Department of Anesthesiology, The Third Affiliated Hospital of Sun Yat-sen University, Guangzhou, 510630, P. R. China.
Department of Medical Ultrasonic, Laboratory of Novel Optoacoustic (Ultrasonic) imaging, The Third Affiliated Hospital of Sun Yat-sen University, Guangzhou, 510630, P. R. China.
Adv Healthc Mater. 2021 Dec;10(23):e2101628. doi: 10.1002/adhm.202101628. Epub 2021 Sep 12.
The morbidity and mortality of sepsis-induced acute kidney injury (SAKI) remain high. Early detection using molecular ultrasound imaging may reduce mortality and improve the prognosis. Inspired by the intrinsic relationship between platelets and SAKI, platelet membrane-coated hybrid microbubbles (Pla-MBs) are designed for early recognition of SAKI. Pla-MBs are prepared by ultrasound-assisted recombination of liposomes and platelets, consisting of inherent platelet membrane isolated from platelets. By coating with platelet membranes, Pla-MBs are endowed with various adhesive receptors (such as integrin αIIbβ3), providing a benefit for selective adhesion to damaged endothelium in SAKI. In a rat SAKI model, by combining the advantages of molecular ultrasound imaging and platelet membrane, Pla-MBs display platelet-mimicking properties and achieve the early targeted diagnosis of SAKI prior to the regular laboratory markers of kidney function. Moreover, the expression of platelet-binding proteins (von Willebrand factor and fibrinogen) in the kidneys shows consistent results with molecular ultrasound imaging. Together, microbubble functionalization with platelet membranes is diagnostically beneficial for SAKI and might be a promising modality for endothelial injury diseases in the future.
脓毒症引起的急性肾损伤(SAKI)的发病率和死亡率仍然很高。使用分子超声成像进行早期检测可能会降低死亡率并改善预后。受血小板与 SAKI 之间固有关系的启发,设计了血小板膜包覆的杂交微泡(Pla-MB)用于早期识别 SAKI。Pla-MB 通过脂质体和血小板的超声辅助重组制备而成,由血小板中分离出来的固有血小板膜组成。通过包覆血小板膜,Pla-MB 具有各种黏附受体(如整合素 αIIbβ3),有利于选择性黏附到 SAKI 中受损的内皮细胞。在大鼠 SAKI 模型中,Pla-MB 结合了分子超声成像和血小板膜的优势,表现出类似血小板的特性,并在肾功能的常规实验室标志物之前实现了 SAKI 的早期靶向诊断。此外,肾脏中血小板结合蛋白(血管性血友病因子和纤维蛋白原)的表达与分子超声成像结果一致。总之,血小板膜功能化的微泡对 SAKI 具有诊断益处,可能成为未来内皮损伤疾病的有前途的治疗方法。