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'Smart' drug delivery systems: double-targeted pH-responsive pharmaceutical nanocarriers

机译:“智能”药物输送系统:双靶pH响应药物纳米载体

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摘要

To develop targeted pharmaceutical carriers additionally capable of responding to certain local stimuli, such as decreased pH values in tumors or infarcts, targeted long-circulating PEGylated liposomes and PEG-phosphatidylethanolamine (PEG-PE)-based micelles have been prepared with several functions. First, they are capable of targeting a specific cell or organ by attaching the monoclonal antimyosin antibody 2G4 to their surface via pNP-PEG-PE moieties. Second, these liposomes and micelles were additionally modified with biotin or TAT peptide (TATp) moieties attached to the surface of the nanocarrier by using biotin-PE or TATp-PE or TATp-short PEG-PE derivatives. PEG-PE used for liposome surface modification or for micelle preparation was made degradable by inserting the pH-sensitive hydrazone bond between PEG and PE (PEG-Hz-PE). Under normal pH values, biotin and TATp functions on the surface of nanocarriers were "shielded" by long protecting PEG chains (pH-degradable PEG(2000)-PE or PEG(5000)-PE) or by even longer pNP-PEG-PE moieties used to attach antibodies to the nanocarrier (non-pH-degradable PEG(3400)-PE or PEG(5000)-PE). At pH 7.4-8.0, both liposomes and micelles demonstrated high specific binding with 2G4 antibody substrate, myosin, but very limited binding on an avidin column (biotin-containing nanocarriers) or internalization by NIH/3T3 or U-87 cells (TATp-containing nanocarriers). However, upon brief incubation (15-30 min) at lower pH values (pH 5.0-6.0), nanocarriers lost their protective PEG shell because of acidic hydrolysis of PEG-Hz-PE and acquired the ability to become strongly retained on an avidin column (biotin-containing nanocarriers) or effectively internalized by cells via TATp moieties (TATp-containing nanocarriers). We consider this result as the first step in the development of multifunctional stimuli-sensitive pharmaceutical nanocarriers.
机译:为了开发另外的能够对某些局部刺激例如肿瘤或梗塞中的pH值降低做出反应的靶向药物载体,已经制备了具有多种功能的靶向长循环PEG化脂质体和基于PEG-磷脂酰乙醇胺(PEG-PE)的胶束。首先,它们能够通过将单克隆抗肌球蛋白抗体2G4通过pNP-PEG-PE部分附着在其表面上,从而靶向特定的细胞或器官。其次,通过使用生物素-PE或TATp-PE或TATp-short PEG-PE衍生物,还用附着在纳米载体表面的生物素或TAT肽(TATp)部分对这些脂质体和胶束进行了修饰。通过在PEG和PE(PEG-Hz-PE)之间插入pH敏感的PE键,可降解用于脂质体表面修饰或制备胶束的PEG-PE。在正常pH值下,纳米载体表面上的生物素和TATp功能通过长期保护PEG链(pH可降解的PEG(2000)-PE或PEG(5000)-PE)或更长的pNP-PEG-PE被“屏蔽”用于将抗体连接至纳米载体的部分(不可pH降解的PEG(3400)-PE或PEG(5000)-PE)。在pH 7.4-8.0时,脂质体和胶束都表现出与2G4抗体底物,肌球蛋白的高特异性结合,但在抗生物素蛋白柱(含生物素的纳米载体)上的结合非常有限,或者被NIH / 3T3或U-87细胞(含TATp)内化纳米载体)。但是,在较低的pH值(pH 5.0-6.0)下短暂孵育(15-30分钟)后,由于PEG-Hz-PE的酸性水解,纳米载体失去了其保护性PEG外壳,并获得了牢固保留在亲和素柱上的能力(含生物素的纳米载体)或被细胞通过TATp部分有效地内在化(含TATp的纳米载体)。我们认为该结果是开发多功能刺激敏感药物纳米载体的第一步。

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