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使用琥珀酸壳聚糖包覆壳聚糖体的新型聚电解质脂质体的制备与表征:一种结肠癌治疗的潜在策略

Preparation and Characterization of Novel Polyelectrolyte Liposomes Using Chitosan Succinate Layered over Chitosomes: A Potential Strategy for Colon Cancer Treatment.

作者信息

Yosef Asmaa Mokhtar, Alqarni Raghad Saleh, Sayd Fai Yahya, Alhawiti Manar Saleem, Almahlawi Raghad M, Prabahar Kousalya, Uthumansha Ubaidulla, Alanazi Mansuor A, El-Sherbiny Mohamed, Elsherbiny Nehal, Qushawy Mona

机构信息

Pharm. D Program, Faculty of Pharmacy, University of Tabuk, Tabuk 71491, Saudi Arabia.

Department of Pharmacy Practice, Faculty of Pharmacy, University of Tabuk, Tabuk 71491, Saudi Arabia.

出版信息

Biomedicines. 2024 Jan 8;12(1):126. doi: 10.3390/biomedicines12010126.

Abstract

Chitosan succinate is distinguished by its ability to shield the loaded drug from the acidic environment, localize and keep the drug at the colon site, and release the drug over an extended time at basic pH. The current study attempts to develop polyelectrolyte liposomes (PEL), using chitosan and chitosan succinate (CSSC), as a carrier for liposomal-assisted colon target delivery of 5 fluorouracil (5FU). The central composite design was used to obtain an optimized formulation of 5FU-chitosomes. The chitosan-coated liposomes (chitosomes) were prepared by thin lipid film hydration technique. After that, the optimized formulation was coated with CSSC, which has several carboxylic (COOH) groups that produce an anionic charge that interacts with the cation NH2 in chitosan. The prepared 5FU-chitosomes formulations were evaluated for entrapment efficiency % (EE%), particle size, and in vitro drug release. The optimized 5FU-chitosomes formulation was examined for particle size, zeta potential, in vitro release, and mucoadhesive properties in comparison with the equivalent 5FU-liposomes and 5FU-PEL. The prepared 5FU-chitosomes exhibited high EE%, small particle size, low polydispersity index, and prolonged drug release. PEL significantly limited the drug release at acidic pH due to the deprotonation of carboxylate ions in CSSC, which resulted in strong repulsive forces, significant swelling, and prolonged drug release. According to a 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl-2H-tetrazolium bromide (MTT) assay, PEL treatment significantly decreased the viability of HT-29 cells. When compared to 5FU-liposome and 5FU-chitosome, the in vivo pharmacokinetics characteristics of 5FU-PEL significantly ( < 0.05) improved. The findings show that PEL enhances 5FU permeability, which permits high drug concentrations to enter cells and inhibits the growth of colon cancer cells. Based on the current research, PEL may be used as a liposomal-assisted colon-specific delivery.

摘要

琥珀酸壳聚糖的独特之处在于它能够保护负载的药物免受酸性环境的影响,使药物定位并保留在结肠部位,并在碱性pH值下长时间释放药物。当前的研究试图开发聚电解质脂质体(PEL),使用壳聚糖和琥珀酸壳聚糖(CSSC)作为脂质体辅助结肠靶向递送5-氟尿嘧啶(5FU)的载体。采用中心复合设计来获得5FU-壳聚糖体的优化配方。壳聚糖包被的脂质体(壳聚糖体)通过薄膜水化技术制备。之后,用CSSC包被优化配方,CSSC具有几个羧基(COOH)基团,可产生与壳聚糖中的阳离子NH2相互作用的阴离子电荷。对制备的5FU-壳聚糖体制剂进行包封率%(EE%)、粒径和体外药物释放评估。与等效的5FU-脂质体和5FU-PEL相比,对优化的5FU-壳聚糖体制剂进行粒径、zeta电位、体外释放和粘膜粘附特性检测。制备的5FU-壳聚糖体表现出高EE%、小粒径、低多分散指数和延长的药物释放。由于CSSC中羧酸根离子的去质子化,PEL在酸性pH值下显著限制了药物释放,这导致了强烈的排斥力、显著的肿胀和延长的药物释放。根据3-(4,5-二甲基噻唑-2-基)-2,5-二苯基-2H-四唑溴盐(MTT)试验,PEL处理显著降低了HT-29细胞的活力。与5FU-脂质体和5FU-壳聚糖体相比,5FU-PEL的体内药代动力学特征显著(<0.05)改善。研究结果表明,PEL增强了5FU的渗透性,使高浓度药物能够进入细胞并抑制结肠癌细胞的生长。基于当前的研究,PEL可作为脂质体辅助的结肠特异性递送载体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b2d/10813275/b8390e6bfc8a/biomedicines-12-00126-g001.jpg

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