RIKEN Cluster for Pioneering Research (CPR), Japan; School of Advanced Science and Engineering, Waseda University, Japan.
RIKEN Cluster for Pioneering Research (CPR), Japan; RIKEN Center for Emergent Matter Science (CEMS), Japan.
J Control Release. 2020 Jun 10;322:209-216. doi: 10.1016/j.jconrel.2020.03.022. Epub 2020 Mar 17.
Using polyethylene glycol (PEG) to functionalize liposomes improves their stealth properties and stability in blood. However, PEG is known to induce the accelerated blood clearance (ABC) phenomenon, which occurs for multiple doses owing to anti-PEG IgM being produced after the initial injection. In this study, as an alternative to PEG, polysarcosine (PSar) was selected owing to its low antigenicity and its highly dense chains with controllable lengths, similar to PEG. Furthermore, we directly evaluate the potential of PSar for avoiding the ABC phenomenon by comparing PSar with PEG on the same liposome platform, which has similar physicochemical properties such as hydrophobic region, membrane fluidity, and size. PEG- and PSar-liposomes were prepared and characterized for comparison. PSar-liposomes showed similar physicochemical properties to PEG-liposomes in terms of size control, zeta potential, membrane polarity, and fluidity; however, ELISA results showed noticeably lower levels and faster production speeds of both IgM and IgG for PSar-liposomes than for PEG-liposomes. In addition, a pharmacokinetics experiment with multiple injections showed that PSar-PE coating of liposomes may help to circumvent the ABC phenomenon.
使用聚乙二醇(PEG)对脂质体进行功能化可以提高其在血液中的隐身性和稳定性。然而,PEG 已知会引起加速血液清除(ABC)现象,这是由于在初次注射后产生抗 PEG IgM 而发生的多剂量现象。在这项研究中,作为 PEG 的替代品,选择聚肌氨酸(PSar)是因为它的抗原性低,并且其高度密集的链具有可控的长度,类似于 PEG。此外,我们通过在相同的脂质体平台上将 PSar 与 PEG 进行比较,直接评估 PSar 避免 ABC 现象的潜力,该平台具有相似的物理化学性质,如疏水区、膜流动性和大小。制备了 PEG-和 PSar-脂质体并进行了比较。PSar-脂质体在尺寸控制、Zeta 电位、膜极性和流动性方面与 PEG-脂质体具有相似的物理化学性质;然而,ELISA 结果表明 PSar-脂质体的 IgM 和 IgG 水平明显较低,产生速度也更快。此外,多次注射的药代动力学实验表明,PSar-PE 对脂质体的涂层可能有助于规避 ABC 现象。