Unger Evan C, Porter Thomas, Culp William, Labell Rachel, Matsunaga Terry, Zutshi Reena
ImaRx Therapeutics, Inc., Tuscon, Arizona, USA.
Adv Drug Deliv Rev. 2004 May 7;56(9):1291-314. doi: 10.1016/j.addr.2003.12.006.
Lipid-coated microbubbles represent a new class of agents with both diagnostic and therapeutic applications. Microbubbles have low density. Stabilization of microbubbles by lipid coatings creates low-density particles with unusual properties for diagnostic imaging and drug delivery. Perfluorocarbon (PFC) gases entrapped within lipid coatings make microbubbles that are sufficiently stable for circulation in the vasculature as blood pool agents. Microbubbles can be cavitated with ultrasound energy for site-specific local delivery of bioactive materials and for treatment of vascular thrombosis. The blood-brain barrier (BBB) can be reversibly opened without damaging the neurons using ultrasound applied across the intact skull to cavitate microbubbles within the cerebral microvasculature for delivery of both low and high molecular weight therapeutic compounds to the brain. The first lipid-coated PFC microbubble product is currently marketed for diagnostic ultrasound imaging. Clinical trials are currently in process for treatment of vascular thrombosis with ultrasound and lipid-coated PFC microbubbles (SonoLysis Therapy). Targeted microbubbles and acoustically active PFC nanoemulsions with specific ligands can be developed for detecting disease at the molecular level and targeted drug and gene delivery. Bioactive compounds can be incorporated into these carriers for site-specific delivery. Our aim is to cover the therapeutic applications of lipid-coated microbubbles and PFC emulsions in this review.
脂质包被的微泡代表了一类具有诊断和治疗应用的新型制剂。微泡密度低。通过脂质包被来稳定微泡可产生具有用于诊断成像和药物递送的特殊性质的低密度颗粒。包埋在脂质包被内的全氟化碳(PFC)气体使微泡作为血池造影剂在脉管系统中循环时具有足够的稳定性。微泡可用超声能量空化,用于生物活性材料的定点局部递送以及血管血栓的治疗。使用经完整颅骨施加的超声使脑微血管内的微泡空化,可在不损伤神经元的情况下可逆地打开血脑屏障(BBB),从而将低分子量和高分子量治疗性化合物递送至脑内。首款脂质包被的PFC微泡产品目前已上市用于诊断超声成像。目前正在进行用超声和脂质包被的PFC微泡治疗血管血栓形成的临床试验(声裂解疗法)。可开发带有特定配体的靶向微泡和具有声学活性的PFC纳米乳剂,用于在分子水平检测疾病以及靶向药物和基因递送。生物活性化合物可掺入这些载体中用于定点递送。我们的目的是在本综述中涵盖脂质包被的微泡和PFC乳剂的治疗应用。