Lackey C A, Murthy N, Press O W, Tirrell D A, Hoffman A S, Stayton P S
Department of Bioengineering, University of Washington, Seattle, WA 98195, USA.
Bioconjug Chem. 1999 May-Jun;10(3):401-5. doi: 10.1021/bc980109k.
Drug delivery systems that increase the rate and/or quantity of drug release to the cytoplasm are needed to enhance cytosolic delivery and to circumvent nonproductive cell trafficking routes. We have previously demonstrated that poly(2-ethylacrylic acid) (PEAAc) has pH-dependent hemolytic properties, and more recently, we have found that poly(2-propylacrylic acid) (PPAAc) displays even greater pH-responsive hemolytic activity than PEAAc at the acidic pHs of the early endosome. Thus, these polymers could potentially serve as endosomal releasing agents in immunotoxin therapies. In this paper, we have investigated whether the pH-dependent membrane disruptive activity of PPAAc is retained after binding to a protein. We did this by measuring the hemolytic activity of PPAAc-streptavidin model complexes with different protein to polymer stoichiometries. Biotin was conjugated to amine-terminated PPAAc, which was subsequently bound to streptavidin by biotin complexation. The ability of these samples to disrupt red blood cell membranes was investigated for a range of polymer concentrations, a range of pH values, and two polymer-to-streptavidin ratios of 3:1 and 1:1. The results demonstrate that (a) the PPAAc-streptavidin complex retains the ability to lyse the RBC lipid bilayers at low pHs, such as those existing in endosomes, and (b) the hemolytic ability of the PPAAc-streptavidin complex is similar to that of the free PPAAc.
需要能够提高药物向细胞质释放速率和/或释放量的药物递送系统,以增强胞质递送并规避非生产性细胞转运途径。我们之前已经证明聚(2-乙基丙烯酸)(PEAAc)具有pH依赖性溶血特性,最近,我们发现聚(2-丙基丙烯酸)(PPAAc)在早期内体的酸性pH值下比PEAAc表现出更强的pH响应溶血活性。因此,这些聚合物有可能在免疫毒素疗法中用作内体释放剂。在本文中,我们研究了PPAAc与蛋白质结合后是否仍保留其pH依赖性膜破坏活性。我们通过测量具有不同蛋白质与聚合物化学计量比的PPAAc-链霉亲和素模型复合物的溶血活性来进行此项研究。将生物素与胺端基化的PPAAc偶联,随后通过生物素络合将其与链霉亲和素结合。针对一系列聚合物浓度、一系列pH值以及3:1和1:1两种聚合物与链霉亲和素比例,研究了这些样品破坏红细胞膜的能力。结果表明:(a)PPAAc-链霉亲和素复合物在低pH值(如内体中的pH值)下仍具有裂解红细胞脂质双层的能力;(b)PPAAc-链霉亲和素复合物的溶血能力与游离PPAAc相似。