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Polycefin, a new prototype of multifunctional nanoconjugate based on poly(beta-L-malic acid) for drug delivery

机译:Polycefin,一种基于聚(β-L-苹果酸)的多功能纳米共轭物的新原型,可用于药物输送

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摘要

A new prototype of nanoconjugate, Polycefin, was synthesized for targeted delivery of antisense oligonucleotides and monoclonal antibodies to brain tumors. The macromolecular carrier contains: 1. biodegradable, nonimmunogenic, nontoxic -poly(L-malic acid) of microbial origin; 2. Morpholino antisense oligonucleotides targeting laminin 4 and 1 chains of laminin-8, which is specifically overexpressed in glial brain tumors; 3. monoclonal anti-transferrin receptor antibody for specific tissue targeting; 4. oligonucleotide releasing disulfide units; 5. L-valine containing, pH-sensitive membrane disrupting unit(s), 6. protective poly(ethylene glycol); 7. a fluorescent dye (optional). Highly purified modules were conjugated directly with N-hydroxysuccinimidyl ester-activated -poly(L-malic acid) at pendant carboxyl groups or at thiol containing spacers via thioether and disulfide bonds. Products were chemically validated by physical, chemical, and functional tests. In vitro experiments using two human glioma cell lines U87MG and T98G demonstrated that Polycefin was delivered into the tumor cells by a receptor-mediated endocytosis mechanism and was able to inhibit the synthesis of laminin-8 4 and 1 chains at the same time. Inhibition of laminin-8 expression was in agreement with the designed endosomal membrane disruption and drug releasing activity. In vivo imaging showed the accumulation of intravenously injected Polycefin in brain tumor tissue via the antibody-targeted transferrin receptor-mediated endosomal pathway in addition to a less efficient mechanism known for high molecular mass biopolymers as enhanced permeability and retention effect. Polycefin was nontoxic to normal and tumor astrocytes in a wide range of concentrations, accumulated in brain tumor, and could be used for specific targeting of several biomarkers simultaneously.
机译:合成了纳米共轭物的新原型Polycefin,用于针对脑肿瘤的反义寡核苷酸和单克隆抗体的靶向递送。大分子载体包含:1.微生物来源的可生物降解的,非免疫原性的,无毒的聚(L-苹果酸); 2.针对层粘连蛋白4和层粘连蛋白8的1链的吗啉代反义寡核苷酸,其在神经胶质脑肿瘤中特异性过表达; 3.针对特定组织靶向的单克隆抗运铁蛋白受体抗体; 4.寡核苷酸释放二硫键单元; 5.含L-缬氨酸的pH敏感膜破坏单元,6.保护性聚乙二醇; 7.荧光染料(可选)。将高度纯化的模块通过羧基侧基或含硫醇的间隔基通过硫醚和二硫键与N-羟基琥珀酰亚胺基酯活化的聚(L-苹果酸)直接偶联。产品通过物理,化学和功能测试进行了化学验证。使用两种人类神经胶质瘤细胞系U87MG和T98G进行的体外实验表明,Polycefin通过受体介导的内吞作用机制被递送到肿瘤细胞中,并且能够同时抑制层粘连蛋白8 4和1链的合成。层粘连蛋白8表达的抑制与设计的内体膜破坏和药物释放活性一致。体内成像显示,静脉注射的Polycefin通过抗体靶向的转铁蛋白受体介导的内体途径在脑肿瘤组织中积累,此外,高分子生物聚合物的通透性和滞留效果增强,效率较低。 Polycefin在正常范围内对正常和肿瘤星形胶质细胞无毒,并在脑肿瘤中蓄积,可同时用于多种生物标志物的特异性靶向。

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