PURPOSE: Plasma membranes constitute a gathering point for lipids and signaling proteins. Lipids are known to regulate the location and activity of signaling proteins under physiological and pathophysiological conditions. Membrane lipid therapies (MLTs) that gradually modify lipid content of plasma membranes have been developed to treat chronic disease; however, no MLTs have been developed to treat acute conditions such as reperfusion injury following myocardial infarction (MI) and percutaneous coronary intervention (PCI). A fusogenic nanoliposome (FNL) that rapidly incorporates exogenous unsaturated lipids into endothelial cell (EC) membranes was developed to attenuate reperfusion-induced protein signaling. We hypothesized that administration of intracoronary (IC) FNL-MLT interferes with EC membrane protein signaling, leading to reduced microvascular dysfunction and infarct size (IS). METHODS: Using a myocardial ischemia/reperfusion swine model, the efficacy of FNL-MLT in reducing IS following a 60-min coronary artery occlusion was tested. Animals were randomized to receive IC Ringer's lactate solution with or without 10 mg/mL/min of FNLs for 10 min prior to reperfusion (nâ=â6 per group). RESULTS: The IC FNL-MLT reduced IS (25.45â±â16.4% vs. 49.7â±â14.1%, Pâ<â0.02) and enhanced regional myocardial blood flow (RMBF) in the ischemic zone at 15 min of reperfusion (2.13â±â1.48 mL/min/g vs. 0.70â±â0.43 mL/min/g, Pâ<â0.001). The total cumulative plasma levels of the cardiac injury biomarker cardiac troponin I (cTnI) were trending downward but were not significant (999.3â±â38.7 ng/mL vs. 1456.5â±â64.8 ng/mL, Pâ=â0.1867). However, plasma levels of heart-specific fatty acid binding protein (hFABP), another injury biomarker, were reduced at 2 h of reperfusion (70.3 ± 38.0 ng/mL vs. 137.3 ± 58.2 ng/mL, P = 0.0115). CONCLUSION: The IC FNL-MLT reduced IS compared to vehicle in this swine model. The FNL-MLT maybe a promising adjuvant to PCI in the treatment of acute MI.
Rapid Lipid Modification of Endothelial Cell Membranes in Cardiac Ischemia/Reperfusion Injury: a Novel Therapeutic Strategy to Reduce Infarct Size.
心肌缺血/再灌注损伤中内皮细胞膜的快速脂质修饰:一种减少梗死面积的新型治疗策略
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作者:Maldonado Claudio, Nguyen Mai-Dung, Bauer Phillip, Nakamura Shunichi, Khundmiri Syed J, Perez-Abadia Gustavo, Stowers Heather L, Wu Wen-Jian, Tang Xian-Liang
| 期刊: | Cardiovascular Drugs and Therapy | 影响因子: | 3.100 |
| 时间: | 2021 | 起止号: | 2021 Feb;35(1):113-123 |
| doi: | 10.1007/s10557-020-07101-x | 研究方向: | 细胞生物学 |
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