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基于氢键结合的单宁酸的抗癌纳米粒子用于增强口腔化疗。

Hydrogen-Bonded Tannic Acid-Based Anticancer Nanoparticle for Enhancement of Oral Chemotherapy.

机构信息

School of Materials Science and Engineering, Key Laboratory for Polymeric Composite and Functional Materials of Ministry of Education, GD Research Center for Functional Biomaterials Engineering and Technology , Sun Yat-sen University , Guangzhou 510275 , China.

Shenzhen Key Laboratory of Environmental Chemistry and Ecological Remediation, College of Chemistry and Environmental Engineering , Shenzhen University , Shenzhen 518060 , China.

出版信息

ACS Appl Mater Interfaces. 2018 Dec 12;10(49):42186-42197. doi: 10.1021/acsami.8b18979. Epub 2018 Nov 29.

Abstract

Oral chemotherapy has been emerging as a hopeful therapeutic regimen for the treatment of various cancers because of its high safety and convenience, lower costs, and high patient compliance. Currently, nanoparticulate drug delivery systems (NDDS) exhibit many unique advantages in mediating oral drug delivery; however, many anticancer drugs that were susceptible in hostile gastrointestinal (GI) environment showed poor permeability across intestinal epithelium, and most materials used as drug carriers are nonactive excipients and displayed no therapeutically relevant function, which leads to low oral bioavailability and therapeutic efficacy of anticancer drugs (e.g., paclitaxel). Inspired by these, in this study, paclitaxel (PTX) was used as a model drug, depending on intermolecular hydrogen-bonded interactions, PTX-loaded tannic acid/poly( N-vinylpyrrolidone) nanoparticles (PTX-NP) were produced by a flash nanoprecipitation (FNP) process. The optimized PTX-NP showed an average diameter of 54 nm with a drug encapsulation efficiency of 80% and loading capacity of 14.5%. Molecular dynamics simulations were carried out to illuminate the assembling mechanism of hydrogen-bonded PTX-NP. In vitro and in vivo results confirmed that PTX-NP showed pH-dependent intestinal site-specific drug release, P-gp inhibitory function by tannic acid (TA), prolonged intestinal retention, and improved trans-epithelial transport properties. Oral administration of PTX-NP generated a high oral delivery efficiency and relative oral bioavailability of 25.6% in rats, and further displayed a significant tumor-inhibition effect in a xenograft breast tumor model. These findings confirmed that our PTX-NP might be a promising oral drug formulation for chemotherapy.

摘要

口服化疗因其安全性高、便利性高、成本低、患者依从性高,已成为治疗各种癌症的一种有希望的治疗方案。目前,纳米颗粒药物传递系统(NDDS)在介导口服药物传递方面表现出许多独特的优势;然而,许多易受恶劣胃肠道(GI)环境影响的抗癌药物在穿过肠上皮时渗透性差,并且大多数用作药物载体的材料是非活性赋形剂,没有治疗相关功能,这导致抗癌药物(如紫杉醇)的口服生物利用度和治疗效果低。受此启发,在本研究中,紫杉醇(PTX)被用作模型药物,基于分子间氢键相互作用,通过闪式纳米沉淀(FNP)工艺制备了负载紫杉醇的单宁酸/聚(N-乙烯基吡咯烷酮)纳米颗粒(PTX-NP)。优化后的 PTX-NP 的平均粒径为 54nm,药物包封效率为 80%,载药量为 14.5%。分子动力学模拟阐明了氢键结合的 PTX-NP 的组装机制。体外和体内结果证实,PTX-NP 表现出 pH 依赖性的肠道部位特异性药物释放、单宁酸(TA)的 P-糖蛋白抑制作用、延长的肠道保留和改善的跨上皮转运特性。PTX-NP 的口服给药在大鼠中产生了高口服递送效率和相对口服生物利用度 25.6%,并在异种移植乳腺癌模型中显示出显著的肿瘤抑制作用。这些发现证实,我们的 PTX-NP 可能是一种有前途的化疗口服药物制剂。

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