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首页> 外文期刊>Journal of drug targeting >Efficient antiglioblastoma therapy in mice through doxorubicin-loaded nanomicelles modified using a novel brain-targeted RVG-15 peptide
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Efficient antiglioblastoma therapy in mice through doxorubicin-loaded nanomicelles modified using a novel brain-targeted RVG-15 peptide

机译:通过使用新型脑靶向 RVG-15 肽修饰的多柔比星负载纳米胶束的小鼠进行有效的抗胶质母细胞瘤治疗

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Glioblastoma (GBM) is an aggressive malignancy and therapeutic options are limited due to the presence of the blood-brain barrier (BBB). RVG-29, a 29-amino-acid polypeptide derived from the rabies virus glyco-protein (RVG), has excellent brain-targeted capacity across the BBB. We reduced the size of this peptide to get a15-amino-acid polypeptide (RVG-15), while retaining its brain-targeted capacity across the BBB. First, we synthesized a novel nanocarrier RVG-15-PEG2000-DSPE. Next, DOX-loaded polymeric micelles (DOX RVG-15-PMs) were prepared in an electrostatic interaction-dependent manner. Finally, we evaluated its antitu-mor benefits in vitro at the cellular level and in vivo using an in situ tumour-bearing mouse model. MALDI-TOF-MS and FTIR spectra confirmed the successful synthesis of the novel nanocarrier. The prepared DOX RVG-15-PMs displayed even size distribution, a high entrapment efficiency and satisfactory in vitro release behaviour. In vitro blank RVG-15-PMs were excellent, safe and highly biocompatible as drug delivery carriers. DOX-loaded micelles were easily taken up by C6 cells and could effectively inhibit cancer development and metastasis. In vivo, DOX RVG-15-PMs delayed weight loss, prevented cancer cell metastasis and accelerated cancer cell apoptosis in tumour-bearing mice. Our novel brain-targeted nanocarrier is highly feasible, while DOX RVG-15-PMs exert significant antiglioma effects, both in vitro and in vivo.
机译:胶质母细胞瘤 (GBM) 是一种侵袭性恶性肿瘤,由于血脑屏障 (BBB) 的存在,治疗选择有限。RVG-29 是一种源自狂犬病病毒糖蛋白 (RVG) 的 29 个氨基酸多肽,在整个 BBB 中具有出色的脑靶向能力。我们减小了这种肽的大小以获得 a15-氨基酸多肽 (RVG-15),同时保留了其在整个 BBB 中的大脑靶向能力。首先,我们合成了一种新型纳米载体RVG-15-PEG2000-DSPE。接下来,以静电相互作用依赖性方式制备了DOX负载的聚合物胶束(DOX RVG-15-PMs)。最后,我们使用原位肿瘤小鼠模型在细胞水平和体内评估了其在体外的抗肿瘤益处。MALDI-TOF-MS和FTIR光谱证实了新型纳米载体的成功合成。制备的DOX RVG-15-PMs尺寸分布均匀,捕获效率高,体外释放性能令人满意。体外空白RVG-15-PM作为药物递送载体具有优异、安全和高度的生物相容性。负载DOX的胶束很容易被C6细胞吸收,并能有效抑制癌症的发生和转移。在体内,DOX RVG-15-PMs延缓了体重减轻,阻止了癌细胞转移,并加速了荷瘤小鼠的癌细胞凋亡。我们的新型脑靶向纳米载体非常可行,而DOX RVG-15-PMs在体外和体内都发挥了显着的抗神经胶质瘤作用。

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