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Improved antitumor activity of TRAIL fusion protein via formation of self-assembling nanoparticle

机译:通过形成自组装纳米粒子改善痕量融合蛋白的抗肿瘤活性

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Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) has been known as a promising agent for cancer therapy due to its specific apoptosis-inducing effect on tumor cells rather than most normal cells. However, systemically delivered TRAIL suffers from a rapid clearance from the body with an extremely short half-life. Thermally responsive elastin-like polypeptides (ELPs) are a promising class of temperature sensitive biopolymers based on the structural motif found in mammalian tropoelastin and retain the advantages of polymeric drug delivery systems. We therefore expressed RGD-TRAIL fused with ELP (RGD-TRAIL-ELP) in E. coli. Purification of RGD-TRAIL-ELP was achieved by the conveniently inverse transition cycling (ITC). The purified RGD-TRAIL-ELP without any chemical conjugation was able to self-assemble into nanoparticle under physiological condition. Non-reducing SDS-PAGE results showed that trimer content of RGD-TRAIL-ELP increased 3.4-fold than RGD-TRAIL. Flow cytometry confirmed that RGD-TRAIL-ELP 3-fold enhanced apoptosis-inducing capacity than RGD-TRAIL. Single intraperitoneal injection of the RGD-TRAIL-ELP nanoparticle induced nearly complete tumor regression in the COLO-205 tumor xenograft model. Histological observation confirmed that RGD-TRAIL-ELP induced significant tumor cell apoptosis without apparent liver toxicity. These findings suggested that a great potential application of the RGD-TRAIL-ELP nanoparticle system as a safe and efficient delivery strategy for cancer therapy.
机译:肿瘤坏死因子相关的凋亡诱导配体(TRAP)由于其对肿瘤细胞而不是大多数正常细胞的特异性凋亡诱导效应,已知为癌症治疗的有望剂。然而,系统交付的小径遭受了身体的快速间隙,具有极短的半衰期。热响应的弹性蛋白样多肽(ELP)是基于哺乳动物Tropoelastin中发现的结构基质的有前途的温度敏感生物聚合物类,并保留聚合物药物递送系统的优点。因此,我们表示RGD-TRAIL与大肠杆菌中的ELP(RGD-Trail-ELP)融合。通过方便的逆转录循环(ITC)实现RGD-Trail-ELP的纯化。没有任何化学缀合的纯化的RGD-TRAIL-ELP能够在生理条件下自组装成纳米颗粒。非减少SDS-PAGE结果表明,RGD-Trail-ELP的三聚体含量比RGD-TRAIL增加3.4倍。流式细胞术证实,RGD-TRAIL-ELP 3倍增强的凋亡诱导能力而不是RGD-TRAIL。单一腹膜内注射RGD-TRAIL-ELP纳米粒子在COLO-205肿瘤异种移植模型中诱导几乎完全的肿瘤回归。组织学观察证实,RGD-TRAIL-ELP诱导显着的肿瘤细胞凋亡,没有表观肝毒性。这些发现表明,RGD-Trail-ELP纳米粒子系统的潜在潜在应用是癌症治疗的安全有效的交付策略。

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