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壳聚糖表面修饰的聚乳酸-羟基乙酸共聚物纳米粒负载蔓越莓粉提取物作为靶向结肠癌细胞的潜在口服给药平台。

Chitosan Surface-Modified PLGA Nanoparticles Loaded with Cranberry Powder Extract as a Potential Oral Delivery Platform for Targeting Colon Cancer Cells.

作者信息

Mostafa Mona M, Amin Maha M, Zakaria Mohamed Y, Hussein Mohammed Abdalla, Shamaa Marium M, Abd El-Halim Shady M

机构信息

Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, October 6 University, 6th of October City, Giza 12585, Egypt.

Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Cairo University, Cairo 11562, Egypt.

出版信息

Pharmaceutics. 2023 Feb 10;15(2):606. doi: 10.3390/pharmaceutics15020606.

Abstract

Nutraceutical cranberry powder extract (CBPE) has distinct polyphenols inhibiting colon cancer growth and proliferation. However, its oral therapeutic efficacy is hindered because of its low permeability. This study aims to formulate chitosan surface-modified PLGA nanoparticles (CS-PLGA NPs) for encapsulating CBPE and modulating its release rate, permeation, cell targeting, and, therefore, its cytotoxicity. A full 2 factorial design is employed to scrutinize the effect of lactide/glycolide ratio, PLGA weight, and stabilizer concentrations on entrapment efficiency percentage (EE%), particle size (PS), polydispersity index (PDI), and zeta potential (ZP). The optimum formula (F4) shows spherical particles with a relatively high EE% (72.30 ± 2.86%), an appropriate size of 370.10 ± 10.31 nm, PDI; 0.398 ± 0.001, and ZP; -5.40 ± 0.21 mV. Alongside the ATR-FTIR outcomes, the chitosan surface-modified formula (CS-F4) demonstrates a significant increase in particle size (417.67 ± 6.77 nm) and a shift from negative to positive zeta potential (+21.63 ± 2.46 mV), confirming the efficiency of surface modification with chitosan. The intestinal permeability of F4 and CS-F4 is significantly increased by 2.19- and 3.10-fold, respectively, compared to the CBPE solution, with the permeability coefficient () being 2.05 × 10 cm/min and 2.91 × 10 cm/min, for F4 and CS-F4, respectively, compared to the CBPE solution, 9.36 × 10 cm/min. Moreover, CS-F4 evidences significant caspase-3 protein level expression stimulation and significant inhibition of vascular endothelial growth factor (VEGF) and signal transducer and activator of transcription-3 (STAT-3) protein expression levels, confirming the superiority of CS-F4 for targeting HT-29 cells. Briefly, CS-PLGA NPs could be regarded as a prosperous delivery system of CBPE with enhanced permeation, cell targeting, and antitumor efficacy.

摘要

营养保健品蔓越莓粉提取物(CBPE)含有独特的多酚类物质,可抑制结肠癌的生长和增殖。然而,由于其低渗透性,其口服治疗效果受到阻碍。本研究旨在制备壳聚糖表面修饰的聚乳酸-羟基乙酸共聚物纳米粒(CS-PLGA NPs),用于包封CBPE并调节其释放速率、渗透性、细胞靶向性,进而调节其细胞毒性。采用全因子设计研究丙交酯/乙交酯比例、PLGA重量和稳定剂浓度对包封率(EE%)、粒径(PS)、多分散指数(PDI)和zeta电位(ZP)的影响。最佳配方(F4)显示出球形颗粒,具有相对较高的包封率(72.30±2.86%),合适的粒径为370.10±10.31 nm,PDI为0.398±0.001,ZP为-5.40±0.21 mV。除了衰减全反射傅里叶变换红外光谱(ATR-FTIR)结果外,壳聚糖表面修饰配方(CS-F4)的粒径显著增加(417.67±6.77 nm),zeta电位从负变为正(+21.63±2.46 mV),证实了壳聚糖表面修饰的有效性。与CBPE溶液相比,F4和CS-F4的肠道渗透性分别显著提高了2.19倍和3.10倍,F4和CS-F4的渗透系数分别为2.05×10 cm/min和2.91×10 cm/min,而CBPE溶液的渗透系数为9.36×10 cm/min。此外,CS-F4显著刺激半胱天冬酶-3蛋白水平表达,并显著抑制血管内皮生长因子(VEGF)和信号转导子及转录激活子-3(STAT-3)蛋白表达水平,证实了CS-F4对靶向HT-29细胞的优越性。简而言之,CS-PLGA NPs可被视为一种成功的CBPE递送系统,具有增强的渗透性、细胞靶向性和抗肿瘤功效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfd4/9964659/dfee76c6e562/pharmaceutics-15-00606-g001.jpg

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