Favorable Cerebral Collateral Cascades Improve Futile Recanalization by Reducing Ischemic Core Volume in Acute
Liping Huang1, Shuyu Jiang1, Chen Gong1
1Department of Neurology, The Second Affiliated Hospital of Chongqing Medical University, Chongqing, 400016, China.
Insights
Favorable cerebral collateral circulation (CCC) improves outcomes in acute ischemic stroke (AIS) patients undergoing endovascular treatment (EVT). Better CCC reduces the ischemic core, mitigating futile recanalization after successful EVT.
Area of Science:
- Neurology
- Vascular Biology
- Medical Imaging
Background:
- Endovascular treatment (EVT) is a primary therapy for acute ischemic stroke (AIS), but many patients do not achieve functional independence.
- Cerebral collateral circulation's role in EVT outcomes is complex, involving arterial, venous, and microcirculatory components.
Purpose of the Study:
- To investigate the relationship between the integrated cerebral collateral cascade (CCC) system and futile recanalization in AIS patients.
- To explore the mechanisms linking CCC to clinical outcomes after EVT.
Main Methods:
- A multicenter retrospective study of 513 AIS patients who underwent successful EVT.
- Comprehensive assessment of collateral circulation using a CCC model (arterial collaterals, venous outflow, tissue-level collaterals).
- Analysis of imaging outcomes (ischemic core, hypoperfusion, penumbra) and clinical outcome (futile recanalization, defined by 90-day mRS).
Main Results:
- 50.6% of patients experienced futile recanalization despite successful EVT.
- Favorable CCC was independently associated with better outcomes (aOR 0.48; P=0.001).
- Mediation analysis indicated that favorable CCC reduced the ischemic core volume, mediating 27.62% of its effect on preventing futile recanalization.
Conclusions:
- Favorable cerebral collateral circulation is a significant predictor of functional independence in AIS patients treated with EVT.
- Reducing ischemic core volume is a key mechanism through which CCC improves outcomes.
- These findings enhance understanding of futile recanalization and the importance of microcirculation in stroke recovery.
Abstract:
Although endovascular treatment (EVT) was the first-line therapeutic strategy for acute ischemic stroke (AIS), half of the patients could not achieve functional independence. Previous studies suggested arterial collateral was an important predictor of this phenomenon. However, cerebral collateral circulation was regulated by arteries, venous, and microcirculation, and its role remained unclear. Therefore, based on the integrated cerebral collateral cascade (CCC) system, this study aimed to explore the relationship and potential mechanisms between CCC and futile recanalization. This was a multicenter retrospective study for AIS patients receiving EVT. The CCC model was used to comprehensively assess the collateral circulation, which consisted of arterial collaterals, venous outflow, and tissue-level collaterals. Imaging outcomes included ischemic core, hypoperfusion volume, and penumbra volume. The clinical outcome was futile recanalization, defined as a 90-day modified Rankin Scale (mRS) 3-6 after successful recanalization. Multivariate regression and mediation analyses were used to assess the relationship between CCC, futile recanalization, and potential mediators. Among 513 patients with successful recanalization, 50.6% (260) experienced futile recanalization. In the multivariable regression analysis, favorable CCC (aOR 0.48, 95% CI 0.31-0.75; P = 0.001) was independently associated with unfavorable outcome despite successful recanalization. Furthermore, mediation analysis revealed that favorable CCC significantly reduced the ischemic core accounting for 27.62% (95% CI 9.69-66.00%) of its beneficial effect on futile recanalization. The benefit of favorable CCC on futile recanalization may be mediated by a reduction in ischemic core volume in AIS patients undergoing EVT. Our findings deepen the understanding of futile recanalization and microcirculation.
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