalling · 2023Review
- P2YOral oncology · 2020Article
- P2 Receptors as Therapeutic Targets in the Salivary Gland: From Physiology to Dysfunction.Frontiers in pharmacology · 2020Review
- P2YOral diseases · 2018Article
- P2YCirculation research · 2017Article
- P2X7 receptor antagonism prevents IL-1β release from salivary epithelial cells and reduces inflammation in a mouse model of autoimmune exocrinopathy.The Journal of biological chemistry · 2017Article
- Purinergic receptors as potential therapeutic targets in Alzheimer's disease.Neuropharmacology · 2016Review
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Authors and funding
7 authors at 1 institution in 1 country.
Funding
Abstract
Hyposalivation resulting from salivary gland dysfunction leads to poor oral health and greatly reduces the quality of life of patients. Current treatments for hyposalivation are limited. However, regenerative medicine to replace dysfunctional salivary glands represents a revolutionary approach. The ability of dispersed salivary epithelial cells or salivary gland-derived progenitor cells to self-organize into acinar-like spheres or branching structures that mimic the native tissue holds promise for cell-based reconstitution of a functional salivary gland. However, the mechanisms involved in salivary epithelial cell aggregation and tissue reconstitution are not fully understood. This study investigated the role of the P2Y2 nucleotide receptor (P2Y2R), a G protein-coupled receptor that is upregulated following salivary gland damage and disease, in salivary gland reconstitution. In vitro results with the rat parotid acinar Par-C10 cell line indicate that P2Y2R activation with the selective agonist UTP enhances the self-organization of dispersed salivary epithelial cells into acinar-like spheres. Other results indicate that the P2Y2R-mediated response is dependent on epidermal growth factor receptor activation via the metalloproteases ADAM10/ADAM17 or the α5β1 integrin/Cdc42 signaling pathway, which leads to activation of the MAPKs JNK and ERK1/2. Ex vivo data using primary submandibular gland cells from wild-type and P2Y2R(-/-) mice confirmed that UTP-induced migratory responses required for acinar cell self-organization are mediated by the P2Y2R. Overall, this study suggests that the P2Y2R is a promising target for salivary gland reconstitution and identifies the involvement of two novel components of the P2Y2R signaling cascade in salivary epithelial cells, the α5β1 integrin and the Rho GTPase Cdc42.
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