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首页> 外文期刊>Biological & pharmaceutical bulletin >Preparation of Lipid Nanodisks Containing Apolipoprotein E-Derived Synthetic Peptides for Biocompatible Delivery Vehicles Targeting Low-Density Lipoprotein Receptor
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Preparation of Lipid Nanodisks Containing Apolipoprotein E-Derived Synthetic Peptides for Biocompatible Delivery Vehicles Targeting Low-Density Lipoprotein Receptor

机译:含有载脂蛋白E-衍生合成肽的脂质纳米菌的制备用于靶向低密度脂蛋白受体的生物相容性递送载体

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High-density lipoprotein (HDL) particles that are formed in vivo adopt a disk-shaped structure, in which the periphery of the discoidal phospholipid bilayer is surrounded by apolipoprotein. Such discoidal nanoparticles can be reconstituted with certain apolipoproteins and phospholipids and are commonly called lipid nanodisks. Apolipoprotein E (apoE), one of the HDL constituent proteins, serves as a ligand for the low density lipoprotein (LDL) receptor. Thus, it is considered that biocompatible delivery vehicles targeting LDL receptors could be prepared by incorporating apoE as the protein component of lipid nanodisks. To enhance targeting efficiency, we designed lipid nanodisks with a large number of ligands using a peptide with the LDL receptor-binding region of apoE combined with a high lipid affinity sequence (LpA peptide). In our study, the LpA peptide spontaneously formed discoidal complexes (LpA nanodisks) of approximately 10 nm in size, equivalent to native HDL. LpA peptides on nanodisks adopted highly a-helical structures, a competent conformation capable of interacting with LDL receptors. As anticipated, the uptake of LpA nanodisks into LDL receptor-expressing cells (HepG2) was higher than that of apoE nanodisks, suggesting an enhanced targeting efficiency via the enrichment of LDL receptor-binding regions on the particle. Biodistribution studies using In-111-labeled LpA nanodisks showed little splenic accumulation and prolonged retention in blood circulation, reflecting the biocompatibility of LpA nanodisks. High accumulation of In-111-labeled LpA nanodisks was observed in the liver as well as in implanted tumors, which abundantly express LDL receptors. Thus, LpA nanodisks are potential biocompatible delivery vehicles targeting LDL receptors.
机译:在体内形成的高密度脂蛋白(HDL)颗粒采用盘形结构,其中盘状磷脂双层的周边被载脂蛋白包围。这种盘状纳米颗粒可以用某种载脂蛋白和磷脂重构,并且通常称为脂质纳米型。载脂蛋白E(ApoE),其中一种HDL成分蛋白,用作低密度脂蛋白(LDL)受体的配体。因此,认为靶向LDL受体的生物相容性递送载体可以通过将Apoo作为脂质纳米缺乏的蛋白质组分掺入偶然来制备。为了增强靶向效率,我们设计了使用具有大量配体的脂质纳米型,所述肽与具有高脂质亲和序列(LPA肽)组合的Apoe的LDL受体结合区域(LPA肽)。在我们的研究中,LPA肽自发地形成了大约10nm的盘状络合物(LPA纳米DANDisks),其尺寸相当于天然HDL。 LPA肽在纳米DISK上采用高螺旋结构,能够与LDL受体相互作用的持态化构象。如预期的那样,将LPA纳米纳多克斯的摄取到LDL受体 - 表达细胞(HepG2)高于ApoE纳米缺乏的高度,这表明通过富集颗粒上的LDL受体结合区域提高了靶向效率。使用111个标记的LPA纳米缺失的生物分布研究表明血液循环中的脾脏积累和延长的潴留,反映了LPA纳米型的生物相容性。在肝脏以及植入的肿瘤中观察到111个标记的LPA纳米纳米菌的高积聚,其大量表达LDL受体。因此,LPA纳米缺失是靶向LDL受体的潜在的生物相容性递送载体。

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