Bader Kenneth B, Bouchoux Guillaume, Peng Tao, Klegerman Melvin E, McPherson David D, Holland Christy K
Division of Cardiovascular Health and Disease, Department of Internal Medicine, College of Medicine, Cardiovascular Center 3933, University of Cincinnati, Cincinnati, OH, USA,
J Thromb Thrombolysis. 2015 Aug;40(2):144-55. doi: 10.1007/s11239-015-1204-8.
Echogenic liposomes (ELIP), that can encapsulate both recombinant tissue-type plasminogen activator (rt-PA) and microbubbles, are under development to improve the treatment of thrombo-occlusive disease. However, the enzymatic activity, thrombolytic efficacy, and stable cavitation activity generated by this agent has yet to be evaluated and compared to another established ultrasound-enhanced thrombolytic scheme. A spectrophotometric method was used to compare the enzymatic activity of the rt-PA incorporated into ELIP (t-ELIP) to that of rt-PA. An in vitro flow model was employed to measure the thrombolytic efficacy and dose of ultraharmonic emissions from stable cavitation for 120-kHz ultrasound exposure of three treatment schemes: rt-PA, rt-PA and the perfluorocarbon-filled microbubble Definity(®), and t-ELIP. The enzymatic activity of rt-PA incorporated into t-ELIP was 28 % that of rt-PA. Thrombolytic efficacy of t-ELIP or rt-PA and Definity(®) was equivalent when the dose of t-ELIP was adjusted to produce comparable enzymatic activity. Sustained bubble activity was nucleated from Definity but not from t-ELIP exposed to 120-kHz ultrasound. These results emphasize the advantages of encapsulating a thrombolytic and the importance of incorporating an insoluble gas required to promote sustained, stable cavitation activity.
可同时包裹重组组织型纤溶酶原激活剂(rt-PA)和微泡的回声脂质体(ELIP)正在研发中,以改善血栓闭塞性疾病的治疗。然而,该制剂产生的酶活性、溶栓效果和稳定空化活性尚未得到评估,也未与另一种既定的超声增强溶栓方案进行比较。采用分光光度法比较了包裹于ELIP(t-ELIP)中的rt-PA与rt-PA本身的酶活性。利用体外流动模型测量了三种治疗方案(rt-PA、rt-PA与全氟碳填充微泡Definity®联合使用、t-ELIP)在120kHz超声照射下的溶栓效果以及稳定空化超谐波发射的剂量。包裹于t-ELIP中的rt-PA的酶活性为rt-PA本身的28%。当调整t-ELIP的剂量以产生相当的酶活性时,t-ELIP或rt-PA与Definity®的溶栓效果相当。Definity能产生持续的气泡活性,而暴露于120kHz超声的t-ELIP则不能。这些结果强调了包裹溶栓剂的优势以及加入促进持续稳定空化活性所需的不溶性气体的重要性。