Drexel University School of Biomedical Engineering, Science & Health Systems, 3141 Chestnut Street, Philadelphia, PA 19104, USA.
Thomas Jefferson University, Department of Radiology, 132 South 10th Street, Philadelphia, PA 19107, USA.
Biomaterials. 2016 Oct;103:197-206. doi: 10.1016/j.biomaterials.2016.06.036. Epub 2016 Jun 21.
Contrast agents are currently being modified to combine diagnostic and therapeutic capabilities. For ultrasound (US) imaging with polymeric contrast agents, it is necessary to modify the shell to create "stealth" microbubbles but without these modifications sacrificing the agent's ability to interact with the focused US beam. We hypothesize that addition of the classic immune shielding molecule polyethylene glycol (PEG) to a polylactide (PLA) microbubble shell will affect the acoustic and physical properties of the resulting agents. In an effort to determine the best formulation to achieve a balance between stealth and acoustic activity, we compared two PEGylation techniques; addition of increasing amounts of PEG-PLA copolymer and employing incorporation of a PEG lipid (LipidPEG) into the shell. Loss of acoustic enhancement occurred in a dose-dependent manner for both types of PEGylated agents (loss of signal occurred at >5 wt% PEG-PLA and >1 wt% LipidPEG), while immune activation was also reduced in a dose-dependent manner for the PEG-PLA agents. This study shows that the balance between acoustic behavior and improved immune avoidance was scalable and successful to different degrees with both PEGylation methods, and was best achieved using for PEG-PLA at 5 wt% and for LipidPEG at 1 wt%. Studies are ongoing to evaluate the best method for the targeting and drug delivery capabilities of these agents for applications in cancer treatment. This study represents the basis for understanding the consequences of making modifications to the native polymeric shell.
造影剂目前正在被修改为结合诊断和治疗能力。对于超声(US)成像与聚合物造影剂,有必要修改外壳,以创建“隐形”微泡,但这些修改不会牺牲该试剂与聚焦 US 束相互作用的能力。我们假设,将经典免疫屏蔽分子聚乙二醇(PEG)添加到聚乳酸(PLA)微泡壳中,将影响所得试剂的声学和物理性质。为了确定实现隐身和声学活性之间平衡的最佳配方,我们比较了两种 PEG 化技术;增加 PEG-PLA 共聚物的用量和采用将 PEG 脂质(LipidPEG)掺入壳中的方法。对于这两种类型的 PEG 化试剂,声增强的损失均呈剂量依赖性(在> 5wt%PEG-PLA 和> 1wt%LipidPEG 时信号丢失),而 PEG-PLA 试剂的免疫激活也呈剂量依赖性降低。这项研究表明,声学行为和改善免疫逃避之间的平衡在不同程度上是可扩展的,并且两种 PEG 化方法都取得了不同程度的成功,对于 PEG-PLA 最佳为 5wt%,对于 LipidPEG 最佳为 1wt%。目前正在进行研究,以评估这些试剂在癌症治疗中的靶向和药物输送能力的最佳方法。这项研究代表了理解对天然聚合物壳进行修饰的后果的基础。