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Lavados, Pablo

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Lavados

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  • Publication
    Effects of intensive blood pressure lowering on cerebral ischaemia in thrombolysed patients: insights from the ENCHANTED trial
    (2023) Chen, Chen; Ouyang, Menglu; Ong, Sheila; Zhang, Luyun; Zhang, Guobin; Delcourt, Candice; Mair, Grant; Liu, Leibo; Billot, Laurent; Li, Qiang; Chen, Xiaoying; Parsons, Mark; Broderick, Joseph; Demchuk, Andrew; Bath, Philip; Donnan, Geoffrey; Levi, Christopher; Chalmers, John; Lindley, Richard; Martins, Sheila; Pontes-Neto, Octavio; Munoz Venturelli, Paula; Olavarría, Verónica V.; Lavados, Pablo; Robinson, Thompson; Wardlaw, Joanna; Li, Gang; Wang, Xia; Song, Lili; Anderson, Craig
    Background: Intensive blood pressure lowering may adversely affect evolving cerebral ischaemia. We aimed to determine whether intensive blood pressure lowering altered the size of cerebral infarction in the 2196 patients who participated in the Enhanced Control of Hypertension and Thrombolysis Stroke Study, an international randomised controlled trial of intensive (systolic target 130-140 mm Hg within 1 h; maintained for 72 h) or guideline-recommended (systolic target <180 mm Hg) blood pressure management in patients with hypertension (systolic blood pressure >150 mm Hg) after thrombolysis treatment for acute ischaemic stroke between March 3, 2012 and April 30, 2018. Methods: All available brain imaging were analysed centrally by expert readers. Log-linear regression was used to determine the effects of intensive blood pressure lowering on the size of cerebral infarction, with adjustment for potential confounders. The primary analysis pertained to follow-up computerised tomography (CT) scans done between 24 and 36 h. Sensitivity analysis were undertaken in patients with only a follow-up magnetic resonance imaging (MRI) and either MRI or CT at 24-36 h, and in patients with any brain imaging done at any time during follow-up. This trial is registered with ClinicalTrials.gov, number NCT01422616. Findings: There were 1477 (67.3%) patients (mean age 67.7 [12.1] y; male 60%, Asian 65%) with available follow-up brain imaging for analysis, including 635 patients with a CT done at 24-36 h. Mean achieved systolic blood pressures over 1-24 h were 141 mm Hg and 149 mm Hg in the intensive group and guideline group, respectively. There was no effect of intensive blood pressure lowering on the median size (ml) of cerebral infarction on follow-up CT at 24-36 h (0.3 [IQR 0.0-16.6] in the intensive group and 0.9 [0.0-12.5] in the guideline group; log Δmean -0.17, 95% CI -0.78 to 0.43). The results were consistent in sensitivity and subgroup analyses. Interpretation: Intensive blood pressure lowering treatment to a systolic target <140 mm Hg within several hours after the onset of symptoms may not increase the size of cerebral infarction in patients who receive thrombolysis treatment for acute ischaemic stroke of mild to moderate neurological severity. Funding: National Health and Medical Research Council of Australia; UK Stroke Association; UK Dementia Research Institute; Ministry of Health and the National Council for Scientific and Technological Development of Brazil; Ministry for Health, Welfare, and Family Affairs of South Korea; Takeda.
  • Publication
    Associations of Early Systolic Blood Pressure Control and Outcome After Thrombolysis- Eligible Acute Ischemic Stroke: Results From the ENCHANTED Study
    (2022) Wang, Xia; Minhas, Jatinder S.; Moullaali, Tom J.; Di Tanna, Gian Luca; Lindley, Richard I.; Chen, Xiaoying; Arima, Hisatomi; Chen, Guofang; Delcourt, Candice; Bath, Philip M.; Broderick, Joseph P.; Demchuk, Andrew M.; Donnan, Geoffrey A.; Durham, Alice C.; Lavados, Pablo; Lee, Tsong-Hai; Levi, Christopher; Martins, Sheila O.; Olavarría, Verónica V.; Pandian, Jeyaraj D.; Parsons, Mark W.; Pontes-Neto, Octavio M.; Ricci, Stefano; Sato, Shoichiro; Sharma, Vijay K.; Silva, Federico; Thang, Nguyen H.; Wang, Ji-Guang; Woodward, Mark; Chalmers, John; Song, Lili; Anderson, Craig S.; Robinson, Thompson G.
    BACKGROUND AND PURPOSE: In thrombolysis-eligible patients with acute ischemic stroke, there is uncertainty over the most appropriate systolic blood pressure (SBP) lowering profile that provides an optimal balance of potential benefit (functional recovery) and harm (intracranial hemorrhage). We aimed to determine relationships of SBP parameters and outcomes in thrombolyzed acute ischemic stroke patients. METHODS: Post hoc analyzes of the ENCHANTED (Enhanced Control of Hypertension and Thrombolysis Stroke Study), a partial-factorial trial of thrombolysis-eligible and treated acute ischemic stroke patients with high SBP (150–180 mm Hg) assigned to low-dose (0.6 mg/kg) or standard-dose (0.9 mg/kg) alteplase and intensive (target SBP, 130–140 mm Hg) or guideline-recommended (target SBP <180 mm Hg) treatment. All patients were followed up for functional status and serious adverse events to 90 days. Logistic regression models were used to analyze 3 SBP summary measures postrandomization: attained (mean), variability (SD) in 1–24 hours, and magnitude of reduction in 1 hour. The primary outcome was a favorable shift on the modified Rankin Scale. The key safety outcome was any intracranial hemorrhage. RESULTS: Among 4511 included participants (mean age 67 years, 38% female, 65% Asian) lower attained SBP and smaller SBP variability were associated with favorable shift on the modified Rankin Scale (per 10 mm Hg increase: odds ratio, 0.76 [95% CI, 0.71–0.82]; P<0.001 and 0.86 [95% CI, 0.76–0.98]; P=0.025) respectively, but not for magnitude of SBP reduction (0.98, [0.93– 1.04]; P=0.564). Odds of intracranial hemorrhage was associated with higher attained SBP and greater SBP variability (1.18 [1.06–1.31]; P=0.002 and 1.34 [1.11–1.62]; P=0.002) but not with magnitude of SBP reduction (1.05 [0.98–1.14]; P=0.184). CONCLUSIONS: Attaining early and consistent low levels in SBP <140 mm Hg, even as low as 110 to 120 mm Hg, over 24 hours is associated with better outcomes in thrombolyzed acute ischemic stroke patients.