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PMID: 41892324 已发表 · epublish 英语

TRPC6-Mediated Ca2+ Influx Activates MAPK and NFκB Signaling and Elicits Pro-Inflammatory and Catabolic Responses in Human Intervertebral Disc Cells.

Cells ·第 15 卷 ·第 6 期 ·2026-03-17

Venkatachala Babu J, Puvanesarajah V, Mesfin A, Japa JP, Yoon K, Ehioghae M, Schrlau MG, Stone LS, Hitzl W, Wuertz-Kozak K

摘要

Intervertebral disc degeneration is characterized by inflammation, extracellular matrix breakdown, and neurovascular ingrowth, processes that contribute to discogenic, chronic back pain. The transient receptor potential canonical 6 (TRPC6) channel is a calcium-permeable ion channel implicated in inflammation and pain signaling in multiple tissues; however, its functional role in human disc cells remain unknown. Here, we investigated the expression, activation, and downstream consequences of TRPC6 activation using Hyp9, a pharmacological activator of TRPC6. TRPC6 transcripts were consistently detected across all donors examined (n = 17). Functional TRPC6 activation induced a rapid, dose-dependent calcium (Ca2+) influx across 0.5-100 µM Hyp9. TRPC6 activation did not reduce metabolic activity or increase cytotoxicity at concentrations commonly used for in vitro TRPC6 activation. Mechanistically, TRPC6 activation induced mitogen-activated protein kinase (MAPK) and nuclear factor kappa B (NF-κB) pathways, as demonstrated by increased phosphorylation of p38 and extracellular signal-regulated kinase (ERK), degradation of the inhibitor of κB-alpha (IκB-α), and increased nuclear translocation of the NF-κB p65 subunit. Downstream of these early signaling events, TRPC6 activation elicited a robust inflammatory and catabolic response with upregulation of IL-6, IL-8, COX-2, MMP-1, MMP-3, NGF, and VEGF, with corresponding increases in protein secretion. These findings identify TRPC6 as an important signaling node linking calcium influx to inflammatory, catabolic, and neuro- and angiogenesis-associated pathways in disc cells, highlighting TRPC6 as a potential therapeutic target in degenerative disc disease.

关键词
Hyp9 MMPs calcium-dependent pathways cytokine regulation degenerative disc disease discogenic back pain ion channel neurovascular ingrowth transient receptor potential channels (TRP channels)
文献信息
期刊
Cells
期刊简称
Cells
ISSN
2073-4409
发表日期
2026-03-17
语言
英语
国家/地区
Switzerland
NLM ID
101600052
分析服务
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