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构建和评价可溯源 rhES-QDs-M-MS 蛋白递药系统:缓释性能、靶向作用和抗肿瘤活性。

Construction and Evaluation of Traceable rhES-QDs-M-MS Protein Delivery System: Sustained-Release Properties, Targeted Effect, and Antitumor Activity.

机构信息

School of Biotechnology and Health Sciences, Wuyi University, Jiangmen, 529000, People's Republic of China.

College of Pharmacy, Jiangsu University, Zhenjiang, 212013, People's Republic of China.

出版信息

AAPS PharmSciTech. 2022 Jul 28;23(6):207. doi: 10.1208/s12249-022-02326-5.

Abstract

Recombinant human endostatin (rhES) is a protein drug with poor stability and short in vivo circulation time. The present study was therefore aimed at developing sustained-release lung targeted microspheres drug delivery system and evaluating its targeting efficiency using in vivo imaging techniques with quantum dots (QDs) as the imaging material. The oil-soluble QDs were coated with amphiphilic polymers to obtain a polymer-quantum dots micelle (QDs-M) with the potential to stably disperse in water. The rhES and QDs-M were combined using covalent bonds. The rhES-QDs-M microspheres (rhES-QDs-M-MS) were prepared using electrostatic spray technology and also evaluated via in vivo imaging techniques. The pharmacodynamics was further studied in mice. The rhES-QDs-M-MS (4-8 μm) were stable in an aqueous medium with good optical properties. The in vitro studies showed that the rhES-QDs-M-MS had sustained release which was maintained for at least 15 days (cumulative release >80%) without any burst release. The rhES-QDs-M-MS had a very high safety profile and also effectively inhibited the in vitro proliferation of human umbilical vein endothelial cells by about 70%. The pharmacokinetic results showed that the rhES could still be detected at 72 h in the experimental group which meant that the rhES-QDs-M-MS had a significant sustained-release effect. The rhES-QDs-M-MS had a better lung targeting effect and higher antitumor activity compared with the rhES. The traceable rhES-QDs-M-MS served as a promising drug delivery system for the poorly stable rhES proteins and significantly increased its lung-targeted effect, sustained-release properties, and antitumor activities.

摘要

重组人血管内皮抑制素(rhES)是一种稳定性差、体内循环时间短的蛋白药物。本研究旨在开发一种具有缓释肺靶向的微球给药系统,并采用量子点(QDs)作为成像材料,通过体内成像技术评估其靶向效率。将油溶性 QDs 用两亲性聚合物包裹,得到一种具有潜在稳定分散在水中的聚合物-QDs 胶束(QDs-M)。rhES 与 QDs-M 通过共价键结合。采用静电喷雾技术制备 rhES-QDs-M 微球(rhES-QDs-M-MS),并通过体内成像技术进行评价。进一步在小鼠中进行药效学研究。rhES-QDs-M-MS(4-8μm)在水介质中稳定,具有良好的光学性能。体外研究表明,rhES-QDs-M-MS 具有缓释作用,至少可维持 15 天(累积释放率>80%),无突释。rhES-QDs-M-MS 具有很高的安全性,还能有效抑制体外人脐静脉内皮细胞的增殖,抑制率约为 70%。药代动力学结果表明,实验组中在 72 h 时仍能检测到 rhES,这意味着 rhES-QDs-M-MS 具有显著的缓释作用。rhES-QDs-M-MS 与 rhES 相比,具有更好的肺靶向效果和更高的抗肿瘤活性。可追踪的 rhES-QDs-M-MS 为稳定性差的 rhES 蛋白提供了一种有前途的药物递送系统,显著提高了其肺靶向效果、缓释性能和抗肿瘤活性。

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