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基于亲水性聚谷氨酸的纳米药物递送系统:结构影响与抗肿瘤疗效

Hydrophilic Poly(glutamic acid)-Based Nanodrug Delivery System: Structural Influence and Antitumor Efficacy.

作者信息

Guo Yifei, Shen Yiping, Yu Bo, Ding Lijuan, Meng Zheng, Wang Xiaotong, Han Meihua, Dong Zhengqi, Wang Xiangtao

机构信息

Institute of Medicinal Plant Development, Chinese Academy of Medical Sciences & Peking Union Medical College, No. 151, Malianwa North Road, Haidian District, Beijing 100193, China.

Key Laboratory of Bioactive Substances and Resources Utilization of Chinese Herbal Medicine, Ministry of Education, No. 151, Malianwa North Road, Haidian District, Beijing 100193, China.

出版信息

Polymers (Basel). 2022 May 31;14(11):2242. doi: 10.3390/polym14112242.

Abstract

Poly(amino acids) have advanced characteristics, including unique secondary structure, enzyme degradability, good biocompatibility, and stimuli responsibility, and are suitable as drug delivery nanocarriers for tumor therapy. The isoform structure of poly(amino acids) plays an important role in their antitumor efficacy and should be researched in detail. In this study, two kinds of pH-sensitive isoforms, including α-poly(glutamic acid) (α-PGA) and γ-PGA, were selected and used as nanocarriers to prepare a nanodrug delivery system. According to the preparation results, α-PGA can be used as an ideal drug carrier. Selecting doxorubicin (DOX) as the model drug, an α-PGA/DOX nanoparticle (α-PGA/DOX NPs) with a particle size of 110.4 nm was prepared, and the drug-loading content was 66.2%. α-PGA/DOX NPs presented obvious sustained and pH-dependent release characteristics. The IC value of α-PGA/DOX NPs was 1.06 ± 0.77 μg mL, decreasing by approximately 8.5 fold in vitro against 4T1 cells after incubation for 48 h. Moreover, α-PGA/DOX NPs enhanced antitumor efficacy in vivo, the tumor inhibition rate was 67.4%, increasing 1.5 fold over DOX injection. α-PGA/DOX NPs also reduced the systemic toxicity and cardiotoxicity of DOX. In sum, α-PGA is a biosafe nanodrug delivery carrier with potential clinical application prospects.

摘要

聚氨基酸具有先进的特性,包括独特的二级结构、酶可降解性、良好的生物相容性和刺激响应性,适合作为肿瘤治疗的药物递送纳米载体。聚氨基酸的异构体结构在其抗肿瘤疗效中起着重要作用,应进行详细研究。在本研究中,选择了两种pH敏感的异构体,包括α-聚谷氨酸(α-PGA)和γ-PGA,并用作纳米载体来制备纳米药物递送系统。根据制备结果,α-PGA可作为理想的药物载体。选择阿霉素(DOX)作为模型药物,制备了粒径为110.4 nm的α-PGA/DOX纳米颗粒(α-PGA/DOX NPs),载药含量为66.2%。α-PGA/DOX NPs呈现出明显的缓释和pH依赖性释放特性。α-PGA/DOX NPs的IC值为1.06±0.77μg/mL,在体外对4T1细胞孵育48小时后下降了约8.5倍。此外,α-PGA/DOX NPs在体内增强了抗肿瘤疗效,肿瘤抑制率为67.4%,比注射DOX提高了1.5倍。α-PGA/DOX NPs还降低了DOX的全身毒性和心脏毒性。总之,α-PGA是一种具有潜在临床应用前景的生物安全纳米药物递送载体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f48/9182916/a6e3da7553f5/polymers-14-02242-g001.jpg

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