Drapala Pawel W, Jiang Bin, Chiu Yu-Chieh, Mieler William F, Brey Eric M, Kang-Mieler Jennifer J, Pérez-Luna Victor H
Pharm Res. 2014 Mar;31(3):742-53. doi: 10.1007/s11095-013-1195-0.
To control degradation and protein release using thermo-responsive hydrogels for localized delivery of anti-angiogenic proteins.
Thermo-responsive hydrogels derived from N-isopropylacrylamide (NIPAAm) and crosslinked with poly(ethylene glycol)-co-(L-lactic acid) diacrylate (Acry-PLLA-b-PEG-b-PLLA-Acry) were synthesized via free radical polymerization in the presence of glutathione, a chain transfer agent (CTA) added to modulate their degradation and release properties. Immunoglobulin G (IgG) and the recombinant proteins Avastin® and Lucentis® were encapsulated in these hydrogels and their release was studied.
The encapsulation efficiency of IgG was high (75-87%) and decreased with CTA concentration. The transition temperature of these hydrogels was below physiological temperature, which is important for minimally invasive therapies involving these materials. The toxicity from unreacted monomers and free radical initiators was eliminated with a minimum of three buffer extractions. Addition of CTA accelerated degradation and resulted in complete protein release. Glutathione caused the degradation products to become solubilized even at 37°C. Hydrogels prepared without glutathione did not disintegrate nor released protein completely after 3 weeks at 37°C. PEGylation of IgG postponed the burst release effect. Avastin® and Lucentis® released from degraded hydrogels retained their biological activity.
These systems offer a promising platform for the localized delivery of proteins.
使用热响应水凝胶控制降解和蛋白质释放,以实现抗血管生成蛋白的局部递送。
以N - 异丙基丙烯酰胺(NIPAAm)为原料,与聚(乙二醇)- 共 -(L - 乳酸)二丙烯酸酯(Acry - PLLA - b - PEG - b - PLLA - Acry)交联合成热响应水凝胶,通过自由基聚合反应,并在谷胱甘肽(一种添加的链转移剂(CTA))存在下进行,以调节其降解和释放特性。将免疫球蛋白G(IgG)以及重组蛋白阿瓦斯汀(Avastin®)和雷珠单抗(Lucentis®)封装在这些水凝胶中,并研究它们的释放情况。
IgG的包封效率较高(75 - 87%),且随CTA浓度降低。这些水凝胶的转变温度低于生理温度,这对于涉及这些材料的微创治疗很重要。通过至少三次缓冲液萃取消除了未反应单体和自由基引发剂的毒性。添加CTA加速了降解并导致蛋白质完全释放。即使在37°C时,谷胱甘肽也使降解产物溶解。在37°C下放置3周后,未添加谷胱甘肽制备的水凝胶既不崩解也未完全释放蛋白质。IgG的聚乙二醇化延缓了突释效应。从降解水凝胶中释放的阿瓦斯汀(Avastin®)和雷珠单抗(Lucentis®)保留了它们的生物活性。
这些系统为蛋白质的局部递送提供了一个有前景的平台。