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Doxorubicin-loaded amphiphilic polypeptide-based nanoparticles as an efficient drug delivery system for cancer therapy

机译:载有阿霉素的两亲性多肽基纳米颗粒作为癌症治疗的有效药物递送系统

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摘要

An amphiphilic anionic copolymer, methoxy poly(ethylene glycol)-b-poly(l-glutamic acid-co-l-phenylalanine) (mPEG-b-P(Glu-co-Phe)), with three functionalized domains, was synthesized and used as a nanovehicle for cationic anticancer drug doxorubicin hydrochloride (DOX·HCl) delivery via electrostatic interactions for cancer treatment. The three domains displayed distinct functions: PEG block chain for prolonged circulation; poly(phenylalanine) domain for stabilizing the nanoparticle construct through hydrophobic/aromatic interactions; and the poly(glutamic acid) domain for providing electrostatic interactions with the cationic drug to be loaded. The copolymer could self-assemble into micellar-type nanoparticles, and DOX was successfully loaded into the interior of nanoparticles by simple mixing of DOX·HCl and the copolymer in the aqueous phase. DOX-loaded mPEG-b-P(Glu-co-Phe) nanoparticles (DOX-NP) had a superior drug-loading content (DLC) (21.7%), a high loading efficiency (almost 98%) and a pH-triggered release of DOX. The size of DOX-NP was ~140 nm, as determined by dynamic light scattering measurements and transmission electron microscopy. In vitro assays showed that DOX-NP exhibited higher cell proliferation inhibition and higher cell uptake in A549 cell lines compared with free DOX·HCl. Maximum tolerated dose (MTD) studies showed that DOX-NP demonstrated an excellent safety profile with a significantly higher MTD (15 mg DOX kg-1) than that of free DOX·HCl (5 mg DOX kg-1). The in vivo studies on the subcutaneous non-small cell lung cancer (A549) xenograft nude mice model confirmed that DOX-NP showed significant antitumor activity and reduced side effects, and then enhanced tumor accumulation as a result of the prolonged circulation in blood and the enhanced permeation and retention effect, compared with free DOX, indicating its great potential for cancer therapy.
机译:合成了具有三个功能域的两亲性阴离子共聚物,甲氧基聚(乙二醇)-b-聚(1-谷氨酸-co-1-苯丙氨酸)(mPEG-bP(Glu-co-Phe)),并用作一种通过静电相互作用递送阳离子抗癌药盐酸阿霉素(DOX·HCl)的纳米载体,用于癌症治疗。这三个域显示出不同的功能:PEG链延长循环;聚(苯丙氨酸)结构域,用于通过疏水/芳族相互作用稳定纳米颗粒结构;聚谷氨酸结构域用于提供与待加载的阳离子药物的静电相互作用。该共聚物可以自组装成胶束型纳米颗粒,通过简单地将DOX·HCl和共聚物在水相中混合,可以将DOX成功地装载到纳米颗粒的内部。载有DOX的mPEG-bP(Glu-co-Phe)纳米颗粒(DOX-NP)具有优异的载药量(DLC)(21.7%),高载药效率(几乎98%)和pH触发的释放DOX。通过动态光散射测量和透射电子显微镜测定,DOX-NP的大小约为140 nm。体外实验表明,与游离的DOX·HCl相比,DOX-NP在A549细胞系中表现出更高的细胞增殖抑制和更高的细胞摄取。最大耐受剂量(MTD)研究表明,DOX-NP具有出色的安全性,MTD(15 mg DOX kg-1)明显高于游离DOX·HCl(5 mg DOX kg-1)。对皮下非小细胞肺癌(A549)异种移植裸鼠模型的体内研究证实,DOX-NP表现出显着的抗肿瘤活性并减少了副作用,然后由于血液和血液循环的延长而增强了肿瘤的积累。与游离DOX相比,增强的渗透和保留效果表明其在癌症治疗中的巨大潜力。

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