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载脂蛋白 B 脂质体的合成用于递送疏水性/两亲性物质。

Synthesis of apolipoprotein B lipoparticles to deliver hydrophobic/amphiphilic materials.

机构信息

Department of Biological Science and Technology, National Chiao Tung University, Hsinchu 30050, Taiwan.

出版信息

ACS Appl Mater Interfaces. 2013 Aug 14;5(15):7509-16. doi: 10.1021/am401808e. Epub 2013 Jul 19.

Abstract

To develop a drug delivery system (DDS), it is critical to address challenging tasks such as the delivery of hydrophobic and amphiphilic compounds, cell uptake, and the metabolic fate of the drug delivery carrier. Low-density lipoprotein (LDL) has been acknowledged as the human serum transporter of natively abundant lipoparticles such as cholesterol, triacylglycerides, and lipids. Apolipoprotein B (apo B) is the only protein contained in LDL, and possesses a binding moiety for the LDL receptor that can be internalized and degraded naturally by the cell. Therefore, synthetic/reconstituting apoB lipoparticle (rABL) could be an excellent delivery carrier for hydrophobic or amphiphilic materials. Here, we synthesized rABL in vitro, using full-length apoB through a five-step solvent exchange method, and addressed its potential as a DDS. Our rABL exhibited good biocompatibility when evaluated with cytotoxicity and cell metabolic response assays, and was stable during storage in phosphate-buffered saline at 4 °C for several months. Furthermore, hydrophobic superparamagnetic iron oxide nanoparticles (SPIONPs) and the anticancer drug M4N (tetra-O-methyl nordihydroguaiaretic acid), used as an imaging enhancer and lipophilic drug model, respectively, were incorporated into the rABL, leading to the formation of SPIONPs- and M4N- containing rABL (SPIO@rABL and M4N@rABL, respectively). Fourier transform infrared spectroscopy suggested that rABL has a similar composition to that of LDL, and successfully incorporated SPIONPs or M4N. SPIO@rABL presented significant hepatic contrast enhancement in T2-weighted magnetic resonance imaging in BALB/c mice, suggesting its potential application as a medical imaging contrast agent. M4N@rABL could reduce the viability of the cancer cell line A549. Interestingly, we developed solution-phase high-resolution transmission electron microscopy to observe both LDL and SPIO@rABL in the liquid state. In summary, our LDL-based DDS, rABL, has significant potential as a novel DDS for hydrophobic and amphiphilic materials, with good cell internalization properties and metabolicity.

摘要

为了开发药物传递系统(DDS),解决递药过程中面临的挑战是至关重要的,如疏水性和两亲性化合物的传递、细胞摄取以及药物传递载体的代谢命运等。低密度脂蛋白(LDL)已被确认为天然富含的脂蛋白(如胆固醇、三酰甘油和脂质)在人体血清中的转运蛋白。载脂蛋白 B(apoB)是 LDL 中唯一的蛋白质,具有 LDL 受体的结合部分,可以被细胞自然内化和降解。因此,合成/重组 apoB 脂蛋白(rABL)可以作为疏水性或两亲性材料的优秀递药载体。在这里,我们通过五步溶剂交换法,使用全长 apoB 体外合成 rABL,并探讨了其作为 DDS 的潜力。我们的 rABL 在细胞毒性和细胞代谢反应测定中表现出良好的生物相容性,并且在 4°C 的磷酸盐缓冲盐水中储存数月时仍保持稳定。此外,疏水性超顺磁性氧化铁纳米颗粒(SPIONPs)和抗癌药物 M4N(四-O-甲基愈创木酸)分别作为成像增强剂和脂溶性药物模型被包载于 rABL 中,形成了含有 SPIONPs 和 M4N 的 rABL(SPIO@rABL 和 M4N@rABL)。傅里叶变换红外光谱表明,rABL 的组成与 LDL 相似,并成功地包载了 SPIONPs 或 M4N。SPIO@rABL 在 BALB/c 小鼠的 T2 加权磁共振成像中表现出明显的肝对比增强,表明其作为医学成像对比剂的潜在应用。M4N@rABL 可以降低肺癌细胞系 A549 的活力。有趣的是,我们开发了溶液相高分辨率透射电子显微镜来观察液态的 LDL 和 SPIO@rABL。总之,我们基于 LDL 的 DDS rABL 作为疏水性和两亲性材料的新型 DDS 具有很大的潜力,具有良好的细胞内化特性和代谢性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4af/3744920/2a88572ea0b5/am-2013-01808e_0001.jpg

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