Department of Experimental Diagnostic Imaging, Box 59, The University of Texas MD Anderson Cancer Center, 1515 Holcombe Boulevard, Houston, TX 77030, USA.
Biomaterials. 2012 Jul;33(21):5376-83. doi: 10.1016/j.biomaterials.2012.03.081. Epub 2012 Apr 26.
Although polymeric magnetic resonance imaging (MRI) agents have significantly improved relaxivity and prolonged circulation time in vivo compared with current imaging agents, the potential for long-term toxicity prevents their translation into the clinic. The aim of this study was to develop a new biodegradable, nonionic polymeric blood pool MRI contrast agent with efficient clearance from the body. We synthesized PHPG-DTPA, which possesses two potentially degradable sites in vivo: protein amide bonds of the polymer backbone susceptible to enzymatic degradation and hydrolytically labile ester bonds in the side chains. After chelation with Gd(3+), PHPG-DTPA-Gd displayed an R(1) relaxivity of 15.72 mm(-1)⋅sec(-1) (3.7 times higher than that of Magnevist(T)). In vitro, DTPA was completely released from PHPG polymer within 48 h when incubated in mouse plasma. In vivo, PHPG-DTPA-Gd was cleared via renal route as shown by micro-single photon emission computed tomography of mice after intravenous injection of (111)In-labeled PHPG-DTPA-Gd. MRI of nude rats bearing C6 glioblastoma showed significant enhancement of the tumor periphery after intravenous injection of PHPG-DTPA-Gd. Furthermore, mouse brain angiography was clearly delineated up to 2 h after injection of PHPG-DTPA-Gd. PHPG-DTPA-Gd's biodegradability, efficient clearance, and significantly increased relaxivity make it a promising polymeric blood pool MRI contrast agent.
尽管与当前的成像剂相比,聚合磁共振成像(MRI)造影剂在体内显著提高了弛豫率和延长了循环时间,但由于长期毒性的潜在风险,它们无法转化为临床应用。本研究旨在开发一种新的可生物降解的、非离子型的聚合物血池 MRI 造影剂,使其能够有效地从体内清除。我们合成了 PHPG-DTPA,它在体内具有两个潜在的可降解部位:聚合物主链上的蛋白质酰胺键,易受酶降解;侧链上的水解不稳定酯键。与 Gd(3+)螯合后,PHPG-DTPA-Gd 的 R(1)弛豫率为 15.72mm-1·sec-1(比 Magnevist(T)高 3.7 倍)。体外实验中,当 PHPG 聚合物在小鼠血浆中孵育时,DTPA 在 48 小时内完全从聚合物中释放出来。在体内,经静脉注射(111)In 标记的 PHPG-DTPA-Gd 后,通过小动物单光子发射计算机断层扫描显示,PHPG-DTPA-Gd 通过肾脏途径清除。静脉注射 PHPG-DTPA-Gd 后,荷 C6 神经胶质瘤裸鼠的 MRI 显示肿瘤周边显著增强。此外,静脉注射 PHPG-DTPA-Gd 后 2 小时内可清晰显示小鼠脑血管造影。PHPG-DTPA-Gd 的可生物降解性、高效清除率和显著提高的弛豫率使其成为一种有前途的聚合物血池 MRI 造影剂。