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Published on: July 16, 2013
Cellular Mechanisms Underlying Endothelial and Histopathological Alterations Induced by Cerebral Angiography
Zülfikar Özgür Ertuğrul1, Mehmet Cudi Tuncer2, Mehmet Uğur Karabat3
1Department of Radiology, Gazi Yaşargil Training and Research Hospital, University of Health Sciences, Diyarbakır 21090, Turkey.
Insights
Cerebral angiography can harm blood vessels through oxidative stress and inflammation. Understanding these effects is key to improving procedural safety and patient outcomes in cerebrovascular disease treatment.
Area of Science:
- Neuroscience
- Vascular Biology
- Pathology
Background:
- Cerebral angiography is vital for diagnosing and treating cerebrovascular diseases.
- Its impact on vascular integrity and cellular homeostasis requires thorough investigation.
Purpose of the Study:
- To systematically review endothelial and histopathological changes from cerebral angiography.
- To focus on oxidative stress, inflammation, endothelial dysfunction, and blood-brain barrier disruption.
Main Methods:
- Systematic review following PRISMA 2020 guidelines.
- Searched PubMed, Scopus, Web of Science (1981-2025).
- Included 200 studies for qualitative synthesis.
Main Results:
- Cerebral angiography causes endothelial/microvascular damage via mechanical and contrast-mediated effects.
- Contrast agents increase reactive oxygen species, impair nitric oxide, and activate inflammation (NF-κB).
- Histopathology shows endothelial injury, apoptosis, microthrombi, and blood-brain barrier impairment, exacerbated by comorbidities.
Conclusions:
- Cerebral angiography induces endothelial dysfunction and vascular injury mainly via oxidative and inflammatory pathways.
- Optimizing contrast agents, techniques, and using protective strategies can mitigate harm.
- Further research needed for biomarkers and interventions against angiography-induced endothelial damage.
Abstract:
Background/Objectives: Cerebral angiography is a cornerstone diagnostic and therapeutic procedure for cerebrovascular diseases; however, its potential effects on vascular integrity and cellular homeostasis remain incompletely elucidated. This systematic review aims to comprehensively evaluate endothelial and histopathological alterations induced by cerebral angiographic procedures, with particular emphasis on oxidative stress, inflammation, endothelial dysfunction, and blood-brain barrier disruption. Methods: This systematic review was conducted in accordance with the PRISMA 2020 guidelines. PubMed, Scopus, and Web of Science databases were systematically searched for studies published between 1981 and 2025 using predefined keywords related to cerebral angiography, endothelial injury, oxidative stress, inflammation, and histopathological changes. A total of 1142 records were identified, and 216 duplicates were removed. Following title and abstract screening, 312 full-text articles were assessed for eligibility, of which 112 were excluded due to irrelevance or insufficient endothelial or histopathological data. Ultimately, 200 studies were included in the qualitative synthesis. The literature identification, screening, and selection process are summarized in the manuscript. The review protocol was not prospectively registered. Results: The included studies demonstrated that cerebral angiographic procedures induce endothelial and microvascular alterations through both mechanical and contrast-mediated mechanisms. Iodinated contrast agents were consistently associated with increased reactive oxygen species production, reduced endothelial nitric oxide bioavailability, mitochondrial dysfunction, and activation of pro-inflammatory signaling pathways, including nuclear factor kappa B (NF-κB). Histopathological findings revealed endothelial swelling, vacuolization, apoptosis, microthrombus formation, inflammatory cell infiltration, and disruption of endothelial junctions, leading to increased vascular permeability and blood-brain barrier impairment. Mechanical factors related to catheter manipulation and high-pressure contrast injection further exacerbated endothelial injury by altering shear stress and promoting leukocyte adhesion. The severity of endothelial damage and inflammatory responses was consistently greater in patients with comorbid conditions such as diabetes mellitus, hypertension, and atherosclerotic disease. Conclusions: Cerebral angiography may induce endothelial dysfunction and histopathological vascular injury predominantly through oxidative and inflammatory mechanisms. Optimization of contrast agent selection, refinement of procedural techniques, and implementation of endothelial-protective strategies may mitigate vascular injury and improve procedural safety. Further translational and clinical studies are warranted to identify biomarkers and protective interventions targeting angiography-induced endothelial damage.
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