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Updated: Feb 27, 2026

A Human Ex Vivo Atherosclerotic Plaque Model to Study Lesion Biology
Published on: May 6, 2014
P2X7 receptor antagonism modulates IL-1β and MMP9 in human atherosclerotic vessels
Maria Lombardi1, Maria Elena Mantione1, Domenico Baccellieri2
1Cardiovascular Research Area, IRCCS San Raffaele Scientific Institute, Milano, Italy.
Abstract:
In atherosclerosis, matrix metallopeptidases (MMPs) contribute to plaque rupture through weakening of the fibrous cap. Pleiotropic P2X purinoceptor 7 (P2X7), expressed in the carotid plaque (PL), is involved in interleukin 1 beta (IL-1β) release that may influence MMP9 generation, thus their possible modulation through acting on P2X7 was investigated. P2X7-related machinery was characterized and the effects of P2X7 antagonists (A740003, KN62) and MMPs inhibitors (Batimastat, Ro28-2653) were studied in ex-vivo tissue cultures of human PL's vs. non-atherosclerotic internal mammary artery (IMA) by using molecular biology, immune-biochemical and microscopy methodologies. We highlighted atherosclerosis-related differences between PLs and IMAs molecular patterns, and their responsivity to P2X7 antagonism. High IL-1β tissue content was associated with PLs morphology and instability/vulnerability. We demonstrated that A740003, but not KN62, decreased IL-1β and MMP9 independently from NLR family pyrin domain containing 3, but in relationship with patient's smoking status. Acting downstream P2X7 by MMPs inhibitors, diminished IL-1β mRNA without transcriptional effect at MMP9, possibly because the assumption of statin by patients. These data firstly demonstrated A740003 suitability as a specific tool to decrease inflammatory status in human vessels and might support the design of studies applying P2X7 antagonists for the local targeting and tailored therapy of atherosclerosis.
Insights
P2X7 receptor antagonists, like A740003, show promise in reducing inflammation and matrix metallopeptidase 9 (MMP9) in atherosclerotic plaques. This suggests potential for targeted therapies against atherosclerosis.
Area of Science:
- Cardiovascular Biology
- Molecular Medicine
- Immunology
Background:
- Matrix metallopeptidases (MMPs) weaken atherosclerotic plaque fibrous caps, increasing rupture risk.
- The P2X purinoceptor 7 (P2X7) is present in carotid plaques and linked to interleukin 1 beta (IL-1β) release, potentially influencing MMP9 generation.
Purpose of the Study:
- To investigate the modulation of P2X7 and its downstream effects on MMP9 in atherosclerosis.
- To characterize P2X7-related pathways and assess the impact of P2X7 antagonists and MMP inhibitors on human atherosclerotic plaques.
Main Methods:
- Ex-vivo tissue cultures of human carotid plaques (PL) and internal mammary arteries (IMA).
- Utilized molecular biology, immune-biochemical assays, and microscopy.
- Tested P2X7 antagonists (A740003, KN62) and MMP inhibitors (Batimastat, Ro28-2653).
Main Results:
- Atherosclerosis-related molecular differences were observed between PLs and IMAs.
- High IL-1β tissue content correlated with plaque morphology and instability.
- A740003 significantly reduced IL-1β and MMP9, independent of NLRP3, but influenced by smoking status.
- MMP inhibitors decreased IL-1β mRNA but not MMP9 mRNA, potentially due to statin use.
Conclusions:
- A740003 is a specific tool for reducing inflammation in human vessels.
- These findings support the development of P2X7 antagonists for targeted atherosclerosis therapy.
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