Otorhinolaryngology Unit, Department of Surgical Sciences, Fondazione IRCCS Policlinico San Matteo, 27100 Pavia, Italy.
Department of Drug Sciences, University of Pavia, Vle Taramelli 12, 27100 Pavia, Italy.
Int J Mol Sci. 2022 Jul 20;23(14):7999. doi: 10.3390/ijms23147999.
This work focuses on formulating liposomes to be used in isolated kidney dynamic machine perfusion in hypothermic conditions as drug delivery systems to improve preservation of transplantable organs. The need mainly arises from use of kidneys from marginal donors for transplantation that are more exposed to ischemic/reperfusion injury compared to those from standard donors. Two liposome preparation techniques, thin film hydration and microfluidic techniques, are explored for formulating liposomes loaded with two model proteins, myoglobin and bovine serum albumin. The protein-loaded liposomes are characterized for their size by DLS and morphology by TEM. Protein releases from the liposomes are tested in PERF-GEN perfusion fluid, 4 °C, and compared to the in vitro protein release in PBS, 37 °C. Fluorescent liposome uptake is analyzed by fluorescent microscope in vitro on epithelial tubular renal cell cultures and ex vivo on isolated pig kidney in hypothermic perfusion conditions. The results show that microfluidics are a superior technique for obtaining reproducible spherical liposomes with suitable size below 200 nm. Protein encapsulation efficiency is affected by its molecular weight and isoelectric point. Lowering incubation temperature slows down the proteins release; the perfusion fluid significantly affects the release of proteins sensitive to ionic media (such as BSA). Liposomes are taken up by epithelial tubular renal cells in two hours' incubation time.
这项工作专注于将脂质体配方用于低温条件下的离体肾脏动态机器灌注中,作为药物传递系统,以改善可移植器官的保存。这种需求主要源于使用边缘供体的肾脏进行移植,与标准供体相比,这些肾脏更容易受到缺血/再灌注损伤。探索了两种脂质体制备技术,薄膜水化法和微流控技术,用于制备负载两种模型蛋白(肌红蛋白和牛血清白蛋白)的脂质体。通过 DLS 对载蛋白脂质体的粒径进行了表征,通过 TEM 对其形态进行了表征。在 PERF-GEN 灌注液中,4°C 下测试了脂质体中蛋白质的释放情况,并与在 37°C 的 PBS 中的体外蛋白质释放进行了比较。通过荧光显微镜在体外对肾小管上皮细胞培养物进行了荧光脂质体摄取分析,并在离体低温灌注条件下对猪肾进行了离体分析。结果表明,微流控技术是一种获得具有合适尺寸(低于 200nm)的重现性球形脂质体的优越技术。蛋白质包封效率受其分子量和等电点的影响。降低孵育温度会减缓蛋白质的释放;灌注液会显著影响对离子介质敏感的蛋白质(如 BSA)的释放。脂质体在两小时的孵育时间内被肾小管上皮细胞摄取。